Method, apparatus, user equipment, base station and storage medium for resource allocation

By sending the configuration information and activation information of transmission resources to the user equipment, the problems of large signaling overhead and low resource activation efficiency in the prior art are solved, and the accurate activation of multiple sets of transmission resources and the efficiency of resource allocation are improved.

CN110536439BActive Publication Date: 2025-06-24ZTE CORP
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Patent Information

Application Number
CN201910252965.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2019-03-29
Publication Date
2025-06-24
Estimated Expiration
2039-03-29

AI Technical Summary

Technical Problem

When configuring multiple sets of transmission resources for user equipment, the signaling overhead is high, and configuring and activating multiple sets of resources will increase the blocking rate of the physical downlink control channel.

Method used

By sending configuration information and activation information of transmission resources to the sending side, the configuration information includes parameter configuration information of multiple sets of transmission resources, and the activation information includes the identification of transmission resources to be activated, so as to achieve accurate activation of multiple sets of transmission resources.

Benefits of technology

It reduces the overhead of resource allocation and activation processes, realizes accurate activation of multiple sets of transmission resources, and reduces the blocking rate of physical downlink control channels.

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Abstract

The present application provides a method, an apparatus, a user equipment, a base station, and a storage medium for resource allocation. The method includes: sending configuration information of transmission resources to the user equipment, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the user equipment; sending activation information of the transmission resources to the user equipment, where the activation information includes identifiers of the transmission resources to be activated, and the identifiers of the activated transmission resources are used to activate the transmission resources. The present application can configure multiple sets of transmission resources for the user equipment and activate one or more sets of transmission resources through the activation information, reducing the overhead of information transmission.
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Description

Technical Field

[0001] The present application relates to a wireless communication network, and particularly to a method, apparatus, user equipment, base station, and storage medium for resource allocation. Background Art

[0002] The new generation mobile communication system (NR, New Radio) supports configuring grant-free resources for user equipment (UE, User Equipment). In different application scenarios of user equipment, the resource configuration requirements are generally different. Potential application scenarios of resource configuration include the following: 1. A single UE has service quality (QoS, Quality of Service) requirements for multiple services. 2. Ensure the reliability and latency performance of the same service for a single UE. 3. Support the reuse scenario between user equipments (Inter-UE) to avoid resource collisions between UEs. Among them, for the scenario of the same service, parameters such as the size of time-frequency resources configured for the UE, modulation and coding scheme (MCS, Modulation and Coding Scheme), and transmission period can be the same. In this scenario, according to the existing resource configuration method, each time a set of resources is configured for the UE, a signaling is sent to activate the configured resources, resulting in a relatively large signaling overhead. At the same time, when configuring and activating multiple sets of resources, the blocking rate of the physical downlink control channel (PDCCH, Physical Downlink Control Channel) will increase. Summary of the Invention

[0003] To solve at least one of the above technical problems, the embodiments of the present application provide the following solutions.

[0004] The embodiments of the present application provide a method for resource allocation, including:

[0005] Sending configuration information of transmission resources to a sending side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the sending side;

[0006] Sending activation information of transmission resources to the sending side, where the activation information includes an identifier of the transmission resources to be activated, and the identifier of the activated transmission resources is used to activate the transmission resources.

[0007] The embodiments of the present application provide a method for resource allocation, including:

[0008] Receiving configuration information of transmission resources sent by a transmitting side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the transmitting side;

[0009] Receiving activation information of transmission resources sent by the transmitting side, where the activation information includes an identifier of the transmission resources to be activated; and

[0010] Activate the transmission resources by using the identifier.

[0011] An embodiment of the present application provides a resource configuration device, including:

[0012] A first sending module, configured to send configuration information of transmission resources to a sending side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated to the sending side;

[0013] A second sending module, configured to send activation information of transmission resources to the sending side, where the activation information includes an identifier of the transmission resources to be activated, and the identifier of the activated transmission resources is used to activate the transmission resources.

[0014] An embodiment of the present application provides a resource configuration device, including:

[0015] A first receiving module, configured to receive configuration information of transmission resources sent by a transmitting side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated to the sending side;

[0016] A second receiving module, configured to receive activation information of transmission resources sent by the transmitting side, where the activation information includes an identifier of the transmission resources to be activated; and

[0017] An activation module, configured to activate the transmission resources by using the identifier.

[0018] An embodiment of the present application provides a storage medium, where the storage medium stores a computer program, and when the computer program is executed by a processor, any method in the embodiments of the present application is implemented.

[0019] The solution provided by the embodiments of the present application can perform grouping while configuring multiple sets of transmission resources for the sending side. During the activation process, the activation information carries the identifier of the transmission resources, and one set of transmission resources or multiple sets of transmission resources in a group can be activated, so as to accurately activate multiple sets of transmission resources. Moreover, the present application can activate multiple sets of transmission resources in a group, reducing the overhead of the resource configuration and activation process. Description of the Drawings

[0020] Figures 1-1 to 1-3 A schematic diagram of an embodiment of a set of transmission resources provided by the present application.

[0021] Figure 2 A schematic diagram of an embodiment of the relationship between Inter-UE multiplexed transmission resources provided by the present application.

[0022] Figures 3 to 8 A schematic flowchart of an embodiment of a resource configuration method provided by the present application.

[0023] Figures 9-1 to 9-4 A schematic diagram of an embodiment of the interaction process between a base station and a user equipment provided by this application.

[0024] Figure 10 and Figure 11 A schematic structural diagram of an embodiment of the resource configuration device provided by this application.

[0025] Figure 12 A schematic structural diagram of an embodiment of the base station for resource configuration provided by this application.

[0026] Figure 13 A schematic structural diagram of an embodiment of the user equipment for resource configuration provided by this application.

[0027] Figure 14 A schematic structural diagram of an embodiment of the communication system provided by this application. Detailed implementation manners

[0028] To make the objectives, technical solutions, and advantages of this application clearer and more understandable, the embodiments of this application will be described in detail below with reference to the accompanying drawings. It should be noted that, without conflict, the embodiments in this application and the features in the embodiments can be arbitrarily combined with each other.

[0029] The scenarios where multiple sets of transmission resources need to be configured in the embodiments of this application include but are not limited to the following several types:

[0030] Scenario 1: Ensure the reliability and latency of the same service of the same UE.

[0031] When configuring and activating a set of transmission resources for the same service of the same UE, due to the lag of service arrival, the time sequence (TOn) at this time and the first time sequence (TO1) cannot meet the K - time repeated transmission or the increased alignment latency. For this reason, the base station provides multiple sets of transmission resources for the user equipment. The multiple sets of transmission resources have time - domain offset or frequency - domain offset or time - frequency - domain offset, which can enable that even if the service arrives late, the time sequence at this time and the first time sequence can select the transmission resources that meet the K - time repeated transmission or have the minimum latency from the multiple sets of transmission resources for transmission, ensuring the reliability and latency of the same service of the same UE.

[0032] Among them, the multiple sets of transmission resources configured by the base station for the user equipment can be referred to Figures 1-1 to 1-3Examples. A set of transmission resources may include one or more sets of resources. Among them, the offset methods for a set of transmission resources containing multiple sets of resources can be: time-domain offset, frequency-domain offset, or time-frequency domain offset. The configuration methods of the offset methods include the following two: Configuration method 1 is that multiple sets of transmission resources within a group adopt one offset method, and multiple resource groups belonging to the same set adopt the same offset method. Configuration method 2: Each set of transmission resources within a group adopts one offset method respectively, and each resource group belonging to the same set adopts one offset method respectively. Among them, the offset of configuration method 1 is relative to the first set of transmission resources within the group. The offset size of a certain set of resources within a resource group is (the Nth set) minus 1 multiplied by the configured offset granularity at the position of the resource in the resource group. The granularity of resource configuration can be: If it is a time-domain offset, the offset granularity can be N symbol lengths or M TO lengths or L slot lengths (N, M, L are positive integers); if it is a frequency-domain offset, the offset granularity can be I RBs or J RBGs or one over K bandwidth (I, J, K are integers); if it is a time-frequency domain offset, the offset granularity is a combination of the above time-domain offset and frequency-domain offset granularities. For example: Figure 1-1 Set 1 in it includes 4 sets of transmission resources, namely #1, #2, #3, and #4. The offset method between the transmission resources within the group is time-domain offset. Assuming that the configured time-domain offset size is N symbols or one TO length, then the offset of transmission resource #1 is 0 (no offset); the offset of transmission resource #2 is an offset of N symbols or one TO transmission length to the right; the offset of transmission resource #3 is an offset of 2N symbols or 2 TO transmission lengths to the right; the offset of transmission resource #4 is an offset of 3N symbols or 3 TO transmission lengths to the right. Activate the resources included in this group using a downlink control information (DCI). Activate the 4 sets of transmission resources within this set 1. The DCI contains information indicating the group identifier of set 1. Figure 1-2 Set 2 in it includes 2 sets of transmission resources, namely #1 and #2. The offset method between transmission resource #1 and transmission resource #2 is frequency-domain offset. The configured offset granularity is N RBs. Then the offset of resource #1 is 0 (no offset), and the offset of resource #2 is an offset of N RB sizes upward or downward. Activate the multiple sets of resources included in this group of resources using a DCI signaling. Activate the 2 sets of transmission resources within this set 2. The DCI contains information indicating the group identifier of set 2. Figure 1-3 Set 3 includes transmission resource #1. Since there is only one set of transmission resources, there is no need to indicate the offset method within the group.

[0033] If the RRC signaling configures four sets of transmission resources, namely #1, #2, #3, and #4. The configured transmission resources may include the offset mode for each set, or may not configure the offset mode for each set. If the offset mode is not configured in the configuration. At this time, grouping can be performed through RRC or the four sets of transmission resources can be respectively configured into different states. One or more sets of resources are included in the same state. It is also possible to group the four sets through MAC CE signaling or configure the four sets of transmission resources into different states respectively. For example, transmission resource #2 and transmission resource #3 in the original RRC signaling configuration are configured into one group (one state). And, according to offset configuration method 1, one offset mode is configured in one group (one state), and the offsets of multiple sets of resources are all based on the first set of resources for offset. According to offset configuration method 2, the offset granularity and offset mode of each set of resources can be configured through RRC signaling or MAC CE signaling, and the offset is performed according to the indicated offset mode. For example, the following four sets of configurations are configured through RRC signaling: #1+offset1, #2+offset2, #3+offset3, and #4+offset4. That is, when the base station configures resources, it configures the corresponding offset mode for the resources. Or, directly configure the transmission resources included in a group or the transmission resources included in a state through RRC signaling, and then indicate the offset mode of the transmission resources in each group or each state through MAC CE signaling. That is, when the base station configures resources, it does not configure the offset mode for the resources. If resource offset is required during activation, corresponding configuration can be performed through MAC CE. Finally, when activating the transmission resources in a group or a state, one activation signaling can simultaneously activate all the resources in a group or a state, and the multiple sets of resources in the group or state perform offset between multiple sets of resources according to the offset in the configuration.

[0034] In the embodiments of the present application, the parameter configurations of multiple sets of resources within a resource set or a resource group may be the same. Similarly, the parameter configurations of multiple sets of resources within the set or within the group may also be different. In addition, the same set of resources can be configured into multiple resource sets or resource groups, and multiple sets of the same configured resources can also be configured in one resource group or resource set.

[0035] Scenario 2: The UE supports multiple QoS service requirements.

[0036] In the scenario where the UE supports multiple unscheduled transmission service types, even for the same UE, the performance requirements for different service types are different. Therefore, for each service type, the base station can respectively configure one or more sets of transmission resources for the user equipment.

[0037] Scenario 3: Avoid resource collisions between UEs in the inter-UE multiplexing scenario.

[0038] Exemplarily, two service scenarios, namely enhanced mobile broadband (eMBB) and ultra-reliable & low-latency communication (URLLC), are multiplexed among user devices. For example, a collision occurs between the transmission resources scheduled for eMBB and the grant-free transmission resources configured for URLLC. To avoid the collision, the base station may configure multiple sets of resources for the UE. These multiple sets of resources have various offset methods such as frequency-domain offset or time-domain offset. Refer to Figure 2 , four sets of grant-free resources, namely #1, #2, #3, and #4, are configured for URLLC. The grey boxes represent the resources scheduled for eMBB. The grey boxes overlap with Resource #3 and Resource #4. If only Resource #3 or Resource #4 is configured for the URLLC service of the user device, when the user device is performing both eMBB and URLLC services simultaneously, a collision occurs between the resources scheduled for the eMBB service and the grant-free resources for the URLLC service. However, if the base station configures the user device's URLLC service with resources such as Figure 2 among Resource #1, #2, #3, and #4, then when the user device is performing both eMBB and URLLC services simultaneously, to avoid transmission collisions, the user device can select the configuration of Resource #1 or #2 for URLLC transmission. Among them, there is a frequency-domain offset between the grant-free resources #1, #2, #3, and #4.

[0039] In the embodiments of the present application, the configuration and activation of grant-free resources include but are not limited to two methods: Type 1, the parameters are configured by radio resource control (RRC) signaling. The RRC signaling allocates the resource parameters to the UE, and the resources are automatically activated. Type 2, a part of the parameters of a set of resources are configured by RRC signaling, and the remaining parameters are indicated in the downlink control information (DCI) signaling, and the set of resources is activated by the DCI signaling.

[0040] For the Type 2 method, the resources configured by RRC signaling are activated by DCI signaling, and each set of resources requires a DCI signaling to activate. However, in the scenario of ensuring the latency and reliability of the same user and the same service, the DCI signaling overhead is large. To reduce the DCI information, multiple sets of resources can be activated by one DCI simultaneously.

[0041] Refer to Figure 3, a method for resource allocation provided by an embodiment of the present application will be described below. The embodiment of the present application can be applied to a device on the transmitting side, such as a base station. In the embodiment of the present application, the device on the receiving side may include a user equipment. The embodiment of the present application will describe the solution provided by the present application by taking the interaction between a base station and a user equipment as an example. The embodiment of the present application includes step S110 and step S120, as follows:

[0042] S110: Send configuration information of transmission resources to the user equipment, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the user equipment.

[0043] S120: Send activation information of transmission resources to the user equipment, where the activation information includes an identifier of the transmission resources to be activated, and this identifier is used to activate the transmission resources.

[0044] In some embodiments, the configuration information may include set identifier information of multiple sets of transmission resources, and activation information including the set identifier may be sent to the user equipment in step S120. When receiving the activation information, the user equipment uses the set identifier to activate the transmission resources. Correspondingly, the base station may also send deactivation information including the set identifier to the user equipment. The user equipment may deactivate the corresponding transmission resources using the set identifier in the deactivation information.

[0045] Exemplarily, the base station configures 4 sets of transmission resources for the user equipment, which can be sorted by serial number, including transmission resources numbered #1 to #4. These configured resources are activated through DCI signaling, and the DCI signaling contains information for indicating the set identifier. For example, a 2-bit field is used to indicate the set identifier, 00 represents the transmission resource numbered #1; 01 represents the transmission resource numbered #2; 10 represents the transmission resource numbered #3; 11 represents the transmission resource numbered #4. The number of bits of the bit field used in the activation information may satisfy the following condition: the largest integer value that the bit field can represent is greater than or equal to the serial number value of the highest-ordered transmission resource. If the set identifier bit field for indicating a specific transmission resource in the activation information is less than the number of configured resource sets, the values represented by the set identifier bit field may correspond one by one in order to the sorted transmission resources.

[0046] In some embodiments, in addition to the parameter configuration information of multiple sets of transmission resources, the configuration information may further include grouping information. The grouping information includes multiple resource groups formed by combining multiple sets of transmission resources. Each resource group includes at least one set of transmission resources. A resource group has a group identifier, and a set of transmission resources has a set identifier. In step S120, the base station may send activation information including at least one of the group identifier and the set identifier to the user equipment. If the activation information only includes the set identifier, the user equipment activates one set of the multiple sets of transmission resources. If the activation information includes the group identifier, the user equipment activates all the transmission resources in a resource group corresponding to the group identifier. If the activation information includes the group identifier and the set identifier, the user equipment activates one set of transmission resources corresponding to the set identifier within the resource group associated with the group identifier. Embodiments of the present application can use one activation information to activate multiple sets of transmission resources, reducing the overhead of information transmission.

[0047] Exemplarily, the base station configures 8 sets of transmission resources for the user equipment through RRC signaling, sorted by serial number, including transmission resources numbered #1 to #8. The base station divides these 8 sets of transmission resources into 4 groups through Media Access Control Element (MAC CE) signaling or RRC signaling, as shown in Table 1 below.

[0048] Table 1

[0049] Group serial number Resources within the group 1 #1 2 #4 3 #1,#6,#7,#8 4 #1,#2,#3,#5

[0050] At this time, the activation information includes a corresponding bit field for indicating the group identifier, that is, the group serial number in Table 1. For example, 2 bits, 00 indicates the resource group numbered 1; 01 indicates the resource group numbered 2; 10 indicates the resource group numbered 3; 11 indicates the resource group numbered 4. The number of bits of the bit field used in the activation information may satisfy the following condition: the largest integer value that the bit field can represent is greater than or equal to the serial number value of the highest-ranked resource in the resource group. In this way, one activation information can activate all the resources in a group at the same time.

[0051] In addition, the activation information may also use a corresponding bit field to indicate a set of resources activated in the group, that is, the set identifier bit field. For example, Table 1 includes 8 sets of resources, transmission resources numbered #1 to #8. Then the activation information can use 3 bits to represent the set identifier. Among them, the values represented by the 3 bits respectively correspond to the set serial numbers of the same values one by one.

[0052] If DCI signaling is used to transmit activation information, a DCI includes a 2-bit group identifier indication field. For example, 01 indicates that all resources in resource group No. 1 need to be activated. If a DCI stores a 2-bit group identifier indication field and a 3-bit set identifier indication field, for example, 10 and 101, it indicates that a set of transmission resources No. 6 in resource group No. 1 needs to be activated.

[0053] In some embodiments, the method provided by the embodiments of the present application further includes: sending deactivation information of transmission resources to a user equipment, where the deactivation information includes an identifier of the transmission resources to be deactivated, so that the user equipment deactivates the transmission resources using the identifier.

[0054] If the user equipment no longer needs to use the activated transmission resources, the base station may send deactivation information to the user equipment. When the user equipment receives the deactivation information, it deactivates the corresponding transmission resources using the identifier in the deactivation information.

[0055] Among them, if the identifier in the deactivation information only includes a set identifier, the transmission resources corresponding to the set identifier are deactivated. If the identifier in the deactivation information includes a group identifier, all the transmission resources in the resource group corresponding to the group identifier are deactivated. If the identifier in the deactivation information includes a group identifier and a set identifier, the transmission resources corresponding to the set identifier in the resource group corresponding to the group identifier are deactivated. The embodiments of the present application can deactivate multiple sets of transmission resources using one deactivation information.

[0056] In some embodiments, the base station may configure resources and activate resources for the UE using RRC signaling and DCI signaling. Refer to Figure 4 , the embodiments of the present application provide a method for resource configuration and activation, including steps S21 and S22, as follows:

[0057] S21: Send a first indication signaling to the user equipment, where the first indication signaling includes parameter configuration information and grouping information.

[0058] S22: Send activation information to the user equipment, where the activation information includes a group identifier of the transmission resources to be activated, and the group identifier in the activation information is used to activate the transmission resources associated with the group identifier. Among them, the transmission resources associated with the group identifier may be multiple sets of transmission resources in the resource group corresponding to the group identifier. For example, if the group identifier in the activation information is binary "10" and the corresponding decimal value is 3, the user equipment activates all the transmission resources in resource group No. 3.

[0059] In this embodiment, the base station may configure multiple sets of transmission resources for the user equipment through RRC signaling, such as grant-free resources, for data transmission on channels such as the Physical Uplink Share Channel (PUSCH) or the Physical Downlink Share Channel (PDSCH). The multiple sets of transmission resources in the RRC signaling are allocated in multiple resource groups, and each group of resources corresponds to a serial number, representing the group identifier. Among them, the resources in one resource group correspond to a QoS service requirement of the UE. Multiple resource groups can meet multiple QoS service requirements of the UE. One resource group may include one set or multiple sets of transmission resources. If a resource group includes multiple sets of resources, there is an offset between the multiple sets of resources. The offset may include one of a time-domain offset, a frequency-domain offset, and a time-frequency offset. In some embodiments, when a resource group includes multiple sets of resources, the parameters of the multiple sets of resources within the group may be configured independently respectively, or the parameters of other resources within the group may be obtained by extending the parameters of one set of resources. When the base station sends RRC signaling to the user equipment, it may configure the parameter configuration information and grouping information of multiple sets of transmission resources. The grouping information may include the group identifier and at least one set identifier associated with the group identifier. When it is necessary to activate the resources, the base station sends DCI signaling to the user equipment, and the DCI signaling may carry the group identifier, or carry the group identifier and the set identifier. The DCI signaling may use a bit field form to represent specific identifiers. When the user equipment receives the DCI signaling, it activates all the transmission resources or a specified set of transmission resources in the corresponding resource group.

[0060] Among them, if the grouping information includes multiple optional offset methods between multiple sets of transmission resources within the group, the specific offset method between the transmission resources within the group may be indicated by DCI signaling. Alternatively, the DCI signaling may distinguish multiple offset methods through different Radio Network Temporary Identities (RNTIs) and scrambling, and thus may indicate the specific offset method. If the grouping information only includes an offset method for multiple sets of transmission resources within a group, the DCI signaling does not need to indicate the offset method. When the user equipment receives the DCI signaling, while activating multiple sets of transmission resources within the corresponding resource group, it offsets the activated multiple sets of transmission resources according to the offset method indicated by the DCI signaling. Among them, the offset between multiple sets of resources within the group is an offset relative to the first set of resources. The offset method may include one of a time-domain offset, a frequency-domain offset, or a time-frequency domain offset.

[0061] In some embodiments, it is also possible to use MAC CE signaling to select some or all of the multiple group resources configured by RRC signaling, and indicate the offset method between multiple sets of resources within the group. And use DCI signaling to activate multiple sets of transmission resources or one set of transmission resources in the resource group. Refer to Figure 5 , a resource configuration and activation method provided by an embodiment of the present application. This embodiment includes steps S31 to S33, as follows:

[0062] S31: Send a first indication signaling to the user equipment, where the first indication signaling includes parameter configuration information and grouping information.

[0063] S32: Send a second indication signaling to the user equipment, where the second indication signaling includes one of the following: multiple group identifiers of the transmission resources to be activated, multiple group identifiers, and resource groups respectively mapped by the multiple group identifiers. For example, the second indication signaling includes group identifiers G1, G2, and G3. Another example is that the second indication signaling includes group identifiers G1, G2, and G3, and also includes the resource group G5 mapped by the group identifier G1, the resource group G6 mapped by the group identifier G2, and the resource group G7 mapped by the group identifier G3.

[0064] S33: Send activation information to the user equipment, where the activation information includes the group identifier of the transmission resources to be activated in the second indication signaling, and the group identifier in the activation information is used to activate the transmission resources associated with the group identifier. Continuing with the previous example, if the activation information includes the group identifier G1, at this time, the user equipment activates the resource group G5 mapped by the group identifier G1

[0065] In this embodiment, the base station configures multiple sets of transmission resources for the UE through RRC signaling, such as grant-free resources, for data transmission on channels such as uplink PUSCH or PDSCH. Each set of grant-free transmission resources corresponds to a set of independent parameter configuration information, and each set of transmission resources can correspond to a serial number to represent the set identifier. When needed, the base station can configure the previously configured multiple sets of transmission resources into multiple resource groups through RRC signaling. A resource group can include one or more sets of transmission resources. Among them, the same set of resources can be configured into different groups, and an offset is configured among multiple sets of resources within the group. Configure according to the above offset configuration method 1: The offset method can include one of time domain offset, frequency domain offset, or time-frequency domain offset. The offset is relative to the first set of transmission resources within the group. For example, the group includes three sets of resources #1, #2, and #3, and the three sets of resources correspond to an offset. It can be shown as: #1, 2, 3+offset. Or, configure according to the above offset configuration method 2: Each set of resources within the group is configured with an offset, and the offset method can be one of time domain offset, frequency domain offset, or time-frequency domain offset. For example, the group includes three sets of resources #1, #2, and #3, and each of the three sets of resources corresponds to an offset. It can be shown as: #1+offset, #2+offset, #3+offset.

[0066] In some embodiments, the base station can also send the parameter configuration information and grouping information of multiple sets of transmission resources to the user equipment through one RRC signaling at the same time. Among them, the parameter configuration information may or may not include the offset information of each set of resources. If the offset information of the resources is configured for each set of resources when the RRC signaling configures the parameter configuration information of multiple sets of transmission resources, the offset information does not need to be configured in subsequent information indication.

[0067] When needed, the base station can select some or all of the resource groups configured by the RRC signaling through the MAC CE signaling and indicate the offset method among multiple sets of resources within the group. Among them, the MAC CE signaling can establish a new sorting for the selected resource groups, and each resource group includes the corresponding set identifier. Or, the new group identifier of the selected resource group by the MAC CE signaling is mapped to the group identifier of this resource group in the original RRC signaling. The user equipment can save this mapping relationship and, when activating, find the resource group to be activated according to the mapping relationship.

[0068] In some embodiments, when the RRC signaling configures the grouping information, one or more optional offset methods can be configured among multiple sets of resources within the group. If the RRC signaling only configures one offset method, then the corresponding MAC CE signaling or DCI signaling does not need to indicate the offset method. If the RRC signaling configures multiple offset methods, the MAC CE signaling or DCI signaling needs to select one of the offset methods.

[0069] When needed, the base station activates the resource group indicated by the MAC CE through DCI signaling. The DCI contains a bit field for indicating the group identifier, such as a group sequence number or a set sequence number. This group sequence number or set sequence number can be the sequence number indicated by the MAC CE. If this resource group includes multiple sets of resources, the DCI activates multiple sets of resources in this group simultaneously. If the DCI also includes a corresponding bit field for indicating the set identifier of the activated transmission resources in a specific resource group, then a set of transmission resources corresponding to this bit field in this resource group is activated.

[0070] Exemplarily, the base station configures 8 sets of transmission resources for the user equipment through RRC signaling, which can be sorted by sequence number, including transmission resources numbered from #1 to #8. And the 8 sets of transmission resources are grouped into 8 resource groups through RRC signaling, as shown in Table 2 below:

[0071] Table 2

[0072] Group serial number Resources within the group 1 #1 2 #4 3 #1,#6,#7,#8 4 #1,#2,#3,#5 5 #5 6 #6 7 #7 8 #1,#1,#1,#1

[0073] Assume that a 2-bit group identifier indication field is configured in the DCI signaling, and it is required to activate the 5th group or resource groups with a group sequence number greater than 5. At this time, if in the case of the above-divided groups, the base station directly sends DCI, it cannot directly activate the 5th group or resource groups with a group sequence number value greater than 5. For this reason, in this embodiment, the MAC CE signaling can be used to select the resource groups to be activated from the 8 groups of resources configured by the RRC signaling for mapping. Exemplarily, the MAC CE signaling selects the resource groups with the original group sequence numbers 4, 5, 6, and 7 from the 8 groups of resources configured by the RRC, as shown in Table 3 below:

[0074] Table 3

[0075] Group serial number indicated by MAC CE Original group serial number Resources within the group 1 4 #1,#2,#3,#5 2 5 #5 3 6 #7 4 7 #1,#1,#1,#1

[0076] For the case where there is a resource group including multiple sets of transmission resources among the resource groups indicated by the MAC CE signaling, the MAC CE signaling can select or indicate a specific offset method from multiple offset methods configured by the RRC signaling. For example, the RRC configures two optional offset methods: frequency domain offset and time domain offset. The specific offset method used, such as frequency domain offset, is indicated through the MAC CE signaling. If the RRC configures one offset method, the MAC CE signaling does not indicate the specific offset method used.

[0077] At this time, the DCI signaling can adopt a 2-bit group identification indication field to deactivate any one of the resource groups with group numbers 1, 2, 3, and 4 indicated by the MAC CE. Among them, the group numbers indicated by the MAC CE are respectively in one-to-one mapping relationship with the original group numbers 4, 5, 6, and 7 in the order of arrangement. If the group identification indication field included in the DCI signaling is 11, the resource group with the group number 4 indicated in the MAC CE can be activated. The group number 4 indicated by the MAC CE and the original group number 7 are mutually mapped, that is, the resource group with the original number 7 can be activated. Therefore, the embodiments of the present application can modify some of the parameters of the RRC configuration through the MAC CE, thereby reducing the signaling overhead in the activation DCI.

[0078] In some embodiments, the base station can use the three types of signaling, namely RRC signaling, MAC CE signaling, and DCI signaling, for resource configuration and activation. Refer to Figure 6 , the embodiments of the present application provide a method for resource configuration and activation, including steps S41 to S43, as follows:

[0079] S41: Send a first indication signaling to the user equipment, where the first indication signaling includes parameter configuration information.

[0080] S42: Send a second indication signaling to the user equipment, where the second indication signaling includes packet information.

[0081] S43: Send activation information to the user equipment, where the activation information includes the group identification of the transmission resources to be activated, and the group identification in the activation information is used to activate the transmission resources associated with the group identification.

[0082] In this embodiment, the base station configures multiple sets of grant-free transmission resources for the UE through RRC signaling. This grant-free transmission resource is used for channel transmissions such as uplink PUSCH or downlink PDSCH. Among them, each set of grant-free transmission resources corresponds to a set of independent parameter configuration information, and each set of resources can correspond to a serial number to represent the set identification. When needed, the base station configures some or all of these multiple sets of grant-free resources into different resource groups or resource sets through MAC CE signaling. Each resource group or resource set corresponds to a serial number to represent the group identification or set identification.

[0083] If a resource group includes multiple sets of transmission resources, the MAC CE signaling can configure an offset between these multiple sets of transmission resources in the resource group. The embodiments of the present application are not limited to using MAC CE signaling to supplement or modify the information configured by RRC signaling, and RRC signaling can also be used to supplement or modify the information configured by the previous RRC signaling. Among them, the configuration of the offset can be carried out according to the aforementioned configuration method 1 or configuration method 2 of the offset.

[0084] In some embodiments, the base station may configure the offset manner of multiple sets of transmission resources within a group or provide multiple optional offset manners through RRC signaling. Subsequently, according to the offset configuration manner 1, the base station may select one of the multiple offset manners configured in the RRC signaling through MAC CE signaling as the offset manner of the resource group including multiple sets of transmission resources. Alternatively, according to the offset configuration manner 2, the base station may select one offset manner for each set of transmission resources within the resource group from the multiple offset manners configured in the RRC signaling through MAC CE signaling.

[0085] When activation is required, the base station sends DCI signaling to the user equipment, and the signaling includes an indication field of the group identifier. All the transmission resources in the resource group associated with the group identifier can be activated through DCI. The signaling may also include a set identifier, and the user equipment can activate the transmission resources corresponding to the set identifier in the resource group associated with the group identifier.

[0086] Exemplarily, the base station configures 8 sets of resources for the UE through RRC signaling, which are: #1, #2, #3, 4#, 5#, 6#, 7# and 8#. And, through MAC CE signaling, the 8 sets of resources in the RRC signaling are configured into 4 groups, and each group includes one or more set identifiers, as shown in Table 4 below:

[0087] Table 4

[0088] Group serial number Resources within the group 1 #1 2 #4 3 #1,#6,#7,#8 4 #1,#2,#3,#5

[0089] Since the number of resource groups is 4 groups, DCI can set a 2-bit field (2bit) to represent the group identifier. Among them, 00 represents group number 1, 01 represents group number 2, 10 represents group number 3, and 11 represents group number 4. For example, if the group identifier bit field in the DCI signaling is 11, the user equipment activates the resource group with group number 4. Since the configured resources include 8 sets, a 3-bit field (3bit) can be set in the DCI to represent the set identifier. Among them, 000 represents set number 1, 001 represents set number 2, 010 represents set number 3, 011 represents set number 4, 100 represents set number 5, 101 represents set number 6, 110 represents set number 7, and 111 represents set number 8. For example, if the DCI includes a group identifier bit field of 11 and a set identifier bit field of 100, the user equipment activates the 5th set of transmission resources in the 4th group of resource groups.

[0090] In some embodiments, if the set identification bit field in the activation information used to indicate a specific resource group is less than the number of resource sets in the group, the values represented by the set identification bit field correspond one by one in order to the transmission resources sorted in order in the group. For example, the DCI uses 2 bits to represent the set identification. If the DCI indicates to activate the 4th resource group, as shown in Table 4, the 4th resource group includes the transmission resources of #1, #2, #3, and #5, then 00 represents the set number #1 in the 4th resource group, 01 represents the set number #2 in the 4th resource group, 10 represents the set number #3 in the 4th resource group, and 11 represents the set number #5 in the 4th resource group.

[0091] In some embodiments, in addition to the group identification of the transmission resources to be activated, the activation information further includes the set identification of the transmission resources to be activated. Then, after receiving the activation information, the user equipment activates the transmission resources corresponding to the set identification within the resource group associated with the group identification. Therefore, the embodiments of the present application can activate one set of transmission resources or multiple sets of transmission resources in the resource group.

[0092] In some embodiments, the grouping information may include the offset manner of multiple sets of transmission resources within the group, and the activation information includes an indication of the offset manner of multiple sets of transmission resources within the group. The grouping information can be transmitted through a first indication signaling or a second indication instruction. If the offset manner indicated in the first indication signaling or the second indication signaling only includes one type and is unique, the activation information may not need to indicate the specific offset manner. If the offset manner indicated in the first indication signaling or the second indication signaling includes multiple types and is not unique, the activation information needs to indicate one of the offset manners. For example, when grouping through the RRC signaling or the MAC CE signaling, multiple optional offset manners are configured, and then a certain offset manner is indicated by the DCI signaling or the MAC CE signaling. If the RRC signaling only configures one offset manner, both the MAC CE signaling and the DCI signaling may not indicate the offset manner. If the RRC signaling does not configure the offset manner, the offset manner can be directly configured through the MAC CE signaling or the DCI signaling.

[0093] In some embodiments, the second indication signaling sent by the base station to the user equipment may further include a modification indication for modifying parameter configuration information. That is, the parameter configuration information of multiple sets of transmission resources is modified through RRC signaling or MAC CE signaling. For example, parameters such as the period of transmitting data, power control parameters, and the number of retransmission times K. In some scenarios, the RRC signaling configures multiple sets of transmission resources and combinations of multiple sets of transmission resources for the UE. After a period of time, the activated multiple sets of resources do not match the user's service. If the RRC signaling is used to reconfigure the transmission resources at this time, on the one hand, it will increase the additional delay, and on the other hand, it will also bring a large signaling overhead. The parameters configured by the original RRC signaling can be modified through the MAC CE signaling, which can better match the current user's service. Among them, the modification methods may include: in the case of not being grouped, modifying one or more parameters of a set of transmission resources; in the case of resource grouping or subsetting, modifying one or more parameters of a set of transmission resources in a certain resource group (the set corresponding to a certain state), modifying one or more parameters of all transmission resources in a certain resource group (the set corresponding to a certain state), modifying one or more parameters of a set of transmission resources in all resource groups (the set corresponding to a certain state), etc.

[0094] In some embodiments, if some parameters in the parameter configuration information configured by the RRC signaling are not configured, they can be configured through the MAC CE signaling. For example, if the RRC signaling configures multiple sets of transmission resources but does not configure the offset method between multiple sets of transmission resources within the group, the offset method between multiple sets of transmission resources within the group can be configured through the MAC CE signaling according to the aforementioned configuration method 1 or configuration method 2 of the offset.

[0095] In some embodiments, if the RRC signaling configuration requires activating a large number of resource state information and there is not enough bit field in the activation signaling to match the state information corresponding to the RRC configuration, the MAC CE can be used to select some states from the multiple states configured by the RRC and indicate them to the user, and the activation signaling activates the partial resource state information selected by the MAC CE.

[0096] In some embodiments, if the base station sends packet information to the user equipment through RRC signaling or MAC CE signaling, the packet information includes at least one resource group, and the resource group includes the parameter configuration information of a set of transmission resources, the number of extended resource sets, and the offset method for extending the transmission resources. When the user equipment knows that the resource group includes the information of the number of extended resource sets, it can perform bit-by-bit offset on a set of transmission resources within the group according to the offset method of the resource group until the number of sets of transmission resources extended within the group meets the number of extended resource sets. The parameter configurations of the multiple sets of transmission resources in this resource group after extension are the same, but there is an offset between different sets of transmission resources.

[0097] In some embodiments, the base station sends parameter configuration information of resources to the user equipment through RRC signaling. The parameter configuration information of each set of resources includes a set identifier. The parameter configuration information of the resources includes the number N of extended resource sets and the offset mode for extended resources. The resource location of the first set of resources is indicated by activation signaling, and the subsequent N-1 sets of resources are respectively offset relative to the first set. The offset configuration can be the offset configuration mode 1 described above.

[0098] In some embodiments, the base station sends parameter configuration information of resources to the user equipment through RRC signaling. The parameter configuration information of each set of resources includes a set identifier. The parameter configuration information of the resources includes multiple offset modes. After receiving the activation signaling, the user equipment offsets the set of resources according to the indicated multiple offset modes, that is, the configured set of information has multiple starting points of time / frequency domain resources that are the same or different.

[0099] In some embodiments, the base station sends parameter configuration information of resources to the user equipment through RRC signaling. The parameter configuration information of each set of resources includes a set identifier. The parameter configuration information of the resources includes an offset mode and the number N of offsets. After receiving the activation signaling, the user equipment offsets the set of resources according to the offset configuration mode 2 described above, that is, the configured set of information has N+1 starting points of time / frequency domain resources that are the same or different.

[0100] In some embodiments, if the RRC signaling configures multiple sets of transmission resources but does not configure the number N of extended resource sets and the offset mode, the number N of extended resource sets and the offset mode can be configured through MAC CE signaling. The user equipment extends each of these multiple sets of transmission resources into multiple resource groups.

[0101] In some embodiments, the above-mentioned configuration information sent to the user equipment may further include status information. The status information includes multiple statuses and at least one set of transmission resources or at least one resource group associated with each status.

[0102] In some embodiments, the status information may further include an offset mode corresponding to each set of transmission resources or each set of resource groups associated with the same status, or an offset mode shared by all transmission resources associated with the same status.

[0103] In some embodiments, the embodiments of the present application may send status information through a first indication instruction or a second indication instruction. One implementation may be as follows: Send a first indication instruction or a second indication instruction to a user equipment. The first indication instruction includes parameter configuration information, and the second indication instruction includes status information. Thus, when sending activation information of transmission resources to the user equipment, the activation information may include a status identifier of the transmission resources to be activated. The status identifier is used to activate the transmission resources corresponding to this status identifier. Specifically, the user equipment may use the status identifier to activate the transmission resources related to the status identifier. The transmission resources related to the status identifier may include: one or more sets of transmission resources related to the status identifier, or one or more groups of transmission resources related to the status identifier.

[0104] The following describes the resource configuration and activation process related to status information:

[0105] The base station may configure multiple sets of transmission resources for the user equipment through RRC signaling. For example: #1, #2, #3, and #4. When configuring multiple sets of transmission resources, the status of each set of resources may also be set. One set of resources may include one or more statuses. Or subsequently, indicate multiple statuses for the originally configured multiple sets of transmission resources through RRC signaling or MAC CE signaling. Similarly, the offset mode of the transmission resources may be configured through RRC signaling or MAC CE signaling. If the RRC signaling does not configure the offset mode for the multiple sets of transmission resources, the MAC CE signaling may be used for configuration.

[0106] Combined with the above description, it can be seen that the set in each status includes one or more sets of resources. Each set of resources within the set may correspond to one offset mode or all resources within the set correspond to one offset mode. Among them, the offset modes corresponding to each set of resources within the set may be the same or different. As shown in Table 5 and Table 6:

[0107] Table 5

[0108] Status Resource configuration 1 0 #1+offset1, #1+offset2, #2+offset1, #2+offset2 1 #2+offset2; 2 #3+offset1; #3+offset3 3 ……

[0109] Table 6

[0110] Status Resource configuration 2 0 #1, #2, #3, #4; +offset1 1 #1; +offset1 2 #2; +offset2 3 #3, #4; +offset4

[0111] Among them, offset1, 2, 3, 4 represent offset modes, and these three may be equal or not equal.

[0112] In some embodiments, multiple sets of transmission resources are configured for a user equipment via RRC signaling. Each set includes one or more sets of transmission resources, such as #G1, #G2, #G3, and #G4. The offset manner between resources within a set may or may not be configured. If the offset manner between resources within a set is not configured, it may be configured via MAC CE signaling. Similar to the manner of setting one or more states for each set of resources, one or more states may also be set for each group of resources. That is, the set in each state includes at least one resource group. Each group of resources within the set may correspond to one offset manner or all resource groups within the set correspond to one offset manner. Among them, the offset manners corresponding to each set of resources within the set may be the same or different. As shown in Table 7 and Table 8 below:

[0113] Table 7

[0114] Status Resource configuration 1 0 #G1+offset1, #G1+offset2, #G2+offset1, #G2+offset2 1 #G2+offset2; 2 #G3+offset1, #G3+offset3 3 ……

[0115] Table 8

[0116] Status Resource configuration 2 0 #G1, #G2, #G3, #G4; +offset1 1 #G1; +offset1 2 #G2; +offset2 3 #G3, #G4; +offset4

[0117] Thus, in the case where multiple resource groups are configured for the user equipment via RRC signaling, the states of each resource group may further be set via MAC CE signaling to recombine multiple groups of resources. In the activation information, multiple resource groups within the set of state "0" may be activated through a state identifier, such as state "0", for example, the resource groups of #G1, #G2, #G3, and #G4 included in Table 7 and Table 8 above.

[0118] See Figure 7 , an embodiment of the present application provides a method for resource configuration, which may be applied to a user equipment and includes steps S210 to S230 as follows:

[0119] S210: Receive the configuration information of transmission resources sent by a base station. The configuration information includes the parameter configuration information of multiple sets of transmission resources allocated for the user equipment.

[0120] S220: Receive the activation information of transmission resources sent by the base station. The activation information includes the identifier of the transmission resources to be activated.

[0121] S230: Activate the transmission resources using the identifier.

[0122] In some embodiments, the configuration information further includes grouping information, and the grouping information includes multiple resource groups combined by multiple sets of transmission resources. Each resource group includes at least one set of transmission resources.

[0123] In some embodiments, the configuration information further includes the set identifier information of multiple sets of transmission resources, and the identifier includes a set identifier.

[0124] In some embodiments, the method for resource allocation provided by the embodiments of the present application, which is applied to a user equipment, further includes: receiving deactivation information of transmission resources sent by a base station, where the deactivation information includes an identifier of the transmission resources to be deactivated; and deactivating the transmission resources according to the identifier.

[0125] In some embodiments, the identifier included in the activation information or the deactivation information may include at least one of a set identifier and a group identifier.

[0126] In some embodiments, the configuration information includes parameter configuration information and grouping information of multiple sets of transmission resources. The above step S210 may include: receiving a first indication signaling sent by the base station, where the first indication signaling includes the parameter configuration information and the grouping information. The user equipment may receive the parameter configuration information and the grouping information through a combination of RRC signaling and MAC CE signaling.

[0127] In some embodiments, the user equipment receives activation information sent by the base station, where the activation information includes a group identifier of the transmission resources to be activated. The user equipment activates the transmission resources associated with the group identifier by using the group identifier. The user equipment may receive the activation information through DCI signaling.

[0128] In some embodiments, before activation, the user equipment may also select some or all of the resource groups from multiple configured resource groups through a second indication signaling to facilitate subsequent activation. The method provided in this embodiment further includes: receiving a second indication signaling sent by the base station, where the second indication signaling includes one of the following two items: multiple group identifiers of the transmission resources to be activated, and the multiple group identifiers and the resource groups respectively mapped by the multiple group identifiers; receiving activation information sent by the base station, where the activation information includes the group identifier of the transmission resources to be activated in the second indication signaling; and activating the transmission resources associated with the group identifier by using the group identifier.

[0129] In some embodiments, the user equipment may first receive the parameter configuration information and then receive the corresponding grouping information. Therefore, the above step S210 may include: receiving a first indication signaling sent by the base station, where the first indication signaling includes the parameter configuration information; and receiving a second indication signaling sent by the base station, where the second indication signaling includes the grouping information. Specifically, the parameter configuration information of multiple sets of transmission resources is received through RRC signaling, and the grouping information of these multiple sets of transmission resources is received through MAC CE. The grouping information may include an offset method.

[0130] Further, the user equipment may receive activation information sent by the base station, where the activation information includes a group identifier of the transmission resources to be activated, and activate the transmission resources associated with the group identifier by using the group identifier.

[0131] In some embodiments, when the user equipment has configured multiple resource groups, the activation information includes, in addition to the group identifier, the set identifier of the transmission resources to be activated. In this way, the user equipment activates the transmission resources corresponding to the set identifier within the resource group associated with the group identifier.

[0132] In some embodiments, the packet information received by the user equipment may include the offset method of multiple sets of transmission resources within the group.

[0133] In some embodiments, the activation information received by the user equipment may include an indication of the offset method of multiple sets of transmission resources within the group.

[0134] In some embodiments, the second indication signaling received by the user equipment may further include a modification indication for modifying the parameter configuration information. Then, the user equipment may modify the parameter configuration information according to the modification indication in the second indication signaling.

[0135] In some embodiments, the packet information received by the user equipment includes at least one resource group, and the resource group includes the parameter configuration information of a set of transmission resources, the extended resource set number, and the offset method for extending the transmission resources. The user equipment may perform resource extension based on the information included in the resource group, so that the resource group may include multiple sets of transmission resources. Specifically, the method applied to the user equipment in the embodiments of the present application further includes:

[0136] Extend the transmission resources included in the resource group according to the offset method in the resource group until the number of extended resource sets within the group meets the extended resource set number.

[0137] In some embodiments, the parameter configuration information further includes the extended resource set number and the offset method for extending the transmission resources.

[0138] The method proposed in the embodiments of the present application may be applied to the user equipment. The transmission relationship of the parameter configuration information, packet information, and activation information between the base station and the user equipment has been introduced in the above embodiments and will not be elaborated here.

[0139] In some embodiments, while activating the transmission resources using the group identifier, the user equipment may also select a set of transmission resources from the resource groups to be activated according to the requirements of the UE. Refer to Figure 8 , the method applied to the user equipment in the embodiments of the present application may further include:

[0140] S51, select a set of transmission resources from the activated multiple sets of transmission resources.

[0141] S52, transmit data using the selected transmission resources.

[0142] In some embodiments, the selected criteria may include one of a set of transmission resources with the minimum alignment delay among multiple sets of transmission resources, or a set of transmission resources that can ensure the configured number of repeated transmissions and has the minimum alignment delay among multiple sets of transmission resources. The alignment delay is the waiting delay between the arrival of a service and the time when the service can be transmitted.

[0143] In some embodiments, the configuration information further includes status information, and the status information includes multiple statuses and at least one set of transmission resources or at least one resource group associated with each status.

[0144] In some embodiments, for the user equipment to receive the configuration information of the transmission resources sent by the base station, it may include: receiving a first indication instruction and a second indication instruction sent by the user equipment, where the first indication instruction includes parameter configuration information and the second indication instruction includes status information;

[0145] For the user equipment to receive the activation information of the transmission resources sent by the base station, it may include: receiving the activation information of the transmission resources sent by the base station, where the activation information includes the status identifier of the transmission resources to be activated; and activating the transmission resources associated with the status identifier using the status identifier.

[0146] In some embodiments, the status information further includes an offset method corresponding to each element associated with the status, or an offset method shared by all the transmission resources associated with the status, and this element includes transmission resources or each set of resource groups.

[0147] See Figures 9-1 to 9-4 , which is a schematic flowchart of the interaction process between the base station and the user equipment provided by the embodiments of this application. The following only exemplarily describes the interaction processes of these several embodiments.

[0148] See Figure 9-1 , this embodiment uses RRC signaling and DCI signaling for interaction, including the following steps:

[0149] S310: The base station sends RRC signaling to the user equipment, and the RRC signaling includes parameter configuration information and packet information. The user equipment receives the RRC signaling and obtains from it the parameter configuration information of multiple sets of transmission resources that it can prepare to use and the packet information of these multiple sets of transmission resources. The packet information may include the offset methods between multiple sets of resources that can be selected within a group.

[0150] S320: The base station sends DCI signaling to the user equipment, and the DCI signaling includes a group identifier, or the DCI signaling includes a group identifier and a set identifier. The DCI signaling may indicate a specific offset method. If the RRC does not configure an offset method, the DCI can directly configure the offset method. If the RRC only includes one offset method, the DCI may not indicate a specific offset method.

[0151] S330: The user equipment activates corresponding transmission resources according to the identifiers included in the DCI signaling. If the DCI signaling only includes a group identifier, all the transmission resources in the resource group associated with the group identifier are activated. If the DCI signaling includes a group identifier and a set identifier, a set of transmission resources corresponding to the set identifier in the resource group associated with the group identifier is activated.

[0152] See Figure 9-2 , in this embodiment, RRC signaling and DCI signaling are used for interaction, including the following steps:

[0153] S410: The base station sends RRC signaling to the user equipment. The RRC signaling includes parameter configuration information of multiple sets of transmission resources and set identifier information of these multiple sets of transmission resources. The user equipment receives the RRC signaling and obtains from it the parameter configuration information and set identifier information of multiple sets of transmission resources that it can prepare to use.

[0154] S420: The base station sends DCI signaling to the user equipment. The DCI signaling includes a set identifier.

[0155] S430: The user equipment determines the corresponding transmission resources from the set identifier information according to the set identifier, and activates this transmission resource according to the parameter configuration information of the transmission resource.

[0156] See Figure 9-3 , in this embodiment, RRC signaling, MAC CE, and DCI signaling are used for interaction, including the following steps:

[0157] S510: The base station sends RRC signaling to the user equipment. The RRC signaling includes parameter configuration information of multiple sets of transmission resources and grouping information. The user equipment receives the RRC signaling and obtains from it the parameter configuration information of multiple sets of transmission resources that it can prepare to use and the grouping information of these multiple sets of transmission resources. The grouping information may include multiple offset methods between multiple sets of resources within a group that can be selected.

[0158] S520: The base station sends MAC CE signaling to the user equipment. The MAC CE signaling includes at least one group identifier of the transmission resources to be activated and the resource group configured in the RRC signaling mapped by this group identifier. The MAC CE signaling may indicate a specific offset method. If the RRC does not configure an offset method, the MAC CE signaling may directly configure an offset method. If the RRC only includes one offset method, the MAC CE may not indicate a specific offset method.

[0159] S530: The user equipment maps and identifies the resource group configured in the RRC signaling according to the MAC CE signaling, and determines the resource group indicated by the MAC CE signaling.

[0160] S540: The base station sends DCI signaling to the user equipment. The DCI signaling includes a group identifier, or the DCI signaling includes a group identifier and a set identifier. This group identifier is the identifier included in the MAC CE signaling.

[0161] S550: The user equipment activates the transmission resources in the corresponding resource group indicated in the MAC CE signaling according to the identifier of the DCI information. If the DCI also includes a set identifier, a set of transmission resources corresponding to the set identifier in this resource group is activated. If the activated resource group includes multiple sets of transmission resources, the multiple sets of transmission resources of this resource are offset according to the corresponding offset method indicated in the MAC CE signaling or an offset method configured by the RRC.

[0162] See Figure 9-4 , this embodiment uses RRC signaling, MAC CE signaling, and DCI signaling for interaction, including the following steps:

[0163] S610: The base station sends RRC signaling to the user equipment. The RRC signaling includes parameter configuration information of multiple sets of transmission resources.

[0164] S620: The base station sends MAC CE signaling to the user equipment. The MAC CE signaling includes the grouping information of multiple sets of transmission resources in the RRC signaling. For example, a group identifier and a set identifier associated with the group identifier. And, the grouping information may include the offset method of each resource group including multiple sets of resources.

[0165] S630: The base station sends DCI signaling to the user equipment. The DCI signaling includes a group identifier, or the DCI signaling includes a group identifier and a set identifier.

[0166] S640: The user equipment activates the corresponding transmission resources according to the DCI signaling. If the DCI signaling only includes a group identifier, all the transmission resources in the resource group associated with the group identifier are activated. If the DCI signaling includes a group identifier and a set identifier, a set of transmission resources corresponding to the set identifier in the resource group associated with the group identifier is activated. If the activated resource group includes multiple sets of transmission resources, the multiple sets of transmission resources of this resource are offset according to the corresponding offset method configured in the MAC CE signaling.

[0167] See Figure 10 , a schematic structural diagram of an embodiment of the resource configuration device provided by the embodiment of the present application includes:

[0168] The first sending module 110 is used to send configuration information of transmission resources to the user equipment, and the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the user equipment;

[0169] A second sending module 120, configured to send activation information of transmission resources to the user equipment, where the activation information includes an identifier of the transmission resources to be activated, and the identifier of the activated transmission resources is used to activate the transmission resources.

[0170] In some embodiments, the configuration information further includes grouping information, the grouping information includes a plurality of resource groups in the combination of multiple sets of transmission resources, each resource group includes at least one set of transmission resources, each resource group has a group identifier, and each set of transmission resources has a set identifier.

[0171] In some embodiments, the configuration information further includes set identifier information of the multiple sets of transmission resources, and the identifier includes a set identifier.

[0172] In some embodiments, the apparatus further includes:

[0173] A third sending module 130, configured to send deactivation information of transmission resources to the user equipment, where the deactivation information includes an identifier of the transmission resources to be deactivated, and the identifier of the deactivated transmission resources is used to deactivate the transmission resources.

[0174] In some embodiments, the identifier includes at least one of a set identifier and a group identifier.

[0175] In some embodiments, the first sending module includes:

[0176] A first signaling sending unit, configured to send a first indication signaling to the user equipment, where the first indication signaling includes the parameter configuration information and the grouping information.

[0177] In some embodiments, the first sending module further includes:

[0178] A second signaling sending unit, configured to send a second indication signaling to the user equipment, where the second indication signaling includes one of the following two items: multiple group identifiers of the transmission resources to be activated, and multiple group identifiers and the resource groups respectively mapped by the multiple group identifiers; and

[0179] The second sending module includes:

[0180] An activation information sending unit, configured to send activation information to the user equipment, where the activation information includes the group identifier of the transmission resources to be activated in the second indication signaling, and the group identifier of the activated transmission resources is used to activate the transmission resources associated with the group identifier.

[0181] In some embodiments, the first sending module includes:

[0182] A first signaling sending unit, configured to send a first indication signaling to the user equipment, where the first indication signaling includes the parameter configuration information;

[0183] A second signaling sending unit, configured to send a second indication signaling to the user equipment, where the second indication signaling includes the packet information.

[0184] In some embodiments, the second sending module includes:

[0185] An activation information sending unit, configured to send activation information to the user equipment, where the activation information includes a group identifier of transmission resources to be activated, and the group identifier of the activated transmission resources is used to activate the transmission resources associated with the group identifier.

[0186] In some embodiments, the activation information further includes a set identifier of transmission resources to be activated, and the set identifier of the activated transmission resources is used to activate the transmission resources corresponding to the set identifier within the resource group associated with the group identifier.

[0187] In some embodiments, the packet information includes an offset manner of multiple sets of transmission resources within a group.

[0188] In some embodiments, the activation information includes an indication of the offset manner of multiple sets of transmission resources within a group.

[0189] In some embodiments, the second indication signaling includes a modification indication for modifying the parameter configuration information.

[0190] In some embodiments, the packet information includes at least one resource group, and the resource group includes parameter configuration information of a set of the transmission resources, an extended resource set number, and an offset manner for extending the transmission resources.

[0191] In some embodiments, the configuration information further includes an extended resource set number and an offset manner for extending the transmission resources.

[0192] In some embodiments, the configuration information further includes status information, and the status information includes multiple statuses and at least one set of transmission resources associated with each status.

[0193] In some embodiments, the configuration information further includes status information, and the status information includes multiple statuses and at least one resource group associated with each status.

[0194] In some embodiments, the status information further includes an offset manner corresponding to each element associated with the status, or an offset manner shared by all transmission resources associated with the status, and the elements include transmission resources or resource groups.

[0195] In some embodiments, the first sending module includes:

[0196] An instruction sending unit, configured to send a first indication instruction and a second indication instruction to the user equipment, where the first indication instruction includes the parameter configuration information, and the second indication instruction includes the status information; and

[0197] The second sending module includes:

[0198] An activation information sending unit, configured to send activation information of a transmission resource to the user equipment, where the activation information includes a status identifier of the transmission resource to be activated, and the status identifier of the activated transmission resource is used to activate the transmission resource associated with the status identifier.

[0199] This embodiment can be applied to a base station. The transmission relationship of the configuration information and the activation information in this embodiment is the same as the content introduced above, and will not be elaborated here.

[0200] See Figure 11 , a schematic structural diagram of an embodiment of a resource configuration device provided by an embodiment of the present application, including:

[0201] A first receiving module 210, configured to receive configuration information of a transmission resource sent by a base station, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the user equipment;

[0202] A second receiving module 220, configured to receive activation information of a transmission resource sent by a base station, where the activation information includes an identifier of the transmission resource to be activated; and

[0203] An activation module 230, configured to activate the transmission resource by using the identifier.

[0204] In some embodiments, the configuration information further includes grouping information, where the grouping information includes multiple resource groups combined by the multiple sets of transmission resources, each resource group includes at least one set of transmission resources, the resource group has a group identifier, and the transmission resource has a set identifier.

[0205] In some embodiments, the configuration information further includes set identifier information of the multiple sets of transmission resources, and the identifier includes a set identifier.

[0206] In some embodiments, the device further includes:

[0207] A third receiving module 240, configured to receive deactivation information of a transmission resource sent by the base station, where the deactivation information includes an identifier of the transmission resource to be deactivated;

[0208] A deactivation module 250, configured to deactivate the transmission resource according to the identifier.

[0209] In some embodiments, the identifier includes at least one of a set identifier and a group identifier.

[0210] In some embodiments, the first receiving module includes:

[0211] A first signaling receiving unit, configured to receive a first indication signaling sent by the base station, where the first indication signaling includes the parameter configuration information and the packet information.

[0212] In some embodiments, the first receiving module further includes:

[0213] A second signaling receiving unit, configured to receive a second indication signaling sent by the base station, where the second indication signaling includes one of the following two items: multiple group identifiers of transmission resources to be activated, and multiple group identifiers and resource groups respectively mapped by the multiple group identifiers;

[0214] The second receiving module includes:

[0215] An activation information receiving unit, configured to receive activation information sent by the base station, where the activation information includes the group identifier of the transmission resources to be activated in the second indication signaling; and

[0216] The activation module includes:

[0217] A first activation unit, configured to activate the transmission resources associated with the group identifier by using the group identifier.

[0218] In some embodiments, the first receiving module includes:

[0219] A first signaling receiving unit, configured to receive a first indication signaling sent by the base station, where the first indication signaling includes the parameter configuration information;

[0220] A second signaling receiving unit, configured to receive a second indication signaling sent by the base station, where the second indication signaling includes the packet information.

[0221] In some embodiments, the second receiving module includes:

[0222] An activation information receiving unit, configured to receive activation information sent by the base station, where the activation information includes the group identifier of the transmission resources to be activated; and

[0223] The activation module includes:

[0224] A second activation unit, configured to activate the transmission resources associated with the group identifier by using the group identifier.

[0225] In some embodiments, the activation information further includes a set identifier of the transmission resources to be activated, and the activation module includes:

[0226] A third activation unit, configured to activate the transmission resources corresponding to the set identifier within the resource group associated with the group identifier.

[0227] In some embodiments, the grouping information includes an offset manner of multiple sets of transmission resources within the group.

[0228] In some embodiments, the activation information includes an offset manner indication of multiple sets of transmission resources within the group.

[0229] In some embodiments, the second signaling includes a modification indication for modifying the parameter configuration information, and the device further includes:

[0230] A parameter modification module, configured to modify the parameter configuration information according to the modification indication in the second signaling.

[0231] In some embodiments, the grouping information includes at least one resource group, the resource group includes parameter configuration information of a set of the transmission resources, an extended resource set number, and an offset manner for extending the transmission resources, and the device further includes:

[0232] A resource extension module, configured to extend the transmission resources included in the resource group according to the offset manner in the resource group until the number of extended resource sets within the group meets the extended resource set number.

[0233] In some embodiments, the parameter configuration information further includes an extended resource set number and an offset manner for extending the transmission resources, so that the device further includes:

[0234] A resource extension module, configured to extend the transmission resources corresponding to the set identifier in the activation information according to the offset manner until the number of extended resource sets meets the extended resource set number.

[0235] In some embodiments, the device further includes:

[0236] A resource selection module, configured to select a set of transmission resources from the multiple sets of activated transmission resources after activating the transmission resources by using the group identifier; and

[0237] A data transmission module, configured to transmit data by using the selected transmission resources.

[0238] In some embodiments, the selected transmission resource includes a set with the smallest alignment delay among the multiple sets of transmission resources.

[0239] In some embodiments, the selected transmission resource includes a set of the multiple sets of transmission resources that can ensure the configured number of repeated transmissions and has the minimum alignment delay.

[0240] In some embodiments, the configuration information further includes status information, and the status information includes multiple statuses and at least one set of transmission resources associated with each status.

[0241] In some embodiments, the configuration information further includes status information, and the status information includes multiple statuses and at least one resource group associated with each status.

[0242] In some embodiments, the first receiving module includes:

[0243] An instruction receiving unit, configured to receive a first indication instruction and a second indication instruction sent by the user equipment, where the first indication instruction includes the parameter configuration information, and the second indication instruction includes the status information;

[0244] The second receiving module includes:

[0245] An activation information receiving unit, configured to receive activation information of the transmission resource sent by the base station, where the activation information includes a status identifier of the transmission resource to be activated;

[0246] Activate the transmission resource associated with the status identifier by using the status identifier.

[0247] In some embodiments, the status information further includes an offset method corresponding to each element associated with the status, or an offset method shared by all transmission resources associated with the status, where the elements include transmission resources or resource groups.

[0248] This embodiment can be applied to a user equipment. The transmission relationship of the configuration information and the activation information in this embodiment is the same as the content introduced above, and will not be elaborated here.

[0249] Figure 12 Schematic diagram of the base station structure for resource configuration according to an embodiment of the present application, as Figure 12 shown, the base station 70 provided in the embodiment of the present application includes: a memory 703 and a processor 704. The base station 70 may further include an interface 701 and a bus 702. The interface 701, the memory 703, and the processor 704 are connected through the bus 702. The memory 803 is used to store instructions. The processor 704 is configured to read the instructions to execute the technical solutions of the method embodiments applied to the base station, and its implementation principle and technical effects are similar, and will not be elaborated here.

[0250] Figure 13 Schematic diagram of the user equipment structure for resource configuration according to an embodiment of the present application, asFigure 13 As shown, the user equipment 80 provided in the embodiment of the present application includes: a memory 803 and a processor 804. The UE 80 may further include an interface 801 and a bus 802. The interface 801, the memory 803 and the processor 804 are connected through the bus 802. The memory 803 is used to store instructions. The processor 804 is configured to read the instructions to execute the technical solutions of the method embodiments applied to the UE as described above. The implementation principle and technical effects are similar and will not be elaborated here.

[0251] Figure 14 It is a schematic structural diagram of the communication system according to the embodiment of the present application. As Figure 14 shown, the system includes: the user equipment 80 as described in the above embodiment, and the base station 70 as described in the above embodiment.

[0252] The present application provides a storage medium that stores a computer program, and when the computer program is executed by a processor, it implements the method in the above embodiment.

[0253] Those skilled in the art should understand that the term user terminal covers any suitable type of wireless user equipment, such as a mobile phone, a portable data processing device, a portable web browser, or a vehicle-mounted mobile station.

[0254] Generally speaking, various embodiments of the present application can be implemented in hardware or dedicated circuits, software, logic, or any combination thereof. For example, some aspects can be implemented in hardware, while other aspects can be implemented in firmware or software that can be executed by a controller, a microprocessor, or other computing devices, although the present application is not limited thereto.

[0255] The embodiments of the present application can be implemented by a data processor of a mobile device executing computer program instructions, for example, in a processor entity, or by hardware, or by a combination of software and hardware. The computer program instructions can be assembly instructions, instruction set architecture (ISA) instructions, machine instructions, machine-related instructions, microcode, firmware instructions, status setting data, or source code or object code written in any combination of one or more programming languages.

[0256] Any block diagram of a logical process in the accompanying drawings of the present application may represent program steps, or may represent interconnected logical circuits, modules and functions, or may represent a combination of program steps and logical circuits, modules and functions. A computer program may be stored in a memory. The memory may be of any type suitable for the local technical environment and may be implemented using any suitable data storage technology, such as but not limited to read-only memory (ROM), random access memory (RAM), optical memory devices and systems (Digital Versatile Disc DVD or CD-ROM), etc. The computer-readable medium may include a non-transitory storage medium. The data processor may be of any type suitable for the local technical environment, such as but not limited to general-purpose computers, special-purpose computers, microprocessors, digital signal processors (DSPs), application-specific integrated circuits (ASICs), field-programmable gate arrays (FPGAs), and processors based on multi-core processor architectures.

[0257] By way of illustrative and non-limiting examples, a detailed description of exemplary embodiments of the present application has been provided above. However, various modifications and adaptations of the above embodiments will be apparent to those skilled in the art when considered in conjunction with the accompanying drawings and the claims, without departing from the scope of the invention. Accordingly, the proper scope of the invention will be determined in accordance with the claims.

Claims

1. A method for resource allocation, characterized in that, Including: Sending configuration information of transmission resources to a receiving side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the receiving side; Sending activation information of transmission resources to the receiving side, where the activation information includes identifiers of the transmission resources to be activated, and the identifiers of the activated transmission resources are used to activate the transmission resources; The configuration information further includes grouping information, where the grouping information includes multiple resource groups combined by the multiple sets of transmission resources, each resource group includes at least one set of transmission resources, each resource group has a group identifier, and each set of transmission resources has a set identifier; wherein, each set of grant-free transmission resources corresponds to a set of independent parameter configuration information, and each set of resources corresponds to a serial number to represent the set identifier; The configuration information further includes status information, where the status information includes multiple statuses and at least one set of transmission resources related to each status, or includes multiple statuses and at least one resource group related to each status; The status information further includes an offset mode corresponding to each element related to the status, or an offset mode shared by all transmission resources related to the status, and the elements include transmission resources or resource groups.

2. The method according to claim 1, wherein The method further includes: Sending deactivation information of transmission resources to the receiving side, where the deactivation information includes identifiers of the transmission resources to be deactivated, and the identifiers of the deactivated transmission resources are used to deactivate the transmission resources.

3. The method according to claim 1, characterized in that, The identifier of the transmission resources includes at least one of a set identifier and a group identifier.

4. The method according to claim 1, wherein Sending configuration information of transmission resources to a receiving side, including: Sending a first indication signaling to the receiving side, where the first indication signaling includes the parameter configuration information and the grouping information.

5. The method according to claim 4, wherein The method further includes: Sending a second indication signaling to the receiving side, where the second indication signaling includes one of the following two items: multiple group identifiers of the transmission resources to be activated, and multiple group identifiers and the resource groups respectively mapped by the multiple group identifiers; and Sending activation information of transmission resources to the receiving side, including: Sending activation information to the receiving side, where the activation information includes the group identifiers of the transmission resources to be activated in the second indication signaling, and the group identifiers of the activated transmission resources are used to activate the transmission resources associated with the group identifiers.

6. The method according to claim 1, characterized in that, Sending configuration information of transmission resources to a receiving side, including: Sending a first indication signaling to the receiving side, where the first indication signaling includes the parameter configuration information; Sending a second indication signaling to the receiving side, where the second indication signaling includes the grouping information.

7. The method according to claim 4 or 6, characterized in that, Sending activation information of transmission resources to the receiving side, including: Sending activation information to the receiving side, where the activation information includes the group identifiers of the transmission resources to be activated, and the group identifiers of the activated transmission resources are used to activate the transmission resources associated with the group identifiers.

8. The method according to claim 7, wherein The activation information further includes the set identifiers of the transmission resources to be activated, and the set identifiers of the activated transmission resources are used to activate the transmission resources corresponding to the set identifiers within the resource group associated with the group identifier.

9. The method according to claim 1, wherein The grouping information includes the offset mode of multiple sets of transmission resources within the group.

10. The method according to claim 1, characterized in that, The activation information includes an indication of the offset mode of multiple sets of transmission resources within a group.

11. The method according to claim 5 or 6, characterized in that, The second indication signaling includes a modification indication for modifying the parameter configuration information.

12. The method according to claim 1, characterized in that, The packet information includes at least one resource group, and the resource group includes parameter configuration information of a set of the transmission resources, the number of extended resource sets, and an offset mode for extending the transmission resources.

13. The method according to claim 1, wherein the parameter configuration information further includes the number of extended resource sets and an offset mode for extending the transmission resources.

14. The method according to claim 1, characterized in that Sending configuration information of transmission resources to the receiving side, including: Sending a first indication instruction and a second indication instruction to the receiving side, the first indication instruction includes the parameter configuration information, and the second indication instruction includes the status information; and Sending activation information of transmission resources to the receiving side, including: Sending activation information of transmission resources to the receiving side, the activation information includes a status identifier of the transmission resources to be activated, and the status identifier of the activated transmission resources is used to activate the transmission resources associated with the status identifier.

15. A method for resource allocation, characterized in that, Including: Receiving configuration information of transmission resources sent by the transmitting side, the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the receiving side; Receiving activation information of transmission resources sent by the transmitting side, the activation information includes an identifier of the transmission resources to be activated; And Activating the transmission resources using the identifier; The configuration information further includes packet information, the packet information includes multiple resource groups combined by the multiple sets of transmission resources, the resource group includes at least one set of transmission resources, the resource group has a group identifier, and the transmission resources have a set identifier; wherein, each set of grant-free transmission resources corresponds to a set of independent parameter configuration information, and each set of resources corresponds to a serial number to represent the set identifier; The configuration information further includes status information, the status information includes multiple statuses and at least one set of transmission resources related to each status, or includes multiple statuses and at least one resource group related to each status; The status information further includes an offset mode corresponding to each element related to the status, or an offset mode shared by all transmission resources related to the status, and the elements include transmission resources or resource groups.

16. The method according to claim 15, wherein The method further includes: Receiving deactivation information of transmission resources sent by the transmitting side, the deactivation information includes an identifier of the transmission resources to be deactivated; Deactivating the transmission resources according to the identifier.

17. The method according to claim 15, wherein The identifier includes at least one of a set identifier and a group identifier.

18. The method according to claim 15, characterized in that, Receiving configuration information of transmission resources sent by the transmitting side, including: Receiving a first indication signaling sent by the transmitting side, the first indication signaling includes the parameter configuration information and the packet information.

19. The method according to claim 18, wherein The method further includes: Receiving a second indication signaling sent by the transmitting side, the second indication signaling includes one of the following two items: multiple group identifiers of the transmission resources to be activated, multiple group identifiers and resource groups respectively mapped by the multiple group identifiers; Receiving activation information of transmission resources sent by the transmitting side, including: Receive the activation information sent by the transmitting side, where the activation information includes the group identifier of the transmission resources to be activated in the second indication signaling; and Activate the transmission resources using the identifier, including: Activate the transmission resources associated with the group identifier using the group identifier.

20. The method according to claim 15, characterized in that, Receive the configuration information of the transmission resources sent by the transmitting side, including: Receive the first indication signaling sent by the transmitting side, where the first indication signaling includes the parameter configuration information; Receive the second indication signaling sent by the transmitting side, where the second indication signaling includes the packet information.

21. The method according to claim 18 or 20, wherein Receive the activation information of the transmission resources sent by the transmitting side, including: Receive the activation information sent by the transmitting side, where the activation information includes the group identifier of the transmission resources to be activated; and Activate the transmission resources using the identifier, including: Activate the transmission resources associated with the group identifier using the group identifier.

22. The method according to claim 21, wherein The activation information further includes the set identifier of the transmission resources to be activated, and activating the transmission resources associated with the group identifier includes: Activate the transmission resources corresponding to the set identifier within the resource group associated with the group identifier.

23. The method according to claim 15, characterized in that, The packet information includes the offset method of multiple sets of transmission resources within the group.

24. The method according to claim 15, wherein The activation information includes an offset method indication for multiple sets of transmission resources within the group.

25. The method according to claim 19 or 20, characterized in that, The second indication signaling includes a modification indication for modifying the parameter configuration information, and the method further includes: Modify the parameter configuration information according to the modification indication in the second indication signaling.

26. The method according to claim 15, wherein The packet information includes at least one resource group, the resource group includes the parameter configuration information of one set of the transmission resources, the number of extended resource sets, and the offset method for extending the transmission resources, and the method further includes: Extend the transmission resources included in the resource group according to the offset method in the resource group until the number of extended resource sets within the group meets the number of extended resource sets.

27. The method according to claim 15, wherein the configuration information further includes the number of extended resource sets and the offset method for extending the transmission resources.

28. The method according to claim 15, wherein After activating the transmission resources using the group identifier, the method further includes: Select one set of transmission resources from the activated multiple sets of transmission resources; and Transmit data using the selected transmission resources.

29. The method according to claim 28, wherein The selected transmission resources include the set with the minimum alignment delay among the multiple sets of transmission resources.

30. The method according to claim 28, wherein The selected transmission resources include the set with the minimum alignment delay among the multiple sets of transmission resources that can ensure the configured number of repeated transmissions.

31. The method according to claim 15, characterized in that Receive the configuration information of the transmission resources sent by the transmitting side, including: Receive the first indication instruction and the second indication instruction sent by the receiving side, the first indication instruction includes the parameter configuration information, and the second indication instruction includes the status information; Receive the activation information of the transmission resources sent by the transmitting side, including: Receive the activation information of the transmission resources sent by the transmitting side, where the activation information includes the status identifier of the transmission resources to be activated; Activate the transmission resources associated with the status identifier using the status identifier.

32. A device for resource allocation, characterized in that, Includes: A first sending module, configured to send configuration information of transmission resources to a receiving side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the receiving side; A second sending module, configured to send activation information of transmission resources to the receiving side, where the activation information includes identifiers of the transmission resources to be activated, and the identifiers of the activated transmission resources are used to activate the transmission resources; The configuration information further includes grouping information, where the grouping information includes multiple resource groups combined by the multiple sets of transmission resources, each resource group includes at least one set of transmission resources, each resource group has a group identifier, and each set of transmission resources has a set identifier; wherein, each set of semi-static scheduling-free transmission resources corresponds to a set of independent parameter configuration information, and each set of resources corresponds to a serial number to represent the set identifier; The configuration information further includes status information, where the status information includes multiple statuses and at least one set of transmission resources related to each status, or includes multiple statuses and at least one resource group related to each status; The status information further includes an offset method corresponding to each element related to the status, or an offset method shared by all transmission resources related to the status, and the elements include transmission resources or resource groups.

33. A device for resource allocation, characterized in that, Comprising: A first receiving module, configured to receive configuration information of transmission resources sent by a transmitting side, where the configuration information includes parameter configuration information of multiple sets of transmission resources allocated for the receiving side; A second receiving module, configured to receive activation information of transmission resources sent by the transmitting side, where the activation information includes identifiers of the transmission resources to be activated; And An activation module, configured to activate the transmission resources by using the identifiers; The configuration information further includes grouping information, where the grouping information includes multiple resource groups combined by the multiple sets of transmission resources, each resource group includes at least one set of transmission resources, each resource group has a group identifier, and each set of transmission resources has a set identifier; wherein, each set of semi-static scheduling-free transmission resources corresponds to a set of independent parameter configuration information, and each set of resources corresponds to a serial number to represent the set identifier; The configuration information further includes status information, where the status information includes multiple statuses and at least one set of transmission resources related to each status, or includes multiple statuses and at least one resource group related to each status; The status information further includes an offset method corresponding to each element related to the status, or an offset method shared by all transmission resources related to the status, and the elements include transmission resources or resource groups.

34. A base station for data transmission, characterized in that, The base station includes: a processor and a memory; The memory is used for storing instructions; The processor is configured to read the instructions to execute the method according to any one of claims 1 to 14.

35. A user equipment for data transmission, characterized in that, The user equipment includes: a processor and a memory; The memory is used for storing instructions; The processor is configured to read the instructions to execute the method according to any one of claims 15 to 31.

36. A storage medium, characterized in that, The storage medium stores a computer program, and when the computer program is executed by a processor, the method according to any one of claims 1 - 31 is implemented.

Citation Information

Patent Citations

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    CN108964852A