Information transmission method, device, communication equipment and computer storage medium
By recording and sending terminal logs containing time information, mobility status parameters, etc. in high-speed scenarios, the problem of inaccurate measurement results caused by the terminal's lack of high-speed measurement capability is solved, ensuring the accuracy and performance of network optimization.
Patent Information
- Application Number
- CN202110309783.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-03-23
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2041-03-23
AI Technical Summary
In high-speed scenarios, when the terminal does not have high-speed measurement capabilities, the recorded measurement results are inaccurate, leading to misleading network optimization and affecting network performance.
In high-speed scenarios, the terminal records and sends logs, which include time information, the number of cells passed, mobility state parameters, moving speed, and measurement result type. When high-speed measurement capability is not available, the terminal releases the recording measurement configuration or does not perform recording measurement.
Ensure accurate measurement results on the network side, avoid misleading network optimization, and improve network performance.
Smart Images

Figure CN115190521B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of wireless communications, and in particular to an information transmission method, apparatus, communication equipment and computer storage medium. Background Art
[0002] Minimization Drive Test (MDT) technology includes a logged MDT mode. If the network configures logged MDT for a terminal, the terminal will periodically record the measurement results of the above cells.
[0003] If a terminal is configured for logged MDT and enters a high-speed scenario and receives an instruction from the network to enable enhanced high-speed measurement mode, terminals that support high-speed measurement will be able to increase the measurement frequency based on their measurement capabilities, record accurate measurement results in the log, and then report them to the network. Terminals that do not support high-speed measurement will not increase the measurement frequency and will also report the results to the network through log reporting. As a result, inaccurate measurement results will be recorded in the log reported to the network, which will adversely affect network optimization on the network side. Summary of the Invention
[0004] To solve existing technical problems, embodiments of the present invention provide an information transmission method, apparatus, communication device, and computer storage medium.
[0005] To achieve the above-mentioned purpose, the technical solution of the embodiment of the present invention is implemented as follows:
[0006] In a first aspect, an embodiment of the present invention provides an information transmission method, the method comprising:
[0007] In a high-speed scenario, the terminal records and sends a log, where the log includes measurement results and at least one of the following information:
[0008] Time information, number of cells passed, mobility state parameters, moving speed, and type of measurement results.
[0009] In the above solution, being in the high-speed scenario is determined based on at least one of the following: the terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0010] In the above solution, the method further includes: the terminal receiving first indication information sent by the base station, where the first indication information is used to indicate whether the terminal records the type of the measurement result in the log.
[0011] In the above solution, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0012] In the above solution, the measurement result of the high-speed measurement mode includes at least one of the following:
[0013] Measurement results of the high-speed measurement mode inside the system and measurement results of the high-speed measurement mode outside the system.
[0014] In the above solution, the measurement results of the high-speed measurement mode in the system include at least one of the following:
[0015] The measurement results of the serving cell high-speed measurement mode, the measurement results of the same-frequency neighboring cell high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell high-speed measurement mode.
[0016] In the above solution, the measurement results of the out-of-system high-speed measurement mode include:
[0017] Measurement results of heterogeneous system neighboring cell high-speed measurement mode.
[0018] In the above solution, the measurement result of the non-high-speed measurement mode includes at least one of the following:
[0019] Measurement results in the non-high-speed measurement mode within the system and in the non-high-speed measurement mode outside the system.
[0020] In the above solution, the measurement results of the non-high-speed measurement mode in the system include at least one of the following:
[0021] The measurement results of the serving cell in non-high-speed measurement mode, the measurement results of the same-frequency neighboring cell in non-high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell in non-high-speed measurement mode.
[0022] In the above solution, the measurement results of the non-high-speed measurement mode outside the system include:
[0023] Measurement results of non-high-speed measurement mode for neighboring cells of different systems.
[0024] In a second aspect, an embodiment of the present invention further provides an information transmission method, the method comprising:
[0025] In a high-speed scenario, when the terminal does not have a high-speed measurement capability, the terminal releases the recorded measurement configuration and recorded measurement information, or the terminal does not perform recorded measurement.
[0026] In the above solution, the high-speed scene is determined based on at least one of the following:
[0027] The terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0028] In the above scheme, the method also includes: the terminal receives a second indication information sent by the base station, and the second indication information is used to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal not to perform recorded measurement.
[0029] In a third aspect, an embodiment of the present invention further provides an information transmission method, the method comprising:
[0030] In a high-speed scenario, the base station receives a log sent by the terminal, where the log includes a measurement result and at least one of the following information:
[0031] Time information, number of cells passed, mobility state parameters, moving speed, and type of measurement results.
[0032] In the above solution, the high-speed scene is determined based on at least one of the following:
[0033] The base station sends a high-speed measurement indication, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0034] In the above solution, the method further includes: the base station sending first indication information to the terminal, where the first indication information is used to indicate to the terminal whether to record the type of the measurement result in the log.
[0035] In the above solution, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0036] In the above solution, the measurement result of the high-speed measurement mode includes at least one of the following:
[0037] Measurement results of the high-speed measurement mode inside the system and measurement results of the high-speed measurement mode outside the system.
[0038] In the above solution, the measurement results of the high-speed measurement mode in the system include at least one of the following:
[0039] The measurement results of the serving cell high-speed measurement mode, the measurement results of the same-frequency neighboring cell high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell high-speed measurement mode.
[0040] In the above solution, the measurement results of the out-of-system high-speed measurement mode include:
[0041] Measurement results of heterogeneous system neighboring cell high-speed measurement mode.
[0042] In the above solution, the measurement result of the non-high-speed measurement mode includes at least one of the following:
[0043] Measurement results in the non-high-speed measurement mode within the system and in the non-high-speed measurement mode outside the system.
[0044] In the above solution, the measurement results of the non-high-speed measurement mode in the system include at least one of the following:
[0045] The measurement results of the serving cell in non-high-speed measurement mode, the measurement results of the same-frequency neighboring cell in non-high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell in non-high-speed measurement mode.
[0046] In the above solution, the measurement results of the non-high-speed measurement mode outside the system include:
[0047] Measurement results of non-high-speed measurement mode for neighboring cells of different systems.
[0048] In the above solution, the method further includes: the base station sending second indication information to the terminal, where the second indication information is used to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal not to perform recorded measurement.
[0049] In a fourth aspect, an embodiment of the present invention further provides an information transmission method, the method comprising:
[0050] The base station sends first information to the network device, where the first information includes at least one of the following information:
[0051] Cell identification, measurement configuration information, and terminal capability information.
[0052] In the above solution, the measurement configuration information indicates whether the terminal starts high-speed measurement and / or whether the terminal starts high-speed measurement.
[0053] In the above solution, the capability information of the terminal includes at least one of a terminal identifier, whether the terminal supports high-speed measurement, and whether the terminal does not support high-speed measurement.
[0054] In a fifth aspect, an embodiment of the present invention further provides an information transmission method, the method comprising:
[0055] The network device receives first information sent by the base station, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and capability information of the terminal;
[0056] The network device performs network optimization based on the first information.
[0057] In the above solution, the measurement configuration information indicates whether the terminal starts high-speed measurement and / or whether the terminal starts high-speed measurement.
[0058] In the above solution, the capability information of the terminal includes at least one of a terminal identifier, whether the terminal supports high-speed measurement, and whether the terminal does not support high-speed measurement.
[0059] In the sixth aspect, an embodiment of the present invention also provides an information transmission device, which includes a first execution unit for recording and sending logs in a high-speed scenario, wherein the logs include measurement results, and the logs also include at least one of the following information: time information, number of cells passed, mobility state parameters, moving speed, and type of measurement results.
[0060] In the seventh aspect, an embodiment of the present invention also provides an information transmission device, which includes a second execution unit for releasing the recorded measurement configuration and recorded measurement information, or not performing recorded measurement, in a high-speed scenario when the terminal does not have high-speed measurement capability.
[0061] In the eighth aspect, an embodiment of the present invention also provides an information transmission device, which includes a third receiving unit for receiving a log sent by a terminal, wherein the log includes a measurement result, and the log also includes at least one of the following information: time information, the number of cells passed, mobility state parameters, moving speed, and the type of measurement result.
[0062] In the ninth aspect, an embodiment of the present invention further provides an information transmission device, which includes a second sending unit for sending first information to a network device, wherein the first information includes at least one of the following information: cell identification, measurement configuration information, and terminal capability information.
[0063] In a tenth aspect, an embodiment of the present invention further provides an information transmission device, the device comprising: a fourth receiving unit and a third executing unit; wherein,
[0064] The fourth receiving unit is configured to receive first information sent by a base station, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and capability information of a terminal;
[0065] The third execution unit is used to perform network optimization based on the first information.
[0066] In the eleventh aspect, an embodiment of the present invention further provides a computer-readable storage medium on which a computer program is stored, which, when executed by a processor, implements the steps of the method described in the first aspect, second aspect, third aspect, fourth aspect or fifth aspect of the embodiment of the present invention.
[0067] In the twelfth aspect, an embodiment of the present invention further provides a communication device, comprising a memory, a processor, and a computer program stored on the memory and runnable on the processor, wherein when the processor executes the program, the steps of the method described in the first aspect, the second aspect, the third aspect, the fourth aspect, or the fifth aspect of the embodiment of the present invention are implemented.
[0068] The information transmission method, apparatus, communication equipment, and computer storage medium provided by the embodiments of the present invention, in a high-speed scenario, the terminal records and sends a log, the log including the measurement results, the log also including at least one of the following information: mobility state parameters, the type of measurement results; or, in the case where the terminal does not have high-speed measurement capabilities, the terminal does not record and / or does not send the log. In this way, in a high-speed scenario, the terminal can record the measurement results in a log and send a log carrying the measurement results, the log also including at least one of the following information: mobility state parameters, the type of measurement results, and other information, so that the network side can be informed of the type of measurement results and / or mobility status adopted by the terminal, or the terminal does not record the log and / or does not send the log, so as to avoid the measurement results of the terminal's non-high-speed measurement type in a high-speed scenario from misleading the network optimization, and avoid problems such as network negative optimization. BRIEF DESCRIPTION OF THE DRAWINGS
[0069] Figure 1 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 1 ;
[0070] Figure 2 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 2 ;
[0071] Figure 3 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 3 ;
[0072] Figure 4 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 4 ;
[0073] Figure 5 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 1 ;
[0074] Figure 6 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 2 ;
[0075] Figure 7 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 3 ;
[0076] Figure 8 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 4 ;
[0077] Figure 9 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 5 ;
[0078] Figure 10 Schematic diagram of the hardware structure of a communication device according to an embodiment of the present invention. DETAILED DESCRIPTION
[0079] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0080] An embodiment of the present invention provides an information transmission method, which is applied in a terminal. Figure 1 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 1 ;like Figure 1 As shown, the method includes:
[0081] Step 101: In a high-speed scenario, the terminal records and sends a log, where the log includes a measurement result and at least one of the following information: time information, number of cells passed through, mobility state parameter, moving speed, and type of measurement result.
[0082] This embodiment is applicable to a scenario where the terminal is in a high-speed scenario, which may also be referred to as a high-speed mobile scenario or a high-speed rail scenario, etc., and is not limited to this in this embodiment.
[0083] In some optional embodiments, being in the high-speed scenario is determined based on at least one of the following: the terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0084] In this embodiment, determining whether the terminal is in a high-speed scenario can be determined specifically by any of the above-mentioned methods. For example, if the terminal receives a high-speed measurement indication sent by the base station, it can be determined that it is currently in a high-speed scenario; for example, the network instructs the terminal to apply enhanced radio resource management (RRM) performance indicators to support high speeds of up to 500 kilometers per hour (km / h). Alternatively, the terminal can detect its own mobility state parameter. When the detection result meets the high mobility state parameter (that is, the number of service cells passed by the terminal within a certain time period exceeds a preset threshold), the terminal will report the mobility state parameter as high mobility to the network side, which can be used to determine that it is currently in a high-speed scenario. Alternatively, the terminal detects its own moving speed (or rate). If it is detected that the moving speed (or rate) exceeds a threshold, it can be determined that it is currently in a high-speed scenario; wherein the threshold can be configured by a network device (such as a base station), can be set by a pre-agreed method, or can be a default value.
[0085] In this embodiment, the measurement result is a measurement result obtained during the logged MDT process of the terminal. Exemplarily, this embodiment is applicable to the logged MDT mode, that is, when the logged MDT mode is configured, the measurement result is obtained through measurement and recorded in a log.
[0086] In this embodiment, the terminal records the measurement results in a log during the logged MDT process, and the log also includes at least one of the following information: time information, the number of cells passed through, mobility state parameters, moving speed, and the type of measurement results. The time information may also be called a timestamp, including the recording time of the log, and / or the time when the measurement occurred and / or the end time. The number of cells passed through indicates the number of service cells passed by the terminal during the recording period. The mobility state parameter indicates the mobility level of the terminal. Exemplarily, the mobility state parameter may include at least one of the following: normal, medium, high, etc. Different mobility state parameters may indicate that the terminal is in different mobility states, and different mobility states are related to the terminal's moving rate, or to the number of service cells passed by the terminal within a period of time. The moving speed indicates the average moving rate (or speed) of the terminal during the recording period.
[0087] In some optional embodiments, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0088] In some optional embodiments, the measurement result of the high-speed measurement mode includes at least one of the following: a measurement result of the in-system high-speed measurement mode, and a measurement result of the out-of-system high-speed measurement mode.
[0089] The technical solution of this embodiment is applied to various communication systems, such as the Global System of Mobile communication (GSM) system, the Code Division Multiple Access (CDMA) system, the Long Term Evolution (LTE) system or the 5G system, etc. The 5G system can also be called the New Radio (NR) system. The above communication systems are only examples, and this embodiment does not limit the applied communication systems. The measurement results of the high-speed measurement mode within the system include the measurement results of the high-speed measurement mode for the serving cell and / or the measurement results of the high-speed measurement mode of the neighboring cell in the same system as the serving cell; correspondingly, the measurement results of the high-speed measurement mode outside the system mainly refer to the measurement results of the high-speed measurement mode of the neighboring cell in a different system from the serving cell.
[0090] In some optional embodiments, the measurement results of the high-speed measurement mode within the system include at least one of the following: measurement results of the serving cell high-speed measurement mode, measurement results of the same-frequency neighboring area high-speed measurement mode, and measurement results of the different-frequency neighboring area high-speed measurement mode.
[0091] Specifically, the measurement result of the high-speed measurement mode of the service cell indicates that when the current recording is performed, the measurement of the service cell is a high-speed measurement mode that supports high-speed scenarios; the measurement result of the high-speed measurement mode of the same-frequency neighboring area indicates that when the current recording is performed, the measurement of the same-frequency neighboring area is a high-speed measurement mode that supports high-speed scenarios; the measurement result of the high-speed measurement mode of the different-frequency neighboring area indicates that when the current recording is performed, the measurement of the different-frequency neighboring area is a high-speed measurement mode that supports high-speed scenarios.
[0092] In some optional embodiments, the out-of-system high-speed measurement mode measurement result includes: a measurement result of an inter-system neighboring area high-speed measurement mode. Specifically, the measurement result of the inter-system neighboring area high-speed measurement mode indicates that the measurement of the inter-system neighboring area during the current recording is a high-speed measurement mode that supports high-speed scenarios.
[0093] In some optional embodiments, the measurement result of the non-high-speed measurement mode includes at least one of the following: a measurement result of the non-high-speed measurement mode within the system, and a measurement result of the non-high-speed measurement mode outside the system.
[0094] The technical solution of this embodiment can also be applied to the various communication systems mentioned above. The measurement results of the non-high-speed measurement mode within the system include the measurement results of the non-high-speed measurement mode for the serving cell and / or the measurement results of the non-high-speed measurement mode of the neighboring cell in the same system as the serving cell; correspondingly, the measurement results of the non-high-speed measurement mode outside the system mainly refer to the measurement results of the non-high-speed measurement mode of the neighboring cell in a different system from the serving cell.
[0095] In some optional embodiments, the measurement results of the non-high-speed measurement mode within the system include at least one of the following: measurement results of the non-high-speed measurement mode of the serving cell, measurement results of the non-high-speed measurement mode of the same-frequency neighboring area, and measurement results of the non-high-speed measurement mode of the different-frequency neighboring area.
[0096] Specifically, the measurement result of the non-high-speed measurement mode of the service cell indicates that the measurement of the service cell is in non-high-speed measurement mode during the current recording; the measurement result of the non-high-speed measurement mode of the same-frequency neighboring area indicates that the measurement of the same-frequency neighboring area is in non-high-speed measurement mode during the current recording; the measurement result of the non-high-speed measurement mode of the different-frequency neighboring area indicates that the measurement of the different-frequency neighboring area is in non-high-speed measurement mode during the current recording.
[0097] In some optional embodiments, the measurement result of the out-of-system non-high-speed measurement mode includes: a measurement result of an inter-system neighboring area non-high-speed measurement mode. Specifically, the inter-system neighboring area non-high-speed measurement mode indicates that the measurement of the inter-system neighboring area is in non-high-speed measurement mode during the current recording.
[0098] In some optional embodiments of the present invention, the method further includes: the terminal receiving first indication information sent by the base station, where the first indication information is used to indicate to the terminal whether to record the measurement type of the measurement result in the log.
[0099] In this embodiment, the base station (or access network device) sends first indication information to the terminal, and the first indication information is used to indicate whether the terminal records the type of the measurement result in the log; the type of the measurement result can be specifically referred to the above description and will not be repeated here.
[0100] In the technical solution of an embodiment of the present invention, in a high-speed scenario, the terminal can record the measurement results in a log and send a log carrying the measurement results. The log also includes at least one of the following information: time information, the number of cells passed, mobility state parameters, moving speed, type of measurement results, and other information, so that the network side can know the measurement type and / or mobility status adopted by the terminal corresponding to the measurement result, or when the terminal is in a high-speed scenario, if the terminal does not have high-speed measurement capability, the log may not be recorded and / or sent, so as to avoid the measurement results of the terminal's non-high-speed measurement mode in the high-speed scenario from misleading the network optimization, and avoid problems such as network negative optimization.
[0101] Optionally, the high-speed measurement in each embodiment of the present invention refers to terminal measurement in which the measurement index of the terminal meets the high-speed measurement requirement; the non-high-speed measurement refers to terminal measurement in which the measurement index of the terminal does not meet the high-speed measurement requirement.
[0102] In another information transmission method, the method may include: in a high-speed scenario, when the terminal does not have a high-speed measurement capability, the terminal releasing the recorded measurement configuration and the recorded measurement information, or the terminal not performing the recorded measurement.
[0103] In this embodiment, being in the high-speed scenario is determined based on at least one of the following: the terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0104] In some optional embodiments, the method further includes: the terminal receiving second indication information sent by the base station, where the second indication information is used to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal not to perform recorded measurement.
[0105] In this embodiment, a base station (or access network device) sends second indication information to a terminal, where the second indication information is used to instruct the terminal to release the logged measurement configuration and logged measurement information, or to instruct the terminal not to perform logged measurement. Exemplarily, the indication information may be carried via signaling. After receiving the second indication information, if the terminal performs a logged MDT process, the terminal releases the logged measurement configuration and logged measurement information according to the second indication information; alternatively, the terminal does not perform logged measurement according to the indication information.
[0106] Based on the above embodiments, an embodiment of the present invention further provides an information transmission method, which is applied to a base station (or may also be referred to as an access network device). Figure 2 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 2 ;like Figure 2 As shown, the method includes:
[0107] Step 201: In a high-speed scenario, the base station receives a log sent by the terminal, where the log includes a measurement result and at least one of the following information: time information, number of cells passed through, mobility state parameter, moving speed, and type of measurement result.
[0108] In some optional embodiments of the present invention, being in the high-speed scenario is determined based on at least one of the following: the terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
[0109] In some optional embodiments of the present invention, the method further includes: the base station sending first indication information to the terminal, where the first indication information is used to indicate to the terminal whether to record the type of the measurement result in the log.
[0110] In some optional embodiments, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0111] In some optional embodiments, the measurement result of the high-speed measurement mode includes at least one of the following: a measurement result of the in-system high-speed measurement mode, and a measurement result of the out-of-system high-speed measurement mode.
[0112] In some optional embodiments, the measurement results of the high-speed measurement mode within the system include at least one of the following: measurement results of the serving cell high-speed measurement mode, measurement results of the same-frequency neighboring area high-speed measurement mode, and measurement results of the different-frequency neighboring area high-speed measurement mode.
[0113] In some optional embodiments, the measurement result of the out-of-system high-speed measurement mode includes: the measurement result of the inter-system neighboring area high-speed measurement mode.
[0114] In some optional embodiments, the measurement result of the non-high-speed measurement mode includes at least one of the following: a measurement result of the non-high-speed measurement mode within the system, and a measurement result of the non-high-speed measurement mode outside the system.
[0115] In some optional embodiments, the measurement results of the non-high-speed measurement mode within the system include at least one of the following: measurement results of the non-high-speed measurement mode of the serving cell, measurement results of the non-high-speed measurement mode of the same-frequency neighboring area, and measurement results of the non-high-speed measurement mode of the different-frequency neighboring area.
[0116] In some optional embodiments, the measurement result of the out-of-system non-high-speed measurement mode includes: a measurement result of an inter-system neighboring area non-high-speed measurement mode.
[0117] In some optional embodiments of the present invention, the method further includes: the base station sending second indication information to the terminal, where the second indication information is used to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal not to perform recorded measurement.
[0118] The above technical solutions of the embodiments of the present invention can be described in detail in the aforementioned embodiments of the information transmission method applied to the terminal, which will not be described again here.
[0119] In some optional embodiments, the base station sends first information to the network device, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and terminal capability information. Optionally, the network device may be a network management device.
[0120] In this embodiment, the base station may report at least one of the following information to a network device (e.g., a network management device): a cell identifier (e.g., a cell ID), measurement configuration information, and terminal capability information; wherein, optionally, the measurement configuration information indicates whether high-speed measurement is enabled for the terminal and / or whether high-speed measurement is not enabled for the terminal. Optionally, the terminal capability information includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
[0121] Exemplarily, the measurement configuration information indicates that the terminal turns on high-speed measurement (or high-speed rail measurement) and / or turns off high-speed measurement (or high-speed rail measurement), wherein turning off high-speed measurement (or high-speed rail measurement) by the terminal can also be referred to as the terminal being in normal measurement.
[0122] An embodiment of the present invention further provides an information transmission method, which is applied to a base station (or may also be referred to as an access network device). Figure 3 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 3 ;like Figure 3 As shown, the method includes:
[0123] Step 301: A base station sends first information to a network device, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and terminal capability information. Optionally, the network device may be a network management device.
[0124] In this embodiment, the base station may report at least one of the following information to a network device (e.g., a network management device): a cell identifier (e.g., a cell ID), measurement configuration information, and terminal capability information; wherein, optionally, the measurement configuration information indicates whether high-speed measurement is enabled for the terminal and / or whether high-speed measurement is not enabled for the terminal. Optionally, the terminal capability information includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
[0125] Exemplarily, the measurement configuration information indicates that the terminal turns on high-speed measurement (or high-speed rail measurement) and / or turns off high-speed measurement (or high-speed rail measurement), wherein turning off high-speed measurement (or high-speed rail measurement) by the terminal can also be referred to as the terminal being in normal measurement.
[0126] Based on the above embodiments, an embodiment of the present invention further provides an information transmission method, which is applied to a network device, and the network device may be, for example, a network management device. Figure 4 Schematic diagram of the information transmission method according to an embodiment of the present invention Figure 4 ;like Figure 4 As shown, the method includes:
[0127] Step 401: A network device receives first information sent by a base station, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and terminal capability information;
[0128] Step 402: The network device performs network optimization based on the first information.
[0129] In this embodiment, the base station may report at least one of the following information to a network device (e.g., a network management device): a cell identifier (e.g., a cell ID), measurement configuration information, and terminal capability information; wherein, optionally, the measurement configuration information indicates whether high-speed measurement is enabled for the terminal and / or whether high-speed measurement is not enabled for the terminal. Optionally, the terminal capability information includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
[0130] Exemplarily, the measurement configuration information indicates that the terminal turns on high-speed measurement (or high-speed rail measurement) and / or turns off high-speed measurement (or high-speed rail measurement), wherein turning off high-speed measurement (or high-speed rail measurement) by the terminal can also be referred to as the terminal being in normal measurement.
[0131] In this embodiment, the network device performs network optimization based on the first information reported by the base station. Exemplarily, the network device obtains whether the terminal in a certain cell needs to enable high-speed measurement based on the measurement configuration information of the cell reported by the base station, and further determines whether the terminal enables high-speed measurement during the logged MDT period based on the capability information of the terminal in the cell reported by the base station (for example, whether the terminal supports high-speed measurement), or determines the reliability of the information carried in the log. For example: if a cell is configured to enable high-speed measurement for a terminal, and the reported measurement capability of a certain terminal is that it does not support high-speed measurement, the network may determine that the information carried in the log reported by the terminal is error information.
[0132] The technical solutions of the embodiments of the present invention can be applied to the following scenarios:
[0133] Scenario 1
[0134] When the terminal is in idle state (IDLE state), if it enters a cell configured for high-speed measurement, but the terminal does not have high-speed measurement capability, the measurement frequency is lower than the requirement for high-speed measurement. When the terminal measures cells within the system and cells outside the system, the period of neighboring cell measurement is lower than the requirement of the corresponding measurement period indicator, resulting in inaccurate measurement results. After reporting to the network side, the network side uses the error information to optimize the network, which may cause the power threshold configuration of the cell selection / cell reselection criteria to be incorrect, resulting in the terminal residing in a non-optimal cell (the optimal cell is usually the cell with the highest ranking in the cell reselection R criterion), or unable to select a better cell. In an embodiment of the present invention, the information carried in the log reported by the terminal to the network side may include a measurement type indication; and / or, when the measurement requirements are not met (for example, the terminal does not have high-speed measurement capability), the terminal does not record and / or does not report the log; and / or, the base station and the network device exchange measurement configuration information and / or terminal capability information within the cell to assist the network device in determining whether the measurement information in the log reported by the terminal is reliable, thereby preventing network negative optimization.
[0135] When there is no network measurement indication, a low-speed mobile terminal in the idle / inactive state is in a high-speed scenario. When the terminal performs logged MDT, the following information can be recorded and reported:
[0136] 1. Mobility status;
[0137] 2. The measurement results in the system are those in non-high-speed measurement mode;
[0138] 3. The measurement results outside the system are those in non-high-speed measurement mode;
[0139] 4. Terminal measurement results.
[0140] Alternatively, the base station instructs the measurement type to be reported using Logged MDT through signaling. The terminal receives the base station's instruction. If the terminal is in the IDLE / INACTIVE state and is in a high-speed scenario, the terminal can record and report the following information when performing Logged MDT:
[0141] 1. The measurement results in the system are those in non-high-speed measurement mode;
[0142] 2. The inter-system measurement results are those obtained in non-high-speed measurement mode;
[0143] 3. Terminal measurement results.
[0144] Alternatively, the base station interacts with the network device and reports the measurement configuration information and terminal capability information of a cell to the network device as follows:
[0145] 1. Cell ID;
[0146] 2. The terminal does not enable high-speed measurement;
[0147] 3. Terminal ID;
[0148] 4. The terminal does not support high-speed measurement.
[0149] Scenario 2
[0150] If a cell is configured with high-speed measurement, and there are two types of terminals in the cell, namely terminals that support high-speed measurement and terminals that do not support high-speed measurement. The network side can know the measurement method (i.e., the type of measurement result) used when measuring the measurement results in the terminal report log. After obtaining this information, the network side can first divide the measurement results into two categories according to the terminal's measurement method: high-speed measurement results and non-high-speed measurement results; the network side can analyze and process the massive data in the two reported results in the time domain according to the different measurement intervals, and judge the difference in accuracy and reliability between the two results based on the obtained cumulative distribution function (CDF) curve. The high-speed measurement result shall prevail. If the reliability gap is large, the high-speed measurement result can be discarded to ensure the correctness of network optimization; if the reliability gap is small, it proves that the network layout is more reasonable at this time. The two results can be considered in combination to increase the data sample and further improve the degree of network optimization.
[0151] Scenario 3
[0152] If a cell is a cell configured with high-speed measurement, and there are two types of terminals in the cell, namely terminals that support high-speed measurement and terminals that do not support high-speed measurement. The network side can know the measurement method used by the terminal during measurement (that is, the type of measurement result) and the moving speed of the terminal during measurement, and divide the measurement results into high-speed (the high speed here corresponds to the moving speed of the terminal) / high-speed (the high speed here corresponds to the high-speed measurement mode or high-speed measurement scenario of the embodiment of the present invention) measurement results, high-speed (the high speed here corresponds to the moving speed of the terminal) / non-high-speed measurement results (the non-high speed here corresponds to the non-high-speed measurement mode or non-high-speed measurement scenario of the embodiment of the present invention), low-speed / high-speed measurement results, and low-speed / non-high-speed measurement results. First, the network side can analyze the measurement result type. For example, if the low-speed / high-speed measurement results and / or low-speed / non-high-speed measurement results account for a large proportion of the overall type within a period of time, the network can interact with the base station to turn off the high-speed rail measurement configuration of the cell, thereby reducing the terminal measurement energy consumption without affecting the network service performance. For another example: If the high-speed / non-high-speed measurement results account for a large proportion, the network side can adjust the power / quality threshold of access cell / cell selection for such terminals to ensure the accuracy and success rate of such terminals in cell selection / reselection / access.
[0153] An embodiment of the present invention also provides an information transmission device. Figure 5 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 1 ;like Figure 5 As shown, the device includes a first execution unit 11, which is used to record and send a log in a high-speed scenario. The log includes measurement results, and the log also includes at least one of the following information: time information, the number of cells passed, mobility state parameters, moving speed, and the type of measurement results.
[0154] In some optional embodiments of the present invention, being in the high-speed scenario is determined based on at least one of the following: receiving a high-speed measurement indication sent by a base station, the terminal reporting a mobility state parameter as high mobility, and the terminal moving speed exceeding a threshold.
[0155] In some optional embodiments of the present invention, the apparatus further includes a first receiving unit 12, configured to receive first indication information sent by a base station, where the first indication information is used to indicate whether the terminal records the type of the measurement result in the log.
[0156] In some optional embodiments of the present invention, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0157] Optionally, the measurement result of the high-speed measurement mode includes at least one of the following: a measurement result of the in-system high-speed measurement mode, and a measurement result of the out-of-system high-speed measurement mode.
[0158] Optionally, the measurement result of the high-speed measurement mode within the system includes at least one of the following: the measurement result of the serving cell high-speed measurement mode, the measurement result of the same-frequency neighboring area high-speed measurement mode, and the measurement result of the different-frequency neighboring area high-speed measurement mode.
[0159] Optionally, the measurement result of the out-of-system high-speed measurement mode includes: the measurement result of the inter-system neighboring area high-speed measurement mode.
[0160] Optionally, the measurement result of the non-high-speed measurement mode includes at least one of the following: a measurement result of the non-high-speed measurement mode within the system, and a measurement result of the non-high-speed measurement mode outside the system.
[0161] Optionally, the measurement results of the non-high-speed measurement mode within the system include at least one of the following: measurement results of the non-high-speed measurement mode of the serving cell, measurement results of the non-high-speed measurement mode of the same-frequency neighboring area, and measurement results of the non-high-speed measurement mode of the different-frequency neighboring area.
[0162] Optionally, the measurement result of the out-of-system non-high-speed measurement mode includes: the measurement result of the inter-system neighboring area non-high-speed measurement mode.
[0163] In an embodiment of the present invention, the device can be applied to a terminal. In actual applications, the first execution unit 11 in the device can be implemented by a central processing unit (CPU), a digital signal processor (DSP), a microcontroller unit (MCU), or a field-programmable gate array (FPGA); in actual applications, the first receiving unit 12 in the device can be implemented by a communication module (including: a basic communication suite, an operating system, a communication module, a standardized interface and protocol, etc.) and a transceiver antenna.
[0164] An embodiment of the present invention also provides an information transmission device. Figure 6 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 2 ;like Figure 6 As shown, the apparatus includes a second execution unit 21, which is configured to release the recorded measurement configuration and recorded measurement information, or not perform recorded measurement, in a high-speed scenario when the terminal does not have a high-speed measurement capability.
[0165] In some optional embodiments of the present invention, being in the high-speed scenario is determined based on at least one of the following: receiving a high-speed measurement indication sent by a base station, the terminal reporting a mobility state parameter as high mobility, and the terminal moving speed exceeding a threshold.
[0166] In some optional embodiments of the present invention, the apparatus further includes a second receiving unit 22, configured to receive second indication information sent by the base station, wherein the second indication information is used to indicate release of the logged measurement configuration and logged measurement information, or to indicate not to perform logged measurement.
[0167] In an embodiment of the present invention, the device can be applied to a terminal. The second execution unit 21 in the device can be implemented by a CPU, DSP, MCU, or FPGA in practical applications. The second receiving unit 22 in the device can be implemented by a communication module (including a basic communication suite, an operating system, a communication module, standardized interfaces and protocols, etc.) and a transceiver antenna in practical applications.
[0168] An embodiment of the present invention also provides an information transmission device. Figure 7 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 3 ;like Figure 7 As shown, the device includes a third receiving unit 31, which is used to receive a log sent by the terminal, wherein the log includes a measurement result, and the log also includes at least one of the following information: time information, number of cells passed, mobility state parameters, moving speed, and type of measurement result.
[0169] In some optional embodiments of the present invention, being in the high-speed scenario is determined based on at least one of the following: a base station sends a high-speed measurement indication, a terminal reports a mobility state parameter as high mobility, and a terminal moving speed exceeds a threshold.
[0170] In some optional embodiments of the present invention, the apparatus further includes a first sending unit 32, configured to send first indication information to the terminal, where the first indication information is used to indicate whether the terminal records the type of the measurement result in the log.
[0171] In some optional embodiments of the present invention, the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
[0172] Optionally, the measurement result of the high-speed measurement mode includes at least one of the following: a measurement result of the in-system high-speed measurement mode, and a measurement result of the out-of-system high-speed measurement mode.
[0173] Optionally, the measurement result of the high-speed measurement mode within the system includes at least one of the following: the measurement result of the serving cell high-speed measurement mode, the measurement result of the same-frequency neighboring area high-speed measurement mode, and the measurement result of the different-frequency neighboring area high-speed measurement mode.
[0174] Optionally, the measurement result of the out-of-system high-speed measurement mode includes: the measurement result of the inter-system neighboring area high-speed measurement mode.
[0175] Optionally, the measurement result of the non-high-speed measurement mode includes at least one of the following: a measurement result of the non-high-speed measurement mode within the system, and a measurement result of the non-high-speed measurement mode outside the system.
[0176] Optionally, the measurement results of the non-high-speed measurement mode within the system include at least one of the following: measurement results of the non-high-speed measurement mode of the serving cell, measurement results of the non-high-speed measurement mode of the same-frequency neighboring area, and measurement results of the non-high-speed measurement mode of the different-frequency neighboring area.
[0177] Optionally, the measurement result of the out-of-system non-high-speed measurement mode includes: the measurement result of the inter-system neighboring area non-high-speed measurement mode.
[0178] In some optional embodiments of the present invention, the device further includes a first sending unit 32, configured to send second indication information to the terminal, wherein the second indication information is used to instruct the terminal to release the recorded measurement configuration and recorded measurement information, or to instruct the terminal not to perform recorded measurement.
[0179] In an embodiment of the present invention, the device can be applied to a base station. In actual applications, the third receiving unit 31 and the first sending unit 32 in the device can be implemented by a communication module (including: a basic communication suite, an operating system, a communication module, standardized interfaces and protocols, etc.) and a transceiver antenna.
[0180] An embodiment of the present invention also provides an information transmission device. Figure 8 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 4 ;like Figure 8 As shown, the apparatus includes a second sending unit 41, configured to send first information to a network device, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and terminal capability information.
[0181] In some optional embodiments of the present invention, the measurement configuration information indicates whether the terminal enables high-speed measurement and / or whether the terminal does not enable high-speed measurement.
[0182] In some optional embodiments of the present invention, the capability information of the terminal includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
[0183] In an embodiment of the present invention, the device can be applied to a base station. In actual application, the second sending unit 41 in the device can be implemented by a communication module (including: basic communication suite, operating system, communication module, standardized interface and protocol, etc.) and a transceiver antenna.
[0184] An embodiment of the present invention also provides an information transmission device. Figure 9 Schematic diagram of the structure of the information transmission device according to an embodiment of the present invention Figure 5 ;like Figure 9 As shown, the device includes: a fourth receiving unit 51 and a third executing unit 52; wherein,
[0185] The fourth receiving unit 51 is configured to receive first information sent by a base station, where the first information includes at least one of the following information: a cell identifier, measurement configuration information, and capability information of a terminal;
[0186] The third execution unit 52 is configured to perform network optimization based on the first information.
[0187] In some optional embodiments of the present invention, the measurement configuration information indicates whether the terminal enables high-speed measurement and / or whether the terminal does not enable high-speed measurement.
[0188] In some optional embodiments of the present invention, the capability information of the terminal includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
[0189] In an embodiment of the present invention, the apparatus can be applied to a network device, such as a network management device. The third execution unit 52 in the apparatus can be implemented by a CPU, DSP, MCU, or FPGA in practical applications. The fourth receiving unit 51 in the apparatus can be implemented by a communication module (including a basic communication suite, an operating system, a communication module, standardized interfaces and protocols, etc.) and a transceiver antenna in practical applications.
[0190] It should be noted that the information transmission device provided in the above embodiments is illustrated only by the division of the aforementioned program modules when performing information transmission. In actual applications, the aforementioned processing can be assigned to different program modules as needed, that is, the internal structure of the device can be divided into different program modules to complete all or part of the aforementioned processing. In addition, the information transmission device provided in the above embodiments and the information transmission method embodiment are based on the same concept. The specific implementation process is detailed in the method embodiment and will not be repeated here.
[0191] An embodiment of the present invention further provides a communication device, which may be a terminal, a base station, or a network device. Figure 10 FIG. 1 is a schematic diagram of the hardware structure of a communication device according to an embodiment of the present invention. Figure 10 As shown, the communication device includes a memory 62, a processor 61, and a computer program stored in the memory 62 and executable on the processor 61. When the processor 61 executes the program, the steps of the information transmission method applied to the terminal described above in the embodiment of the present invention are implemented; or, when the processor 61 executes the program, the steps of the information transmission method applied to the base station described above in the embodiment of the present invention are implemented; or, when the processor 61 executes the program, the steps of the information transmission method applied to the network device described above in the embodiment of the present invention are implemented.
[0192] Optionally, the communication device may further include one or more network interfaces 63. The various components in the communication device are coupled together via a bus system 64. It is understood that the bus system 64 is used to achieve connection and communication between these components. In addition to the data bus, the bus system 64 also includes a power bus, a control bus, and a status signal bus. However, for the sake of clarity, Figure 10 Various buses are labeled as bus system 64.
[0193] It is understood that the memory 62 can be a volatile memory or a non-volatile memory, or can include both volatile and non-volatile memories. Among them, the non-volatile memory can be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically erasable programmable read-only memory (EEPROM), a magnetic random access memory (FRAM), a flash memory, a magnetic surface memory, an optical disk, or a compact disc read-only memory (CD-ROM); the magnetic surface memory can be a magnetic disk or a magnetic tape. The volatile memory can be a random access memory (RAM), which is used as an external cache. By way of example and not limitation, many forms of RAM are available, such as static random access memory (SRAM), synchronous static random access memory (SSRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate synchronous dynamic random access memory (DDRSDRAM), enhanced synchronous dynamic random access memory (ESDRAM), synchronous link dynamic random access memory (SLDRAM), and direct rambus random access memory (DRRAM).The memory 62 described in the embodiments of the present invention is intended to include, but is not limited to, these and any other suitable types of memory.
[0194] The methods disclosed in the above embodiments of the present invention can be applied to or implemented by processor 61. Processor 61 may be an integrated circuit chip with signal processing capabilities. During implementation, each step of the above method can be completed by hardware integrated logic circuits in processor 61 or by software instructions. The above processor 61 may be a general-purpose processor, a DSP, or other programmable logic device, a discrete gate or transistor logic device, a discrete hardware component, etc. Processor 61 can implement or execute the various methods, steps, and logic block diagrams disclosed in the embodiments of the present invention. A general-purpose processor may be a microprocessor or any conventional processor. The steps of the methods disclosed in the embodiments of the present invention can be directly implemented and executed by a hardware decoding processor, or by a combination of hardware and software modules in the decoding processor. The software module may be located in a storage medium located in memory 62. Processor 61 reads information from memory 62 and, in conjunction with its hardware, completes the steps of the above method.
[0195] In an exemplary embodiment, the communication device may be implemented by one or more application-specific integrated circuits (ASICs), DSPs, programmable logic devices (PLDs), complex programmable logic devices (CPLDs), field-programmable gate arrays (FPGAs), general-purpose processors, controllers, microcontrollers (MCUs), microprocessors, or other electronic components to perform the aforementioned method.
[0196] In an exemplary embodiment, the present invention further provides a computer-readable storage medium, such as a memory 62 including a computer program. The computer program can be executed by a processor 61 of a communication device to perform the steps of the aforementioned method. The computer-readable storage medium can be a memory such as FRAM, ROM, PROM, EPROM, EEPROM, Flash Memory, magnetic surface mount storage, optical disk, or CD-ROM; or various devices including any one or any combination of the aforementioned memories.
[0197] An embodiment of the present invention also provides a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the steps of the information transmission method applied to the terminal as described above in the embodiment of the present invention; or, when executed by a processor, implements the steps of the information transmission method applied to the base station as described above in the embodiment of the present invention; and, when executed by a processor, implements the steps of the information transmission method applied to the network device as described above in the embodiment of the present invention.
[0198] The methods disclosed in the several method embodiments provided in this application can be arbitrarily combined without conflict to obtain new method embodiments.
[0199] The features disclosed in the several product embodiments provided in this application can be arbitrarily combined without conflict to obtain new product embodiments.
[0200] The features disclosed in the several method or device embodiments provided in this application can be arbitrarily combined without conflict to obtain new method embodiments or device embodiments.
[0201] In the several embodiments provided in this application, it should be understood that the disclosed devices and methods can be implemented in other ways. The device embodiments described above are merely schematic. For example, the division of the units is merely a logical function division. In actual implementation, there may be other division methods, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be ignored or not executed. In addition, the coupling, direct coupling, or communication connection between the components shown or discussed can be through some interfaces, and the indirect coupling or communication connection of the devices or units can be electrical, mechanical or other forms.
[0202] The units described above as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units; some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0203] In addition, all functional units in the embodiments of the present invention may be integrated into one processing unit, or each unit may be separately used as a unit, or two or more units may be integrated into one unit; the above-mentioned integrated units may be implemented in the form of hardware or in the form of hardware plus software functional units.
[0204] Those skilled in the art will understand that all or part of the steps of implementing the above-mentioned method embodiment can be completed by hardware related to program instructions, and the aforementioned program can be stored in a computer-readable storage medium. When the program is executed, it executes the steps of the above-mentioned method embodiment; and the aforementioned storage medium includes: mobile storage devices, ROM, RAM, disks or optical disks, etc. Various media that can store program codes.
[0205] Alternatively, if the above-mentioned integrated unit of the present invention is implemented in the form of a software functional module and sold or used as an independent product, it can also be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the embodiment of the present invention, or the part that contributes to the prior art, can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes a number of instructions for enabling a computer device (which can be a personal computer, server, or network device, etc.) to execute all or part of the methods described in each embodiment of the present invention. The aforementioned storage medium includes: various media that can store program codes, such as mobile storage devices, ROM, RAM, magnetic disks or optical disks.
[0206] The above description is merely a specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any modifications or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in the present invention should be included in the scope of protection of the present invention. Therefore, the scope of protection of the present invention should be based on the scope of protection of the claims.
Claims
1. An information transmission method, characterized in that: The method comprises: In a high-speed scenario, the terminal records and sends a log, so that the network device can perform reliability judgment on the log based on the first information, the log including the measurement result, the log also including: a mobility state parameter and a type of the measurement result; or the log also including the type of the measurement result; The type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; and the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal.
2. The method according to claim 1, characterized in that The high-speed scene is determined based on at least one of the following: The terminal receives a high-speed measurement indication sent by the base station, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
3. The method according to claim 1, characterized in that The method further comprises: The terminal receives first indication information sent by a base station, where the first indication information is used to indicate whether the terminal records the type of the measurement result in the log.
4. The method according to claim 1, wherein The measurement result of the high-speed measurement mode includes at least one of the following: The measurement results of the high-speed measurement mode within the system and the measurement results of the high-speed measurement mode outside the system; The measurement results of the high-speed measurement mode in the system include at least one of the following: The measurement results of the serving cell high-speed measurement mode, the measurement results of the same-frequency neighboring cell high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell high-speed measurement mode; The measurement results of the out-of-system high-speed measurement mode include: Measurement results of heterogeneous system neighboring cell high-speed measurement mode.
5. The method according to claim 1, wherein The measurement result of the non-high-speed measurement mode includes at least one of the following: Measurement results of non-high-speed measurement mode within the system and measurement results of non-high-speed measurement mode outside the system; The measurement results of the non-high-speed measurement mode in the system include at least one of the following: Measurement results of the serving cell in non-high-speed measurement mode, measurement results of the same-frequency neighboring cell in non-high-speed measurement mode, and measurement results of the inter-frequency neighboring cell in non-high-speed measurement mode; The measurement results of the non-high-speed measurement mode outside the system include: Measurement results of non-high-speed measurement mode for neighboring cells of different systems.
6. An information transmission method, characterized in that: The method comprises: In a high-speed scenario, the base station receives a log sent by the terminal, so that the network device performs reliability judgment on the log based on the first information, the log including the measurement result, the log further including: a mobility state parameter and a type of the measurement result; or the log further including the type of the measurement result; The type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; and the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal.
7. The method according to claim 6, characterized in that The high-speed scene is determined based on at least one of the following: The base station sends a high-speed measurement indication, the terminal reports a mobility state parameter as high mobility, and the terminal moving speed exceeds a threshold.
8. The method according to claim 6, characterized in that The method further comprises: The base station sends first indication information to the terminal, where the first indication information is used to indicate whether the terminal records the type of the measurement result in the log.
9. The method according to claim 6, characterized in that The measurement result of the high-speed measurement mode includes at least one of the following: The measurement results of the high-speed measurement mode within the system and the measurement results of the high-speed measurement mode outside the system; The measurement results of the high-speed measurement mode in the system include at least one of the following: The measurement results of the serving cell high-speed measurement mode, the measurement results of the same-frequency neighboring cell high-speed measurement mode, and the measurement results of the inter-frequency neighboring cell high-speed measurement mode; The measurement results of the out-of-system high-speed measurement mode include: Measurement results of heterogeneous system neighboring cell high-speed measurement mode.
10. The method according to claim 6, characterized in that The measurement result of the non-high-speed measurement mode includes at least one of the following: Measurement results of non-high-speed measurement mode within the system and measurement results of non-high-speed measurement mode outside the system; The measurement results of the non-high-speed measurement mode in the system include at least one of the following: Measurement results of the serving cell in non-high-speed measurement mode, measurement results of the same-frequency neighboring cell in non-high-speed measurement mode, and measurement results of the inter-frequency neighboring cell in non-high-speed measurement mode; The measurement results of the non-high-speed measurement mode outside the system include: Measurement results of non-high-speed measurement mode for neighboring cells of different systems.
11. The method according to claim 6, characterized in that The method further comprises: The base station sends second indication information to the terminal, where the second indication information is used to instruct the terminal to release the logged measurement configuration and the logged measurement information, or to instruct the terminal not to perform logged measurement.
12. An information transmission method, characterized in that: The method comprises: The base station sends first information to the network device, where the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal; the first information is used by the network device to perform reliability judgment on a log of the terminal, where the log includes a measurement result and the following information: a mobility state parameter and a type of measurement result; or, the log includes a measurement result and a type of measurement result; the type of the measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
13. The method according to claim 12, characterized in that The measurement configuration information indicates whether the terminal starts high-speed measurement and / or whether the terminal does not start high-speed measurement.
14. The method according to claim 12, characterized in that The capability information of the terminal includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
15. An information transmission method, characterized in that: The method comprises: The network device receives first information sent by the base station, the first information including: a cell identifier, measurement configuration information, and capability information of the terminal; the first information is used by the network device to perform reliability judgment on a log of the terminal, the log including a measurement result and the following information: a mobility state parameter and a type of the measurement result; or the log including the measurement result and the type of the measurement result; the type of the measurement result including a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; The network device performs network optimization based on the first information.
16. The method according to claim 15, characterized in that The measurement configuration information indicates whether the terminal starts high-speed measurement and / or whether the terminal does not start high-speed measurement.
17. The method according to claim 15, characterized in that The capability information of the terminal includes at least one of a terminal identifier, support for high-speed measurement by the terminal, and non-support for high-speed measurement by the terminal.
18. An information transmission device, characterized in that: The apparatus includes a first execution unit, configured to record and send a log in a high-speed scenario, so that a network device can perform reliability judgment on the log based on first information, wherein the log includes a measurement result, and the log also includes: a mobility state parameter and a type of measurement result; or the log also includes the type of measurement result; the type of measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; and the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal.
19. An information transmission device, characterized in that: The apparatus includes a third receiving unit, configured to receive a log sent by a terminal, so that the network device can perform reliability judgment on the log based on the first information, wherein the log includes a measurement result, and the log also includes: a mobility state parameter and a type of measurement result; or the log also includes the type of measurement result; the type of measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; and the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal.
20. An information transmission device, characterized in that: The apparatus includes a second sending unit, configured to send first information to a network device, the first information including: a cell identifier, measurement configuration information, and capability information of the terminal; the first information is used by the network device to perform reliability judgment on a log of the terminal, the log including a measurement result and the following information: a mobility state parameter and a type of measurement result; or, the log including a measurement result and a type of measurement result; the type of measurement result including a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode.
21. An information transmission device, characterized in that: The device includes: a fourth receiving unit and a third executing unit; wherein, The fourth receiving unit is configured to receive first information sent by a base station, where the first information includes: a cell identifier, measurement configuration information, and capability information of the terminal; the first information is used by a network device to perform reliability judgment on a log of the terminal, where the log includes a measurement result and the following information: a mobility state parameter and a type of measurement result; or, the log includes a measurement result and a type of measurement result; the type of measurement result includes a measurement result of a high-speed measurement mode and / or a measurement result of a non-high-speed measurement mode; The third execution unit is used to perform network optimization based on the first information.
22. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the steps of the method according to any one of claims 1 to 5 are implemented; or When the program is executed by a processor, the steps of the method according to any one of claims 6 to 11 are implemented; or When the program is executed by a processor, the steps of the method according to any one of claims 12 to 14 are implemented; or When the program is executed by a processor, the steps of the method according to any one of claims 15 to 17 are implemented.
23. A communication device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein: When the processor executes the program, the steps of the method according to any one of claims 1 to 5 are implemented; or When the processor executes the program, the steps of the method according to any one of claims 6 to 11 are implemented; or When the processor executes the program, the steps of the method according to any one of claims 12 to 14 are implemented; or When the processor executes the program, the steps of the method according to any one of claims 15 to 17 are implemented.
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