Resource acquisition method and apparatus, and communication device

By obtaining control resources associated with frequency domain objects, the problem of inefficient spectrum utilization in the carrier aggregation mechanism is solved, and the control resource determination under flexible resource objects is realized, which improves the performance and coverage capabilities of the communication system.

CN120343726APending Publication Date: 2025-07-18VIVO MOBILE COMM CO LTD
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Patent Information

Application Number
CN202410076498.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-01-18
Publication Date
2025-07-18

AI Technical Summary

Technical Problem

The existing carrier aggregation mechanism results in unnecessary overhead and efficiency losses in 4G and 5G communication systems, especially inefficient in the utilization of discontinuous spectrum, and is invalid for user equipment in idle or inactive mode, and cannot effectively utilize discontinuous spectrum resources.

Method used

By acquiring the control resources or control resource part associated with at least one frequency domain object, a flexible control resource determination under the resource object is realized to improve the performance of the communication system.

Benefits of technology

It improves the user-perceived data rate, energy saving, system capacity and coverage range, reduces public signaling overhead, improves the coverage capability and transmission reliability of PDCCH, and realizes efficient spectrum utilization.

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Abstract

The invention discloses a resource obtaining method and device and communication equipment, and belongs to the technical field of communication, and the communication processing method comprises the steps that the communication equipment obtains a first object; wherein the first object comprises a control resource or a control resource part, the first object is related to at least one resource object, and the resource object is associated with or comprises at least one frequency domain object.
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Description

Technical Field

[0001] This application belongs to the field of communication technologies, and particularly relates to a resource acquisition method, apparatus, and communication device. Background Art

[0002] In 4G and 5G, if fragmented spectrum is to be used, Carrier Aggregation (CA) is a traditional solution for operators and terminals to aggregate spectrum, that is, different continuous spectrums are regarded as one carrier. However, the existing CA mechanism treats each carrier as an independent serving cell and assumes that each carrier is independently deployed. The independent management of each carrier brings unnecessary overhead and efficiency losses (such as independent control signaling, common signaling, etc.). This also brings unnecessary processes and delays (such as synchronization, Secondary Cell (SCell) addition / release / activation / measurement / mobility, etc.). In addition, the CA mechanism is only beneficial to User Equipment (UE) in the connected mode Radio Resource Control connected state (RRC_connected), that is, the RRC connection with the network is completed, and is not beneficial to UE in the idle mode / inactive mode Radio Resource Control idle state or inactive state (RRC_idle / inactive, for example, initial access / small data transmission (SDT)).

[0003] Therefore, introducing flexible resource objects (such as flexible cells) can flexibly and efficiently utilize adjacent discontinuous spectrums from the perspectives of L1 / L2 / L3 signaling, processes, and cell management. It is beneficial to both UEs in the CONNECTED state and the IDLE state, thereby improving the user-perceived data rate, energy saving, system capacity, and coverage. It also simplifies network management complexity and improves energy efficiency. In addition, these narrow-bandwidth carriers cannot carry a high aggregation level of Control Channel Elements (CCEs). For example, CCE AL 16 requires a maximum of 96 Resource Blocks (RBs). This is not conducive to the transmission of control information at the cell edge and reduces coverage. Narrow-bandwidth carriers may bring a high collision probability of the Physical Downlink Control Channel (PDCCH). Therefore, communication systems beyond 6G will support the design of flexible resource object configuration of multiple carriers / frequency parts / bandwidths / subbands; how to determine control resources under flexible resource objects is an urgent problem to be solved. Summary of the Invention

[0004] An embodiment of the present application provides a resource acquisition method, apparatus, and communication device to determine control resources under a flexible resource object.

[0005] In a first aspect, a resource acquisition method is provided, and the method includes:

[0006] A communication device acquires a first object;

[0007] Wherein, the first object includes: a control resource or a part of a control resource, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0008] In a second aspect, a resource determination apparatus is provided, which is applied to a communication device and includes:

[0009] An acquisition module, configured to acquire a first object;

[0010] Wherein, the first object includes: a control resource or a part of a control resource, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0011] In a third aspect, a communication device is provided, including a processor and a memory, where the memory stores a program or instruction that can run on the processor, and when the program or instruction is executed by the processor, the steps of the method described in the first aspect are implemented.

[0012] In a fourth aspect, a communication device is provided, including a processor and a communication interface, wherein the processor is configured to acquire a first object;

[0013] Wherein, the first object includes: a control resource or a part of a control resource, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0014] In a fifth aspect, a communication system is provided, including: a terminal and a network-side device, the terminal can be used to execute the steps of the method described in the first aspect, and the network-side device can be used to execute the steps of the method described in the first aspect.

[0015] In a sixth aspect, a readable storage medium is provided, where a program or instruction is stored on the readable storage medium, and when the program or instruction is executed by a processor, the steps of the method described in the first aspect are implemented.

[0016] In a seventh aspect, a chip is provided, the chip includes a processor and a communication interface, the communication interface is coupled to the processor, and the processor is configured to run a program or instruction to implement the steps of the method described in the first aspect.

[0017] In an eighth aspect, a computer program / program product is provided. The computer program / program product is stored in a storage medium and is executed by at least one processor to implement the steps of the method as described in the first aspect.

[0018] In the embodiments of the present application, by determining control resources or control resource portions related to at least one resource object associated with or including at least one frequency domain object, the determination of control resources under flexible resource objects is achieved, and further the transmission of control resources is realized, thereby improving the performance of the communication system. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 is a block diagram of a wireless communication system to which the embodiments of the present application can be applied;

[0020] Figure 2 is one of the flow diagrams of the resource acquisition method in the embodiments of the present application;

[0021] Figure 3 is one of the diagrams showing the effective distribution of CORESET;

[0022] Figure 4 is another diagram showing the effective distribution of CORESET;

[0023] Figure 5 is yet another diagram showing the effective distribution of CORESET;

[0024] Figure 6 is still another diagram showing the effective distribution of CORESET;

[0025] Figure 7 is a module diagram of the resource acquisition device in the embodiments of the present application;

[0026] Figure 8 is a structural diagram of the terminal in the embodiments of the present application;

[0027] Figure 9 is a structural diagram of the communication device in the embodiments of the present application. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0028] Next, the technical solutions in the embodiments of the present application will be clearly described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application fall within the scope of protection of the present application.

[0029] The terms "first", "second", etc. in this application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such terms can be interchanged under appropriate circumstances, so that the embodiments of this application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first" and "second" are usually of the same category, without limiting the number of objects. For example, the first object can be one or multiple. In addition, "or" in this application means at least one of the connected objects. For example, "A or B" covers three scenarios, namely, Scenario 1: including A and not including B; Scenario 2: including B and not including A; Scenario 3: including both A and B. The character " / " generally indicates that the associated objects before and after are in an "or" relationship.

[0030] The term "indication" in this application can be either a direct indication (or an explicit indication) or an indirect indication (or an implicit indication). Among them, a direct indication can be understood as that the sender clearly informs the receiver of specific information, operations to be performed, request results, etc. in the sent indication; an indirect indication can be understood as that the receiver determines the corresponding information according to the indication sent by the sender, or makes a judgment and determines the operations to be performed or request results, etc. according to the judgment result.

[0031] It is worth pointing out that the technology described in the embodiments of this application is not limited to the Long Term Evolution (LTE) / LTE-Advanced (LTE-A) system, but can also be used in other wireless communication systems, such as Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Frequency Division Multiple Access (FDMA), Orthogonal Frequency Division Multiple Access (OFDMA), Single-carrier Frequency-Division Multiple Access (SC-FDMA), or other systems. The terms "system" and "network" in the embodiments of this application are often used interchangeably, and the described technology can be used not only in the systems and radio technologies mentioned above, but also in other systems and radio technologies. The following description describes the New Radio (NR) system for example purposes, and uses NR terms in most of the following descriptions, but these technologies can also be applied to systems other than the NR system, such as the 6th generation (6 thGeneration, 6G) communication system.

[0032] Figure 1The block diagram of a wireless communication system to which the embodiments of the present application can be applied is shown. The wireless communication system includes a terminal 11 and a network-side device 12. Among them, the terminal 11 can be a mobile phone, a tablet personal computer, a laptop computer, a notebook computer, a personal digital assistant (PDA), a handheld computer, a netbook, an ultra-mobile personal computer (UMPC), a mobile internet device (MID), an augmented reality (AR), a virtual reality (VR) device, a robot, a wearable device, a flight vehicle, a vehicle user equipment (VUE), a shipborne device, a pedestrian user equipment (PUE), a smart home (home devices with wireless communication functions, such as refrigerators, TVs, washing machines or furniture, etc.), a game console, a personal computer (PC), a teller machine or a self-service machine, etc. Wearable devices include: smart watches, smart bracelets, smart earphones, smart glasses, smart jewelry (smart bracelets, smart bracelets, smart rings, smart necklaces, smart anklets, smart ankle chains, etc.), smart wristbands, smart clothing, etc. Among them, the vehicle user equipment can also be referred to as a vehicle terminal, a vehicle controller, a vehicle module, a vehicle component, a vehicle chip or a vehicle unit, etc. It should be noted that the specific type of the terminal 11 is not limited in the embodiments of the present application. The network-side device 12 can include an access network device or a core network device. Among them, the access network device can also be referred to as a radio access network (RAN) device, a radio access network function or a radio access network unit. The access network device can include a base station, a wireless local area network (WLAN) access point (AP) or a wireless fidelity (WiFi) node, etc.Among them, the base station can be referred to as Node B (NB), Evolved Node B (eNB), the next generation Node B (gNB), New Radio Node B (NR Node B), access point, Relay Base Station (RBS), Serving Base Station (SBS), Base Transceiver Station (BTS), radio base station, radio transceiver, Basic Service Set (BSS), Extended Service Set (ESS), home Node B (HNB), home evolved Node B, Transmission Reception Point (TRP), or some other suitable term in the art. As long as the same technical effect is achieved, the base station is not limited to specific technical terms. It should be noted that in the embodiments of this application, only the base station in the NR system is taken as an example for introduction, and the specific type of the base station is not limited.

[0033] The core network equipment may include, but is not limited to, at least one of the following: core network nodes, core network functions, Mobility Management Entity (MME), Access and Mobility Management Function (AMF), Session Management Function (SMF), User Plane Function (UPF), Policy Control Function (PCF), Policy and Charging Rules Function (PCRF), Edge Application Server Discovery Function (EASDF), Unified Data Management (UDM), Unified Data Repository (UDR), Home Subscriber Server (HSS), Centralized network configuration (CNC), Network Repository Function (NRF), Network Exposure Function (NEF), Local NEF (L-NEF), Binding Support Function (BSF), Application Function (AF), etc. It should be noted that in the embodiments of this application, only the core network equipment in the NR system is taken as an example for introduction, and the specific type of the core network equipment is not limited.

[0034] The related technologies of the embodiments of this application are described as follows.

[0035] I. Bandwidth Part (BWP)

[0036] In New Radio (NR), the network configures Bandwidth Part (BWP) and / or carrier for the User Equipment (UE) to perform data transmission. The bandwidth of the UE can change dynamically. For example, at the first moment, the traffic volume of the UE is large, and the system configures a large bandwidth (BWP1) for the UE; at the second moment, the traffic volume of the UE is small, and the system configures a small bandwidth (BWP2) for the UE to meet the basic communication requirements; at the third moment, the system discovers that there is a large range of frequency-selective fading within the bandwidth where BWP1 is located, or the resources within the frequency range where BWP1 is located are relatively scarce, so a new bandwidth (BWP3) is configured for the UE.

[0037] Each BWP not only has different frequency points and bandwidths, but each BWP can correspond to different configurations. For example, the subcarrier spacing, Cyclic Prefix (CP) type, SSB (PSS / SSS PBCH Block) period, etc. of each BWP can be configured differently to adapt to different services.

[0038] The technical advantages of BWP mainly include four aspects:

[0039] 1. The UE does not need to support the full bandwidth, only needs to meet the minimum bandwidth requirement, which is beneficial to the development of low-cost terminals;

[0040] 2. When the traffic volume of the UE is not large, the UE can switch to operate at a low bandwidth, which can significantly reduce power consumption;

[0041] 3. 5G technology is forward-compatible. When new technologies are added to 5G, the new technologies can be directly run on the new BWP, ensuring the forward compatibility of the system;

[0042] 4. Adapt to service needs and dynamically configure BWP for services.

[0043] II. Control Resource Set (CORESET) and Search Space

[0044] CORESET describes the frequency-domain characteristics of the Physical Downlink Control Channel (PDCCH) blind detection resources, and the search space represents the time-domain characteristics of the PDCCH blind detection resources, such as period and offset, the number of monitored time slots per period, and the starting symbol within each time slot.

[0045] A series of Physical Resource Blocks (PRBs) within the frequency domain of CORESET, and the UE attempts to blindly detect Downlink Control Information (DCI) within these PRBs, where:

[0046] The PRB can be continuous or discontinuous;

[0047] A CORESET can occupy one or more consecutive symbols in the time domain: {1, 2, 3};

[0048] For example, when there is one symbol, the Resource element group (REG) bundle size can be {2, 6};

[0049] For example, when there are 2 or 3 symbols, the REG bundle size can be equal to the number of time domain symbols or 6.

[0050] A UE can be configured with one or more CORESETs. Each cell can have at most 3 CORESETs per BWP, where:

[0051] Each CORESET can be associated with two types of search spaces: CSS or USS;

[0052] Each BWP can have at most 3 core sets;

[0053] Each BWP can have at most 10 search spaces.

[0054] Multiple CORESETs configured for a UE can overlap in the frequency domain or the time domain;

[0055] Within each CORESET, the mapping from control channel element (CCE) to REG can be interleaved or non - interleaved, but there can only be one mapping method for one CORESET.

[0056] Next, in conjunction with the accompanying drawings, through some embodiments and their application scenarios, the resource acquisition methods, devices, and communication equipment provided by the embodiments of the present application will be described in detail.

[0057] As Figure 2 shown, the embodiments of the present application provide a resource acquisition method, including:

[0058] Step 201, the communication device acquires a first object;

[0059] Wherein, the first object includes: control resources or a part of control resources. The first object is related to at least one resource object (it can also be understood that the first information is related to at least one resource object), and the resource object is associated with or contains at least one frequency domain object.

[0060] It should be noted that a resource object being associated with or including at least one frequency-domain object can be understood as the resource object being associated with or including one or more frequency-domain objects. Here, it should also be noted that a resource object can be associated with or include multiple frequency-domain objects, but sometimes it may actually be associated with or include only one frequency-domain object. For example, in terms of capabilities or design, the resource object supports being associated with or including multiple frequency-domain objects, but the network-side device only configures one. In this case, the resource object is associated with or includes one frequency-domain object.

[0061] Optionally, the resource object includes a cell.

[0062] Optionally, the frequency-domain object includes one of the following: frequency part (FP), band, carrier, subband.

[0063] For example, an application scenario of this application is that a first object is related to at least one cell associated with or including multiple FPs, or the first object is associated with at least one cell associated with or including multiple FPs.

[0064] It should be noted that the communication device described in the embodiments of this application can be a terminal or a network-side device. That is to say, both the network-side device and the terminal need to determine the first object in order to ensure the transmission of the first object.

[0065] Optionally, in one implementation, the control resource includes one of the following:

[0066] A11. Control Resource Set (CORESET);

[0067] A12. Control channel;

[0068] For example, the control channel is a PDCCH.

[0069] A13. Candidate control channel;

[0070] For example, the candidate control channel is a candidate PDCCH (PDCCH candidate), and the candidate PDCCH can also be referred to as a PDCCH candidate.

[0071] A14. Control Channel Element (CCE);

[0072] A15. Resource Element Group (REG).

[0073] It should be noted that the control resource part described in the embodiments of this application can be understood as part of the resources in the control resource.

[0074] It should be noted that in the application embodiments, by determining control resources or control resource portions related to at least one resource object associated with or including at least one frequency-domain object, the determination of control resources under flexible resource objects is realized, and further the transmission of control resources is realized, thereby improving the performance of the communication system.

[0075] It should be noted here that the first object mentioned in the embodiments of the present application meets the following requirements:

[0076] One or more first objects are associated with one or more target information;

[0077] Wherein, the target information includes at least one of the following:

[0078] A21. Transmission Configuration Indication (TCI);

[0079] A22. Resource pool identifier;

[0080] A23. Transmission and Reception Point (TRP);

[0081] A24. Repetition configuration;

[0082] Optionally, the repetition configuration may include but is not limited to at least one of the following: indication of whether to perform repetition, number of repetitions, etc.

[0083] For example, one first object is associated with one target information, for example, one first object is associated with multiple target information, for example, multiple first objects are associated with one target information.

[0084] Further optionally, the target information associated with at least two first objects is at least partially different. Optionally, in one case, it can be understood that the target information associated with each of at least two control resources is at least partially different; for example, CORESET1 is associated with resource pool 1 and resource pool 2, and CORESET2 is associated with resource pool 2 and resource pool 3. Optionally, in another case, it can be understood that each of at least two control resources is independently associated with different target information, for example, the number of repetitions associated with REG1 is 4 times, and the number of repetitions associated with REG2 is 8 times.

[0085] It should be noted here that the frequency-domain object mentioned in the embodiments of the present application may be a configured frequency-domain object, may also be all frequency-domain objects, or may be an activated frequency-domain object.

[0086] Optionally, the embodiments of the present application separately describe the specific implementations of how to obtain the first object from two different implementation logics as follows.

[0087] Implementation Logic 1. The first object is related to at least one frequency-domain object, BWP, and uplink / downlink configuration

[0088] Optionally, under this implementation logic, the specific implementation of obtaining the first object includes:

[0089] The communication device obtains the first object according to the association relationship between the first object and the second object;

[0090] Wherein, the second object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0091] Optionally, the uplink and downlink configuration may include, for example, but is not limited to at least one of the following: frequency domain object identifier, BWP identifier, time-frequency configuration identifier, bitmap, pattern, etc.

[0092] Optionally, in one implementation manner, the association relationship between the first object and the second object includes at least one of the following:

[0093] B11. The information of the first object contains the information corresponding to at least one associated second object;

[0094] Optionally, the information corresponding to the second object may be the configuration information corresponding to the second object or the resources corresponding to the second object.

[0095] B12. The resources of the first object contain the resources corresponding to at least one associated second object;

[0096] B13. The resources of the first object at least partially overlap with the resources corresponding to at least one associated second object;

[0097] B14. The information of the first object is included in the information of the second object;

[0098] The information of the second object may be the configuration information corresponding to the second object or the resources corresponding to the second object.

[0099] B15. The resources of the first object are included in the resources corresponding to the second object;

[0100] B16. The resources of the first object at least partially overlap with the resources corresponding to the second object.

[0101] It should be noted that the resources mentioned in the embodiments of the present application may include time domain resources and / or frequency domain resources.

[0102] Optionally, in one implementation manner, the obtaining of the first object includes at least one of the following:

[0103] B21. When the second object is configured or activated or enabled, the communication device determines that the first object associated with the second object is located on at least part of the resources of the second object;

[0104] B22. When the second object is configured, activated, or enabled, the communication device determines that the first object associated with the second object is valid, available, or activated.

[0105] B23. When the second object is configured, activated, or enabled on the first target resource, the communication device determines that the first object associated with the first target resource is located on at least part of the resources of the second object.

[0106] B24. When the second object is configured, activated, or enabled on the first target resource, the communication device determines that the first object associated with the first target resource is valid, available, or activated.

[0107] It should be noted that the first target resource refers to a certain time-domain resource and / or frequency-domain resource. This situation can be understood as that the first object associated with the first target resource should be located on at least part of the resources of the second object configured on the first target resource, or the first object associated with the first target resource should be located on at least part of the resources of the second object activated on the first target resource, or the first object associated with the first target resource should be located on at least part of the resources of the second object enabled on the first target resource. For example, if FP1 is activated on time-domain resource 1, the CORESET associated with time-domain resource 1 should be located on at least part of the resources of FP1.

[0108] It should be noted that which part of the resources of the second object the first object is located on can be agreed upon by the protocol or configured by the network-side device. That is to say, if the communication device is a terminal, at least part of the resources of the second object are agreed upon by the protocol or configured by the network-side device; if the communication device is a network-side device, at least part of the resources of the second object are agreed upon by the protocol or determined and configured for the terminal by the network-side device itself.

[0109] Optionally, in one implementation, the first object is activated, that is to say, the first object determined through this situation must be activated.

[0110] For example, as Figure 3As shown, the CORESET is configured on an uplink or downlink frequency-domain configuration (UL / DL freq configuration) at a symbol level (for example, CORESET1 (abbreviated as C1) is configured on the DL part of BWP1 or configuration DL1, and BWP1 or DL1 may or may not include the time-domain symbol dimension). If BWP1 or configuration DL1 is enabled in symbol1 and symbol6, then C1 exists in the DL part of BWP1 or configuration DL1 in symbol1 and symbol6.

[0111] Furthermore, a CORESET can be associated with multiple BWPs or UL or DL freq configurations at the symbol level (for example, CORESET (abbreviated as C2) is configured on the DL parts of BWP1 and BWP2, and BWP1 or BWP2 may or may not include the time-domain symbol dimension). If BWP1 is enabled in symbol1 and symbol6, and the corresponding UL or DL freq configuration is configuration DL1, and BWP2 is only enabled in symbol7, and the corresponding UL or DL freq configuration is configuration M3, then a part of C2 exists in the DL part of symbol1, and C2 exists in the DL parts of BWP1 in symbol6 and BWP2 in symbol7.

[0112] Implementation Logic 2: The first object still appears according to a certain periodic pattern, for example, it is bound to the search space (SS), or is similar to the Long Term Evolution (LTE) PDCCH

[0113] Optionally, under this implementation logic, the specific implementation of obtaining the first object includes at least one of the following:

[0114] C11. When the resources of the first object and the third object meet the first condition, the communication device obtains the first object, and the third object includes at least one of the following: frequency-domain object, BWP, uplink / downlink configuration;

[0115] Optionally, in an implementation manner, the third object is configured or activated or enabled on the second target resource.

[0116] It should be noted that the resources of the first object and the third object satisfying the first condition can be understood as a conflict between the resources of the first object and the third object. Optionally, the first condition includes at least one of the following:

[0117] C111. The resources of the first object are located in the upstream part or the flexible part of the third object;

[0118] In this case, it can be understood that if the resources of the first object are located in the upstream part or the flexible part of the third object, then it is considered that there is a conflict between the resources of the first object and the third object.

[0119] C112. The resources of the first object and the upstream part or the flexible part of the third object at least partially overlap;

[0120] In this case, it can be understood that if the resources of the first object and the upstream part or the flexible part of the third object at least partially overlap, then it is considered that there is a conflict between the resources of the first object and the third object.

[0121] C113. The resources of the first object and at least a part of the third object do not overlap, and the distance from at least a part of the first object to at least a part of the third object is less than or equal to one or more time units;

[0122] Optionally, the distance from the resources of the first object to at least a part of the third object being less than or equal to one or more time units can be understood as the time domain distance from at least a part of the resources of the first object to at least a part of the third object being small.

[0123] In this case, it can be understood that if the resources of the first object and at least a part of the third object do not overlap, but the time domain distance from at least a part of the first object to at least a part of the third object is small, then it is considered that there is a conflict between the resources of the first object and the third object.

[0124] Optionally, in this case, the resources of the first object and at least a part of the third object do not overlap, and the distance from at least a part of the first object to at least a part of the third object is less than or equal to one or more time units, including at least one of the following:

[0125] C1131. The resources of the first object are located before the upstream part or the flexible part of the third object, and the distance from the resources of the first object to the upstream part or the flexible part of the third object is less than or equal to B1 time units, where B1 is an integer greater than or equal to 1;

[0126] C1132. The resources of the first object are located after the upstream part or the flexible part of the third object, and the distance from the resources of the first object to the upstream part or the flexible part of the third object is less than or equal to B2 time units, where B2 is an integer greater than or equal to 1;

[0127] It should be noted that C1131 and C1132 respectively define the positional relationship between the resources of the first object and the uplink part or flexible part of the third object, and the distance between the resources of the first object and the uplink part or flexible part of the third object is less than or equal to one or more time units.

[0128] C114. The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units;

[0129] Optionally, the distance between the resources of the first object and at least part of the third object being less than or equal to one or more frequency domain units can be understood as the frequency domain distance between the resources of the first object and at least part of the third object being small.

[0130] This situation can be understood as that if the resources of the first object and at least part of the third object do not overlap, but the frequency domain distance from at least part of the third object is small, then it is considered that the resources of the first object and the third object conflict.

[0131] Optionally, in this case, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units, including at least one of the following:

[0132] C1141. The resources of the first object are located before or above the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B3 frequency domain units, where B3 is an integer greater than or equal to 1;

[0133] It should be noted that the resources of the first object being located before the uplink part or flexible part of the third object means that the resources of the first object are located before the uplink part or flexible part of the third object in the time domain; the resources of the first object being located above the uplink part or flexible part of the third object means that the resources of the first object are located above the uplink part or flexible part of the third object in the frequency domain.

[0134] C1142. The resources of the first object are located after or below the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B4 frequency domain units, where B4 is an integer greater than or equal to 1;

[0135] It should be noted that the resource of the first object being located after the uplink part or flexible part of the third object means that the resource of the first object is located after the uplink part or flexible part of the third object in the time domain; the resource of the first object being located below the uplink part or flexible part of the third object means that the resource of the first object is located below the uplink part or flexible part of the third object in the frequency domain.

[0136] It should be noted that C1141 and C1142 respectively define the positional relationship between the resource of the first object and the uplink part or flexible part of the third object, and the distance between the resource of the first object and the uplink part or flexible part of the third object is less than or equal to one or more frequency domain units.

[0137] C115. The resource position of the third object cannot include the resource position corresponding to the first object, and the resource position includes time domain resources and / or frequency domain resources;

[0138] This situation can be understood as the resource position of the first object not being located within the resource position of the third object. In this case, it is considered that the resources of the first object and the third object conflict.

[0139] Optionally, in one implementation, the resource position of the third object not being able to include the resource position corresponding to the first object includes at least one of the following:

[0140] The time domain resource corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous time domain resources of the third object;

[0141] There is at least partial non - overlap between the time domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous time domain resources of the third object;

[0142] The frequency domain resource corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous frequency domain resources of the third object;

[0143] There is at least partial non - overlap between the frequency domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency domain resources of the third object.

[0144] C116. There is at least partial non - overlap between the resource position of the third object and the resource position corresponding to the first object;

[0145] This situation can be understood as follows: if there is at least partial non - overlap between the resource position of the third object and the resource position corresponding to the first object, it is considered that the resources of the first object and the third object conflict.

[0146] C117. At least part of the time domain resources of the third object are discontinuous;

[0147] This situation can be understood as that if at least part of the time-domain resources of the third object are discontinuous, it is considered that the resources of the first object conflict with those of the third object.

[0148] Optionally, in this case, at least part of the time-domain resources of the third object being discontinuous includes at least one of the following:

[0149] C1171: The time-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the third object;

[0150] C1172: There is at least partial non-overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the third object.

[0151] C118: At least part of the frequency-domain resources of the third object are discontinuous;

[0152] This situation can be understood as that if at least part of the frequency-domain resources of the third object are discontinuous, it is considered that the resources of the first object conflict with those of the third object.

[0153] Optionally, in this case, at least part of the frequency-domain resources of the third object being discontinuous includes at least one of the following:

[0154] C1181: The frequency-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the third object;

[0155] C1182: There is at least partial non-overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the third object.

[0156] Optionally, when the resources of the first object and the third object meet the first condition, the specific implementation for the communication device to obtain the first object includes at least one of the following:

[0157] C1101: The communication device determines that at least part of the resources corresponding to the third object are ineffective;

[0158] It should be noted that if at least part of the resources corresponding to the third object are ineffective, it means that the first object located on the third object is also ineffective.

[0159] The resources corresponding to the third object can be understood as the resources that configure or activate or enable the third object. For example, this resource is the above-mentioned second target resource. If at least part of the resources in the second target resource are effective, it means that the first object located on the second target resource is also effective.

[0160] C1102. The communication device determines that the first object is ineffective;

[0161] It should be noted that in this case, it is directly considered that the first object is ineffective.

[0162] C1103. The communication device determines that the first object is not used for downlink control information transmission;

[0163] It should be noted that if the communication device is a terminal, the terminal obtains that the first object is not used for receiving downlink control information; if the communication device is a network - side device, the network - side device obtains that the first object is not used for sending downlink control information.

[0164] C1104. The communication device determines that the resources corresponding to the third object cannot be used for downlink control information transmission;

[0165] It should be noted that if the resources corresponding to the third object cannot be used for downlink control information transmission, it means that the first object located on the third object cannot be used for downlink control information transmission either.

[0166] C1105. The communication device determines that the scheduling relationship of the resources corresponding to the third object is invalid;

[0167] It should be noted that if the scheduling relationship of the resources corresponding to the third object is invalid, it means that the scheduling relationship corresponding to the first object located on the third object is also invalid.

[0168] This scheduling relationship can be understood as whether it can be scheduled by other objects or whether it can schedule other objects.

[0169] C1106. The communication device determines that the scheduling relationship of the resources corresponding to the third object is deactivated;

[0170] It should be noted that if the scheduling relationship of the resources corresponding to the third object is deactivated, it means that the scheduling relationship corresponding to the first object located on the third object is also deactivated.

[0171] C1107. The communication device determines that the scheduling relationship corresponding to the first object is invalid;

[0172] C1108. The communication device determines that the scheduling relationship corresponding to the first object is deactivated.

[0173] It should be noted that for network - side devices, conflicts between the resources of the first object configured and the third object should be avoided; for terminals, terminals do not expect conflicts between the resources of the first object and the third object.

[0174] C12. When the resources of the first object and the fourth object meet the second condition, the communication device acquires the first object. The fourth object includes at least one of the following: a frequency domain object, a BWP, and an uplink-downlink configuration.

[0175] Optionally, in one implementation, the fourth object is configured or activated or enabled on the third target resource.

[0176] It should be noted that the fact that the resources of the first object and the fourth object meet the second condition can be understood as the resources of the first object and the fourth object being compatible. Optionally, the second condition includes at least one of the following:

[0177] C121. The resources of the first object are located in the downlink part or the flexible part of the fourth object.

[0178] This situation can be understood as follows: If the resources of the first object are located in the downlink part or the flexible part of the fourth object, then it is considered that the resources of the first object and the fourth object are compatible.

[0179] C122. The resources of the first object and the downlink part or the flexible part of the fourth object at least partially overlap.

[0180] This situation can be understood as follows: If the resources of the first object and the downlink part or the flexible part of the fourth object at least partially overlap, then it is considered that the resources of the first object and the fourth object are compatible.

[0181] C123. The resources of the first object and the uplink part or the flexible part of the fourth object at least partially do not overlap.

[0182] This situation can be understood as follows: If the resources of the first object and the uplink part or the flexible part of the fourth object at least partially do not overlap, then it is considered that the resources of the first object and the fourth object are compatible.

[0183] C124. The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the first object to at least part of the fourth object is greater than or equal to one or more time units.

[0184] Optionally, the fact that the distance from the resources of the first object to at least part of the fourth object is greater than or equal to one or more time units can be understood as the time domain distance from the resources of the first object to at least part of the fourth object being relatively large.

[0185] This situation can be understood as follows: If the resources of the first object and at least part of the fourth object do not overlap, and the time domain distance from the resources of the first object to at least part of the fourth object is relatively large, then it is considered that the resources of the first object and the fourth object are compatible.

[0186] Optionally, in one implementation, the resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units, including at least one of the following:

[0187] C1241. The resources of the first object are located before the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B5 time units, where B5 is an integer greater than or equal to 1;

[0188] C1242. The resources of the first object are located after the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B6 time units, where B6 is an integer greater than or equal to 1;

[0189] It should be noted that C1231 and C1232 respectively define the positional relationship between the resources of the first object and the uplink part or the flexible part of the fourth object, and the distance from the resources of the first object to the uplink part or the flexible part of the fourth object is greater than or equal to one or more time units.

[0190] C125. The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units;

[0191] Optionally, the distance from the resources of the first object to at least part of the fourth object being greater than or equal to one or more frequency domain units can be understood as the frequency domain distance between the resources of the first object and at least part of the fourth object being relatively large.

[0192] This situation can be understood as follows: If the resources of the first object and at least part of the fourth object do not overlap, and the frequency domain distance between the resources of the first object and at least part of the fourth object is relatively large, then the resources of the first object and the fourth object are considered to be compatible.

[0193] Optionally, in one implementation, the resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units, including at least one of the following:

[0194] C1251. The resources of the first object are located before or above the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B7 frequency domain units, where B7 is an integer greater than or equal to 1;

[0195] It should be noted that the resource of the first object being located before the uplink part or flexible part of the fourth object means that the resource of the first object is located before the uplink part or flexible part of the fourth object in the time domain; the resource of the first object being located above the uplink part or flexible part of the fourth object means that the resource of the first object is located above the uplink part or flexible part of the fourth object in the frequency domain.

[0196] C1252. The resource of the first object is located after or below the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B8 frequency domain units, where B8 is an integer greater than or equal to 1.

[0197] It should be noted that the resource of the first object being located after the uplink part or flexible part of the fourth object means that the resource of the first object is located after the uplink part or flexible part of the fourth object in the time domain; the resource of the first object being located below the uplink part or flexible part of the fourth object means that the resource of the first object is located below the uplink part or flexible part of the fourth object in the frequency domain.

[0198] It should be noted that C1241 and C1242 respectively define the positional relationship between the resource of the first object and the uplink part or flexible part of the fourth object, and the distance between the resource of the first object and the uplink part or flexible part of the fourth object is greater than or equal to one or more frequency domain units.

[0199] C126. The resource position of the fourth object includes the resource position corresponding to the first object, and the resource position includes time domain resources and / or frequency domain resources.

[0200] This situation can be understood as the resource position of the first object being located within the resource position of the fourth object, and it is considered that the resources of the first object and the fourth object are compatible.

[0201] Optionally, the resource position of the fourth object including the resource position corresponding to the first object includes at least one of the following:

[0202] The time domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time domain resources of the fourth object.

[0203] There is at least partial overlap between the time domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous time domain resources of the fourth object.

[0204] The frequency domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency domain resources of the fourth object.

[0205] At least part of the frequency-domain resources corresponding to the first object overlaps at least partially with the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

[0206] C127. There is at least partial overlap between the resource position of the fourth object and the resource position corresponding to the first object;

[0207] In this case, it can be understood that if there is at least partial overlap between the resource position of the fourth object and the resource position corresponding to the first object, then the resources of the first object and the fourth object are considered to be compatible.

[0208] C128. At least part of the time-domain resources of the fourth object are continuous;

[0209] In this case, it can be understood that if the time-domain resources of the fourth object are continuous, then the resources of the first object and the fourth object are considered to be compatible.

[0210] Optionally, in one implementation, that at least part of the time-domain resources of the fourth object are continuous includes at least one of the following:

[0211] C1281. The time-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0212] C1282. There is at least partial overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object.

[0213] C129. At least part of the frequency-domain resources of the fourth object are continuous;

[0214] In this case, it can be understood that if the frequency-domain resources of the fourth object are continuous, then the resources of the first object and the fourth object are considered to be compatible.

[0215] Optionally, in one implementation, that at least part of the frequency-domain resources of the fourth object are continuous includes at least one of the following:

[0216] C1291. The frequency-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0217] C1292. There is at least partial overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

[0218] Optionally, when the resources of the first object and the fourth object meet the second condition, the specific implementation for the communication device to obtain the first object includes at least one of the following:

[0219] C1201. The communication device determines that at least some of the resources corresponding to the fourth object become effective;

[0220] It should be noted that the resources corresponding to the fourth object can be understood as the resources that configure or activate or enable the fourth object. For example, the resource is the above-mentioned third target resource. If at least some of the resources in the third target resource become effective, it means that the first object located on the third target resource also becomes effective.

[0221] C1202. The communication device determines that at least some of the resources corresponding to the fourth object are used for downlink control information transmission;

[0222] It should be noted that if at least some of the resources in the third target resource are used for downlink control information transmission, it means that the first object located on the third target resource can also be used for downlink control information transmission.

[0223] C1203. The communication device determines that the first object becomes effective;

[0224] It should be noted that in this case, it is directly considered that the first object becomes effective.

[0225] C1204. The communication device determines that the first object is used for downlink control information transmission;

[0226] It should be noted that if the communication device is a terminal, the terminal obtains the first object for downlink control information reception; if the communication device is a network-side device, the network-side device obtains the first object for downlink control information transmission.

[0227] C1205. The communication device determines that the scheduling relationship corresponding to the resources corresponding to the fourth object is effective;

[0228] It should be noted that the resources corresponding to the fourth object can be understood as the resources that configure or activate or enable the fourth object. For example, the resource is the above-mentioned third target resource. If the scheduling relationship corresponding to the third target resource is effective, it means that the scheduling relationship of the first object located on the third target resource is also effective.

[0229] This scheduling relationship can be understood as whether it can be scheduled by other objects or whether it can schedule other objects.

[0230] C1206. The communication device determines that the scheduling relationship corresponding to the resources corresponding to the fourth object is activated;

[0231] It should be noted that the resources corresponding to the fourth object can be understood as the resources that configure or activate or enable the fourth object. For example, the resource is the above-mentioned third target resource. If the scheduling relationship corresponding to the third target resource is activated, it means that the scheduling relationship of the first object located on the third target resource is also activated.

[0232] C1207. The communication device determines that the scheduling relationship corresponding to the first object is valid;

[0233] C1208. The communication device determines that the scheduling relationship corresponding to the first object is activated.

[0234] For example, CORESET requires 2 consecutive time-domain units. If CORESET is associated with Configuration 1 and Configuration 2, then it can be considered compatible with CORESET only when the following conditions are met: Configuration 1 contains at least two consecutive time-domain units, Configuration 2 contains at least two consecutive time-domain units, if Configuration 1 contains one time-domain unit, then Configuration 1 repeats two time-domain units, if Configuration 2 contains one time-domain unit, then Configuration 2 repeats two time-domain units, and both Configuration 1 and Configuration 2 contain only one time-domain unit and the time-domain is continuous; other cases are considered in conflict with CORESET.

[0235] Optionally, in the implementation logic two, the specific implementation of obtaining the first object further includes:

[0236] Obtain the first object according to at least one of the following:

[0237] C21. The information of the first object contains the information corresponding to at least one associated fifth object;

[0238] Wherein, the fifth object includes at least one of the following: frequency-domain object, BWP, uplink-downlink configuration.

[0239] C22. The resources of the first object contain the resources corresponding to at least one associated fifth object;

[0240] C23. The resources of the first object at least partially overlap with the resources corresponding to at least one associated fifth object;

[0241] C24. The information of the first object is included in the information of the fifth object;

[0242] C25. The resources of the first object are included in the resources corresponding to the fifth object;

[0243] C26. The resources of the first object at least partially overlap with the resources corresponding to the fifth object;

[0244] Optionally, in one implementation, the third object is associated with the first object.

[0245] Optionally, in one implementation, the fourth object is associated with the first object.

[0246] As Figure 4 shown, the resources of the CORESET appear at fixed periods and positions (for example, CORESET1 (abbreviated as C1) is located on the first two symbols of the first slot every 20 ms). If in a certain period, the DL BWP or DL configuration is enabled on the first symbol, the UL BWP and DL BWP or M1 configuration are enabled on the second symbol, and on the second symbol, part of the resources of C1 overlap with the gurad band and the UL part, then at least the overlapping part of the corresponding CORESET is invalid.

[0247] Optionally, under the above implementation logic 1 and implementation logic 2, the specific implementation of obtaining the first object includes at least one of the following:

[0248] D11. Determine the activated first object;

[0249] D12. Determine the deactivated first object;

[0250] D13. Determine the resources occupied by the first object.

[0251] That is to say, through the above association relationship, conflict situation, and compatibility situation, the activated first object can be determined, the deactivated first object can also be determined, and the resources occupied by the first object can also be obtained.

[0252] Optionally, in the embodiments of the present application, the first object is obtained based on the activated or enabled third object and / or fourth object associated with the first object.

[0253] That is to say, the first object needs to be determined with reference to the third object and / or fourth object that is associated with it and is in an activated or enabled state. For the third object and / or fourth object that is not activated or not enabled, even if it is associated with the first object, it is not used as a reference target for obtaining the first object.

[0254] Optionally, in one implementation, the information of the first object includes at least one of the following:

[0255] E11. The time domain unit occupied by the first object;

[0256] Optionally, the time domain unit can be the position and / or number of the time domain unit.

[0257] Optionally, the time domain unit satisfies at least one of the following:

[0258] E111. The time domain unit corresponds to at least two sixth objects;

[0259] Among them, the sixth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration;

[0260] Optionally, the sixth object is associated with the first object.

[0261] That is to say, in this case, it can be understood that the time domain unit is the same for at least two sixth objects associated with the first object, that is, the time domain unit is the same for some of the sixth objects associated with the first object.

[0262] E112. The time domain unit is the same for all sixth objects;

[0263] Optionally, the sixth object is associated with the first object.

[0264] That is to say, in this case, it can be understood that the time domain unit is the same for all sixth objects associated with the first object, that is, the time domain unit is the same for all the sixth objects associated with the first object.

[0265] It should be noted that in this case, the terminal or the network side device obtains the validity or activation state of the first object according to the (all associated) sixth objects.

[0266] For example, as Figure 5 shown, it is configured that CORESET (abbreviation C2) contains two symbols. According to the determination, C2 actually appears in symbol 1 occupying one symbol, and appears in symbols 6 and 7, occupying two symbols.

[0267] E113. Each sixth object has its corresponding time domain unit;

[0268] In this case, it can be understood that for different sixth objects, the time domain units corresponding to the same first object are configured separately, that is, each sixth object corresponds to its own time domain unit.

[0269] Optionally, the sixth object is associated with the first object.

[0270] That is to say, in this case, it can be understood that for different sixth objects associated with the first object, the time domain units corresponding to the same first object are configured separately, that is, for different sixth objects, the time domain units can be configured the same or differently.

[0271] It should be noted that in this case, the terminal or the network side device determines the validity or activation state of the first object corresponding to each (associated) sixth object according to each (associated) sixth object.

[0272] E12. The frequency domain units occupied by the first object;

[0273] Optionally, the time domain unit may be the position and / or number of frequency domain units.

[0274] Optionally, the frequency domain units satisfy at least one of the following:

[0275] E121. The frequency domain units correspond to at least two seventh objects;

[0276] Wherein, the seventh object includes at least one of the following: frequency domain object, BWP, uplink / downlink configuration.

[0277] Optionally, the seventh object is associated with the first object.

[0278] That is to say, in this case, it can be understood that the frequency domain units are the same for at least two seventh objects associated with the first object, that is, the frequency domain units are the same for some of the seventh objects associated with the first object.

[0279] E122. The frequency domain units are the same for all seventh objects;

[0280] Optionally, the seventh object is associated with the first object.

[0281] That is to say, in this case, it can be understood that the frequency domain units are the same for all seventh objects associated with the first object, that is, the frequency domain units are the same for all of the seventh objects associated with the first object.

[0282] It should be noted that in this case, the terminal or the network side device obtains the validity or activation status of the first object according to the (all associated) seventh objects.

[0283] E123. Each seventh object has its own corresponding frequency domain unit;

[0284] This case can be understood as follows: for different seventh objects, the frequency domain units corresponding to the same first object are configured separately, that is, each seventh object corresponds to its own frequency domain unit;

[0285] Optionally, the seventh object is associated with the first object.

[0286] That is to say, this case can be understood as follows: for different seventh objects associated with the first object, the frequency domain units corresponding to the same first object are configured separately, that is, for different seventh objects, the frequency domain units can be configured the same or differently.

[0287] It should be noted that in this case, the terminal or the network side device determines the validity or activation status of the first object corresponding to each (associated) seventh object according to each (associated) seventh object.

[0288] For example, as Figure 6 shown, CORESET1 (abbreviated as C1) is configured to include 24 RBs. According to the determined DL configuration and M3 configuration associated with C1, the actual bandwidths of C1 are determined to be 24 RBs and 12 RBs respectively.

[0289] It should be noted that the embodiments of the present application implement the determination of control resources or parts of control resources under flexible resource objects, and further implement the transmission of control resources or parts of control resources, so as to solve the configuration of control resources for multi-frequency domain objects in NR, which is beneficial to reducing common signaling overhead, achieving load balancing of each UL / DL carrier, improving the PDCCH collision probability, improving the PDCCH coverage ability and transmission reliability, and improving network flexibility and energy efficiency.

[0290] As Figure 7 shown, the resource determination device 700 of the embodiments of the present application is applied to a communication device and includes:

[0291] An acquisition module 701, configured to acquire a first object;

[0292] Wherein, the first object includes: control resources or parts of control resources, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0293] Optionally, the communication device may be a terminal or a network-side device.

[0294] Optionally, the acquisition module 701 is configured to:

[0295] Acquire a first object according to the association relationship between the first object and a second object;

[0296] Wherein, the second object includes at least one of the following: frequency domain object, bandwidth part BWP, uplink / downlink configuration.

[0297] Optionally, the association relationship between the first object and the second object includes at least one of the following:

[0298] The information of the first object includes information corresponding to at least one associated second object;

[0299] The resources of the first object include resources corresponding to at least one associated second object;

[0300] The resources of the first object at least partially overlap with the resources corresponding to at least one associated second object;

[0301] The information of the first object is included in the information of the second object;

[0302] The resources of the first object are included in the resources corresponding to the second object;

[0303] The resources of the first object and the resources corresponding to the second object at least partially overlap.

[0304] Optionally, the obtaining module 701 is configured to implement at least one of the following:

[0305] When the second object is configured or activated or enabled, determine that the first object associated with the second object is located on at least part of the resources of the second object;

[0306] When the second object is configured or activated or enabled, determine that the first object associated with the second object is valid, available, or activated;

[0307] When the second object is configured or activated or enabled on the first target resource, determine that the first object associated with the first target resource is located on at least part of the resources of the second object;

[0308] When the second object is configured or activated or enabled on the first target resource, determine that the first object associated with the first target resource is valid, available, or activated.

[0309] Optionally, the first object is activated.

[0310] Optionally, the obtaining module 701 is configured to implement at least one of the following:

[0311] When the resources of the first object and the third object meet the first condition, obtain the first object, where the third object includes at least one of the following: frequency-domain object, BWP, uplink-downlink configuration;

[0312] When the resources of the first object and the fourth object meet the second condition, obtain the first object, where the fourth object includes at least one of the following: frequency-domain object, BWP, uplink-downlink configuration;

[0313] Wherein, the first condition includes at least one of the following:

[0314] The resources of the first object are located in the uplink part or the flexible part of the third object;

[0315] The resources of the first object and the uplink part or the flexible part of the third object at least partially overlap;

[0316] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units;

[0317] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units;

[0318] The resource position of the third object cannot include the resource position corresponding to the first object, and the resource position includes time domain resources and / or frequency domain resources;

[0319] There is at least partial non - overlap between the resource position of the third object and the resource position corresponding to the first object;

[0320] At least part of the time domain resources of the third object is discontinuous;

[0321] At least part of the frequency domain resources of the third object is discontinuous;

[0322] Wherein, the second condition includes at least one of the following:

[0323] The resources of the first object are located in the downlink part or flexible part of the fourth object;

[0324] The resources of the first object and the downlink part or flexible part of the fourth object overlap at least partially;

[0325] The resources of the first object and the uplink part or flexible part of the fourth object do not overlap at least partially;

[0326] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units;

[0327] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units;

[0328] The resource position of the fourth object includes the resource position corresponding to the first object, and the resource position includes time domain resources and / or frequency domain resources;

[0329] There is at least partial overlap between the resource position of the fourth object and the resource position corresponding to the first object;

[0330] At least part of the time domain resources of the fourth object is continuous;

[0331] At least part of the frequency domain resources of the fourth object is continuous.

[0332] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units, including at least one of the following:

[0333] The resources of the first object are located before the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B1 time units, where B1 is an integer greater than or equal to 1;

[0334] The resources of the first object are located after the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B2 time units, where B2 is an integer greater than or equal to 1.

[0335] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units, including at least one of the following:

[0336] The resources of the first object are located before or above the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B3 frequency domain units, where B3 is an integer greater than or equal to 1;

[0337] The resources of the first object are located after or below the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B4 frequency domain units, where B4 is an integer greater than or equal to 1.

[0338] Optionally, the resource position of the third object cannot include the resource position corresponding to the first object, including at least one of the following:

[0339] The time domain resources corresponding to the first object cannot be included in the downlink part or the flexible part of at least part of the continuous time domain resources of the third object;

[0340] There is at least partial non - overlap between the time domain resources corresponding to the first object and the downlink part or the flexible part of at least part of the continuous time domain resources of the third object;

[0341] The frequency domain resources corresponding to the first object cannot be included in the downlink part or the flexible part of at least part of the continuous frequency domain resources of the third object;

[0342] There is at least partial non - overlap between the frequency domain resources corresponding to the first object and the downlink part or the flexible part of at least part of the continuous frequency domain resources of the third object;

[0343] And / or

[0344] At least part of the time domain resources of the third object are discontinuous, including at least one of the following:

[0345] The time-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the third object;

[0346] At least part of the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the third object have at least partial non-overlap;

[0347] and / or

[0348] At least part of the frequency-domain resources of the third object are discontinuous, including at least one of the following:

[0349] The frequency-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the third object;

[0350] At least part of the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the third object have at least partial non-overlap.

[0351] Optionally, at least part of the resources of the first object and the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units, including at least one of the following:

[0352] The resources of the first object are located before the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B5 time units, where B5 is an integer greater than or equal to 1;

[0353] The resources of the first object are located after the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B6 time units, where B6 is an integer greater than or equal to 1.

[0354] Optionally, at least part of the resources of the first object and the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency units, including at least one of the following:

[0355] The resources of the first object are located before or above the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B7 frequency units, where B7 is an integer greater than or equal to 1;

[0356] The resources of the first object are located after or below the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B8 frequency units, where B8 is an integer greater than or equal to 1.

[0357] Optionally, the resource location of the fourth object includes the resource location corresponding to the first object, including at least one of the following:

[0358] The time-domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0359] There is at least partial overlap between the time-domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0360] The frequency-domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0361] There is at least partial overlap between the frequency-domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0362] And / or

[0363] At least part of the time-domain resources of the fourth object is continuous, including at least one of the following:

[0364] The time-domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0365] There is at least partial overlap between the time-domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0366] And / or

[0367] At least part of the frequency-domain resources of the fourth object is continuous, including at least one of the following:

[0368] The frequency-domain resource corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0369] There is at least partial overlap between the frequency-domain resource corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

[0370] Optionally, the third object is configured or activated or enabled on the second target resource;

[0371] And / or

[0372] The fourth object is configured or activated or enabled on the third target resource.

[0373] Optionally, the obtaining module 701 is used to implement at least one of the following:

[0374] Determine that at least some of the resources corresponding to the third object are ineffective;

[0375] Determine that the first object is ineffective;

[0376] Determine that the first object is not used for downlink control information transmission;

[0377] Determine that the resources corresponding to the third object cannot be used for downlink control information transmission;

[0378] Determine that the scheduling relationship of the resources corresponding to the third object is invalid;

[0379] Determine that the scheduling relationship of the resources corresponding to the third object is deactivated;

[0380] Determine that the scheduling relationship corresponding to the first object is invalid;

[0381] Determine that the scheduling relationship corresponding to the first object is deactivated.

[0382] Optionally, the obtaining module 701 is configured to implement at least one of the following:

[0383] Determine that at least some of the resources corresponding to the fourth object are effective;

[0384] Determine that at least some of the resources corresponding to the fourth object are used for downlink control information transmission;

[0385] Determine that the first object is effective;

[0386] Determine that the first object is used for downlink control information transmission;

[0387] Determine that the scheduling relationship corresponding to the resources of the fourth object is effective;

[0388] Determine that the scheduling relationship corresponding to the resources of the fourth object is activated;

[0389] Determine that the scheduling relationship corresponding to the first object is effective;

[0390] Determine that the scheduling relationship corresponding to the first object is activated.

[0391] Optionally, the obtaining module 701 is further configured to:

[0392] Obtain a first object according to at least one of the following:

[0393] The information of the first object includes the information corresponding to at least one associated fifth object;

[0394] The resources of the first object include the resources corresponding to at least one associated fifth object;

[0395] The resources of the first object at least partially overlap with the resources corresponding to at least one associated fifth object;

[0396] The information of the first object is included in the information of the fifth object;

[0397] The resources of the first object are included in the resources corresponding to the fifth object;

[0398] The resources of the first object at least partially overlap with the resources corresponding to the fifth object;

[0399] Wherein, the fifth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0400] Optionally, the third object is associated with the first object; and / or

[0401] The fourth object is associated with the first object.

[0402] Optionally, the third object is activated or enabled; and / or

[0403] The fourth object is activated or enabled.

[0404] Optionally, the obtaining module 701 is configured to implement at least one of the following:

[0405] Determine the activated first object;

[0406] Determine the deactivated first object;

[0407] Determine the resources occupied by the first object.

[0408] Optionally, the information of the first object includes at least one of the following:

[0409] The time domain units occupied by the first object;

[0410] The frequency domain units occupied by the first object.

[0411] Optionally, the time domain unit satisfies at least one of the following:

[0412] The time domain unit corresponds to at least two sixth objects;

[0413] The time domain unit is the same for all sixth objects;

[0414] Each sixth object has its own corresponding time domain unit;

[0415] Wherein, the sixth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0416] Optionally, the frequency domain unit satisfies at least one of the following:

[0417] The frequency domain unit corresponds to at least two seventh objects;

[0418] The frequency domain unit is the same for all seventh objects;

[0419] Each of the seventh objects has a corresponding frequency domain unit;

[0420] Wherein, the seventh object includes at least one of the following: a frequency domain object, a BWP, and an uplink / downlink configuration.

[0421] Optionally, the frequency domain object includes one of the following: a frequency portion, a frequency band, a carrier, a sub-band; and / or

[0422] The control resource includes one of the following: a control resource set, a control channel, a candidate control channel, a control channel element, a resource element group; and / or

[0423] The resource object includes a cell.

[0424] Optionally, one or more first objects are associated with one or more target information, and the target information includes at least one of the following: a transmission configuration indication (TCI), a resource pool identifier, a transmit-receive point (TRP), and a repetition configuration.

[0425] Optionally, the target information associated with at least two first objects is at least partially different.

[0426] It should be noted that the apparatus embodiment corresponds to the above method, and all implementation manners in the above method embodiment are applicable to the apparatus embodiment and can achieve the same technical effects, which will not be elaborated herein.

[0427] The measurement switching apparatus in the embodiments of the present application may be an electronic device, such as an electronic device with an operating system, or a component in an electronic device, such as an integrated circuit or a chip. The electronic device may be a terminal or other devices other than a terminal. Exemplarily, the terminal may include, but is not limited to, the types of the terminal 11 listed above, and other devices may be a server, a network attached storage (NAS), etc., which are not specifically limited in the embodiments of the present application.

[0428] The embodiments of the present application further provide a communication device, which is a terminal or a network-side device, and includes a processor and a communication interface. Wherein, the processor is used to obtain a first object;

[0429] Wherein, the first object includes: a control resource or a control resource portion, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0430] Optionally, the processor is configured to:

[0431] Obtain a first object according to the association relationship between the first object and a second object;

[0432] Wherein, the second object includes at least one of the following: a frequency domain object, a bandwidth part BWP, and an uplink / downlink configuration.

[0433] Optionally, the association relationship between the first object and the second object includes at least one of the following:

[0434] The information of the first object contains the information corresponding to at least one associated second object;

[0435] The resources of the first object contain the resources corresponding to at least one associated second object;

[0436] The resources of the first object at least partially overlap with the resources corresponding to at least one associated second object;

[0437] The information of the first object is included in the information of the second object;

[0438] The resources of the first object are included in the resources corresponding to the second object;

[0439] The resources of the first object at least partially overlap with the resources corresponding to the second object.

[0440] Optionally, the processor is configured to implement at least one of the following:

[0441] When the second object is configured, activated, or enabled, determine that the first object associated with the second object is located on at least part of the resources of the second object;

[0442] When the second object is configured, activated, or enabled, determine that the first object associated with the second object is valid, available, or activated;

[0443] When the second object is configured, activated, or enabled on a first target resource, determine that the first object associated with the first target resource is located on at least part of the resources of the second object;

[0444] When the second object is configured, activated, or enabled on a first target resource, determine that the first object associated with the first target resource is valid, available, or activated.

[0445] Optionally, the first object is activated.

[0446] Optionally, the processor is configured to implement at least one of the following:

[0447] When the resources of the first object and the third object meet the first condition, the communication device acquires the first object, where the third object includes at least one of the following: a frequency-domain object, a BWP, and an uplink / downlink configuration;

[0448] When the resources of the first object and the fourth object meet the second condition, the communication device acquires the first object, where the fourth object includes at least one of the following: a frequency-domain object, a BWP, and an uplink / downlink configuration;

[0449] Among them, the first condition includes at least one of the following:

[0450] The resources of the first object are located in the uplink part or the flexible part of the third object;

[0451] The resources of the first object and the uplink part or the flexible part of the third object at least partially overlap;

[0452] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units;

[0453] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency-domain units;

[0454] The resource location of the third object cannot contain the resource location corresponding to the first object, where the resource location includes time-domain resources and / or frequency-domain resources;

[0455] There is at least partial non-overlap between the resource location of the third object and the resource location corresponding to the first object;

[0456] At least part of the time-domain resources of the third object is discontinuous;

[0457] At least part of the frequency-domain resources of the third object is discontinuous;

[0458] Among them, the second condition includes at least one of the following:

[0459] The resources of the first object are located in the downlink part or the flexible part of the fourth object;

[0460] The resources of the first object and the downlink part or the flexible part of the fourth object at least partially overlap;

[0461] The resources of the first object and the uplink part or the flexible part of the fourth object at least partially do not overlap;

[0462] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units;

[0463] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units;

[0464] The resource location of the fourth object includes the resource location corresponding to the first object, and the resource location includes time domain resources and / or frequency domain resources;

[0465] There is at least partial overlap between the resource location of the fourth object and the resource location corresponding to the first object;

[0466] At least part of the time domain resources of the fourth object is continuous;

[0467] At least part of the frequency domain resources of the fourth object is continuous.

[0468] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units, including at least one of the following:

[0469] The resources of the first object are located before the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B1 time units, where B1 is an integer greater than or equal to 1;

[0470] The resources of the first object are located after the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B2 time units, where B2 is an integer greater than or equal to 1.

[0471] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units, including at least one of the following:

[0472] The resources of the first object are located before or above the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B3 frequency domain units, where B3 is an integer greater than or equal to 1;

[0473] The resources of the first object are located after or below the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B4 frequency domain units, where B4 is an integer greater than or equal to 1.

[0474] Optionally, the resource location of the third object cannot include the resource location corresponding to the first object, including at least one of the following:

[0475] The downlink part or flexible part of at least part of the continuous time-domain resources corresponding to the third object cannot include the time-domain resources corresponding to the first object;

[0476] There is at least partial non-overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources corresponding to the third object;

[0477] The downlink part or flexible part of at least part of the continuous frequency-domain resources corresponding to the third object cannot include the frequency-domain resources corresponding to the first object;

[0478] There is at least partial non-overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources corresponding to the third object;

[0479] and / or

[0480] At least part of the time-domain resources of the third object is discontinuous, including at least one of the following:

[0481] The downlink part or flexible part of at least part of the continuous time-domain resources corresponding to the third object cannot include the time-domain resources corresponding to the first object;

[0482] There is at least partial non-overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources corresponding to the third object;

[0483] and / or

[0484] At least part of the frequency-domain resources of the third object is discontinuous, including at least one of the following:

[0485] The downlink part or flexible part of at least part of the continuous frequency-domain resources corresponding to the third object cannot include the frequency-domain resources corresponding to the first object;

[0486] There is at least partial non-overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources corresponding to the third object.

[0487] Optionally, at least part of the resources of the first object do not overlap with at least part of the fourth object, and the distance from at least part of the fourth object is greater than or equal to one or more time units, including at least one of the following:

[0488] The resources of the first object are located before the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B5 time units, where B5 is an integer greater than or equal to 1;

[0489] The resources of the first object are located after the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B6 time units, where B6 is an integer greater than or equal to 1.

[0490] Optionally, the resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units, including at least one of the following:

[0491] The resources of the first object are located before or above the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B7 frequency domain units, where B7 is an integer greater than or equal to 1;

[0492] The resources of the first object are located after or below the uplink part or the flexible part of the fourth object, and the distance from the uplink part or the flexible part of the fourth object is greater than or equal to B8 frequency domain units, where B8 is an integer greater than or equal to 1.

[0493] Optionally, the resource position of the fourth object includes the resource position corresponding to the first object, including at least one of the following:

[0494] The time domain resources corresponding to the first object can be included in the downlink part or the flexible part of at least part of the continuous time domain resources of the fourth object;

[0495] There is at least partial overlap between the time domain resources corresponding to the first object and the downlink part or the flexible part of at least part of the continuous time domain resources of the fourth object;

[0496] The frequency domain resources corresponding to the first object can be included in the downlink part or the flexible part of at least part of the continuous frequency domain resources of the fourth object;

[0497] There is at least partial overlap between the frequency domain resources corresponding to the first object and the downlink part or the flexible part of at least part of the continuous frequency domain resources of the fourth object;

[0498] and / or

[0499] At least part of the time domain resources of the fourth object are continuous, including at least one of the following:

[0500] The time domain resources corresponding to the first object can be included in the downlink part or the flexible part of at least part of the continuous time domain resources of the fourth object;

[0501] There is at least partial overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0502] and / or

[0503] At least part of the frequency-domain resources of the fourth object are continuous, including at least one of the following:

[0504] The frequency-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0505] There is at least partial overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

[0506] Optionally, the third object is configured or activated or enabled on the second target resource;

[0507] and / or

[0508] The fourth object is configured or activated or enabled on the third target resource.

[0509] Optionally, the processor is used to implement at least one of the following:

[0510] Determine that at least part of the resources corresponding to the third object are ineffective;

[0511] Determine that the first object is ineffective;

[0512] Determine that the first object is not used for downlink control information transmission;

[0513] Determine that the resources corresponding to the third object cannot be used for downlink control information transmission;

[0514] Determine that the scheduling relationship of the resources corresponding to the third object is invalid;

[0515] Determine that the scheduling relationship of the resources corresponding to the third object is deactivated;

[0516] Determine that the scheduling relationship corresponding to the first object is invalid;

[0517] Determine that the scheduling relationship corresponding to the first object is deactivated.

[0518] Optionally, the processor is used to implement at least one of the following:

[0519] Determine that at least part of the resources corresponding to the fourth object are effective;

[0520] Determine that at least some of the resources corresponding to the fourth object are used for downlink control information transmission; determine that the first object becomes effective;

[0521] Determine that the first object is used for downlink control information transmission;

[0522] Determine that the scheduling relationship corresponding to the resources of the fourth object is effective;

[0523] Determine that the scheduling relationship corresponding to the resources of the fourth object is activated;

[0524] Determine that the scheduling relationship corresponding to the first object is effective;

[0525] Determine that the scheduling relationship corresponding to the first object is activated.

[0526] Optionally, the processor is further configured to:

[0527] Obtain a first object according to at least one of the following:

[0528] The information of the first object includes information corresponding to at least one associated fifth object;

[0529] The resources of the first object include resources corresponding to at least one associated fifth object;

[0530] The resources of the first object at least partially overlap with the resources corresponding to at least one associated fifth object; the information of the first object is included in the information of the fifth object;

[0531] The resources of the first object are included in the resources corresponding to the fifth object;

[0532] The resources of the first object at least partially overlap with the resources corresponding to the fifth object;

[0533] Wherein, the fifth object includes at least one of the following: a frequency domain object, a BWP, and an uplink-downlink configuration. Optionally, the third object is associated with the first object; and / or

[0534] The fourth object is associated with the first object.

[0535] The third object is activated or enabled; and / or

[0536] The fourth object is activated or enabled.

[0537] Optionally, the processor is configured to implement at least one of the following:

[0538] Determine the activated first object;

[0539] Determine the deactivated first object;

[0540] Determine the resources occupied by the first object.

[0541] Optionally, the configuration information of the first object includes at least one of the following:

[0542] The time domain unit occupied by the first object;

[0543] The frequency domain unit occupied by the first object.

[0544] Optionally, the time domain unit satisfies at least one of the following:

[0545] The time domain unit corresponds to at least two sixth objects;

[0546] The time domain unit is the same for all sixth objects;

[0547] Each sixth object has its own corresponding time domain unit;

[0548] Wherein, the sixth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0549] Optionally, the frequency domain unit satisfies at least one of the following:

[0550] The frequency domain unit corresponds to at least two seventh objects;

[0551] The frequency domain unit is the same for all seventh objects;

[0552] Each seventh object has its own corresponding frequency domain unit;

[0553] Wherein, the seventh object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0554] Optionally, the frequency domain object includes one of the following: frequency part, frequency band, carrier, sub-band; and / or

[0555] The control resource includes one of the following: control resource set, control channel, candidate control channel, control channel element, resource element group; and / or

[0556] The resource object includes a cell.

[0557] Optionally, one or more first objects are associated with one or more target information, and the target information includes at least one of the following: transmission configuration indication TCI, resource pool identifier, transmit receive point TRP, repetition configuration.

[0558] Optionally, the target information associated with at least two first objects is at least partially different.

[0559] Preferably, the embodiments of the present application further provide a communication device, which is a terminal or a network-side device, including a processor, a memory, a program or instruction stored on the memory and executable on the processor. When the program or instruction is executed by the processor, each process of the above communication processing method embodiment is implemented, and the same technical effect can be achieved. To avoid repetition, it will not be elaborated here. Optionally, when the communication device is a terminal, Figure 8 It is a schematic diagram of the hardware structure of a terminal for implementing an embodiment of the present application.

[0560] The terminal 800 includes, but is not limited to, at least some components such as a radio frequency unit 801, a network module 802, an audio output unit 803, an input unit 804, a sensor 805, a display unit 806, a user input unit 807, an interface unit 808, a memory 809, and a processor 810.

[0561] Those skilled in the art can understand that the terminal 800 may further include a power supply (such as a battery) for supplying power to each component. The power supply can be logically connected to the processor 810 through a power management system, so as to implement functions such as management of charging, discharging, and power consumption management through the power management system. Figure 8 The terminal structure shown in does not constitute a limitation on the terminal. The terminal may include more or fewer components than shown in the figure, or combine some components, or have different component arrangements, which will not be elaborated here.

[0562] It should be understood that in the embodiments of the present application, the input unit 804 may include a graphics processing unit (GPU) 8041 and a microphone 8042. The graphics processor 8041 processes the image data of static pictures or videos obtained by an image capture device (such as a camera) in a video capture mode or an image capture mode. The display unit 806 may include a display panel 8061, and the display panel 8061 may be configured in the form of a liquid crystal display, an organic light-emitting diode, etc. The user input unit 807 includes at least one of a touch panel 8071 and other input devices 8072. The touch panel 8071 is also called a touch screen. The touch panel 8071 may include two parts: a touch detection device and a touch controller. The other input devices 8072 may include, but are not limited to, a physical keyboard, function keys (such as volume control keys, switch keys, etc.), a trackball, a mouse, and a joystick, which will not be elaborated here.

[0563] In the embodiments of the present application, after the radio frequency unit 801 receives downlink data from an access network device, it can be transmitted to the processor 810 for processing; in addition, the radio frequency unit 801 can send uplink data to a network-side device. Generally, the radio frequency unit 801 includes, but is not limited to, an antenna, an amplifier, a transceiver, a coupler, a low-noise amplifier, a duplexer, etc.

[0564] The memory 809 can be used to store software programs or instructions and various data. The memory 809 may mainly include a first storage area for storing programs or instructions and a second storage area for storing data. Among them, the first storage area may store an operating system, application programs or instructions required for at least one function (such as a sound playback function, an image playback function, etc.). In addition, the memory 809 may include a volatile memory or a non-volatile memory, or the memory 809 may include both a volatile and a non-volatile memory. Among them, the non-volatile memory may be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), or a flash memory. The volatile memory may be a random access memory (RAM), a static random access memory (SRAM), a dynamic random access memory (DRAM), a synchronous dynamic random access memory (Synchronous DRAM, SDRAM), a double data rate synchronous dynamic random access memory (Double Data Rate SDRAM, DDR SDRAM), an enhanced synchronous dynamic random access memory (Enhanced SDRAM, ESDRAM), a synchronous link dynamic random access memory (Synch link DRAM, SLDRAM), and a direct rambus random access memory (Direct Rambus RAM, DRRAM). The memory 809 in the embodiments of the present application includes, but is not limited to, these and any other suitable types of memories.

[0565] The processor 810 may include one or more processing units; optionally, the processor 810 integrates an application processor and a modem processor. Among them, the application processor mainly processes operations related to the operating system, user interface, and application programs, etc., and the modem processor mainly processes wireless communication signals, such as a baseband processor. It can be understood that the above modem processor may not be integrated into the processor 810 either.

[0566] Among them, the processor is used to:

[0567] Obtain a first object;

[0568] Among them, the first object includes: a control resource or a part of a control resource. The first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

[0569] Optionally, the processor is configured to:

[0570] Obtain a first object according to the association relationship between the first object and the second object;

[0571] Wherein, the second object includes at least one of the following: a frequency domain object, a bandwidth part BWP, and an uplink / downlink configuration.

[0572] Optionally, the association relationship between the first object and the second object includes at least one of the following:

[0573] The information of the first object contains the information corresponding to at least one associated second object;

[0574] The resources of the first object contain the resources corresponding to at least one associated second object;

[0575] The resources of the first object at least partially overlap with the resources corresponding to at least one associated second object;

[0576] The information of the first object is included in the information of the second object;

[0577] The resources of the first object are included in the resources corresponding to the second object;

[0578] The resources of the first object at least partially overlap with the resources corresponding to the second object.

[0579] Optionally, the processor is configured to implement at least one of the following:

[0580] When the second object is configured, activated, or enabled, determine that the first object associated with the second object is located on at least part of the resources of the second object;

[0581] When the second object is configured, activated, or enabled, determine that the first object associated with the second object is valid, available, or activated;

[0582] When the second object is configured, activated, or enabled on a first target resource, determine that the first object associated with the first target resource is located on at least part of the resources of the second object;

[0583] When the second object is configured, activated, or enabled on a first target resource, determine that the first object associated with the first target resource is valid, available, or activated.

[0584] Optionally, the first object is activated.

[0585] Optionally, the processor is configured to implement at least one of the following:

[0586] When the resources of the first object and the third object meet the first condition, the communication device acquires the first object, where the third object includes at least one of the following: a frequency-domain object, a BWP, and an uplink / downlink configuration;

[0587] When the resources of the first object and the fourth object meet the second condition, the communication device acquires the first object, where the fourth object includes at least one of the following: a frequency-domain object, a BWP, and an uplink / downlink configuration;

[0588] Among them, the first condition includes at least one of the following:

[0589] The resources of the first object are located in the uplink part or the flexible part of the third object;

[0590] The resources of the first object and the uplink part or the flexible part of the third object at least partially overlap;

[0591] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units;

[0592] The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency-domain units;

[0593] The resource position of the third object cannot contain the resource position corresponding to the first object, where the resource position includes time-domain resources and / or frequency-domain resources;

[0594] There is at least partial non-overlap between the resource position of the third object and the resource position corresponding to the first object;

[0595] At least part of the time-domain resources of the third object is discontinuous;

[0596] At least part of the frequency-domain resources of the third object is discontinuous;

[0597] Among them, the second condition includes at least one of the following:

[0598] The resources of the first object are located in the downlink part or the flexible part of the fourth object;

[0599] The resources of the first object and the downlink part or the flexible part of the fourth object at least partially overlap;

[0600] The resources of the first object and the uplink part or the flexible part of the fourth object at least partially do not overlap;

[0601] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units;

[0602] The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units;

[0603] The resource position of the fourth object includes the resource position corresponding to the first object, and the resource position includes time domain resources and / or frequency domain resources;

[0604] There is at least partial overlap between the resource position of the fourth object and the resource position corresponding to the first object;

[0605] At least part of the time domain resources of the fourth object is continuous;

[0606] At least part of the frequency domain resources of the fourth object is continuous.

[0607] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units, including at least one of the following:

[0608] The resources of the first object are located before the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B1 time units, where B1 is an integer greater than or equal to 1;

[0609] The resources of the first object are located after the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B2 time units, where B2 is an integer greater than or equal to 1.

[0610] Optionally, the resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency domain units, including at least one of the following:

[0611] The resources of the first object are located before or above the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B3 frequency domain units, where B3 is an integer greater than or equal to 1;

[0612] The resources of the first object are located after or below the uplink part or the flexible part of the third object, and the distance from the uplink part or the flexible part of the third object is less than or equal to B4 frequency domain units, where B4 is an integer greater than or equal to 1.

[0613] Optionally, the resource location of the third object cannot include the resource location corresponding to the first object, including at least one of the following:

[0614] The downlink part or flexible part of at least part of the continuous time domain resources of the third object cannot include the time domain resources corresponding to the first object;

[0615] There is at least partial non - overlap between the time domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time domain resources of the third object;

[0616] The downlink part or flexible part of at least part of the continuous frequency domain resources of the third object cannot include the frequency domain resources corresponding to the first object;

[0617] There is at least partial non - overlap between the frequency domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency domain resources of the third object;

[0618] and / or

[0619] At least part of the time domain resources of the third object is discontinuous, including at least one of the following:

[0620] The downlink part or flexible part of at least part of the continuous time domain resources of the third object cannot include the time domain resources corresponding to the first object;

[0621] There is at least partial non - overlap between the time domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time domain resources of the third object;

[0622] and / or

[0623] At least part of the frequency domain resources of the third object is discontinuous, including at least one of the following:

[0624] The downlink part or flexible part of at least part of the continuous frequency domain resources of the third object cannot include the frequency domain resources corresponding to the first object;

[0625] There is at least partial non - overlap between the frequency domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency domain resources of the third object.

[0626] Optionally, at least part of the resources of the first object do not overlap with at least part of the fourth object, and the distance from at least part of the first object to the fourth object is greater than or equal to one or more time units, including at least one of the following:

[0627] The resources of the first object are located before the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B5 time units, where B5 is an integer greater than or equal to 1;

[0628] The resources of the first object are located after the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B6 time units, where B6 is an integer greater than or equal to 1.

[0629] Optionally, the resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency domain units, including at least one of the following:

[0630] The resources of the first object are located before or above the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B7 frequency domain units, where B7 is an integer greater than or equal to 1;

[0631] The resources of the first object are located after or below the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B8 frequency domain units, where B8 is an integer greater than or equal to 1.

[0632] Optionally, the resource position of the fourth object includes the resource position corresponding to the first object, including at least one of the following:

[0633] The time domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time domain resources of the fourth object;

[0634] There is at least partial overlap between the time domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time domain resources of the fourth object;

[0635] The frequency domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency domain resources of the fourth object;

[0636] There is at least partial overlap between the frequency domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency domain resources of the fourth object;

[0637] and / or

[0638] At least part of the time domain resources of the fourth object are continuous, including at least one of the following:

[0639] The time domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time domain resources of the fourth object;

[0640] There is at least partial overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object;

[0641] and / or

[0642] At least part of the frequency-domain resources of the fourth object is continuous, including at least one of the following:

[0643] The frequency-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object;

[0644] There is at least partial overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

[0645] Optionally, the third object is configured or activated or enabled on the second target resource;

[0646] and / or

[0647] The fourth object is configured or activated or enabled on the third target resource.

[0648] Optionally, the processor is used to implement at least one of the following:

[0649] Determine that at least part of the resources corresponding to the third object are ineffective;

[0650] Determine that the first object is ineffective;

[0651] Determine that the first object is not used for downlink control information transmission;

[0652] Determine that the resources corresponding to the third object cannot be used for downlink control information transmission;

[0653] Determine that the scheduling relationship of the resources corresponding to the third object is invalid;

[0654] Determine that the scheduling relationship of the resources corresponding to the third object is deactivated;

[0655] Determine that the scheduling relationship corresponding to the first object is invalid;

[0656] Determine that the scheduling relationship corresponding to the first object is deactivated.

[0657] Optionally, the processor is used to implement at least one of the following:

[0658] Determine that at least part of the resources corresponding to the fourth object are effective;

[0659] Determine that at least part of the resources corresponding to the fourth object are used for downlink control information transmission;

[0660] Determine that the first object becomes effective;

[0661] Determine that the first object is used for downlink control information transmission;

[0662] Determine that the scheduling relationship corresponding to the resource corresponding to the fourth object is effective;

[0663] Determine that the scheduling relationship corresponding to the resource corresponding to the fourth object is activated;

[0664] Determine that the scheduling relationship corresponding to the first object is effective;

[0665] Determine that the scheduling relationship corresponding to the first object is activated.

[0666] Optionally, the processor is further configured to:

[0667] Obtain a first object according to at least one of the following:

[0668] The information of the first object contains the information corresponding to at least one associated fifth object;

[0669] The resource of the first object contains the resource corresponding to at least one associated fifth object;

[0670] The resource of the first object at least partially overlaps with the resource corresponding to at least one associated fifth object;

[0671] The information of the first object is included in the information of the fifth object;

[0672] The resource of the first object is included in the resource corresponding to the fifth object;

[0673] The resource of the first object at least partially overlaps with the resource corresponding to the fifth object;

[0674] Wherein, the fifth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration.

[0675] Optionally, the third object is associated with the first object; and / or

[0676] The fourth object is associated with the first object.

[0677] The third object is activated or enabled; and / or

[0678] The fourth object is activated or enabled.

[0679] Optionally, the processor is configured to implement at least one of the following:

[0680] Determine the activated first object;

[0681] Determine the first object to be deactivated;

[0682] Determine the resources occupied by the first object.

[0683] Optionally, the configuration information of the first object includes at least one of the following:

[0684] The time domain unit occupied by the first object;

[0685] The frequency domain unit occupied by the first object.

[0686] Optionally, the time domain unit satisfies at least one of the following:

[0687] The time domain unit corresponds to at least two sixth objects;

[0688] The time domain unit is the same for all sixth objects;

[0689] Each sixth object has its own corresponding time domain unit;

[0690] Wherein, the sixth object includes at least one of the following: frequency domain object, BWP, uplink-downlink configuration.

[0691] Optionally, the frequency domain unit satisfies at least one of the following:

[0692] The frequency domain unit corresponds to at least two seventh objects;

[0693] The frequency domain unit is the same for all seventh objects;

[0694] Each seventh object has its own corresponding frequency domain unit;

[0695] Wherein, the seventh object includes at least one of the following: frequency domain object, BWP, uplink-downlink configuration.

[0696] Optionally, the frequency domain object includes one of the following: frequency part, frequency band, carrier, sub-band; and / or

[0697] The control resource includes one of the following: control resource set, control channel, candidate control channel, control channel element, resource element group; and / or

[0698] The resource object includes a cell.

[0699] Optionally, one or more first objects are associated with one or more target information, and the target information includes at least one of the following: transmission configuration indication TCI, resource pool identifier, transmit-receive point TRP, repetition configuration.

[0700] Optionally, the target information associated with at least two first objects is at least partially different.

[0701] The embodiments of the present application further provide a readable storage medium. A program or instruction is stored on the computer-readable storage medium. When the program or instruction is executed by a processor, each process of the communication processing method embodiment described above is implemented, and the same technical effects can be achieved. To avoid repetition, details are not described here again.

[0702] Among them, the computer-readable storage medium is, for example, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disc, etc.

[0703] Optionally, as Figure 9 As shown, the embodiments of the present application further provide a communication device 900, including a processor 901 and a memory 902. A program or instruction that can run on the processor 901 is stored on the memory 902. For example, when the communication device 900 is a terminal, when the program or instruction is executed by the processor 901, each step of the resource acquisition method embodiment described above is implemented, and the same technical effects can be achieved. When the communication device 900 is a network-side device, when the program or instruction is executed by the processor 901, each step of the resource acquisition method embodiment described above is implemented, and the same technical effects can be achieved. To avoid repetition, details are not described here again.

[0704] The embodiments of the present application further provide a chip. The chip includes a processor and a communication interface. The communication interface is coupled to the processor. The processor is used to run a program or instruction to implement each process of the resource acquisition method embodiment described above, and the same technical effects can be achieved. To avoid repetition, details are not described here again.

[0705] It should be understood that the chip mentioned in the embodiments of the present application may also be referred to as a system-on-chip, a system chip, a chip system, or a system-on-chip, etc.

[0706] The embodiments of the present application further provide a computer program / program product. The computer program / program product is stored in a storage medium. The computer program / program product is executed by at least one processor to implement each process of the resource acquisition method embodiment described above, and the same technical effects can be achieved. To avoid repetition, details are not described here again.

[0707] The embodiments of the present application further provide a communication system, including: a terminal and a network-side device. The terminal can be used to execute the steps of the resource acquisition method described above, and the network-side device can be used to execute the steps of the resource acquisition method described above.

[0708] It should be noted that in this text, the term "including", "comprising" or any other variant thereof is intended to cover non-exclusive inclusion, such that a process, method, article or device including a series of elements not only includes those elements but also other elements not explicitly listed, or elements inherent to such process, method, article or device. Without further limitation, an element defined by the statement "including one..." does not exclude the existence of additional identical elements in the process, method, article or device including such element. In addition, it should be pointed out that the scope of the methods and devices in the embodiments of the present application is not limited to performing functions in the order shown or discussed, and may also include performing functions in a substantially simultaneous manner or in a reverse order according to the functions involved. For example, the described methods may be performed in an order different from that described, and various steps may be added, omitted or combined. Additionally, features described with reference to certain examples may be combined in other examples.

[0709] Through the description of the above embodiments, those skilled in the art can clearly understand that the methods of the above embodiments can be implemented by means of a computer software product plus a necessary general hardware platform, and of course, can also be implemented by hardware. The computer software product is stored in a storage medium (such as ROM, RAM, magnetic disk, optical disk, etc.) and includes several instructions for causing a terminal or a network-side device to execute the methods described in the various embodiments of the present application.

[0710] The embodiments of the present application have been described above in conjunction with the accompanying drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms of embodiments without departing from the purpose of the present application and the scope protected by the claims. All these embodiments fall within the protection scope of the present application.

Claims

1. A resource acquisition method, characterized in that, including: A communication device obtains a first object; wherein, the first object includes: a control resource or a part of a control resource, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency-domain object.

2. The method according to claim 1, wherein The obtaining of the first object includes: The communication device obtains the first object according to the association relationship between the first object and a second object; wherein, the second object includes at least one of the following: a frequency-domain object, a bandwidth part BWP, and an uplink-downlink configuration.

3. The method according to claim 2, wherein The association relationship between the first object and the second object includes at least one of the following: The information of the first object includes the information corresponding to at least one associated second object; The resource of the first object includes the resource corresponding to at least one associated second object; The resource of the first object and the resource corresponding to at least one associated second object at least partially overlap; The information of the first object is included in the information of the second object; The resource of the first object is included in the resource corresponding to the second object; The resource of the first object and the resource corresponding to the second object at least partially overlap.

4. The method according to claim 2 or 3, characterized in that, The obtaining of the first object includes at least one of the following: When the second object is configured, activated, or enabled, the communication device determines that the first object associated with the second object is located on at least a part of the resources of the second object; When the second object is configured, activated, or enabled, the communication device determines that the first object associated with the second object is valid, available, or activated; When the second object is configured, activated, or enabled on a first target resource, the communication device determines that the first object associated with the first target resource is located on at least a part of the resources of the second object; When the second object is configured, activated, or enabled on a first target resource, the communication device determines that the first object associated with the first target resource is valid, available, or activated.

5. The method according to claim 4, characterized in that The first object is activated.

6. The method according to claim 1, wherein The obtaining of the first object includes at least one of the following: When the resource of the first object and a third object meet a first condition, the communication device obtains the first object, and the third object includes at least one of the following: a frequency-domain object, a BWP, and an uplink-downlink configuration; When the resource of the first object and a fourth object meet a second condition, the communication device obtains the first object, and the fourth object includes at least one of the following: a frequency-domain object, a BWP, and an uplink-downlink configuration; wherein, the first condition includes at least one of the following: The resource of the first object is located in the uplink part or the flexible part of the third object; The resource of the first object and the uplink part or the flexible part of the third object at least partially overlap; The resource of the first object and at least a part of the third object do not overlap, and the distance from at least a part of the first object to at least a part of the third object is less than or equal to one or more time units; The resource of the first object and at least a part of the third object do not overlap, and the distance from at least a part of the first object to at least a part of the third object is less than or equal to one or more frequency-domain units; The resource location of the third object cannot include the resource location corresponding to the first object, and the resource location includes time-domain resources and / or frequency-domain resources; There is at least partial non-overlap between the resource location of the third object and the resource location corresponding to the first object; At least part of the time-domain resources of the third object are discontinuous; At least part of the frequency-domain resources of the third object are discontinuous; Wherein, the second condition includes at least one of the following: The resources of the first object are located in the downlink part or flexible part of the fourth object; The resources of the first object and the downlink part or flexible part of the fourth object at least partially overlap; The resources of the first object and the uplink part or flexible part of the fourth object at least partially do not overlap; The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more time units; The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the fourth object is greater than or equal to one or more frequency-domain units; The resource location of the fourth object includes the resource location corresponding to the first object, and the resource location includes time-domain resources and / or frequency-domain resources; There is at least partial overlap between the resource location of the fourth object and the resource location corresponding to the first object; At least part of the time-domain resources of the fourth object are continuous; At least part of the frequency-domain resources of the fourth object are continuous.

7. The method according to claim 6, wherein The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more time units, including at least one of the following: The resources of the first object are located before the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B1 time units, where B1 is an integer greater than or equal to 1; The resources of the first object are located after the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B2 time units, where B2 is an integer greater than or equal to 1.

8. The method according to claim 6, characterized in that, The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the third object is less than or equal to one or more frequency-domain units, including at least one of the following: The resources of the first object are located before or above the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B3 frequency-domain units, where B3 is an integer greater than or equal to 1; The resources of the first object are located after or below the uplink part or flexible part of the third object, and the distance from the uplink part or flexible part of the third object is less than or equal to B4 frequency-domain units, where B4 is an integer greater than or equal to 1.

9. The method according to claim 6, wherein The resource location of the third object cannot include the resource location corresponding to the first object, including at least one of the following: The time-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the third object; At least a part of the downlink part or flexible part of the time-domain resources corresponding to the first object and at least a part of the continuous time-domain resources of the third object do not overlap at least partially; The frequency-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least a part of the continuous frequency-domain resources of the third object; At least a part of the downlink part or flexible part of the frequency-domain resources corresponding to the first object and at least a part of the continuous frequency-domain resources of the third object do not overlap at least partially; and / or At least a part of the time-domain resources of the third object is discontinuous, including at least one of the following: The time-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least a part of the continuous time-domain resources of the third object; At least a part of the downlink part or flexible part of the time-domain resources corresponding to the first object and at least a part of the continuous time-domain resources of the third object do not overlap at least partially; and / or At least a part of the frequency-domain resources of the third object is discontinuous, including at least one of the following: The frequency-domain resources corresponding to the first object cannot be included in the downlink part or flexible part of at least a part of the continuous frequency-domain resources of the third object; At least a part of the downlink part or flexible part of the frequency-domain resources corresponding to the first object and at least a part of the continuous frequency-domain resources of the third object do not overlap at least partially.

10. The method according to claim 6, characterized in that The resources of the first object and at least a part of the fourth object do not overlap, and the distance from at least a part of the fourth object is greater than or equal to one or more time units, including at least one of the following: The resources of the first object are before the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B5 time units, where B5 is an integer greater than or equal to 1; The resources of the first object are after the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B6 time units, where B6 is an integer greater than or equal to 1.

11. The method according to claim 6, wherein The resources of the first object and at least a part of the fourth object do not overlap, and the distance from at least a part of the fourth object is greater than or equal to one or more frequency units, including at least one of the following: The resources of the first object are before or above the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B7 frequency units, where B7 is an integer greater than or equal to 1; The resources of the first object are after or below the uplink part or flexible part of the fourth object, and the distance from the uplink part or flexible part of the fourth object is greater than or equal to B8 frequency units, where B8 is an integer greater than or equal to 1.

12. The method according to claim 6, wherein The resource position of the fourth object includes the resource position corresponding to the first object, including at least one of the following: The time-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least a part of the continuous time-domain resources of the fourth object; At least a part of the downlink part or flexible part of the time-domain resources corresponding to the first object and at least a part of the continuous time-domain resources of the fourth object overlap at least partially; The frequency-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object; There is at least partial overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object; and / or At least part of the time-domain resources of the fourth object are continuous, including at least one of the following: The time-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object; There is at least partial overlap between the time-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous time-domain resources of the fourth object; and / or At least part of the frequency-domain resources of the fourth object are continuous, including at least one of the following: The frequency-domain resources corresponding to the first object can be included in the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object; There is at least partial overlap between the frequency-domain resources corresponding to the first object and the downlink part or flexible part of at least part of the continuous frequency-domain resources of the fourth object.

13. The method according to claim 6, wherein The third object is configured or activated or enabled on the second target resource; and / or The fourth object is configured or activated or enabled on the third target resource.

14. The method according to claim 6, wherein When the resources of the first object and the third object meet the first condition, the communication device acquires the first object, including at least one of the following: The communication device determines that at least part of the resources in the resources corresponding to the third object are ineffective; The communication device determines that the first object is ineffective; The communication device determines that the first object is not used for downlink control information transmission; The communication device determines that the resources corresponding to the third object cannot be used for downlink control information transmission; The communication device determines that the scheduling relationship of the resources corresponding to the third object is invalid; The communication device determines that the scheduling relationship of the resources corresponding to the third object is deactivated; The communication device determines that the scheduling relationship corresponding to the first object is invalid; The communication device determines that the scheduling relationship corresponding to the first object is deactivated.

15. The method according to claim 6, wherein When the resources of the first object and the fourth object meet the second condition, the communication device acquires the first object, including at least one of the following: The communication device determines that at least part of the resources in the resources corresponding to the fourth object are effective; The communication device determines that at least part of the resources in the resources corresponding to the fourth object are used for downlink control information transmission; The communication device determines that the first object is effective; The communication device determines that the first object is used for downlink control information transmission; The communication device determines that the scheduling relationship corresponding to the resources of the fourth object is effective; The communication device determines that the scheduling relationship corresponding to the resources of the fourth object is activated; The communication device determines that the scheduling relationship corresponding to the first object is effective; The communication device determines that the scheduling relationship corresponding to the first object is activated.

16. The method according to claim 6, wherein The acquiring of the first object further includes: Acquiring the first object according to at least one of the following: The information of the first object contains information corresponding to at least one associated fifth object; The resources of the first object include resources corresponding to at least one associated fifth object; The resources of the first object at least partially overlap with the resources corresponding to at least one associated fifth object; The information of the first object is included in the information of the fifth object; The resources of the first object are included in the resources corresponding to the fifth object; The resources of the first object at least partially overlap with the resources corresponding to the fifth object; Wherein, the fifth object includes at least one of the following: a frequency domain object, a BWP, an uplink / downlink configuration.

17. The method according to claim 16, characterized in that, The third object is associated with the first object; and / or The fourth object is associated with the first object.

18. The method according to claim 6, characterized in that, The third object is activated or enabled; and / or The fourth object is activated or enabled.

19. The method according to any one of claims 1-18, characterized in that, The obtaining of the first object includes at least one of the following: Determining the activated first object; Determining the deactivated first object; The resources occupied by the first object.

20. The method according to any one of claims 1 to 19, characterized in that The information of the first object includes at least one of the following: The time domain units occupied by the first object; The frequency domain units occupied by the first object.

21. The method according to claim 20, wherein The time domain units satisfy at least one of the following: The time domain units correspond to at least two sixth objects; The time domain units are the same for all sixth objects; Each sixth object has its own corresponding time domain unit; Wherein, the sixth object includes at least one of the following: a frequency domain object, a BWP, an uplink / downlink configuration.

22. The method according to claim 20, wherein The frequency domain units satisfy at least one of the following: The frequency domain units correspond to at least two seventh objects; The frequency domain units are the same for all seventh objects; Each seventh object has its own corresponding frequency domain unit; Wherein, the seventh object includes at least one of the following: a frequency domain object, a BWP, an uplink / downlink configuration.

23. The method according to any one of claims 1 to 22, characterized in that, The frequency domain object includes one of the following: a frequency portion, a frequency band, a carrier, a sub-band; and / or The control resource includes one of the following: a control resource set, a control channel, a candidate control channel, a control channel element, a resource element group; and / or The resource object includes a cell.

24. The method according to any one of claims 1-23, characterized in that, One or more first objects are associated with one or more target information, and the target information includes at least one of the following: a transmission configuration indication TCI, a resource pool identifier, a transmit-receive point TRP, a repetition configuration.

25. The method according to claim 24, wherein The target information associated with at least two first objects is at least partially different.

26. A resource determination device, applied to a communication device, is characterized in that Including: An obtaining module, configured to obtain a first object; Wherein, the first object includes: a control resource or a control resource portion, the first object is related to at least one resource object, and the resource object is associated with or includes at least one frequency domain object.

27. The device according to claim 26, characterized in that, The obtaining module is configured to: Obtain a first object according to the association relationship between the first object and the second object; Wherein, the second object includes at least one of the following: a frequency domain object, a bandwidth portion BWP, an uplink / downlink configuration.

28. The device according to claim 27, characterized in that, The association relationship between the first object and the second object includes at least one of the following: The information of the first object includes the information corresponding to at least one associated second object; The resources of the first object include the resources corresponding to at least one associated second object; The resources of the first object at least partially overlap with the resources corresponding to at least one associated second object; The information of the first object is included in the information of the second object; The resources of the first object are included in the resources corresponding to the second object; The resources of the first object and the resources corresponding to the second object overlap at least partially.

29. The device according to claim 27 or 28, characterized in that The obtaining module is used for at least one of the following: When the second object is configured, activated, or enabled, determining that the first object associated with the second object is located on at least part of the resources of the second object; When the second object is configured, activated, or enabled, determining that the first object associated with the second object is valid, available, or activated; When the second object is configured, activated, or enabled on the first target resource, determining that the first object associated with the first target resource is located on at least part of the resources of the second object; When the second object is configured, activated, or enabled on the first target resource, determining that the first object associated with the first target resource is valid, available, or activated.

30. The device according to claim 26, characterized in that, The obtaining module is used for at least one of the following: When the resources of the first object and the third object meet the first condition, obtaining the first object, where the third object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration; When the resources of the first object and the fourth object meet the second condition, obtaining the first object, where the fourth object includes at least one of the following: frequency domain object, BWP, uplink and downlink configuration; Wherein, the first condition includes at least one of the following: The resources of the first object are located in the uplink part or flexible part of the third object; The resources of the first object and the uplink part or flexible part of the third object overlap at least partially; The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the first object to at least part of the third object is less than or equal to one or more time units; The resources of the first object and at least part of the third object do not overlap, and the distance from at least part of the first object to at least part of the third object is less than or equal to one or more frequency domain units; The resource position of the third object cannot contain the resource position corresponding to the first object, where the resource position includes time domain resources and / or frequency domain resources; There is at least partial non-overlap between the resource position of the third object and the resource position corresponding to the first object; At least part of the time domain resources of the third object is discontinuous; At least part of the frequency domain resources of the third object is discontinuous; Wherein, the second condition includes at least one of the following: The resources of the first object are located in the downlink part or flexible part of the fourth object; The resources of the first object and the downlink part or flexible part of the fourth object overlap at least partially; The resources of the first object and the uplink part or flexible part of the fourth object do not overlap at least partially; The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the first object to at least part of the fourth object is greater than or equal to one or more time units; The resources of the first object and at least part of the fourth object do not overlap, and the distance from at least part of the first object to at least part of the fourth object is greater than or equal to one or more frequency domain units; The resource position of the fourth object contains the resource position corresponding to the first object, where the resource position includes time domain resources and / or frequency domain resources; There is at least partial overlap between the resource location of the fourth object and the resource location corresponding to the first object; At least part of the time domain resources of the fourth object are continuous; At least part of the frequency domain resources of the fourth object are continuous.

31. A communication device, the communication device being a terminal, characterized in that, It includes a processor and a memory, and the memory stores programs or instructions that can run on the processor. When the programs or instructions are executed by the processor, the steps of the resource acquisition method described in any one of claims 1 to 25 are implemented.

32. A readable storage medium, characterized in that, Programs or instructions are stored on the readable storage medium. When the programs or instructions are executed by a processor, the steps of the resource acquisition method described in any one of claims 1-25 are implemented.