WO2022242368A1 - Procédé de commande de connexion réseau, équipement terminal et support de stockage - Google Patents

Procédé de commande de connexion réseau, équipement terminal et support de stockage Download PDF

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Publication number
WO2022242368A1
WO2022242368A1 PCT/CN2022/085939 CN2022085939W WO2022242368A1 WO 2022242368 A1 WO2022242368 A1 WO 2022242368A1 CN 2022085939 W CN2022085939 W CN 2022085939W WO 2022242368 A1 WO2022242368 A1 WO 2022242368A1
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Prior art keywords
terminal device
connection state
network
preset
state
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PCT/CN2022/085939
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English (en)
Chinese (zh)
Inventor
胡武君
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Oppo广东移动通信有限公司
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Publication of WO2022242368A1 publication Critical patent/WO2022242368A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W24/00Supervisory, monitoring or testing arrangements
    • H04W24/02Arrangements for optimising operational condition
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/34Reselection control
    • H04W36/36Reselection control by user or terminal equipment
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02DCLIMATE CHANGE MITIGATION TECHNOLOGIES IN INFORMATION AND COMMUNICATION TECHNOLOGIES [ICT], I.E. INFORMATION AND COMMUNICATION TECHNOLOGIES AIMING AT THE REDUCTION OF THEIR OWN ENERGY USE
    • Y02D30/00Reducing energy consumption in communication networks
    • Y02D30/70Reducing energy consumption in communication networks in wireless communication networks

Definitions

  • the embodiments of the present application relate to the field of communication technologies, and in particular, to a network connection control method, a terminal device, and a storage medium.
  • the fifth generation mobile communication technology (5th generation mobile networks, 5G) is the latest generation of cellular mobile communication technology.
  • 5G has two networking methods, one is non-standalone networking (Non-Standalone, NSA), and the other is It is an independent networking (Standalone, SA).
  • Embodiments of the present application provide a network connection control method, a terminal device, and a storage medium, which greatly simplifies the flow of control processing, and effectively improves the control efficiency and control accuracy of the network connection.
  • the embodiment of the present application provides a network connection control method, the method including:
  • the terminal device When the terminal device is in the first connection state, if the first preset condition is met, the terminal device is prohibited from measuring the signal of the second network standard cell in the first connection state, so as to prevent the terminal device from The first connection state is switched to the second connection state, the first connection state is the connection state under the first network standard cell, and the second connection state is the connection state under the second network standard cell, so The first network standard cell and the second network standard cell are cells of different network standards.
  • an embodiment of the present application provides a terminal device, where the terminal device includes an execution unit,
  • the execution unit is configured to, when the terminal device is in the first connection state, if a first preset condition is met, prohibiting the terminal device from measuring the signal of the second network standard cell in the first connection state, To prevent the terminal device from switching from the first connection state to a second connection state, the first connection state is the connection state under the first network standard cell, and the second connection state is the second network standard In the connection state under the cell, the cell of the first network standard and the cell of the second network standard are cells of different network standards.
  • an embodiment of the present application provides a terminal device, the terminal device includes a processor and a memory storing instructions executable by the processor, and when the instructions are executed by the processor, the following is implemented: In one aspect, the network connection control method.
  • the embodiment of the present application provides a computer-readable storage medium on which a program is stored, and when the program is executed by a processor, the method for controlling network connection as described in the first aspect is implemented.
  • An embodiment of the present application provides a network connection control method, a terminal device, and a storage medium.
  • the terminal device can comprehensively judge whether to switch from the first connection state to the second connection state, Therefore, automatic switching from the first connection state to the second connection state can be effectively reduced, and the intelligence of network connection control is improved.
  • FIG. 1 is a schematic diagram of an application scenario of cell camping
  • FIG. 2 is a first schematic diagram of the implementation flow of the network connection control method proposed in the embodiment of the present application
  • FIG. 3 is a second schematic diagram of the implementation flow of the network connection control method proposed in the embodiment of the present application.
  • FIG. 4 is a schematic diagram of the third implementation flow of the network connection control method proposed in the embodiment of the present application.
  • FIG. 5 is a schematic diagram 4 of the implementation flow of the network connection control method proposed in the embodiment of the present application.
  • FIG. 6 is a schematic diagram of the fifth implementation flow of the network connection control method proposed in the embodiment of the present application.
  • FIG. 7 is a sixth schematic diagram of the implementation flow of the network connection control method proposed in the embodiment of the present application.
  • FIG. 8 is a schematic diagram of an implementation flow diagram 7 of a network connection control method proposed in an embodiment of the present application.
  • FIG. 9 is a first schematic diagram of a composition structure of a terminal device proposed in an embodiment of the present application.
  • FIG. 10 is a second schematic diagram of the composition and structure of the terminal device proposed in the embodiment of the present application.
  • references to “some embodiments” describe a subset of all possible embodiments, but it is understood that “some embodiments” may be the same subset or a different subset of all possible embodiments, and Can be combined with each other without conflict.
  • first ⁇ second ⁇ third involved in the embodiment of the present application is only used to distinguish similar objects, and does not represent a specific ordering of objects. Understandably, “first ⁇ second ⁇ The specific order or sequence of "third” can be interchanged where allowed, so that the embodiments of the application described herein can be implemented in an order other than that illustrated or described herein.
  • the fifth generation mobile communication technology (5th generation mobile networks, 5G) is the latest generation of cellular mobile communication technology.
  • 5G has two networking methods, one is non-standalone networking (Non-Standalone, NSA), and the other is It is an independent networking (Standalone, SA).
  • Non-independent networking NSA refers to the use of the existing fourth generation mobile communication technology (the 4th generation mobile communication technology, 4G) infrastructure to deploy 5G networks.
  • the 5G carrier based on the NSA architecture only carries user data, and its control Signaling is still transmitted over the 4G network. That is, NSA provides 5G signal support by integrating 5G base stations and 4G base stations. Its advantages are very obvious. The investment in base station construction is small, so it can build a 5G network at a faster speed.
  • the independent networking SA only uses 5G base stations to provide 5G network signals, so the construction cost is relatively high, and the progress of base station construction is relatively slow. Make good use of the advantages of 5G, such as ultra-low latency and high speed.
  • the chip platform SA consumes a lot of power; in terms of comprehensive scenarios, the power consumption ranking of the three network modes is NSA>SA >LTE.
  • the power level of the smart terminal is certain, in some special scenarios, such as browsing the web with low speed requirements, long-term use of the 5G network will lead to serious power consumption of the mobile phone and shorten the battery life, which will affect the user experience.
  • dynamically controlling the switching between NSA, SA, and LTE in the connected state may increase the power consumption of the terminal equipment and reduce the intelligence of the terminal equipment, that is, the control of the existing network connection
  • the method is less intelligent.
  • the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state based on the detected real-time state parameters, so as to effectively reduce the The automatic switching to the SA connection state improves the intelligence of network connection control.
  • the terminal device can judge whether to switch from the LTE connection state to the SA connection state according to the real-time state parameters and the first preset condition (or NR measurement condition).
  • the first preset condition or NR measurement condition.
  • FIG. 1 is a schematic diagram of an application scenario of cell camping.
  • a communication connection is established between network devices.
  • the terminal device may establish a communication connection with the network device through fourth-generation, fifth-generation and other mobile communication technologies, and the communication connection mode is not limited in this embodiment of the present application.
  • the terminal device can select a cell as a serving cell (also called a "resident cell") according to the service quality value (such as signal quality) of the cell where each network device is located.
  • the QoS values of the cells where different network devices are located may be different, and the terminal device should reside in a cell with a better QoS value.
  • FIG 1 assume that there are three network devices, namely network device 1, network device 2, and network device 3, and the terminal device resides in cell 1 where network device 1 is located.
  • cell 1 is the service of the terminal device
  • the cells, the cell 2 where the network device 2 is located, and the cell 3 where the network device 3 is located are all adjacent to the cell 1, that is, the cell 2 and the cell 3 are adjacent cells of the cell 1 (also called “neighboring cells").
  • FIG. 2 is a schematic diagram of the implementation flow of the network connection control method proposed in the embodiment of the present application.
  • the terminal A method for a device to control a network connection may include the following steps:
  • Step 101 When the terminal device is in the first connection state, if the first preset condition is met, prohibit the terminal device from measuring the signal of the second network standard cell in the first connection state, so as to prevent the terminal device from the first connection state Switch to the second connection state.
  • the first connection state is the connection state under the first network standard cell
  • the second connection state is the connection state under the second network standard cell.
  • the first network standard cell and the second network standard cell are different Network-based community.
  • the terminal device can further judge whether the first preset condition is met, and if the first preset condition is met, the terminal device can choose to prohibit the terminal device from In the first connection state, the signal measurement of the second network standard cell is used to prevent the terminal equipment from switching from the first connection state to the second connection state.
  • the first connection state is the connection state under the first network standard cell
  • the second connection state The state is the connected state under the second network standard cell
  • the first network standard cell and the second network standard cell are cells of different network standard.
  • the terminal device can perform real-time detection of state parameters, obtain the real-time state parameters corresponding to the terminal device, and then judge whether the first preset condition is met according to the real-time state parameters.
  • the terminal device may be called user equipment (User Equipment, UE).
  • the terminal device can be a personal communication service (Personal Communication Service, PCS) phone, a cordless phone, a session initiation protocol (Session Initiation Protocol, SIP) phone, a wireless local loop (Wireless Local Loop, WLL) station, a personal digital assistant (Personal Digital Assistant, PDA) and other equipment
  • the terminal equipment can also be a smart phone, tablet computer, palmtop computer, mobile station (Mobile Station, MS), mobile terminal (Mobile Terminal), etc.
  • the terminal equipment can be connected via the wireless access network (Radio Access Network, RAN) communicates with one or more network devices.
  • Radio Access Network, RAN Radio Access Network
  • the terminal equipment may be a mobile phone (or called a "cellular" phone) or a computer with a terminal equipment, etc. Exchange voice and/or data with the radio access network.
  • Terminal devices can also be handheld devices with wireless communication functions, computing devices or other processing devices connected to wireless modems, vehicle-mounted devices, wearable devices, terminal devices in future evolving networks, etc., which are not limited in the implementation of this application.
  • the first connection state and the second connection state may be any two different connection states among multiple connection states such as LTE connection state, SA connection state, and NSA connection state.
  • the cell of the first network standard and the cell of the second network standard may be any two different cells among multiple cells such as an LTE cell, an SA cell, and an NSA cell.
  • the first connection state may be an LTE connection state
  • the first network standard cell may be an LTE cell
  • the second connection state may be an SA connection state
  • the second network standard cell may be an SA cell.
  • the LTE connection state of the terminal device can represent that the terminal device resides in an LTE cell and is in a radio resource control (Radio Resource Control, RRC) connection state;
  • the SA connection state of the terminal device can represent the terminal The device resides in the SA cell and is in the RRC connection state;
  • the NSA connection state of the terminal device can indicate that the terminal device resides in the NSA cell and is in the RRC connection state.
  • RRC Radio Resource Control
  • the real-time state parameters obtained by the detection of the terminal device can not only determine the real-time state of the terminal device, but also determine the real-time network state of the cell where the terminal device is located.
  • the real-time status parameters obtained by terminal device detection include network status parameters, screen status, battery power, temperature, network transmission quality, application identification, location information, network identification, operating status, etc. at least one parameter.
  • the network state parameters may include the sending rate representing the sending (Transport, Tx) state and the receiving rate representing the receiving (Receive, Rx) state;
  • the screen state may represent the on and off of the display screen configured by the terminal device
  • the situation can include the off-screen state and the on-screen state;
  • the power is the current remaining power of the terminal device;
  • the temperature can be the overall temperature of the terminal device;
  • the network transmission quality can represent the network service quality of the current resident cell, and can include reference signals Received Power (Reference Signal Receiving Power, RSRP), Reference Signal Receiving Quality (Reference Signal Receiving Quality, RSRQ), etc.
  • the application identification can determine the application that the terminal device is running;
  • the location information is the current specific location of the terminal device , such as the longitude and latitude obtained by the terminal device through the Global Positioning System (Global Positioning System, GPS);
  • the network identifier can be the specific network identifier of the current cell, such as the BWP (Bandwidth Part);
  • the real-time state parameters of the terminal device utilized when judging whether the first preset condition is met may include: screen state, network signal, battery power, application identification (whether the running application belongs to the APP blacklist), It also includes location information, specific network identifiers such as network configuration BWP, and terminal device status such as Doze and deep sleep.
  • the terminal device when the terminal device is in the first connection state, after detecting the real-time state parameters, the terminal device may judge whether the first preset condition is satisfied according to the real-time state parameters.
  • the first preset condition may be used to determine whether to perform switching of the network connection state, that is, may be used to determine whether to perform switching of the camping cell.
  • the terminal device may allow the switching process of the network connection state, that is, allow the terminal device to receive signals from the second network standard cell in the first connection state. Measurement; correspondingly, if the terminal device satisfies the first preset condition, the terminal device is not allowed to switch the network connection state, that is, the terminal device is prohibited from measuring the signal of the second network standard cell in the first connection state.
  • the real-time status parameters obtained due to terminal device detection may include network status parameters, screen status, battery power, temperature, network transmission quality, application identification, location information, network identification, operating status, etc. At least one of the parameters, so when judging whether the first preset condition is met according to the real-time state parameters, the terminal device can comprehensively consider and judge one or more of the above parameters, and finally determine whether to allow the The switch of the network connection state is to determine whether to allow the terminal device to measure the signal of the second network standard cell in the first connection state.
  • the terminal device judges whether the first preset condition is satisfied according to the corresponding real-time state parameters, the obtained judgment result is related to the real-time state of the terminal device and/or Corresponding to the real-time network status of the cell where the terminal device is located.
  • the first connection state of the terminal device is the LTE connection state
  • the power in the real-time state parameters of the terminal device is lower than the preset power threshold
  • the switching of the network connection state is not performed, that is, the terminal device is prohibited from switching from the LTE connection state to the NSA connection state or the SA connection state with large power consumption.
  • the terminal device judges whether the first preset condition is satisfied, if it determines that the first preset condition is satisfied, then the terminal device is prohibited from using the second network standard cell in the first connection state. signal measurement, thereby preventing the terminal device from switching from the first connected state to the second connected state.
  • the terminal device may prohibit the switching of the network connection state, that is, the terminal device continues to maintain the network connection state is the first connected state.
  • the terminal device can choose to prohibit the terminal device from measuring the signal of the second network standard cell in the first connection state, and then will not report the measurement information obtained by the signal measurement process to the network device, thereby preventing the terminal device from The switching processing of the network connection state is performed according to the switching instruction sent, that is, preventing the switching from the first connection state to the second connection state.
  • the terminal device may prohibit the switching of the network connection state, that is, the terminal device continues to maintain the network connection state as the first preset condition.
  • a connected state the terminal device can perform signal measurement on the second network standard cell in the first connection state, but it is prohibited to report the measurement information obtained by the signal measurement process to the network device, that is, it is allowed to perform signal measurement on the second network standard cell in the first connection state.
  • the signal measurement of the standard cell is prohibited from reporting, so that the terminal device can avoid the switching process of the network connection state due to the switching instruction issued by the network device, that is, prevent the switching from the first connection state to the second connection state.
  • the terminal device may choose to prohibit the active measurement of neighboring cell signals, and/or prohibit reporting the obtained measurement information to the network device, so that It is possible to prevent the network device from issuing a switching instruction so that the terminal device switches from the first connection state to the second connection state.
  • FIG. 3 is a schematic diagram of the second implementation flow of the network connection control method proposed in the embodiment of the present application.
  • the method for the terminal device to control the network connection may further include the following steps:
  • Step 102 When the terminal device is in the first connection state, if it is determined that the first preset condition is not met, the terminal device is allowed to measure the signal of the second network standard cell in the first connection state, so as to obtain a measurement information.
  • the terminal device can further determine whether the first preset condition is met, and if the first preset condition is not met, the terminal device can choose to allow In the first connection state, the signal of the cell of the second network standard is measured, so that the measurement information can be obtained.
  • the terminal device may allow switching of the network connection state.
  • the terminal device may perform signal measurement on the cell of the second network standard in the first connection state, and obtain corresponding measurement information.
  • Step 103 report the measurement information to the network device.
  • the terminal device if it is determined that the first preset condition is not satisfied, then the terminal device allows the terminal device to measure the signal of the second network standard cell in the first connection state to obtain the measurement information , the measurement information can be reported to the corresponding network device.
  • the terminal device may allow switching of the network connection state.
  • the terminal device may report the measurement information to the network device after obtaining the corresponding measurement information by performing signal measurement on the cell of the second network standard in the first connection state.
  • the network device in order to ensure that the terminal device can always stay in a cell with relatively good service quality, the network device needs the terminal device to report the execution of the second network standard cell in the first connection state. Measurement information obtained after signal measurement, such as reference signal received power RSRP, reference signal received quality RSRQ, etc.
  • the terminal device when the terminal device reports the measurement information to the network device, it may choose to perform periodic reporting or event-triggered reporting.
  • the periodic reporting is configured by the network device, and the terminal device directly reports the measured measurement information; event-triggered reporting can be divided into events of the same frequency system and events between different systems.
  • the network device is a device that provides wireless communication functions for terminal devices, including but not limited to: Long-Term Evolution (Long-Term Evolution, LTE) system, New Radio (New Radio) , NR) system or an evolved base station (evolutional Node B, which may be referred to as eNB or e-NodeB), macro base station, Micro base station (also called “small base station”), pico base station, base transceiver station (Base Transceiver Station, BTS), base band unit (Base Band Unit, BBU), access point (Access Point, AP), transmission site ( Transmission Point, TP) or a new generation of base stations (new generation Node B, gNodeB), etc.
  • LTE Long-Term Evolution
  • New Radio New Radio
  • NR New Radio
  • evolutional Node B which may be referred to as eNB or e-NodeB
  • macro base station Micro base station (also called “small base station”), pico base station, base transceiver station (Base Transceiver
  • Figure 4 is a schematic diagram of the third implementation flow of the network connection control method proposed by the embodiment of the present application. As shown in Figure 4, in the embodiment of the present application, after reporting the measurement information to the network device, that is, after step 103, the terminal The method for device controlling network connection may also include the following steps:
  • Step 104 receiving a switching instruction sent by the network device.
  • Step 105 Switch the first connection state to the second connection state in response to the switching instruction.
  • the terminal device after the terminal device reports to the network device the measurement information obtained by performing the signal measurement of the second network standard cell in the first connection state, it can receive the handover command issued by the network device, and then can respond to The switching instruction switches the terminal device from the first connection state to the second connection state.
  • the terminal device can switch the network connection state, that is, switch from the first connection state to the second connection state. connected state.
  • the terminal device when the terminal device is in the first connection state, if the terminal device determines that the first preset condition is satisfied, the terminal device can start the timer, and then choose to disable The terminal device measures the signal of the second network standard cell in the first connection state, so as to prevent the terminal device from switching from the first connection state to the second connection state.
  • the terminal device may set the running time of the timer according to network conditions, for example, the running time of the timer may be set to 5s.
  • the terminal device in the first connection state determines that the first preset condition is satisfied, it chooses to start the timer, and does not measure the signal of the second network standard cell within 5s of the timer running time, so that the network can be prohibited Toggle the connection state.
  • the terminal device may allow the signal measurement of the second network standard cell in the first connection state, that is, The terminal device is allowed to switch from the first connected state to the second connected state.
  • the terminal device can choose to directly perform signal measurement on the cell of the second network standard, that is, directly enter the handover process of the network connection state.
  • the terminal device after the terminal device starts the timer, when the running time of the timer is exceeded, the terminal device can also choose to check again according to the real-time status parameters of the terminal device whether the first preset condition is satisfied judgment.
  • the terminal device after the terminal device judges whether the first preset condition is met again, if the first preset condition is met, the terminal device can choose to reset the timer and reset the timer while the timer is running.
  • the terminal device is prohibited from measuring the signal of the second network standard cell in the first connection state within a certain period of time; you can also choose to directly prohibit the terminal device from measuring the signal of the second network standard cell in the first connection state.
  • the terminal device can no longer judge whether the first preset condition is met in real time, but use the timer running time as the cycle to determine whether the first preset condition is met A permanent judgment, that is, re-execute the judgment process of whether the first preset condition is met after the timer expires, so as to save power consumption.
  • the terminal device can combine the real-time state parameters obtained by detection to comprehensively and comprehensively determine whether to switch the network connection state. After determining that the first preset condition is met, the terminal device is prohibited from reporting the signal measurement and/or measurement information of the second network standard cell in the first connection state, so as to continue to maintain the network connection state as the second network connection state a connected state, and prevent the terminal device from switching from the first connected state to the second connected state.
  • the embodiment of the present application provides a network connection control method.
  • the terminal device When the terminal device is in the first connection state, if the first preset condition is met, the terminal device is prohibited from sending signals to the second network standard cell in the first connection state. Measure to prevent terminal equipment from switching from the first connection state to the second connection state.
  • the first connection state is the connection state under the first network standard cell
  • the second connection state is the connection state under the second network standard cell.
  • the network standard cell and the second network standard cell are cells of different network standards. It can be seen that, in the embodiment of the present application, the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state, thereby effectively reducing the automatic switching to the SA connection state under the LTE connection state, and improving The intelligence of the control of the network connection.
  • the terminal device judges whether the first preset condition is satisfied according to the real-time state parameters
  • the method may include the following steps:
  • Step 201 If the screen state is off and the power is less than a preset power threshold, it is determined that the first preset condition is met.
  • Step 202 if the screen state is the bright screen state, then judge whether the first preset condition is satisfied according to the application identification and the battery power.
  • the terminal device after the terminal device detects and obtains the real-time state parameters, if the screen state in the real-time state parameters is off-screen state, and at the same time, the power in the real-time state parameters is less than the preset power threshold, then the terminal device can determine that the The first preset condition is that the switching process of the network connection state is not allowed.
  • the terminal device can determine to continue to maintain the LTE connection state (first connection state) with low power consumption, and prohibit the switching process of the network connection state. That is, it is not allowed to switch to the SA connection state (second connection state) that consumes a lot of power.
  • the terminal device after the terminal device detects and obtains the real-time status parameters, if the screen status in the real-time status parameters is a bright screen status, then the terminal device can further judge according to the application identification and battery power in the real-time status parameters Whether the first preset condition is met.
  • the terminal device can determine whether the first preset condition is met in combination with the battery power and the application identification.
  • the preset power threshold may be preset by the terminal device and used to determine whether to support the high power consumption network mode.
  • the terminal device may set 10% of the total power as the preset power threshold.
  • the terminal device when the terminal device judges whether the first preset condition is met according to the application identifier and the power consumption, if the preset application blacklist does not include the application identifier, and the power consumption is greater than or equal to the preset power threshold, then the terminal device can Determining that the first preset condition is not met; if the preset application blacklist includes an application identifier, or the battery power is less than a preset power threshold, then the terminal device may determine that the first preset condition is met.
  • the preset application blacklist may be preset for the terminal device and used to determine whether a high-speed network mode is required.
  • the terminal device may add application identifiers corresponding to applications with low real-time requirements and low speed requirements, such as text editing applications, image processing applications, setting applications, and web browsing applications, to the preset blacklist.
  • the terminal device may determine that the first preset condition is not met, that is, allow switching processing of the connection state, and allow switching to the SA connection state (second connection state) with higher transmission rate and higher power consumption.
  • the terminal device can determine to continue to maintain the LTE connection state (the first connection state) with a low transmission rate and low power consumption, and prohibit the network connection state Handover processing, that is, it is not allowed to switch to the SA connection state (second connection state) with higher transmission rate and higher power consumption.
  • the terminal device may not be in a scene requiring a low rate.
  • the preset application blacklist does not include the terminal device Corresponding application identification, it can be considered that the application running on the terminal device is not a low-speed application; but if the power of the terminal device is less than the preset power threshold, it can be considered that the remaining power of the terminal device is low, which is not suitable for high-power consumption networks.
  • the terminal device can determine to continue to maintain the LTE connection state (first connection state) with less power consumption, and prohibit the switching process of the network connection state, that is, it is not allowed to switch to the SA connection state (second connection state) with higher power consumption. connected state).
  • a conditional method can include the following steps:
  • Step 203 if the screen status is the bright screen status, then judge whether the first preset condition is satisfied according to the network status parameters and the battery power.
  • the terminal device after the terminal device detects and obtains the real-time state parameters, if the screen state in the real-time state parameters is a bright screen state, then the terminal device can further judge whether it satisfies The first preset condition.
  • the terminal device can judge whether the first preset condition is met in combination with the battery power and network state parameters.
  • the network status parameter may determine the transmission rate required by the terminal device.
  • the network state parameters include a sending rate (uplink rate Tx) representing a sending state and a receiving rate (downlink rate Rx) representing a receiving state.
  • the uplink rate refers to the upload speed, which refers to the data transmission rate when the terminal device sends information to the network device;
  • the downlink rate refers to the download speed, which refers to the transmission rate when the network device sends information to the terminal device.
  • the terminal device when the terminal device judges whether the first preset condition is met according to the network status parameters and power consumption, if the sending rate is lower than the preset sending threshold and the receiving rate is lower than the preset receiving threshold, then the terminal device can determine Satisfy the first preset condition; if the sending rate is greater than or equal to the preset sending threshold, or the receiving rate is greater than or equal to the preset receiving threshold, and the power is less than the preset power threshold, then the terminal device can determine that the first preset condition is met; if sending The rate is greater than or equal to the preset sending threshold, or the receiving rate is greater than or equal to the preset receiving threshold, and the power is greater than or equal to the preset power threshold, then the terminal device may determine that the first preset condition is not met.
  • the terminal device may not be in a low-rate requirement scenario, but if the sending rate is less than the preset sending threshold and the receiving rate is less than the preset receiving threshold, it can be considered that the transmission rate required by the terminal device is not high; therefore, the terminal device can determine to continue to maintain the LTE connection state (first connection state) with low power consumption, and prohibit the switching process of the network connection state, That is, it is not allowed to switch to the SA connection state (second connection state) with higher transmission rate and higher power consumption.
  • the terminal device may not be in a low-rate requirement scenario.
  • the sending rate is greater than or equal to the preset sending threshold, or , the receiving rate is greater than or equal to the preset receiving threshold, it can be considered that the terminal device requires a higher transmission rate.
  • the power of the terminal device is less than the preset power threshold, it can be considered that the remaining power of the terminal device is low, and it is not suitable for the network mode with high power consumption.
  • the terminal device can determine to continue to maintain the LTE connection state with low power consumption (the first connection state), and the switching process of the network connection state is prohibited, that is, it is not allowed to switch to the SA connection state (the second connection state) with a higher transmission rate and higher power consumption.
  • the terminal device if the screen status of the terminal device is in the bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate.
  • the receiving rate is greater than or equal to the preset receiving threshold, or , the receiving rate is greater than or equal to the preset receiving threshold, it can be considered that the terminal device requires a higher transmission rate.
  • the power of the terminal device is greater than or equal to the preset power threshold, it can be considered that the remaining power of the terminal device is relatively high and can support a network mode with high power consumption. Therefore, the terminal device can determine that the first preset condition is not met, that is, allow The switching process of the connection state allows switching to the SA connection state (second connection state) with higher transmission rate and higher power consumption.
  • the method for the terminal device to determine whether the first preset condition is satisfied according to the real-time state parameters may include The following steps:
  • Step 204 if the screen state is the bright screen state, then judge whether the first preset condition is satisfied according to the network transmission quality and the battery power.
  • the terminal device after the terminal device detects and obtains the real-time state parameters, if the screen state in the real-time state parameters is a bright screen state, then the terminal device can further judge whether it meets the requirements according to the network transmission quality and power in the real-time state parameters.
  • the first preset condition if the screen state in the real-time state parameters is a bright screen state, then the terminal device can further judge whether it meets the requirements according to the network transmission quality and power in the real-time state parameters.
  • the terminal device can judge whether the first preset condition is met in combination with the battery power and network transmission quality.
  • the network transmission quality may determine the signal quality of the wireless signal used by the terminal device.
  • the network transmission quality may include reference signal received power and reference signal received quality, wherein the reference signal received power is a key parameter representing wireless signal strength, and the reference signal received quality is a measurement value for judging signal quality.
  • the terminal device when the terminal device judges whether the first preset condition is satisfied according to the network transmission quality and battery power, if the received reference signal power is greater than or equal to the preset power threshold, and the received reference signal quality is greater than or equal to the preset quality threshold , then the terminal device can determine that the first preset condition is met; if the received reference signal power is less than the preset power threshold, or if the reference signal received quality is less than the preset quality threshold, and the power is greater than or equal to the preset power threshold, then the terminal device can determine that The first preset condition is not met; if the reference signal received power is less than the preset power threshold, or the reference signal received quality is less than the preset quality threshold, and the power is less than the preset power threshold, then the terminal device can determine that the first preset condition is met .
  • the terminal device can determine to continue to maintain the LTE connection state (first connection state) with less power consumption, And the switching process of the network connection state is prohibited, that is, switching to the SA connection state (second connection state) with relatively large power consumption is not allowed.
  • the terminal device can determine to continue to maintain the LTE connection state with low power consumption (the first connection state), and the switching process of the network connection state is prohibited, that is, switching to the SA connection state (the second connection state) with relatively large power consumption is not allowed.
  • the terminal device may determine that the first preset condition is not met, that is, allow the switching process of the connection state, and allow switching to the SA connection state (second connection state) with better signal quality.
  • the terminal device if the screen status of the terminal device is in the bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate.
  • the reference signal reception quality is less than the preset quality threshold, Alternatively, if the received quality of the reference signal is lower than the preset quality threshold, it may be considered that the signal quality of the wireless signal used by the terminal device is poor.
  • the power of the terminal device is greater than or equal to the preset power threshold, it can be considered that the remaining power of the terminal device is relatively high and can support a network mode with high power consumption. Therefore, the terminal device can determine that the first preset condition is not met, that is, allow The switching process of the connection state allows switching to the SA connection state (second connection state) with higher transmission rate and higher power consumption.
  • the embodiment of the present application provides a network connection control method. Based on the detected real-time state parameters, the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state, so as to effectively reduce the number of connections in the LTE connection state.
  • the automatic switchover to the SA connection state improves the intelligence of network connection control.
  • FIG. 5 is a schematic diagram of the fourth implementation flow of the network connection control method proposed in the embodiment of the present application.
  • the method for the terminal device to control the network connection may include The following steps:
  • Step 301 When the network connection state is the LTE connection state, determine scene information.
  • the terminal device when the network connection state of the terminal device is the LTE connection state, the terminal device may determine its own scene information. Wherein, the terminal device may detect real-time state parameters, and then determine scene information based on the real-time state parameters.
  • the real-time status parameters obtained by terminal device detection include at least a parameter.
  • the terminal device can only execute the process of determining the scene information in the LTE connection state, or it can perform the scene information determination process in the LTE connection state, the SA connection state, the NSA connection state and other connection states. Execute the process of determining the scene information in any connection state.
  • the embodiments of the present application do not make specific limitations.
  • the real-time state parameters obtained by the detection of the terminal device can not only determine the real-time state of the terminal device, but also determine the real-time network state of the cell where the terminal device is located.
  • the terminal device after the terminal device detects the real-time state parameters, it can directly determine the real-time state parameters as corresponding scene information, or can analyze and process based on the real-time state parameters to generate corresponding scene information.
  • the scene information determined by the terminal device can be expressed as specific state parameters, such as network state parameters, power, temperature, etc., or as analysis results obtained based on analysis of real-time state parameters, such as network Poor quality, low power, high temperature, etc.
  • Step 302 judging whether the scene information satisfies the NR measurement condition, if not, execute step 303 ; if yes, execute step 304 .
  • the terminal device may further determine whether the scene information satisfies the NR measurement condition, that is, the terminal device may determine whether to actively measure NR neighboring cell signals based on the corresponding scene information.
  • Step 303 keep the LTE connection state.
  • the terminal device after the terminal device judges whether the scene information satisfies the NR measurement condition, if it determines that the scene information does not meet the NR measurement condition, it can consider that the scene information corresponding to the terminal device is not suitable for switching the network connection state, Then the terminal device will not perform NR measurement and reporting processing, thereby preventing the network connection state from being switched from the LTE connection state to the SA connection state, but continuing to maintain the original LTE connection state.
  • Step 304 performing NR measurement and reporting.
  • the terminal device after the terminal device judges whether the scene information satisfies the NR measurement condition, if it determines that the scene information meets the NR measurement condition, then the terminal device can perform NR measurement processing and report the obtained measurement information to the network device .
  • the terminal device after the terminal device judges whether the scene information satisfies the NR measurement condition, if it determines that the scene information satisfies the NR measurement condition, it can consider that the scene information corresponding to the terminal device is suitable for network connection state monitoring. handover, then the terminal device can perform NR measurement and reporting processing.
  • Step 305 receiving a switching instruction.
  • Step 306 switch to the SA connection state.
  • the terminal device may receive a handover instruction issued by the network device, and then respond to the handover instruction, and change the network connection status from the LTE connection to the network device.
  • the state switches to the SA connected state.
  • FIG. 6 is a schematic diagram of the fifth implementation flow of the network connection control method proposed in the embodiment of the present application. As shown in FIG. 6, the method for the terminal device to determine whether the scene information meets the NR measurement condition may include the following steps:
  • Step 302a judging whether the screen state is a bright screen state, if yes, execute step 302b, otherwise execute step 302c.
  • Step 302b judging whether the application identifier belongs to the preset application blacklist, if yes, execute step 302d, otherwise execute step 302c.
  • Step 302c judging whether the power is less than the preset power threshold, if yes, go to step 302d, otherwise go to step 302e.
  • Step 302d the NR measurement condition is not met.
  • Step 302e satisfying the NR measurement condition.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is not in the bright screen state, it can be considered that the terminal device is in a scene with low rate requirements, and the power is less than the preset power threshold. It can be considered that the remaining power of the terminal device is low and is not suitable for a network mode with high power consumption. Therefore, the terminal device can determine to continue to maintain the LTE connection state with low power consumption, and prohibit the switching process of the network connection state, that is, it is not allowed to switch to In the SA connection state with high power consumption, the terminal device can determine that the NR measurement condition is not satisfied, that is, it does not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is bright, it can be considered that the terminal device may not be in a scene requiring a low rate.
  • the preset application is black
  • the list does not include the application identifier corresponding to the terminal device, so it can be considered that the application running on the terminal device is not a low-speed application; further, if the power of the terminal device is greater than or equal to the preset power threshold, it can be considered that the remaining power of the terminal device is relatively high , can support the network mode of high power consumption, therefore, the terminal device can determine that the NR measurement condition is met, and perform NR measurement, that is, allow the switching process of the connection state, and allow switching to the SA connection state with higher transmission rate and higher power consumption.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is the bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate, but if the preset application blacklist Including the application identification corresponding to the terminal device, it can be considered that the application running on the terminal device is an application with low rate requirements. Therefore, the terminal device can determine to continue to maintain the LTE connection state with low transmission rate and low power consumption, and prohibit the network connection state Handover processing, that is, it is not allowed to switch to the SA connection state with higher transmission rate and higher power consumption. Then the terminal device may determine that the NR measurement condition is not met, that is, not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is bright, it can be considered that the terminal device may not be in a scene requiring a low rate.
  • the preset application is black
  • the application identification corresponding to the terminal device is not included in the list, so it can be considered that the application running on the terminal device is not a low-speed application; further, if the power of the terminal device is less than the preset power threshold, it can be considered that the remaining power of the terminal device is low. It is not suitable for the network mode with high power consumption.
  • the terminal device can determine to continue to maintain the LTE connection state with low power consumption, and prohibit the switching process of the network connection state, that is, it is not allowed to switch to the SA connection state with high power consumption. Then the terminal device may determine that the NR measurement condition is not met, that is, not perform NR measurement.
  • FIG. 7 is a schematic diagram of the implementation flow of the network connection control method proposed in the embodiment of the present application VI. As shown in FIG. 7, the method for the terminal device to determine whether the scene information meets the NR measurement condition may also include the following steps:
  • Step 302a judging whether the screen state is a bright screen state, if yes, execute step 302f, otherwise execute step 302c.
  • Step 302f judging whether the uplink rate Tx and the downlink rate Rx satisfy that Tx is less than the threshold A1 and Rx is less than the threshold A2, if yes, perform step 302d, otherwise, perform step 302c.
  • Step 302c judging whether the power is less than the preset power threshold, if yes, execute step 302d, otherwise execute step 302e.
  • Step 302d the NR measurement condition is not satisfied.
  • Step 302e satisfying the NR measurement condition.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is a bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate, but if Tx is less than the threshold A1 and Rx is less than the threshold A2, it can be considered that the transmission rate required by the terminal device is not high; therefore, the terminal device can determine to continue to maintain the LTE connection state with a low transmission rate and low power consumption, and prohibit the switching process of the network connection state, that is, not It is allowed to switch to the SA connection state with higher transmission rate and higher power consumption. Then the terminal device may determine that the NR measurement condition is met, that is, not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is a bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate. At the same time, if the Tx is not less than the threshold A1, or Rx is not less than the threshold A2, it can be considered that the terminal device requires a higher transmission rate. Further, if the power of the terminal device is less than the preset power threshold, it can be considered that the remaining power of the terminal device is low, and it is not suitable for the network mode with high power consumption.
  • the terminal device can determine to continue to maintain the LTE connection state with low power consumption , and the switching process of the network connection state is prohibited, that is, it is not allowed to switch to the SA connection state with higher transmission rate and higher power consumption. Then the terminal device may determine that the NR measurement condition is met, that is, not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is a bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate. At the same time, if the Tx is not less than the threshold A1, or Rx is not less than the threshold A2, it can be considered that the terminal device requires a higher transmission rate. Furthermore, if the power of the terminal device is greater than or equal to the preset power threshold, it can be considered that the remaining power of the terminal device is relatively high and can support a network mode with high power consumption. Therefore, the terminal device can determine that the NR measurement condition is satisfied and perform NR measurement, that is Allow switching processing of the connection state, and allow switching to the SA connection state with higher transmission rate and higher power consumption.
  • FIG. 8 is a schematic diagram of the implementation process of the network connection control method proposed in the embodiment of the present application VII. As shown in FIG. 8, the method for the terminal device to determine whether the scene information meets the NR measurement condition may also include the following steps:
  • Step 302a judging whether the screen state is a bright screen state, if yes, execute step 302g, otherwise execute step 302c.
  • Step 302g judge whether the reference signal received power RSRP and the reference signal received quality RSRQ satisfy that RSRP is smaller than threshold C1 and/or RSRQ is smaller than threshold C2, if yes, execute step 302c, otherwise execute step 302d.
  • Step 302c judging whether the power is less than the preset power threshold, if yes, go to step 302d, otherwise go to step 302e.
  • Step 302d the NR measurement condition is not satisfied.
  • Step 302e satisfying the NR measurement condition.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is the bright screen state, it can be considered that the terminal device may not be in a scene requiring a low rate, but if the RSRP is greater than or equal to the threshold C1 And RSRQ is greater than or equal to the threshold C2, it can be considered that the signal quality of the wireless signal used by the terminal device is better; Allow switching to the SA connected state with higher power consumption. Then the terminal device may determine that the NR measurement condition is met, that is, not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is a bright screen state, it can be considered that the terminal device may not be in a low-rate requirement scene.
  • the RSRP is less than the threshold C1 , and/or the RSRQ is less than the threshold C2
  • the signal quality of the wireless signal used by the terminal device is poor.
  • the power of the terminal device is less than the preset power threshold, it can be considered that the remaining power of the terminal device is low, and it is not suitable for the network mode with high power consumption.
  • the terminal device can determine to continue to maintain the LTE connection state with low power consumption , and the switching process of the network connection state is prohibited, that is, it is not allowed to switch to the SA connection state with higher transmission rate and higher power consumption. Then the terminal device may determine that the NR measurement condition is met, that is, not perform NR measurement.
  • the terminal device after the terminal device obtains the real-time state parameters and determines the scene information according to the detection, if the screen state is a bright screen state, it can be considered that the terminal device may not be in a low-rate requirement scene. At the same time, if the RSRP is less than the threshold C1 , and/or the RSRQ is less than the threshold C2, it can be considered that the signal quality of the wireless signal used by the terminal device is poor. Furthermore, if the power of the terminal device is greater than or equal to the preset power threshold, it can be considered that the remaining power of the terminal device is relatively high and can support a network mode with high power consumption. Therefore, the terminal device can determine that the NR measurement condition is satisfied and perform NR measurement, that is Allow switching processing of the connection state, and allow switching to the SA connection state with higher transmission rate and higher power consumption.
  • the network connection control method proposed in the embodiment of the present application can comprehensively consider the network status, screen status, remaining power, machine temperature, network transmission quality, and user foreground application type corresponding to the terminal device, and then can determine whether Switch the network connection status for comprehensive judgment, dynamically control the switching of LTE->SA in the connection state, and prohibit the automatic fast switching from LTE to SA (Auto Fast Return).
  • LTE can be disabled. Actively measure the signal of NR neighboring cells, and at the same time, do not actively report the measurement information of NR cells to the network equipment, so as to prevent the network equipment from issuing switching instructions to switch the terminal equipment from the LTE connection state to the SA connection state, thereby reducing the power consumption of the whole machine , to increase battery life.
  • the measurement of NR and subsequent MR reporting in the LTE connection state are allowed; If the corresponding Tx of the terminal device is not less than the threshold A1 or Rx is not less than the threshold A2, and the power is less than B1, disable MR, that is, prohibit the measurement of NR and the subsequent MR report in the LTE connection state; if the corresponding Tx of the terminal device is not less than The threshold A1 or Rx is not less than the threshold A2, and the power is not less than B1, then the measurement of NR and subsequent MR reporting in the LTE connection state are allowed.
  • the RSRP corresponding to the terminal device is not less than the threshold C1, and the RSRQ is not less than the threshold C2, then the measurement of NR in the LTE connection state and the subsequent MR report; if the RSRP corresponding to the terminal device is less than the threshold C1, and/or, the RSRQ is less than the threshold C2, and the power is less than B1, then disable MR, that is, prohibit the measurement of NR and the subsequent MR report in the LTE connection state; if the terminal device If the corresponding RSRP is less than the threshold C1, and/or, the RSRQ is less than the threshold C2, and the battery power is not less than B1, the NR measurement and the subsequent MR reporting in the LTE connection state are allowed.
  • the embodiment of the present application provides a network connection control method. Based on the detected real-time state parameters, the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state, so as to effectively reduce the number of connections in the LTE connection state.
  • the automatic switchover to the SA connection state improves the intelligence of network connection control.
  • FIG. 9 is a schematic diagram of the composition and structure of the terminal device proposed in the embodiment of the present application.
  • the terminal device 10 proposed in the embodiment of the present application may include an execution Unit 11,
  • the execution unit 11 is configured to, when the terminal device is in the first connection state, if a first preset condition is met, prohibit the terminal device from measuring the signal of the second network standard cell in the first connection state , to prevent the terminal device from switching from the first connection state to the second connection state, the first connection state is the connection state under the first network standard cell, and the second connection state is the connection state of the second network In the connection state under the standard cell, the first network standard cell and the second network standard cell are cells of different network standards.
  • FIG. 10 is a second schematic diagram of the composition and structure of the terminal device proposed in the embodiment of the present application.
  • the terminal device 10 proposed in the embodiment of the present application may also include a processor 12,
  • the memory 13 stores instructions executable by the processor 12 .
  • the terminal device 10 may further include a communication interface 14 and a bus 15 for connecting the processor 12 , the memory 13 and the communication interface 14 .
  • the above-mentioned processor 12 may be an application specific integrated circuit (Application Specific Integrated Circuit, ASIC), a digital signal processor (Digital Signal Processor, DSP), a digital signal processing device (Digital Signal Processing Device, DSPD ), Programmable Logic Device (ProgRAMmable Logic Device, PLD), Field Programmable Gate Array (Field ProgRAMmable Gate Array, FPGA), Central Processing Unit (Central Processing Unit, CPU), controller, microcontroller, microprocessor at least one of .
  • ASIC Application Specific Integrated Circuit
  • DSP Digital Signal Processor
  • DSPD Digital Signal Processing Device
  • PLD Programmable Logic Device
  • Field Programmable Gate Array Field ProgRAMmable Gate Array
  • FPGA Field ProgRAMmable Gate Array
  • CPU Central Processing Unit
  • controller microcontroller, microprocessor at least one of .
  • the terminal device 10 may also include a memory 13, which may be connected to the processor 12, wherein the memory 13 is used to store executable program codes, the program codes include computer operation instructions, the memory 13 may include a high-speed RAM memory, and may also include Includes non-volatile memory, eg, at least two disk memories.
  • the bus 15 is used to connect the communication interface 14 , the processor 12 and the memory 13 and communicate among these devices.
  • the memory 13 is used to store instructions and data.
  • the processor 12 is configured to, when the terminal device is in the first connection state, prohibit the terminal device from Under the signal measurement of the second network standard cell, to prevent the terminal device from switching from the first connection state to the second connection state, the first connection state is the connection state under the first network standard cell, the The second connection state is a connection state under the cell of the second network standard, and the cell of the first network standard and the cell of the second network standard are cells of different network standards.
  • the above-mentioned memory 13 can be a volatile memory (volatile memory), such as a random access memory (Random-Access Memory, RAM); or a non-volatile memory (non-volatile memory), such as a read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard drive (Solid-State Drive, SSD); Provide instructions and data.
  • volatile memory such as a random access memory (Random-Access Memory, RAM)
  • non-volatile memory such as a read-only memory (Read-Only Memory, ROM), flash memory (flash memory), hard disk (Hard Disk Drive, HDD) or solid-state hard drive (Solid-State Drive, SSD); Provide instructions and data.
  • each functional module in this embodiment may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units can be implemented in the form of hardware or in the form of software function modules.
  • the integrated unit is implemented in the form of a software function module and is not sold or used as an independent product, it can be stored in a computer-readable storage medium.
  • the technical solution of this embodiment is essentially or The part contributed by the prior art or the whole or part of the technical solution can be embodied in the form of software products, the computer software products are stored in a storage medium, and include several instructions to make a computer device (which can be a personal A computer, a server, or a network device, etc.) or a processor (processor) executes all or part of the steps of the method of this embodiment.
  • the aforementioned storage medium includes: U disk, mobile hard disk, read only memory (Read Only Memory, ROM), random access memory (Random Access Memory, RAM), magnetic disk or optical disk and other various media that can store program codes.
  • An embodiment of the present application provides a terminal device.
  • the terminal device When the terminal device is in the first connection state, if the first preset condition is met, the terminal device is prohibited from measuring the signal of the second network standard cell in the first connection state, so as to Prevent terminal equipment from switching from the first connection state to the second connection state.
  • the first connection state is the connection state under the first network standard cell
  • the second connection state is the connection state under the second network standard cell
  • the cell of the second network standard is a cell of a different network standard.
  • the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state, thereby effectively reducing the automatic switching to the SA connection state under the LTE connection state, and improving The intelligence of the control of the network connection.
  • An embodiment of the present application provides a computer-readable storage medium, on which a program is stored, and when the program is executed by a processor, the method for controlling a network connection as described above is implemented.
  • the program instructions corresponding to a network connection control method in this embodiment can be stored on a storage medium such as an optical disk, a hard disk, or a USB flash drive.
  • a storage medium such as an optical disk, a hard disk, or a USB flash drive.
  • the terminal device When the terminal device is in the first connection state, if the first preset condition is met, the terminal device is prohibited from measuring the signal of the second network standard cell in the first connection state, so as to prevent the terminal device from The first connection state is switched to the second connection state, the first connection state is the connection state under the first network standard cell, and the second connection state is the connection state under the second network standard cell, so The first network standard cell and the second network standard cell are cells of different network standards.
  • the embodiments of the present application may be provided as methods, systems, or computer program products. Accordingly, the present application may take the form of a hardware embodiment, a software embodiment, or an embodiment combining software and hardware aspects. Furthermore, the present application may take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage and optical storage, etc.) having computer-usable program code embodied therein.
  • a computer-usable storage media including but not limited to disk storage and optical storage, etc.
  • These computer program instructions may also be stored in a computer-readable memory capable of directing a computer or other programmable data processing apparatus to operate in a specific manner, such that the instructions stored in the computer-readable memory produce an article of manufacture comprising instruction means, the instructions
  • the device realizes the function specified in implementing one or more procedures of the flowchart and/or one or more blocks of the block diagram.
  • the embodiment of the present application provides a network connection control method, a terminal device, and a storage medium.
  • the terminal device When the terminal device is in the first connection state, if the first preset condition is met, the terminal device is prohibited from performing the first connection in the first connection state.
  • the signal measurement of the second network standard cell is to prevent the terminal equipment from switching from the first connection state to the second connection state.
  • the first connection state is the connection state under the first network standard cell
  • the second connection state is the second network standard cell. In the connected state, the first network standard cell and the second network standard cell are cells of different network standards.
  • the terminal device can comprehensively judge whether to switch from the LTE connection state to the SA connection state, thereby effectively reducing the automatic switching to the SA connection state under the LTE connection state, and improving The intelligence of the control of the network connection.

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Abstract

Est divulgué dans des modes de réalisation de la présente demande un procédé de commande de connexion réseau, appliqué à un équipement terminal. Le procédé consiste à : lorsque l'équipement terminal se trouve dans un premier état connecté, interdire à l'équipement terminal de mesurer un signal d'une seconde cellule standard de réseau dans le premier état connecté si une première condition prédéfinie est satisfaite, pour empêcher l'équipement terminal d'être commuté du premier état connecté à un second état connecté, le premier état connecté étant un état connecté dans une première cellule standard de réseau, le second état connecté étant un état connecté dans la seconde cellule standard de réseau, et la première cellule standard de réseau et la seconde cellule standard de réseau étant des cellules de différents standards de réseau.
PCT/CN2022/085939 2021-05-21 2022-04-08 Procédé de commande de connexion réseau, équipement terminal et support de stockage WO2022242368A1 (fr)

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