Device operation result management method, communication node, storage medium and program product
By using the first communication node to obtain operation results and sending requests through the third communication node in the AIoT device, the operation management problem when base station readers and UE readers coexist is solved, and efficient management of device operation results and architectural integration are achieved.
Patent Information
- Application Number
- PCT/CN2025/082527
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-08-06
- Filing Date
- 2025-03-14
- Publication Date
- 2026-02-12
AI Technical Summary
In AIoT device scenarios where base station readers and UE readers coexist, existing technologies lack effective solutions for integrating the two architectures and handling the operation of the two types of readers.
The first communication node obtains the business operation results of the device. If the operation is not completed, the third communication node sends a business request to the corresponding device to realize the integrated management of different readers and writers and complete the management of the operation results of AIoT devices.
It enables the management of device operation results in scenarios where base station readers and UE readers coexist, integrating the two architectures to improve operational efficiency and management effectiveness.
Smart Images

Figure CN2025082527_12022026_PF_FP_ABST
Abstract
Description
Device operation result management method, communication node, storage medium and program product TECHNICAL FIELD
[0001] The present application relates to the technical field of wireless communication, for example, to a device operation result management method, a communication node, a storage medium and a program product. BACKGROUND
[0002] With the rapid development of the information industry, the application of the Internet of Things (IoT) is also becoming more and more widespread. As a high integration and comprehensive use of new generation information technology, the Internet of Things has the characteristics of strong penetration, great driving effect and good comprehensive benefits, and can meet the communication needs in many scenarios. In particular, as a key communication technology for the development of the Internet of Things, Ambient IoT (AIoT) technology uses backscattering technology and environmental energy harvesting technology to convert available signals and energy around it into electrical energy that can drive its own circuit, and at the same time uses a communication mode centered on backscattering to realize information transmission to the target node, so it has the characteristics of low power consumption and low cost, and can be widely used in various Internet of Things scenarios.
[0003] The reader that performs business operations with the AIoT device can be a base station reader or a UE reader. In the case of deploying base station readers and UE readers together, how to integrate the two architectures and how to handle the operations of the two types of readers in the business process are problems that need to be solved. SUMMARY
[0004] The present application provides a device operation result management method, a communication node, a storage medium and a program product to realize the operation management of devices under different reader architectures.
[0005] The present application provides a device operation result management method, which is applied to a first communication node and includes:
[0006] Obtaining a first business operation result of a first Ambient IoT device, the first business operation result being obtained after sending a first business request to the first Ambient IoT device through a second communication node;
[0007] If it is determined according to the first business operation result that there is an Ambient IoT device with an unfinished operation, sending a second business request to a corresponding second Ambient IoT device through a third communication node, and obtaining a second business operation result fed back by the second Ambient IoT device for the second business request.
[0008] The present application provides another device operation result management method, which is applied to a second communication node and includes:
[0009] sending a first service request to a first environmental IoT device;
[0010] receiving a first service operation result of the first environmental IoT device and sending to a first communication node.
[0011] Embodiments of the present application provide a device operation result management method, applied to a third communication node, comprising:
[0012] sending a second service request to a second environmental IoT device;
[0013] obtaining a second service operation result fed back by the second environmental IoT device for the second service request, and feeding back the second service operation result.
[0014] Embodiments of the present application provide another device operation result management method, applied to a first communication node, comprising:
[0015] obtaining a third service operation result of a third environmental IoT device, the third service operation result being obtained after sending a third service request to the corresponding third environmental IoT device through a second communication node and a third communication node.
[0016] Embodiments of the present application provide another device operation result management method, applied to a second communication node, comprising:
[0017] obtaining a fourth service operation result of a fourth environmental IoT device, the fourth service operation result being obtained after sending a fourth service request to the fourth environmental IoT device;
[0018] determining, according to the fourth service operation result, that there is an environmental IoT device with uncompleted operation, sending a fifth service request to a third communication node, so that the third communication node sends the fifth service request to a corresponding fifth environmental IoT device and obtains a fifth service operation result fed back by the fifth environmental IoT device for the fifth service request;
[0019] receiving the fifth service operation result of the fifth environmental IoT device fed back by the third communication node.
[0020] Embodiments of the present application provide another device operation result management method, applied to a third communication node, comprising:
[0021] receiving a fifth service request sent by a second communication node;
[0022] sending the fifth service request to a fifth environmental IoT device;
[0023] Obtaining a fifth service operation result fed back by the fifth environmental Internet of Things device for the fifth service request, and feeding back the fifth service operation result to the second communication node.
[0024] The embodiment of the present application provides another device operation result management method, which is applied to a second communication node and includes the following steps.
[0025] Sending a sixth service request to a sixth environmental Internet of Things device and a third communication node;
[0026] Receiving a sixth service operation result fed back by the sixth environmental Internet of Things device and a seventh service operation result fed back by the third communication node;
[0027] The seventh service operation result is fed back by the seventh environmental Internet of Things device after receiving a seventh service request, and the seventh service request is sent by the third communication node to the corresponding seventh environmental Internet of Things device according to the sixth service request.
[0028] The embodiment of the present application provides a communication node, which includes a memory, a processor, a program stored in the memory and executable on the processor, and a data bus used for realizing connection communication between the processor and the memory, and the program is executed by the processor to realize the device operation result management method in any one of the embodiments of the present application.
[0029] The embodiment of the present application provides a storage medium used for computer readable storage, and the storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to realize the device operation result management method in any one of the embodiments of the present application.
[0030] The embodiment of the present application provides a computer program product, and the computer program product includes a computer program, and the computer program realizes the device operation result management method in any one of the embodiments of the present application when executed by a processor.
[0031] The device operation result management method, the communication node, the storage medium and the program product provided by the embodiments of the present application, the first communication node obtains the first service operation result of the first environmental Internet of Things device, the first service operation result is obtained after the first communication node sends a first service request to the first environmental Internet of Things device through a second communication node; in the case that the first service operation result determines that there is an environmental Internet of Things device with an unfinished operation, a second service request is sent to the corresponding second environmental Internet of Things device through a third communication node, and a second service operation result fed back by the second environmental Internet of Things device to the second service request is obtained. The first communication node first sends a first service request to the first environmental Internet of Things device through the second communication node, in this case the second communication node acts as a reader / writer, and then the first service operation result is obtained. If there is an environmental Internet of Things device that has not completed the service operation, a second service request is sent to the second environmental Internet of Things device through the third communication node, and the second service operation result fed back by the second environmental Internet of Things device is obtained. In this case, the third communication node acts as a reader / writer, the fusion of two different reader / writers is realized, and the management of the operation result of the environmental Internet of Things device is completed. BRIEF DESCRIPTION OF DRAWINGS
[0032] FIG. 1 is a schematic diagram of a topology provided by an embodiment;
[0033] FIG. 2 is a schematic diagram of another topology provided by an embodiment;
[0034] FIG. 3 is a flowchart of a device operation result management method provided by an embodiment;
[0035] FIG. 4 is a flowchart of another device operation result management method provided by an embodiment;
[0036] FIG. 5 is a flowchart of another device operation result management method provided by an embodiment;
[0037] FIG. 6 is a flowchart of another device operation result management method provided by an embodiment;
[0038] FIG. 7 is a flowchart of another device operation result management method provided by an embodiment;
[0039] FIG. 8 is a flowchart of another device operation result management method provided by an embodiment;
[0040] FIG. 9 is a flowchart of another device operation result management method provided by an embodiment;
[0041] FIG. 10 is an architecture diagram of a reader / writer and an environmental Internet of Things device provided by an embodiment;
[0042] FIG. 11 is an interaction schematic diagram of an AIoT device service operation process provided by an embodiment;
[0043] FIG. 12 is an architecture diagram of another reader and environment AIoT device according to an embodiment;
[0044] FIG. 13 is an interaction diagram of another AIoT device service operation flow according to an embodiment;
[0045] FIG. 14 is a structural diagram of a device operation result management apparatus according to an embodiment;
[0046] FIG. 15 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0047] FIG. 16 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0048] FIG. 17 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0049] FIG. 18 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0050] FIG. 19 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0051] FIG. 20 is a structural diagram of another device operation result management apparatus according to an embodiment;
[0052] FIG. 21 is a structural diagram of a communication node according to an embodiment. DETAILED DESCRIPTION
[0053] To make the objectives, technical solutions, and advantages of the present application clearer, the embodiments of the present application will be described in detail below with reference to the accompanying drawings. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other as long as there is no conflict.
[0054] 3GPP has carried out research on AIoT technology and standards in the past year or two. Currently, the main identified topological forms of AIoT devices include two kinds. FIG. 1 provides a schematic diagram of one topological form, as shown in FIG. 1, a base station (RAN, Radio Access Network) is connected with an AIoT device, serving as a reader to perform service operation on the AIoT device; an AIoT management function located in the core network realizes management and service operation on the AIoT device through the base station reader. FIG. 2 provides a schematic diagram of another topological form, as shown in FIG. 2, a user equipment (User Equipment, UE) is connected with an AIoT device, serving as a reader to perform service operation on the AIoT device, an AIoT management function located in the core network is connected with the base station and the UE reader, realizing management and service operation on the AIoT device.
[0055] The service operation on the AIoT device includes inventory, command, etc.; wherein the command specifically includes read, write, disable, etc. The AIoT device requested by the service operation can be a single device, a group of devices, or a plurality of devices with a mask filtering condition, or a device in a specific area.
[0056] In the existing solution for service operation on AIoT devices, the related architecture and service process are generally given for one of the topologies in FIG. 1 or FIG. 2. In the case where the base station reader and the UE reader coexist, how to integrate the two architectures and how to handle the operations of the two types of readers in the service process, there is currently no relevant solution.
[0057] The management and service operation on the AIoT device are completed by the newly added network element AIoT management function (AIoT Management Function, AIoTMF) located in the core network. The AIoTMF has three deployment modes: one is an independent AIoTMF that also completes the functions of the traditional AMF; two is an enhanced Access Management Function (AMF) that realizes the management and service operation functions on the AIoT device; three is that the AIoTMF and the AMF exist simultaneously and complete their respective functions. Hereinafter, the network element that completes the function is referred to as an enhanced AMF / AIoTMF.
[0058] In the topology of FIG. 1, the operation on the AIoT device is completed by the base station reader; the base station reader is connected with the enhanced AMF / AIoTMF and receives the service request from the network side. In the topology of FIG. 2, the operation on the AIoT device is completed by the UE reader; the UE reader is connected with the enhanced AMF / AIoTMF through the traditional base station.
[0059] In the scenario where the two types of readers (base station reader and UE reader) coexist, it is necessary to integrate the two topologies of FIG. 1 and FIG. 2. In the integrated topology, according to whether the base station of the base station reader and the serving UE reader is the same base station, two different architectures can be derived, and for each architecture, the corresponding processing can be performed to realize the management of the operation result.
[0060] FIG. 3 is a flowchart of a device operation result management method provided by an embodiment, as shown in FIG. 3, the device operation result management method described in the embodiment of the present application is applied to a first communication node, and the method includes S110-S120:
[0061] S110, acquire a first service operation result of the first environmental IoT device, the first service operation result being acquired after sending a first service request to the first environmental IoT device through the second communication node.
[0062] The first environmental IoT device is an AIoT device, and the first service operation result can be understood as an operation result obtained after performing a related operation according to a service request. The first service request is a service request for requesting an environmental IoT device to perform a related service operation. The first service request can include a service type, device information of the service request, and the like.
[0063] The second communication node is a reader / writer, the first communication node sends the first service request to the second communication node, the second communication node sends the first service request to the first environmental IoT device, the first environmental IoT device determines the service operation to be performed after receiving the first service request, then performs the corresponding service operation and generates the first service operation result, and feeds back the first service operation result to the second communication node. The second communication node feeds back the first service operation result of the first environmental IoT device to the first communication node.
[0064] When the first communication node sends the first service request to the first environmental IoT device through the second communication node, it can be sent to all environmental IoT devices served by the second communication node. The environmental IoT device determines whether to perform a service operation according to the first service request after receiving the first service request. If so, it performs the corresponding service operation. This part of the environmental IoT device is the first environmental IoT device, which feeds back the first service operation result to the first communication node through the second communication node. Alternatively, when the first communication node sends the first service request through the second communication node, the second communication node determines the first environmental IoT device that needs to perform a service operation according to the first service request, and sends the first service request to this part of the first environmental IoT device.
[0065] S120, according to the first service operation result, if there is an environmental IoT device with an unfinished operation, send a second service request to the corresponding second environmental IoT device through a third communication node, and acquire a second service operation result fed back by the second environmental IoT device to the second service request.
[0066] The second environmental IoT device is an AIoT device, and the second service operation result can be understood as an operation result obtained after performing a related operation according to a service request. The second service request is a service request for requesting an environmental IoT device to perform a related service operation. The second service request can include a service type, device information of the service request, and the like.
[0067] analyzing all the received first service operation results, determining the environment IoT devices that have completed the service operation, and determining all the environment IoT devices that need to perform the service operation, and judging whether all the environment IoT devices that need to perform the service operation have completed the service operation. If there are environment IoT devices that have not completed the operation, the first communication node sends a second service request to the corresponding second environment IoT device through the third communication node, in which case the third communication node acts as a reader / writer, and after the second environment IoT device receives the second service request, it performs the relevant service operation and generates a second service operation result, and feeds back the second service operation result to the first communication node through the third communication node.
[0068] When sending the first service request to the first environment IoT device, the first communication node can directly send the first service request to the second communication node, which forwards it to the first environment IoT device, or can send a relevant service request, and the second communication node generates the first service request and sends it to the first environment IoT device after receiving the relevant service request. Similarly, when sending the second service request to the second environment IoT device, the first communication node can directly forward the first service request to the second environment IoT device through the third communication node, or can send a relevant service request, and the third communication node generates the second service request and sends it to the second environment IoT device.
[0069] The device operation result management method provided by the embodiments of the present application includes: a first communication node obtaining a first service operation result of a first environment IoT device, the first service operation result being obtained after the first communication node sends a first service request to the first environment IoT device through a second communication node; and in a case where the first service operation result determines that there are environment IoT devices that have not completed the operation, the first communication node sending a second service request to a corresponding second environment IoT device through a third communication node, and obtaining a second service operation result fed back by the second environment IoT device in response to the second service request. The first communication node first sends a first service request to the first environment IoT device through the second communication node, in which case the second communication node acts as a reader / writer, then obtains the first service operation result, and if there are environment IoT devices that have not completed the operation, sends a second service request to the second environment IoT device through the third communication node, and obtains the second service operation result fed back by the second environment IoT device, in which case the third communication node acts as a reader / writer, thereby realizing the fusion of two different reader / writers and completing the management of the operation results of the environment IoT devices.
[0070] In some embodiments, the first communication node sends a second service request to a corresponding second environment IoT device through a third communication node, and obtains a second service operation result fed back by the second environment IoT device in response to the second service request, including:
[0071] The fourth communication node serving the third communication node sends a second service request to the third communication node, so that the third communication node sends the second service request to the corresponding second environmental Internet of Things device and obtains a second service operation result fed back by the second environmental Internet of Things device for the second service request;
[0072] The second service operation result of the second environmental Internet of Things device fed back through the fourth communication node is received.
[0073] The fourth communication node serving the third communication node is determined, the second service request is sent to the fourth communication node, the fourth communication node sends the second service request to the third communication node, the third communication node sends the second service request to the corresponding second environmental Internet of Things device, the second environmental Internet of Things device performs corresponding service operation after receiving the second service request, and generates a second service operation result and feeds back the second service operation result to the third communication node, the third communication node feeds back the second service operation result to the fourth communication node, and the fourth communication node feeds back the second service operation result to the first communication node.
[0074] In some embodiments, the method further comprises:
[0075] In a case where it is determined according to the first service operation result that there is no environmental Internet of Things device with an unfinished operation, the first service operation result is fed back to the fifth communication node.
[0076] The first service operation result is analyzed, and in a case where it is determined that there is no environmental Internet of Things device with an unfinished operation, i.e., all environmental Internet of Things devices that need to perform service operation have completed corresponding service operation, the received first service operation result is fed back to the fifth communication node; when feeding back each first service operation result to the fifth communication node, all first service operation results can be aggregated and then sent to the fifth communication node.
[0077] In some embodiments, the method further comprises:
[0078] The first service operation result and the second service operation result are aggregated.
[0079] The aggregated service operation result is fed back to the fifth communication node.
[0080] The first communication node, in a case of receiving the first service operation result and the second service operation result, aggregates the first service operation result and the second service operation result, for example, aggregates the first service operation result and the second service operation result according to a certain rule or order, for example, sorts the first service operation result and the second service operation result according to the identifier of the environmental Internet of Things device corresponding to the first service operation result and the second service operation result, forms the aggregated service operation result, or sorts the first service operation result and the second service operation result according to the type of the operation performed, forms the aggregated service operation result, and the like. The aggregated service operation result is sent to the fifth communication node.
[0081] The feedback of the service operation result to the fifth communication node can be directly fed back to the fifth communication node, or can be forwarded to the fifth communication node through other communication nodes, for example, the first communication node is an enhanced AMF / AIoT MF, and the fifth communication node is an application function (AF), and the first communication node can feed back the service operation result to the AF through a network exposure function (NEF). The feedback service operation result can be the first service operation result, or the aggregated service operation result.
[0082] In some embodiments, the method further comprises:
[0083] The environmental Internet of Things capability and service range reported by the second communication node are received.
[0084] The first communication node can receive the environmental Internet of Things capability and service range reported by the second communication node, and in the process of managing the device operation result, according to the Internet of Things device capability and service range reported by the second communication node, the corresponding second communication node is selected to send the service request, so that the second communication node sends the service request to the corresponding environmental Internet of Things device.
[0085] In some embodiments, the method further comprises:
[0086] The information of the sixth communication node is registered, wherein the registered information includes the information of the second communication node connected by the first communication node.
[0087] The first communication node registers information to the sixth communication node, and the registered information includes information of the second communication node connected to the first communication node; in the process of managing the device operation result, the service request can be initiated by other communication nodes, and after the service request is initiated, the environment Internet of Things device needing to perform operation can be determined, and then the second communication node corresponding to the environment Internet of Things device is determined. The first communication node connected to the second communication node is determined by querying the information registered in the sixth communication node in advance, and the corresponding service request is sent to the first communication node, so that the first communication node sends the service request to the corresponding environment Internet of Things device through the second communication node, so as to realize the management of the device operation result.
[0088] In some embodiments, the method further comprises:
[0089] Receiving the environment Internet of Things capability reported by the third communication node.
[0090] The first communication node receives the environment Internet of Things capability reported by the third communication node, and determines the environment Internet of Things capability of the third communication node. The reporting manner of the environment Internet of Things capability of the third communication node can be that the third communication node reports its environment Internet of Things capability to the fourth communication node serving the third communication node, and the fourth communication node reports the environment Internet of Things capability of the third communication node to the first communication node, so that the first communication node determines the corresponding third communication node and fourth communication node and sends the service request to them in the process of managing the device operation result.
[0091] In some embodiments, the method further comprises:
[0092] Registering information to the sixth communication node, wherein the registered information includes information of the third communication node served by the first communication node.
[0093] The first communication node determines the third communication node served by it, and registers the information of the third communication node served by it to the sixth communication node, so as to subsequently send the service request to the corresponding first communication node through the sixth communication node.
[0094] In some embodiments, the first communication node is an enhanced AMF / AIoT MF;
[0095] In some embodiments, the second communication node is a base station reader / writer;
[0096] In some embodiments, the third communication node is a UE reader / writer;
[0097] In some embodiments, the fourth communication node is a base station;
[0098] In some embodiments, the fifth communication node is an AF;
[0099] In some embodiments, the sixth communication node is a network repository function (NRF).
[0100] The device operation result management method provided by the embodiments of the present application is as follows: the first communication node first sends a first service request to the first environmental Internet of Things device through the second communication node, in which case the second communication node acts as a reader / writer, and then obtains a first service operation result. If there is a case where the environmental Internet of Things device has not completed the service operation, the third communication node is used to send a second service request to the second environmental Internet of Things device, and a second service operation result fed back by the second environmental Internet of Things device is obtained, in which case the third communication node acts as a reader / writer, the fusion of two different reader / writers is realized, and the management of the operation result of the environmental Internet of Things device is completed. The first communication node aggregates the service operation result and feeds back to the fifth communication node, the management of the operation result is realized, and the first communication node can receive the environmental Internet of Things capability and service range or environmental Internet of Things capability reported by other communication nodes, and at the same time can be registered with the sixth communication node, so as to find the corresponding communication node to perform the corresponding operation in time when the operation result of the environmental Internet of Things device is managed.
[0101] FIG. 4 is a flowchart of another device operation result management method provided by an embodiment, as shown in FIG. 4, the device operation result management method provided by the embodiments of the present application is applied to the second communication node, and the method comprises the following steps:
[0102] S210, a first service request is sent to a first environmental Internet of Things device.
[0103] S220, a first service operation result of the first environmental Internet of Things device is received and sent to a first communication node.
[0104] The second communication node receives the related service request sent by the first communication node, determines that the first service request needs to be sent to the first environmental IoT device according to the service request, and sends the first service request to the first environmental IoT device. The second communication node can send to all served environmental IoT devices, and the environmental IoT devices confirm whether the device performs the service operation according to the first service request after receiving the first service request, if yes, the corresponding service operation is performed, and the first service operation result of the part of the environmental IoT devices as the first environmental IoT device is fed back to the second communication node. The second communication node feeds back to the first communication node. Alternatively, the second communication node determines the first environmental IoT device that needs to perform the service operation according to the related service request sent by the first communication node, and sends the first service request to the part of the first environmental IoT device, and receives the first service operation result sent by the part of the first environmental IoT device. Wherein, the related service request sent by the first communication node can be the first service request, and the second communication node forwards it. The related service request sent by the first communication node can also not be the first service request, and the second communication node generates the first service request according to the received related service request.
[0105] The device operation result management method provided by the embodiment of the application, the second communication node as a reader / writer sends the first service request to the first environmental IoT device, receives the first service operation result fed back by the first environmental IoT device, sends the first service operation result to the first communication node, and assists the first communication node to complete the management of the operation result of the environmental IoT device.
[0106] In some embodiments, the method further comprises:
[0107] Reporting the environmental IoT capability and service range to the first communication node.
[0108] FIG. 5 is a flowchart of another device operation result management method provided by an embodiment. As shown in FIG. 5, the device operation result management method described in the embodiment of the application is applied to a third communication node, and the method comprises S310-S320:
[0109] S310, sending a second service request to a second environmental IoT device.
[0110] S310, obtaining the second service operation result fed back by the second environmental IoT device for the second service request, and feeding back the second service operation result.
[0111] The third communication node sends a second service request to the corresponding second environmental Internet of Things device, the second environmental Internet of Things device performs a corresponding service operation after receiving the second service request, and generates a second service operation result, and the second environmental Internet of Things device feeds back the second service operation result to the third communication node. The third communication node feeds back the second service operation result after receiving the second service operation result, and feeds back the second service operation result to the first communication node. The third communication node can directly feed back to the first communication node when feeding back the second service operation result, or can send to the first communication node through other communication nodes.
[0112] The device operation result management method provided by the embodiment of the application, the third communication node as a reader / writer, sends a second service request to the second environmental Internet of Things device, receives the feedback of the second service operation result, and sends the second service operation result to the first communication node, to assist the first communication node to complete the management of the operation result of the environmental Internet of Things device.
[0113] In some embodiments, before sending the second service request to the second environmental Internet of Things device, the method further comprises:
[0114] Receiving a second service request sent by a fourth communication node serving the third communication node;
[0115] The second service request is sent by the first communication node to the fourth communication node.
[0116] The second service request received by the third communication node can be sent by the fourth communication node serving the third communication node, and the fourth communication node receives the second service request sent by the first communication node, and then sends the second service request to the third communication node.
[0117] In some embodiments, the feedback of the second service operation result comprises:
[0118] The fourth communication node serving the third communication node feeds back the second service operation result to the first communication node.
[0119] In some embodiments, the method further comprises:
[0120] Registering information to the fourth communication node, wherein the registered information comprises environmental Internet of Things capability.
[0121] The third communication node can register the environmental Internet of Things capability to the fourth communication node serving the third communication node, and the fourth communication node can report the environmental Internet of Things capability of the third communication node to the first communication node after receiving the environmental Internet of Things capability of the third communication node. That is, the third communication node can register the environmental Internet of Things capability of the third communication node to the first communication node through the fourth communication node serving the third communication node.
[0122] FIG. 6 is a flowchart of another device operation result management method provided by an embodiment. As shown in FIG. 6, the device operation result management method provided by the embodiment of the present application is applied to a first communication node, and the method comprises S410:
[0123] S410, obtaining a third service operation result of a third environmental IoT device, the third service operation result being obtained after a third service request is sent to the corresponding third environmental IoT device through a second communication node and a third communication node.
[0124] The third environmental IoT device is an AIoT device, and the third service operation result can be understood as an operation result obtained after a related operation is performed according to a service request. The third service request is a service request for requesting an environmental IoT device to perform a related service operation. The third service request can include a service type, device information of the service request, and the like.
[0125] The second communication node and the third communication node are readers / writers, and the first communication node sends the third service request to the second communication node and the third communication node. The third service request can be sent simultaneously or in a certain order, for example, according to the order of the identifiers of the third environmental IoT devices requested by the service request. The second communication node and the third communication node send the third service request to the corresponding third environmental IoT device, the third environmental IoT device determines the service operation to be performed after receiving the third service request, then performs the corresponding service operation and generates the third service operation result, and feeds back the third service operation result to the corresponding second communication node or third communication node. The second communication node and the third communication node feed back the third service operation result fed back by the third environmental IoT device to the first communication node. The number of the second communication node and the third communication node is determined according to the actual situation, which can be one or more, or 0, for example, the number of the second communication node is 0, at this time, the type of the reader / writer of the third environmental IoT device that needs to perform the related service operation is the third communication node, and the number of the third communication node can be one or more.
[0126] Exemplarily, the third environmental IoT devices are AIoT1, AIoT2, AIoT3 and AIoT4 respectively, wherein the AIoT1 corresponds to the second communication node 1, the AIoT2 corresponds to the third communication node 1, and the AIoT3 and the AIoT4 correspond to the second communication node 2. The first communication node broadcasts the third service request to the second communication node 1, the second communication node 2 and the third communication node 1. After receiving the third service request, the second communication node 1, the second communication node 2 and the third communication node 1 respectively send the third service request to the corresponding third environmental IoT device and receive the third service operation result, and feed back the third service operation result to the first communication node.
[0127] The device operation result management method provided by the embodiment of the application, the first communication node sends a third service request to a third environmental IoT device through a second communication node and a third communication node, and obtains a feedback third service operation result; the second communication node and the third communication node simultaneously serve as a reader-writer to send a third service request to a third environmental IoT device, thereby realizing the fusion of two different reader-writers and completing the management of the operation result of the environmental IoT device. The first communication node aggregates the service operation result and feeds back to a fifth communication node, thereby realizing the management of the operation result.
[0128] In some embodiments, the sending of the third service request to the corresponding third environmental IoT device through the third communication node comprises:
[0129] The fourth communication node serving the third communication node sends a third service request to the third communication node, so that the third communication node sends a third service request to the corresponding third environmental IoT device and obtains a third service operation result fed back by the third environmental IoT device for the third service request.
[0130] When the first communication node sends a third service request through the third communication node, the fourth communication node serving the third communication node is determined, and the third service request is sent to the third communication node through the fourth communication node, for example, the third service request is sent to the fourth communication node, the fourth communication node forwards the third service request to the third communication node, or a related request for indicating the third service request is generated and sent to the fourth communication node, the fourth communication node generates the third service request according to the related request and sends it to the third communication node. The third communication node sends a third service request to the corresponding third environmental IoT device, the third environmental IoT device performs a corresponding service operation and generates a third service operation result, and the third service operation result is fed back to the first communication node through the fourth communication node.
[0131] In some embodiments, the method further comprises:
[0132] aggregate the third service operation results of all the third communication nodes;
[0133] feed back the aggregated third service operation result to the fifth communication node.
[0134] The first communication node aggregates the third service operation results fed back by the second communication node and the third communication node, and feeds back the aggregated third service operation result to the fifth communication node directly or indirectly.
[0135] In some embodiments, further comprising:
[0136] receive the environmental IoT capability and service range reported by the second communication node.
[0137] In some embodiments, further comprising:
[0138] register information to the sixth communication node, wherein the registered information comprises information of the second communication node connected by the first communication node.
[0139] In some embodiments, further comprising:
[0140] receive the environmental IoT capability reported by the third communication node.
[0141] In some embodiments, further comprising:
[0142] register information to the sixth communication node, wherein the registered information comprises information of the third communication node served by the first communication node.
[0143] The second communication node receives the third service request, sends the third service request to the corresponding third environmental IoT device, receives the third service operation result fed back by the third environmental IoT device and feeds back to the first communication node.
[0144] The third communication node receives the third service request, sends the third service request to the corresponding third environmental IoT device, receives the third service operation result fed back by the third environmental IoT device and feeds back to the first communication node.
[0145] The third communication node receives the third service request sent by the fourth communication node serving the third communication node, the third service request being sent by the first communication node to the fourth communication node; and feeds back the third service operation result to the first communication node through the fourth communication node.
[0146] The first communication node can manage the device operation result through the two manners described above, and the principles are similar. One manner is to send a service request through the second communication node first, and then send a service request through the third communication node in the case that there is an unfinished operation environment Internet of Things device. Another manner is to send a service request to the second communication node and the third communication node at the same time. It should be noted that the same time means that the third communication node can be sent without judging whether there is an unfinished operation environment Internet of Things device, and not strictly synchronized in time (that is, it is not required to be executed at the same time). The similar steps can be referred to the description and explanation of the above embodiments, and will not be described one by one here.
[0147] In some embodiments, the first communication node is an enhanced AMF / AIoT MF;
[0148] In some embodiments, the second communication node is a base station reader / writer;
[0149] In some embodiments, the third communication node is a UE reader / writer;
[0150] In some embodiments, the fourth communication node is a base station;
[0151] In some embodiments, the fifth communication node is an AF;
[0152] In some embodiments, the sixth communication node is an NRF.
[0153] FIG. 7 is a flowchart of another device operation result management method provided by an embodiment. As shown in FIG. 7, the device operation result management method described in the embodiments of the present application is applied to a second communication node, and the method includes S510-S530:
[0154] S510, obtaining a fourth service operation result of a fourth environment Internet of Things device, the fourth service operation result being obtained after a fourth service request is sent to the fourth environment Internet of Things device.
[0155] The fourth environment Internet of Things device is an AIoT device, and the fourth service operation result can be understood as an operation result obtained after a related operation is performed according to a service request. The fourth service request is a service request for requesting an environment Internet of Things device to perform a related service operation. The fourth service request can include a service type, device information of the service request, and the like.
[0156] The second communication node sends a fourth service request to the fourth environment Internet of Things device. After receiving the fourth service request, the fourth environment Internet of Things device determines the service operation to be performed, then performs the corresponding service operation and generates a fourth service operation result, and feeds back the fourth service operation result to the second communication node.
[0157] S520, in a case where it is determined that there is an environment IoT device with uncompleted operation according to the fourth service operation result, sending a fifth service request to the third communication node, so that the third communication node sends the fifth service request to a corresponding fifth environment IoT device and acquires a fifth service operation result fed back by the fifth environment IoT device in response to the fifth service request.
[0158] The fifth environment IoT device is an AIoT device, and the fifth service operation result can be understood as an operation result obtained after relevant operation is performed according to the service request; the fifth service request is a service request for requesting an environment IoT device to perform relevant service operation; the fifth service request can include a service type, device information of the service request, and the like.
[0159] All the received fourth service operation results are analyzed to determine the environment IoT devices that have completed service operation and all the environment IoT devices that need to perform service operation, and it is determined whether all the environment IoT devices that need to perform service operation have completed service operation. If there is an environment IoT device with uncompleted operation, the second communication node sends a fifth service request to the third communication node, the third communication node sends a fifth service request to a corresponding fifth environment IoT device after receiving the fifth service request, and the fifth environment IoT device performs relevant service operation and generates a fifth service operation result after receiving the fifth service request, and feeds back the fifth service operation result to the third communication node.
[0160] When the second communication node sends the fifth service request to the fifth environment IoT device to instruct the fifth environment IoT device to perform relevant service operation, the second communication node can also send a relevant service request to the third communication node, and instruct the third communication node to send the fifth service request to the fifth environment IoT device through the relevant service request.
[0161] S530, receiving the fifth service operation result of the fifth environment IoT device fed back by the third communication node.
[0162] The third communication node feeds back the fifth service operation result to the second communication node after receiving the fifth service operation result fed back by the fifth environment IoT device. The second communication node receives the fifth service operation result fed back by the third communication node.
[0163] The device operation result management method provided by the embodiment of the application comprises the following steps: a second communication node acquires a fourth service operation result of a fourth environmental Internet of Things device, the fourth service operation result being acquired after a fourth service request is sent to the fourth environmental Internet of Things device; in the case where it is determined according to the fourth service operation result that there is an environmental Internet of Things device that has not completed operation, a fifth service request is sent to a corresponding fifth environmental Internet of Things device through a third communication node, and then a fifth service operation result fed back by the fifth environmental Internet of Things device in response to the fifth service request is acquired through the third communication node. The second communication node first sends a fourth service request to the fourth environmental Internet of Things device, in this case, the second communication node acts as a reader / writer, and then acquires the fourth service operation result. If there is an environmental Internet of Things device that has not completed service operation, a fifth service request is sent to a fifth environmental Internet of Things device through a third communication node, and a fifth service operation result fed back by the fifth environmental Internet of Things device is obtained, in this case, the third communication node acts as a reader / writer, and the second communication node can act as a reader / writer and serve other reader / writers, realizing the fusion of two different reader / writers and completing the management of operation results of environmental Internet of Things devices.
[0164] In some embodiments, the method further comprises:
[0165] In the case where it is determined according to the fourth service operation result that there is no environmental Internet of Things device that has not completed operation, the fourth service operation result is fed back to the first communication node.
[0166] In the case where it is determined according to the fourth service operation result that there is no environmental Internet of Things device that has not completed operation, the fourth service operation result is fed back to the first communication node.
[0167] In some embodiments, the method further comprises:
[0168] The fourth service operation result and the fifth service operation result are summarized.
[0169] The summarized service operation result is fed back to the first communication node.
[0170] After the first communication node receives the summarized service operation result, the service operation result is fed back to a fifth communication node. The service operation result can be directly fed back to the fifth communication node, or can be forwarded to the fifth communication node through other communication nodes.
[0171] In some embodiments, the method further comprises:
[0172] The environmental Internet of Things capability and service range are reported to the first communication node.
[0173] In some embodiments, the method further comprises:
[0174] receiving the environmental IoT capability reported by the third communication node.
[0175] The second communication node can receive the environmental IoT capability reported by the third communication node when serving the third communication node as a base station. The second communication node can report its environmental IoT capability and service range to the first communication node when serving as a base station reader.
[0176] In some embodiments, the second communication node simultaneously completes the functions of a reader and a conventional base station, i.e., the second communication node is a base station, which can serve as both a base station reader and a normal base station to serve UE readers; the second communication node can be a fourth communication node, i.e., the method can be executed by the second communication node or the fourth communication node.
[0177] In some embodiments, the first communication node is an enhanced AMF / AIoT MF;
[0178] In some embodiments, the third communication node is a UE reader;
[0179] In some embodiments, the fifth communication node is an AF;
[0180] In some embodiments, the sixth communication node is an NRF.
[0181] FIG. 8 is a flowchart of another device operation result management method provided by an embodiment, as shown in FIG. 8, the device operation result management method of the present application is applied to a third communication node, and the method comprises S610-S630:
[0182] S610, receiving a fifth service request sent by a second communication node.
[0183] S620, sending the fifth service request to a fifth environmental IoT device.
[0184] S630, obtaining a fifth service operation result fed back by the fifth environmental IoT device for the fifth service request, and feeding back the fifth service operation result to the second communication node.
[0185] The third communication node receives the fifth service request sent by the second communication node, and sends the fifth service request to the corresponding fifth environmental IoT device after receiving the fifth service request. The fifth environmental IoT device receives the fifth service request, performs relevant service operations, and generates a fifth service operation result, which is fed back to the third communication node. The third communication node feeds back the fifth service operation result to the second communication node after receiving the fifth service operation result.
[0186] The device operation result management method provided by the embodiments of the present application, the third communication node sends a fifth service request to the corresponding fifth environmental Internet of Things device, and then obtains a fifth service operation result fed back by the fifth environmental Internet of Things device in response to the fifth service request. In this case, the third communication node acts as a reader / writer, and the second communication node can act as a reader / writer and also serve other reader / writers, realizing the fusion of two different reader / writers, and the third communication node assists the second communication node to complete the management of the operation results of the environmental Internet of Things device.
[0187] In some embodiments, the method further comprises:
[0188] reporting the environmental Internet of Things capability to the second communication node.
[0189] FIG. 9 is a flowchart of another device operation result management method provided by an embodiment. As shown in FIG. 9, the device operation result management method of the embodiments of the present application is applied to a second communication node, and the method comprises S710-S720:
[0190] S710, sending a sixth service request to a sixth environmental Internet of Things device and a third communication node.
[0191] The sixth environmental Internet of Things device is an AIoT device; the sixth service request is a service request for requesting the environmental Internet of Things device to perform a related service operation; and the sixth service request can include a service type, device information of the service request, etc.
[0192] The second communication node sends the sixth service request to the sixth environmental Internet of Things device as a reader / writer; and the second communication node sends the sixth service request to the third communication node served thereby, and the third communication node acts as a reader / writer at this time.
[0193] S720, receiving a sixth service operation result fed back by the sixth environmental Internet of Things device and a seventh service operation result fed back by the third communication node.
[0194] The seventh service operation result is fed back by a seventh environmental Internet of Things device after receiving a seventh service request, and the seventh service request is sent by the third communication node to the corresponding seventh environmental Internet of Things device according to the sixth service request.
[0195] The sixth service operation result and the seventh service operation result can both be understood as operation results obtained after performing a related operation according to a service request; the seventh service request is a service request for requesting the environmental Internet of Things device to perform a related service operation; the sixth service request can include a service type, device information of the service request, etc. The seventh environmental Internet of Things device is an AIoT device.
[0196] The sixth environmental Internet of Things device performs a corresponding service operation after receiving the sixth service request, generates a sixth service operation result, and feeds back to the second communication node. The third communication node generates a seventh service request after receiving the sixth service request and sends it to the seventh environmental Internet of Things device. The third communication node can directly forward the sixth service request to the corresponding seventh environmental Internet of Things device as the seventh service request, or generate the seventh service request based on the sixth service request and send it to the seventh environmental Internet of Things device. The seventh environmental Internet of Things device performs a corresponding service operation after receiving the seventh service request, generates a seventh service operation result, and feeds back to the third communication node. The third communication node feeds back the seventh service operation result to the second communication node.
[0197] The device operation result management method provided by the embodiment of the application includes: the second communication node sends a sixth service request to a sixth environmental Internet of Things device and a third communication node, sends a seventh service request to a seventh environmental Internet of Things device through the third communication node, obtains a sixth service operation result fed back by the sixth environmental Internet of Things device, and obtains a seventh service operation result fed back by the seventh environmental Internet of Things device through the third communication node. The second communication node can serve as a reader and also serve as a reader for other readers. By sending the sixth service request to the sixth environmental Internet of Things device and the third communication node and obtaining the operation result, the fusion of two different readers is realized, and the management of the operation result of the environmental Internet of Things device is completed.
[0198] In some embodiments, the method further includes:
[0199] The sixth service operation result and the seventh service operation result are summarized.
[0200] The summarized service operation result is fed back to the first communication node.
[0201] The first communication node feeds back the service operation result to the fifth communication node after receiving the summarized service operation result. The service operation result fed back to the fifth communication node can be directly fed back to the fifth communication node, or can be forwarded to the fifth communication node through other communication nodes
[0202] In some embodiments, the method further includes:
[0203] The environmental Internet of Things capability and service range are reported to the first communication node.
[0204] In some embodiments, the method further includes:
[0205] The environmental Internet of Things capability reported by the third communication node is received.
[0206] In some embodiments, the second communication node simultaneously completes the functions of the reader-writer and the functions of the conventional base station, that is, the second communication node is a base station, which can serve as both a base station reader-writer and a normal base station serving UE reader-writers;
[0207] In some embodiments, the first communication node is an enhanced AMF / AIoT MF;
[0208] In some embodiments, the third communication node is a UE reader-writer;
[0209] In some embodiments, the fifth communication node is an AF;
[0210] In some embodiments, the sixth communication node is an NRF.
[0211] It should be understood that, in different device operation result management methods, the first environmental Internet of Things device, the second environmental Internet of Things device, the third environmental Internet of Things device, the fourth environmental Internet of Things device, the fifth environmental Internet of Things device, the sixth environmental Internet of Things device, and the seventh environmental Internet of Things device can be the same environmental Internet of Things device or different environmental Internet of Things devices. Among them, the first environmental Internet of Things device and the second environmental Internet of Things device are usually different environmental Internet of Things devices, the fourth environmental Internet of Things device and the fifth environmental Internet of Things device are usually different environmental Internet of Things devices, and the sixth environmental Internet of Things device and the seventh environmental Internet of Things device are usually different environmental Internet of Things devices.
[0212] The device operation result management process is illustrated through the following embodiments:
[0213] Embodiment 1
[0214] FIG. 10 provides an architecture diagram of a reader-writer and an environmental Internet of Things device, wherein the base station reader-writer and the base station serving the UE reader-writer are different base stations, and complete the functions of the reader-writer and the functions of the conventional base station, respectively. The operation of the AIoT device is initiated by an application function (AF) and the operation result is received from the NEF. Other core network related network elements include: NEF, NRF, unified data management function (UDM), authentication service function (AUSF), etc. They complete functions similar to the functions of the corresponding network elements in the conventional core network, and have corresponding enhancements for AIoT devices. Under the architecture of FIG. 10, the two types of reader-writer operation functions of the AIoT device can be respectively processed by the enhanced AMF / AIoT MF, and the operation results can be aggregated.
[0215] FIG. 11 provides an interaction diagram of an AIoT device service operation process; wherein the first communication node can be an enhanced AMF / AIoT MF, the second communication node can be a base station reader / writer, the third communication node can be a UE reader / writer, the fourth communication node can be a base station, the fifth communication node can be an AF, the sixth communication node can be an NRF, the seventh communication node can be an NEF, and the eighth communication node can be a UDM.
[0216] Step.0.a The second communication node reports its AIoT capability and service range to the first communication node; the first communication node registers with the sixth communication node, and the registration message contains the information of the second communication node connected thereto.
[0217] Step.0.b The third communication node registers with the network, carrying its AIoT capability.
[0218] The third communication node can report its AIoT capability to the first communication node through the fourth communication node serving the communication node when registering, for example, the third communication node reports its AIoT capability to the first communication node through the base station serving the communication node; and saves the information of the third communication node to the eighth communication node, for example, the third communication node saves the information such as the identity and capability of the communication node in the eighth communication node.
[0219] The first communication node can register information with the sixth communication node, and the registered information includes the information of the third communication node served by the first communication node.
[0220] Step.1 The fifth communication node sends a service request for AIoT devices to the seventh communication node, and the request message includes: service type, i.e. inventory (Inventory), command (Command), wherein the command specifically includes read (Read), write (Write), disable (Disable) and the like; device information of the service request, which can be a single device identity (Device ID), a group of device identities, or a plurality of device identities with a mask (MASK) filtering condition, or devices in a specific area.
[0221] Step.2 After the seventh communication node verifies the service request of the fifth communication node, it queries the information of the related first communication node serving the device from the sixth communication node according to the device information in the service request.
[0222] Step.3 The seventh communication node sends a service request for AIoT devices to the first communication node.
[0223] Step.4 The first communication node interacts with the eighth communication node to verify whether the service request is allowed; if allowed, according to the device information targeted by the service request, the second communication node of the service device is discovered and selected.
[0224] Step.5 The first communication node sends the service request for the AIoT device to the selected second communication node.
[0225] Step.6 The second communication node interacts with the plurality of AIoT devices to establish a connection.
[0226] Step.7 The first communication node interacts with the plurality of AIoT devices according to the device information in the service request through the second communication node to complete the related operation in the service request.
[0227] The first communication node interacts with the AIoT device according to the device information in the service request through the second communication node, which can be sending a first service request to the AIoT device through the second communication node. The AIoT device in this step can be the first environmental Internet of Things device.
[0228] Step.8 The first communication node determines whether the operation of all AIoT devices in the service request is completed according to the device interaction result: if completed, step 9.a is executed; if not completed, steps 9.b-12.b are executed.
[0229] The device interaction result is the service operation result, and the service operation result in this step can be the first service operation result; according to the first service operation result, it is determined whether there is an AIoT device with uncompleted operation, if yes, steps 9.b-12.b are executed; if no, step 9.a is executed.
[0230] For inventory business, because all devices in the area need to be inventoried, the first communication node will always execute steps 9.b-12.b. For command business, including reading, writing, invalidating, etc., it is generally for one or more specific devices, and the first communication node determines whether to execute steps 9.b-12.b if the operation of all devices in the service request is not completed.
[0231] Step.9.a The first communication node feeds back the service operation result of the AIoT device to the fifth communication node through the seventh communication node.
[0232] Step.9.b The first communication node sends the service request of the AIoT device to the third communication node through the fourth communication node serving the third communication node.
[0233] The fourth communication node serving the third communication node is not the same as the second communication node, i.e., the base station serving the reader is not the same as the base station reader.
[0234] Step.10.b The third communication node interacts with the AIoT device to complete the service operation.
[0235] Step.11.b The third communication node returns the service operation result of the AIoT device to the first communication node.
[0236] The AIoT device in steps 10.b and 11.b can be a second environmental Internet of Things device. After the third communication node interacts with the second environmental Internet of Things device to complete the service operation, the service operation result fed back by the second environmental Internet of Things device can be a second service operation result, and the third communication node feeds back the second service operation result to the first communication node.
[0237] Step.12.b The first communication node aggregates the service operation results obtained from the second communication node and the third communication node, and feeds back to the fifth communication node through the seventh communication node.
[0238] The flowchart of FIG. 11 realizes the processing of the operation functions of two types of readers (the second communication node and the third communication node) and the aggregation of operation results by the first communication node.
[0239] Embodiment 2
[0240] FIG. 12 provides another architecture diagram of a reader and an environmental Internet of Things device. The base station reader and the base station of the service UE reader are the same base station, which simultaneously completes the functions of the reader and the functions of the conventional base station. Under the architecture of FIG. 12, the base station reader / base station realizes the processing of the operation functions of two types of readers of AIoT devices and the aggregation of operation results.
[0241] FIG. 13 provides another interaction schematic diagram of the service operation flow of AIoT devices. The first communication node can be an enhanced AMF / AIoTMF, the second communication node can be a base station reader / base station, the third communication node can be a UE reader, the fifth communication node can be an AF, the sixth communication node can be an NRF, the seventh communication node can be an NEF, and the eighth communication node can be a UDM.
[0242] Step.0.a The second communication node reports its AIoT capability and service range to the first communication node; the first communication node registers with the sixth communication node, and the registration message contains the information of the second communication node connected thereto.
[0243] Step.0.b The third communication node registers with the network, carrying its AIoT capability.
[0244] The third communication node can report its AIoT capability to the first communication node through the second communication node serving the third communication node at the time of registration, for example, the third communication node reports its AIoT capability to the first communication node through the base station serving the third communication node; and save the information of the third communication node to the eighth communication node, for example, the third communication node saves the information such as the identity and capability of the third communication node to the eighth communication node.
[0245] The first communication node can register information to the sixth communication node, and the registered information includes the information of the third communication node served by the first communication node.
[0246] Step.1 The fifth communication node sends a service request for AIoT devices to the seventh communication node, and the request message includes: service type, i.e. inventory (Inventory) and command (Command), wherein the command specifically includes read (Read), write (Write) and disable (Disable); device information of the service request, which can be a single device identifier (Device ID), a group of device identifiers, or a plurality of device identifiers with mask (MASK) filtering conditions, or devices in a specific area.
[0247] Step.2 After the seventh communication node verifies the service request of the fifth communication node, it queries the information of the related first communication node serving the device from the sixth communication node according to the device information in the service request.
[0248] Step.3 The seventh communication node sends a service request for AIoT devices to the first communication node.
[0249] Step.4 The first communication node interacts with the eighth communication node to verify whether the service request is allowed, and discovers and selects the second communication node serving the device; the second communication node also serves the third communication node.
[0250] That is, the second communication node can serve AIoT devices as a base station reader, and can also serve UE readers as a normal base station.
[0251] Step.5 The first communication node sends a service request for AIoT devices to the selected second communication node.
[0252] Step.6 The second communication node establishes a connection with a plurality of AIoT devices.
[0253] Step.7 The second communication node interacts with a plurality of AIoT devices to complete the related operation in the service request.
[0254] The second communication node interacts with the AIoT device according to the device information in the service request, which can be by the second communication node sending a first service request to the AIoT device. The AIoT device in this step can be the first environmental Internet of Things device.
[0255] Step.8 The second communication node determines whether the operation of all devices in the service request is completed according to the device interaction result: if yes, steps 9.a-10.a are executed; if no, steps 9.b-12.b are executed.
[0256] The device interaction result is the service operation result, and the service operation result in this step can be the fourth service operation result; according to the fourth service operation result, it is determined whether there is an AIoT device with uncompleted operation, if yes, steps 9.b-12.b are executed; if no, steps 9.a-10.a are executed.
[0257] Step.9.a The second communication node feeds back the service operation result of the AIoT device to the first communication node.
[0258] Step.10.a The first communication node feeds back the service operation result of the AIoT device through the seventh communication node.
[0259] Step.9.b The second communication node sends the service request of the AIoT device to the third communication node.
[0260] Step.10.b The third communication node interacts with the AIoT device to complete the service operation.
[0261] Step.11.b The third communication node returns the service operation result of the AIoT device to the second communication node.
[0262] The AIoT device in steps 9.b-11.b can be the fifth environmental Internet of Things device, after the third communication node interacts with the fifth environmental Internet of Things device to complete the service operation, the service operation result fed back by the fifth environmental Internet of Things device can be the fifth service operation result, and the third communication node feeds back the fifth service operation result to the second communication node.
[0263] Step.12.b The second communication node aggregates the service operation result of the AIoT device in Step.7 and the service operation result obtained from the third communication node, and feeds back to the first communication node.
[0264] That is, the second communication node aggregates the fourth service operation result and the fifth service operation result and feeds back to the first communication node.
[0265] Step.13.b The first communication node feeds back the service operation result of the AIoT device through the seventh communication node.
[0266] The second communication node in FIG. 13 can also be a fourth communication node, and the flow in FIG. 13 is performed by the second communication node / the fourth communication node to separately process operation functions of the two types of readers and aggregate operation results.
[0267] The method provided in the application can be used to separately process operation functions of the two types of readers of the AIoT device and aggregate operation results by the enhanced AMF / AIoT MF in a scenario where the two types of readers (a base station reader and a UE reader) coexist. Alternatively, the two types of reader operation functions of the AIoT device can be separately processed and the operation results can be aggregated by the base station reader / base station.
[0268] FIG. 14 is a structural schematic diagram of a device operation result management apparatus provided in an embodiment, which is applied to a first communication node. As shown in FIG. 14, the apparatus includes a first service operation result acquisition module 810 and a second service operation result acquisition module 820.
[0269] The first service operation result acquisition module 810 is configured to acquire a first service operation result of a first environmental IoT device, the first service operation result being acquired after a first service request is sent to the first environmental IoT device by a second communication node;
[0270] The second service operation result acquisition module 820 is configured to, in a case where it is determined according to the first service operation result that there is an environmental IoT device that has not completed operation, send a second service request to a corresponding second environmental IoT device by a third communication node, and acquire a second service operation result fed back by the second environmental IoT device for the second service request.
[0271] The device operation result management apparatus provided in the embodiments of the application is configured to acquire, by a first communication node, a first service operation result of a first environmental IoT device, the first service operation result being acquired after a first service request is sent to the first environmental IoT device by a second communication node; in a case where it is determined according to the first service operation result that there is an environmental IoT device that has not completed operation, send a second service request to a corresponding second environmental IoT device by a third communication node, and acquire a second service operation result fed back by the second environmental IoT device for the second service request. The first communication node first sends a first service request to the first environmental IoT device by the second communication node, in this case, the second communication node acts as a reader, and then acquires the first service operation result. If there is an environmental IoT device that has not completed service operation, a second service request is sent to the second environmental IoT device by the third communication node, and the second service operation result fed back by the second environmental IoT device is obtained, in this case, the third communication node acts as a reader, the fusion of the two different readers is realized, and the management of the operation result of the environmental IoT device is completed.
[0272] In some embodiments, the second service operation result obtaining module 820 comprises:
[0273] The second service request sending unit is configured to send a second service request to the third communication node through a fourth communication node serving the third communication node, so that the third communication node sends the second service request to a corresponding second environmental IoT device and obtains a second service operation result fed back by the second environmental IoT device in response to the second service request.
[0274] The second service operation result obtaining unit is configured to receive the second service operation result of the second environmental IoT device fed back through the fourth communication node.
[0275] In some embodiments, the apparatus further comprises:
[0276] The first service operation result feedback module is configured to feed back the first service operation result to a fifth communication node in a case where it is determined according to the first service operation result that there is no environmental IoT device with an unfinished operation.
[0277] In some embodiments, the apparatus further comprises:
[0278] The first operation summarizing module is configured to summarize the first service operation result and the second service operation result.
[0279] The first summarized result feedback module is configured to feed back the summarized service operation result to a fifth communication node.
[0280] In some embodiments, the apparatus further comprises:
[0281] The first capability receiving module is configured to receive environmental IoT capabilities and service ranges reported by the second communication node.
[0282] In some embodiments, the apparatus further comprises:
[0283] The first registration module is configured to register information with a sixth communication node, wherein the registered information comprises information of the second communication node connected by the first communication node.
[0284] In some embodiments, the apparatus further comprises:
[0285] The second capability receiving module is configured to receive environmental IoT capabilities reported by the third communication node.
[0286] In some embodiments, the apparatus further comprises:
[0287] The second registration module is configured to register information with a sixth communication node, wherein the registered information comprises information of the third communication node served by the first communication node.
[0288] The device operation result management apparatus provided in the embodiment belongs to the same inventive concept as the device operation result management method provided in the above embodiments, and the technical details not described in detail in the embodiment can be found in any of the above embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0289] FIG. 15 is a structural schematic diagram of another device operation result management apparatus provided in an embodiment, which is applied to a second communication node. As shown in FIG. 15, the apparatus includes a first service request sending module 910 and a first service operation result feedback module 920.
[0290] The first service request sending module 910 is configured to send a first service request to a first environmental IoT device.
[0291] The first service operation result feedback module 920 is configured to receive a first service operation result of the first environmental IoT device and send the first service operation result to a first communication node.
[0292] The device operation result management apparatus provided in the embodiment, the second communication node as a reader / writer, sends a first service request to a first environmental IoT device, receives a first service operation result fed back by the first environmental IoT device, and sends the first service operation result to a first communication node, thereby assisting the first communication node to complete management of operation results of environmental IoT devices.
[0293] In some embodiments, the apparatus further includes:
[0294] The first capability reporting module is configured to report environmental IoT capabilities and service ranges to the first communication node.
[0295] The device operation result management apparatus provided in the embodiment belongs to the same inventive concept as the device operation result management method provided in the above embodiments, and the technical details not described in detail in the embodiment can be found in any of the above embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0296] FIG. 16 is a structural schematic diagram of another device operation result management apparatus provided in an embodiment, which is applied to a third communication node. As shown in FIG. 16, the apparatus includes a second service request sending module 1010 and a second service operation result feedback module 1020.
[0297] The second service request sending module 1010 is configured to send a second service request to a second environmental IoT device.
[0298] The second service operation result feedback module 1020 is configured to acquire a second service operation result fed back by the second environmental IoT device for the second service request, and feed back the second service operation result.
[0299] The device operation result management apparatus provided by the embodiment of the present application, the third communication node as a reader / writer, sends a second service request to the second environmental IoT device, and receives a second service operation result fed back by the second environmental IoT device, and sends the second service operation result to the first communication node, to assist the first communication node to complete the management of the operation result of the environmental IoT device.
[0300] In some embodiments, the apparatus further comprises:
[0301] The second service request receiving module is configured to receive a second service request sent by a fourth communication node serving the third communication node;
[0302] The second service request is sent by the first communication node to the fourth communication node.
[0303] In some embodiments, the feeding back of the second service operation result comprises:
[0304] The second service operation result is fed back to the first communication node by the fourth communication node serving the third communication node.
[0305] In some embodiments, the apparatus further comprises:
[0306] The third registration module is configured to register information to the fourth communication node, wherein the registered information comprises environmental IoT capability.
[0307] The device operation result management apparatus proposed by the embodiment belongs to the same inventive concept as the device operation result management method proposed by the above-mentioned embodiments, and the technical details not described in detail in the embodiment can be referred to the above-mentioned embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0308] FIG. 17 is a structural schematic diagram of another device operation result management apparatus provided by an embodiment, which is applied to a first communication node, as shown in FIG. 17, the apparatus comprises a third service operation result acquiring module 1110.
[0309] The third service operation result acquiring module 1110 is configured to acquire a third service operation result of a third environmental IoT device, the third service operation result being acquired after a third service request is sent to the corresponding third environmental IoT device through a second communication node and a third communication node.
[0310] The device operation result management apparatus provided by the embodiment of the application, the first communication node sends a third service request to a third environmental Internet of Things device through the second communication node and the third communication node, and obtains a third service operation result fed back; the second communication node and the third communication node simultaneously send a third service request to the third environmental Internet of Things device as a reader and a writer, realize the fusion of two different readers and writers, and complete the management of the operation result of the environmental Internet of Things device. The first communication node aggregates the service operation result and feeds back to the fifth communication node, realizing the management of the operation result.
[0311] In some embodiments, the third communication node sends a third service request to a corresponding third environmental Internet of Things device, comprising:
[0312] The fourth communication node serving the third communication node sends a third service request to the third communication node, so that the third communication node sends the third service request to the corresponding third environmental Internet of Things device and obtains a third service operation result fed back by the third environmental Internet of Things device for the third service request.
[0313] In some embodiments, the apparatus further comprises:
[0314] The second operation aggregation module is configured to aggregate all third service operation results.
[0315] The second aggregation result feedback module is configured to feed back the aggregated third service operation result to the fifth communication node.
[0316] In some embodiments, the apparatus further comprises:
[0317] The third capability receiving module is configured to receive the environmental Internet of Things capability and service range reported by the second communication node.
[0318] In some embodiments, the apparatus further comprises:
[0319] The third registration module is configured to register information to the sixth communication node, wherein the registered information comprises information of the second communication node connected by the first communication node.
[0320] In some embodiments, the apparatus further comprises:
[0321] The fourth capability receiving module is configured to receive the environmental Internet of Things capability reported by the third communication node.
[0322] In some embodiments, the apparatus further comprises:
[0323] The fourth registration module is configured to register information to the sixth communication node, wherein the registered information comprises information of the third communication node served by the first communication node.
[0324] The device operation result management apparatus provided by the embodiment belongs to the same inventive concept as the device operation result management method provided by the above embodiment, and the technical details not described in the embodiment can be found in any of the above embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0325] FIG. 18 is a structural schematic diagram of another device operation result management apparatus provided by an embodiment, which is applied to a second communication node. As shown in FIG. 18, the apparatus includes a fourth service operation result obtaining module 1210, a fifth service request sending module 1220, and a fifth service operation result receiving module 1230.
[0326] The fourth service operation result obtaining module 1210 is configured to obtain a fourth service operation result of a fourth environmental IoT device, the fourth service operation result being obtained after a fourth service request is sent to the fourth environmental IoT device.
[0327] The fifth service request sending module 1220 is configured to, in a case where it is determined according to the fourth service operation result that there is an environmental IoT device that has not completed operation, send a fifth service request to a third communication node, so that the third communication node sends the fifth service request to a corresponding fifth environmental IoT device and obtains a fifth service operation result of the fifth environmental IoT device fed back by the fifth environmental IoT device in response to the fifth service request.
[0328] The fifth service operation result receiving module 1230 is configured to receive the fifth service operation result of the fifth environmental IoT device fed back by the third communication node.
[0329] The device operation result management apparatus provided by the embodiment is configured to: a second communication node obtains a fourth service operation result of a fourth environmental IoT device, the fourth service operation result being obtained after a fourth service request is sent to the fourth environmental IoT device; in a case where it is determined according to the fourth service operation result that there is an environmental IoT device that has not completed operation, the second communication node sends a fifth service request to a corresponding fifth environmental IoT device through a third communication node, and then obtains a fifth service operation result of the fifth environmental IoT device fed back by the fifth environmental IoT device in response to the fifth service request. The second communication node first sends a fourth service request to the fourth environmental IoT device, in this case, the second communication node acts as a reader / writer, and then obtains the fourth service operation result. If there is an environmental IoT device that has not completed service operation, the second communication node sends a fifth service request to the fifth environmental IoT device through the third communication node, and obtains the fifth service operation result fed back by the fifth environmental IoT device, in this case, the third communication node acts as a reader / writer, and the second communication node can act as a reader / writer and serve other reader / writers, realizing the fusion of two different reader / writers and completing the management of operation results of environmental IoT devices.
[0330] In some embodiments, the device further includes:
[0331] The fourth operation result feedback module is used to feed back the fourth operation result to the first communication node when it is determined that there are no environmental IoT devices that have not completed the operation based on the fourth operation result.
[0332] In some embodiments, the device further includes:
[0333] The third operation summary module is used to summarize the results of the fourth business operation and the fifth business operation.
[0334] The third summary result feedback module is used to feed back the summarized business operation results to the first communication node.
[0335] In some embodiments, the device further includes:
[0336] The second capability reporting module is used to report environmental IoT capabilities and service scope to the first communication node.
[0337] In some embodiments, the device further includes:
[0338] The fifth capability receiving module is used to receive the environmental IoT capabilities reported by the third communication node.
[0339] The device operation result management device proposed in this embodiment and the device operation result management method proposed in the above embodiments belong to the same inventive concept. Technical details not described in detail in this embodiment can be found in any of the above embodiments. Furthermore, this embodiment has the same beneficial effects as the device operation result management method.
[0340] Figure 19 is a schematic diagram of another device operation result management device provided in an embodiment. The device is applied to a third communication node. As shown in Figure 19, the device includes: a fifth service request receiving module 1310, a fifth service request sending module 1320, and a fifth service operation result feedback module 1330.
[0341] The fifth service request receiving module 1310 is used to receive the fifth service request sent by the second communication node;
[0342] The fifth service request sending module 1320 is used to send the fifth service request to the fifth environmental IoT device;
[0343] The fifth service operation result feedback module 1330 is used to obtain the fifth service operation result fed back by the fifth environmental IoT device in response to the fifth service request, and to feed back the fifth service operation result to the second communication node.
[0344] The device operation result management apparatus provided by the embodiment of the present application, the third communication node sends a fifth service request to the corresponding fifth environmental Internet of Things device, and then acquires a fifth service operation result fed back by the fifth environmental Internet of Things device for the fifth service request. In this case, the third communication node acts as a reader-writer, the second communication node can act as a reader-writer and can also serve other reader-writers, realizing the fusion of two different reader-writers, and the third communication node assists the second communication node to complete the management of the operation result of the environmental Internet of Things device.
[0345] In some embodiments, the apparatus further comprises:
[0346] The third capability reporting module is configured to report the environmental Internet of Things capability to the second communication node.
[0347] The device operation result management apparatus proposed by the embodiment belongs to the same inventive concept as the device operation result management method proposed by the above-mentioned embodiments, and the technical details not described in detail in the embodiment can be referred to the above-mentioned embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0348] FIG. 20 is a structural schematic diagram of another device operation result management apparatus provided by an embodiment, which is applied to a second communication node. As shown in FIG. 20, the apparatus comprises a sixth service request sending module 1410 and a sixth service operation result receiving module 1420.
[0349] The sixth service request sending module 1410 is configured to send a sixth service request to a sixth environmental Internet of Things device and a third communication node.
[0350] The sixth service operation result receiving module 1420 is configured to receive a sixth service operation result fed back by the sixth environmental Internet of Things device and a seventh service operation result fed back by the third communication node.
[0351] The seventh service operation result is fed back by the seventh environmental Internet of Things device after receiving the seventh service request, and the seventh service request is sent by the third communication node to the corresponding seventh environmental Internet of Things device according to the sixth service request.
[0352] The device operation result management apparatus provided by the embodiment of the present application, the second communication node sends a sixth service request to the sixth environmental Internet of Things device and a third communication node, sends a seventh service request to a seventh environmental Internet of Things device through the third communication node, obtains a sixth service operation result fed back by the sixth environmental Internet of Things device, and obtains a seventh service operation result fed back by the seventh environmental Internet of Things device through the third communication node. The second communication node can serve as a reader-writer and also serve other reader-writers, and through sending the sixth service request to the sixth environmental Internet of Things device and the third communication node and obtaining the operation result, the fusion of two different reader-writers is realized, and the management of the operation result of the environmental Internet of Things device is completed.
[0353] In some embodiments, the apparatus further comprises:
[0354] a fourth operation aggregation module configured to aggregate the sixth service operation result and the seventh service operation result;
[0355] a fourth aggregation result feedback module configured to feed back the aggregated service operation result to the first communication node.
[0356] In some embodiments, the apparatus further comprises:
[0357] a fourth capability reporting module configured to report the environmental Internet of Things capability and service range to the first communication node.
[0358] In some embodiments, the apparatus further comprises:
[0359] a sixth capability receiving module configured to receive the environmental Internet of Things capability reported by the third communication node.
[0360] The device operation result management apparatus proposed by the embodiment belongs to the same inventive concept as the device operation result management method proposed by the above-mentioned embodiments, and the technical details not described in detail in the embodiment can be referred to the above-mentioned embodiments, and the embodiment has the same beneficial effects as the device operation result management method.
[0361] The embodiment of the present application further provides a communication node, and FIG. 21 is a structural schematic diagram of a communication node provided by an embodiment, as shown in FIG. 21, the communication node provided by the present application comprises a processor 1510, a memory 1520, and a computer program stored in the memory and executable on the processor, and the processor 1510 executes the program to realize the device operation result management method described above.
[0362] The communication node can further include a memory 1520; the processor 1510 in the communication node can be one or more, and one processor 1510 is taken as an example in FIG. 21; the memory 1520 is configured to store one or more programs; the one or more programs are executed by the one or more processors 1510, so that the one or more processors 1510 implement the device operation result management method as described in the embodiments of the present application.
[0363] The communication node further includes a communication device 1530, an input device 1540 and an output device 1550.
[0364] The processor 1510, the memory 1520, the communication device 1530, the input device 1540 and the output device 1550 in the communication node can be connected through a bus or other means, and the connection through the bus is taken as an example in FIG. 21.
[0365] The input device 1540 can be used to receive input digital or character information, and generate key signal input related to user settings and function control of the communication node. The output device 1550 can include a display device such as a display screen.
[0366] The communication device 1530 can include a receiver and a transmitter. The communication device 1530 is configured to perform information receiving and transmitting communication according to the control of the processor 1510.
[0367] The memory 1520, as a computer readable storage medium, can be configured to store software programs, computer executable programs and modules, such as program instructions / modules corresponding to the device operation result management method according to the embodiments of the present application (for example, the first service operation result obtaining module 810 and the second service operation result obtaining module 820 in the device operation result management apparatus, or the first service request sending module 910 and the first service operation result feedback module 920 in the device operation result management apparatus, or the second service request sending module 1010 and the second service operation result feedback module 1020 in the device operation result management apparatus, or the third service operation result obtaining module 1110 in the device operation result management apparatus, or the fourth service operation result obtaining module 1210, the fifth service request sending module 1220 and the fifth service operation result receiving module 1230 in the device operation result management apparatus, or the fifth service request receiving module 1310, the fifth service request sending module 1320 and the fifth service operation result feedback module 1330 in the device operation result management apparatus, or the sixth service request sending module 1410 and the sixth service operation result receiving module 1420 in the device operation result management apparatus). The memory 1520 can include a program storage area and a data storage area, where the program storage area can store an operating system and application programs required by at least one function; and the data storage area can store data created according to the use of the communication node and the like. In addition, the memory 1520 can include a high-speed random access memory, and can further include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, or other non-volatile solid-state memory device. In some examples, the memory 1520 can further include a memory disposed remotely with respect to the processor 1510, which can be connected to the communication node through a network. Examples of the above network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and a combination thereof.
[0368] The embodiments of the present application further provide a storage medium, which stores a computer program, and the computer program is executed by a processor to implement the device operation result management method according to any of the embodiments of the present application.
[0369] Optionally, the device operation result management method is applied to a first communication node, and includes: obtaining a first service operation result of a first environmental Internet of Things device, the first service operation result being obtained after a first service request is sent to the first environmental Internet of Things device through a second communication node; and in a case where it is determined according to the first service operation result that there is an environmental Internet of Things device with an unfinished operation, sending a second service request to a corresponding second environmental Internet of Things device through a third communication node, and obtaining a second service operation result fed back by the second environmental Internet of Things device for the second service request.
[0370] Optionally, the device operation result management method is applied to the second communication node, and the method comprises: sending a first service request to the first environmental Internet of Things device; receiving a first service operation result of the first environmental Internet of Things device and sending the first service operation result to the first communication node.
[0371] Optionally, the device operation result management method is applied to the third communication node, and the method comprises: sending a second service request to the second environmental Internet of Things device; obtaining a second service operation result of the second environmental Internet of Things device fed back in response to the second service request, and feeding back the second service operation result.
[0372] Optionally, the device operation result management method is applied to the first communication node, and the method comprises: obtaining a third service operation result of the third environmental Internet of Things device, the third service operation result being obtained after sending a third service request to the corresponding third environmental Internet of Things device through the second communication node and the third communication node.
[0373] Optionally, the device operation result management method is applied to the second communication node, and the method comprises: obtaining a fourth service operation result of the fourth environmental Internet of Things device, the fourth service operation result being obtained after sending a fourth service request to the fourth environmental Internet of Things device; in a case where it is determined according to the fourth service operation result that there is an environmental Internet of Things device with an unfinished operation, sending a fifth service request to the third communication node, so that the third communication node sends the fifth service request to a corresponding fifth environmental Internet of Things device and obtains a fifth service operation result of the fifth environmental Internet of Things device fed back in response to the fifth service request; and receiving the fifth service operation result of the fifth environmental Internet of Things device fed back by the third communication node.
[0374] Optionally, the device operation result management method is applied to the third communication node, and the method comprises: receiving a fifth service request sent by the second communication node; sending the fifth service request to a fifth environmental Internet of Things device; obtaining a fifth service operation result of the fifth environmental Internet of Things device fed back in response to the fifth service request, and feeding back the fifth service operation result to the second communication node.
[0375] Optionally, the device operation result management method is applied to the second communication node, and the method comprises: sending a sixth service request to a sixth environmental Internet of Things device and the third communication node; receiving a sixth service operation result fed back by the sixth environmental Internet of Things device and a seventh service operation result fed back by the third communication node; wherein the seventh service operation result is fed back by a seventh environmental Internet of Things device after receiving a seventh service request, and the seventh service request is sent by the third communication node to the corresponding seventh environmental Internet of Things device according to the sixth service request.
[0376] The computer storage medium of the embodiments of the present application can adopt any combination of one or more computer readable media. The computer readable medium can be a computer readable signal medium or a computer readable storage medium. The computer readable storage medium may, for example, but is not limited to, an electrical, magnetic, optical, electromagnetic, infrared, or semiconductor system, device or apparatus, or any combination thereof. More specific examples (non-exhaustive list) of the computer readable storage medium include: an electrical connection having one or more wires, a portable computer diskette, a hard disk, a random access memory (RAM), a read only memory (ROM), an erasable programmable read only memory (EPROM), a flash memory, an optical fiber, a portable CD-ROM, an optical storage device, a magnetic storage device, or any suitable combination of the above. The computer readable storage medium can be any tangible medium containing or storing a program that can be used by or in connection with an instruction execution system, apparatus or device.
[0377] The computer readable signal medium can include a data signal propagating in baseband or propagating as a carrier wave in a propagated signal, in which computer readable program code is embodied. Such propagated signal can take a variety of forms, including, but not limited to, electro-magnetic, optical, or any suitable combination thereof. The computer readable signal medium can also be any computer readable medium that is not a storage medium and that can communicate or propagate program code, such as computer readable program code over a connection or a link, wireless, wireline, optical, or any suitable combination thereof.
[0378] The program code contained on the computer readable medium can be transmitted using any suitable medium, including, but not limited to, wireless, wireline, optical fiber, radio frequency (RF), or any suitable combination thereof.
[0379] The embodiments of the present application provide a computer program product, which includes a computer program, and the computer program, when executed by a processor, implements the steps of the device operation result management method according to any one of the embodiments of the present application.
[0380] Computer program code for carrying out operations of the present application can be written in any combination of one or more programming languages, including an object oriented programming language such as Java, Smalltalk, C++ or the like, and conventional procedural programming languages, such as the "C" programming language or similar programming languages. The program code can execute entirely on the user's computer, partly on the user's computer, as a stand-alone software package, partly on the user's computer and partly on a remote computer or entirely on the remote computer or server. In the latter scenario, the remote computer can be connected to the user's computer through any type of network, including a local area network (LAN) or a wide area network (WAN), or the connection can be made to an external computer (for example, through the Internet using an Internet Service Provider).
[0381] The specific embodiments described hereinabove are illustrative of specific embodiments of the present application and are not meant to be limiting of the scope of the application.
[0382] Those skilled in the art will appreciate that the term user terminal encompasses any appropriate type of wireless user device, such as a mobile phone, a portable data processing apparatus, a portable web browser, or a vehicle mounted mobile station.
[0383] In general, the various embodiments of the application can be implemented in hardware or special purpose circuits, software, logic or any combination thereof. For example, some aspects can be implemented in hardware, while other aspects can be implemented in
[0384] Embodiments of the application can be implemented by computer program instructions executed by a data processing apparatus of a mobile device, for example in a processor entity, or by hardware, or by a combination of software and hardware. The computer program instructions can be in the form of assembly instructions, instruction-set-architecture (ISA) instructions, machine instructions, machine dependent instructions, microcode, firmware instructions, state-setting data, or in any combination of one or more programming languages, written in any combination of one or more of a plurality of programming languages.
[0385] The block diagrams of any logical flow of the present application in the accompanying drawings can represent program steps or can represent interconnected logic circuits, modules, and functions, or can represent a combination of program steps and logic circuits, modules, and functions. The computer program can be stored on a memory. The memory can have any type suitable for the local technical environment and can be implemented using any suitable data storage technology, such as, but not limited to, a Read-Only Memory (ROM), a Random Access Memory (RAM), an optical storage device, and a system (a Digital Video Disc (DVD) or a Compact Disk (CD), etc.). The computer readable medium can include a non-transitory storage medium. The data processor can be of any type suitable for the local technical environment, and can include, but is not limited to, a general purpose computer, a special purpose computer, a microprocessor, a Digital Signal Processing (DSP), an Application Specific Integrated Circuit (ASIC), a Field-Programmable Gate Array (FPGA), and a processor based on multi-core processor architecture.
[0386] A detailed description of exemplary embodiments of the present application has been provided above with reference to the accompanying drawings. However, various modifications and alterations of the above embodiments will be apparent to those skilled in the art without departing from the scope of the present application, in view of this disclosure. Thus, the proper scope of the present application will be determined by the following claims.
Claims
1. A device operation result management method applied to a first communication node, comprising: obtaining a first service operation result of a first environmental IoT device, the first service operation result being obtained after sending a first service request to the first environmental IoT device through a second communication node; in response to determining that there is an environmental IoT device with uncompleted operation according to the first service operation result, sending a second service request to a corresponding second environmental IoT device through a third communication node, and obtaining a second service operation result of the second environmental IoT device fed back in response to the second service request.
2. The device operation result management method according to claim 1, wherein The sending of the second service request to the corresponding second environmental IoT device through the third communication node and the obtaining of the second service operation result of the second environmental IoT device fed back in response to the second service request comprise: sending the second service request to the third communication node through a fourth communication node serving the third communication node, so that the third communication node sends the second service request to the corresponding second environmental IoT device and obtains the second service operation result of the second environmental IoT device fed back in response to the second service request; receiving the second service operation result of the second environmental IoT device fed back through the fourth communication node. 3.The device operation result management method of claim 1, further comprising: in response to determining that there is no environmental IoT device with uncompleted operation according to the first service operation result, feeding back the first service operation result to a fifth communication node. 4.The device operation result management method of claim 1, further comprising: summarizing the first service operation result and the second service operation result; feeding back the summarized service operation result to a fifth communication node. 5.The device operation result management method of claim 1, further comprising: receiving environmental IoT capabilities and service ranges reported by the second communication node. 6.The device operation result management method of any one of claims 1-5, further comprising: registering information to a sixth communication node, wherein the registered information comprises information of the second communication node connected by the first communication node. 7.The device operation result management method of claim 1, further comprising: receiving environmental IoT capabilities reported by the third communication node. 8.The device operation result management method of claim 1, further comprising: registering information to a sixth communication node, wherein the registered information comprises information of the third communication node served by the first communication node. 9.A device operation result management method applied to a second communication node, comprising: sending a first service request to a first environmental IoT device; receiving a first service operation result of the first environmental IoT device and sending the first service operation result to a first communication node. 10.The device operation result management method of claim 9, further comprising: reporting environmental IoT capabilities and service ranges to the first communication node. 11.A device operation result management method applied to a third communication node, comprising: sending a second service request to a second environmental IoT device; obtaining a second service operation result fed back by the second environmental IoT device for the second service request, and feeding back the second service operation result.
12. The device operation result management method of claim 11, before the sending of the second service request to the second environmental IoT device, further comprising: receiving a second service request sent by a fourth communication node serving the third communication node; wherein the second service request is sent by the first communication node to the fourth communication node.
13. The device operation result management method according to claim 11, wherein The feeding back of the second service operation result comprises: feeding back the second service operation result to the first communication node through a fourth communication node serving the third communication node.
14. The device operation result management method of any one of claims 11-13, further comprising: registering information to the fourth communication node, wherein the registered information comprises environmental IoT capability.
15. A device operation result management method applied to a first communication node, comprising: obtaining a third service operation result of a third environmental IoT device, the third service operation result being obtained after sending a third service request to the corresponding third environmental IoT device through a second communication node and a third communication node.
16. The device operation result management method according to claim 15, wherein The sending of the third service request to the corresponding third environmental IoT device through the third communication node comprises: sending the third service request to the third communication node through a fourth communication node serving the third communication node, so that the third communication node sends the third service request to the corresponding third environmental IoT device and obtains a third service operation result fed back by the third environmental IoT device for the third service request.
17. The device operation result management method of claim 15, further comprising: summarizing all third service operation results; feeding back the summarized third service operation results to a fifth communication node.
18. The device operation result management method of claim 15, further comprising: receiving environmental IoT capability and service range reported by the second communication node.
19. The device operation result management method of any one of claims 15-18, further comprising: registering information to a sixth communication node, wherein the registered information comprises information of the second communication node connected by the first communication node.
20. The device operation result management method of claim 15, further comprising: receiving environmental IoT capability reported by the third communication node.
21. The device operation result management method of claim 15, further comprising: registering information to a sixth communication node, wherein the registered information comprises information of the third communication node served by the first communication node.
22. A device operation result management method applied to a second communication node, comprising: obtaining a fourth service operation result of a fourth environmental IoT device, the fourth service operation result being obtained after sending a fourth service request to the fourth environmental IoT device; in response to determining that there is an unfinished operation environment IoT device according to the fourth service operation result, sending a fifth service request to a third communication node, so that the third communication node sends the fifth service request to a corresponding fifth environment IoT device and obtains a fifth service operation result fed back by the fifth environment IoT device for the fifth service request; receiving the fifth service operation result of the fifth environment IoT device fed back by the third communication node.
23. The device operation result management method of claim 22, further comprising: in response to determining that there is no unfinished operation environment IoT device according to the fourth service operation result, feeding back the fourth service operation result to a first communication node.
24. The device operation result management method of claim 22, further comprising: summarizing the fourth service operation result and the fifth service operation result; feeding back the summarized service operation result to a first communication node.
25. The device operation result management method of claim 22, further comprising: reporting an environment IoT capability and a service range to a first communication node.
26. The device operation result management method of claim 22, further comprising: receiving an environment IoT capability reported by the third communication node.
27. A device operation result management method applied to a third communication node, comprising: receiving a fifth service request sent by a second communication node; sending the fifth service request to a fifth environment IoT device; obtaining a fifth service operation result fed back by the fifth environment IoT device for the fifth service request, and feeding back the fifth service operation result to the second communication node.
28. The device operation result management method of claim 27, further comprising: reporting an environment IoT capability to the second communication node.
29. A device operation result management method applied to a second communication node, comprising: sending a sixth service request to a sixth environment IoT device and a third communication node; receiving a sixth service operation result fed back by the sixth environment IoT device, and a seventh service operation result fed back by the third communication node; wherein the seventh service operation result is fed back by a seventh environment IoT device after receiving a seventh service request, and the seventh service request is sent by the third communication node to a corresponding seventh environment IoT device according to the sixth service request.
30. The device operation result management method of claim 29, further comprising: summarizing the sixth service operation result and the seventh service operation result; feeding back the summarized service operation result to a first communication node.
31. The device operation result management method of claim 29, further comprising: reporting an environment IoT capability and a service range to a first communication node.
32. The device operation result management method of claim 29, further comprising: receiving an environment IoT capability reported by the third communication node.
33. A communication node, comprising: a memory, a processor, a program stored on the memory and executable on the processor, and a data bus for realizing connection communication between the processor and the memory, the program being executed by the processor to realize the device operation result management method according to any one of claims 1-32.
34. A non-transitory storage medium configured as a computer-readable storage medium, the storage medium storing at least one program, the at least one program being executable by at least one processor to implement the device operation result management method according to any one of claims 1-32.
35. A computer program product, the computer program product comprising a computer program which, when executed by a processor, implements the device operation result management method according to any one of claims 1-32.
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