WO2020087413A1 - 小区信息处理方法、装置、电子设备及可读取存储介质 - Google Patents

小区信息处理方法、装置、电子设备及可读取存储介质 Download PDF

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Publication number
WO2020087413A1
WO2020087413A1 PCT/CN2018/113203 CN2018113203W WO2020087413A1 WO 2020087413 A1 WO2020087413 A1 WO 2020087413A1 CN 2018113203 W CN2018113203 W CN 2018113203W WO 2020087413 A1 WO2020087413 A1 WO 2020087413A1
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Prior art keywords
cell
target cell
target
time
specified
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PCT/CN2018/113203
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English (en)
French (fr)
Inventor
李伟清
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深圳市欢太科技有限公司
Oppo广东移动通信有限公司
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Application filed by 深圳市欢太科技有限公司, Oppo广东移动通信有限公司 filed Critical 深圳市欢太科技有限公司
Priority to CN201880097492.7A priority Critical patent/CN112889315B/zh
Priority to PCT/CN2018/113203 priority patent/WO2020087413A1/zh
Publication of WO2020087413A1 publication Critical patent/WO2020087413A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/08Reselecting an access point
    • 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 present application relates to the technical field of mobile communications, and more specifically, to a cell information processing method, device, electronic device, and readable storage medium.
  • the pseudo base station is an illegal base station outside the mobile communication network.
  • Pseudo base station equipment can forcibly connect to user terminals, ingest information in user terminals within a certain radius, cover the signals of real operators, use public service numbers to forcely send text messages to user terminals, jeopardize communication security, disrupt social public order and reduce User security, causing user information to leak.
  • This application proposes a cell information processing method, device, electronic equipment, and readable storage medium to improve the above defects,
  • an embodiment of the present application provides a cell information processing method, which is applied to an electronic device.
  • the method includes: when the electronic device is registered in a target cell, acquiring parameter information, where the parameter information includes a target time, At least one of the residence time of the electronic device in the target cell or the identification of the target cell, wherein the target time is any time after registering to the target cell; determining whether the parameter information is satisfied Stay standard; if the stay standard is met, stop performing the operation of registering to the neighboring cell of the target cell.
  • an embodiment of the present application further provides a cell information processing apparatus, which is applied to an electronic device.
  • the device includes: an acquisition unit, a judgment unit, and a processing unit.
  • the obtaining unit is configured to obtain parameter information when the electronic device is registered in the target cell, where the parameter information includes a target time, a residence time of the electronic device in the target cell, or an identifier of the target cell At least one.
  • the judging unit is used to judge whether the parameter information meets the stay standard.
  • the processing unit is configured to stop performing the operation of registering with the neighboring cell of the target cell if the stay criterion is met.
  • an embodiment of the present application further provides an electronic device, including: one or more processors; a memory; one or more application programs, wherein the one or more application programs are stored in the memory And is configured to be executed by the one or more processors, and the one or more programs are configured to perform the above method.
  • an embodiment of the present application further provides a computer-readable storage medium.
  • the computer-readable storage medium stores program code, and the program code may be called by a processor to execute the above method.
  • the electronic device after registering to the target cell, acquires the target time, the residence time of the electronic device in the target cell or At least one of the identifiers of the target cell is used as parameter information, where the target time is any time after registration to the target cell, and then whether to execute the target is judged according to the judgment result of whether the obtained parameter information meets the stay standard
  • the operation of the registration of the neighboring cell of the cell is stopped. Therefore, if the parameter information satisfies the stay criterion, the operation of neighboring cells registered to the target cell is stopped. Therefore, if the registration operation of the neighboring cell is stopped, it is possible to fundamentally avoid registration to the cell, and to avoid connecting to the pseudo base station corresponding to the cell.
  • FIG. 1 shows a schematic diagram of communication provided by an embodiment of the present application
  • FIG. 2 shows a method flowchart of a cell information processing method according to an embodiment of the present application
  • FIG. 3 shows a method flowchart of a cell information processing method according to another embodiment of the present application
  • FIG. 4 shows a method flowchart of a cell information processing method according to another embodiment of the present application.
  • FIG. 5 shows a method flowchart of a cell information processing method provided by still another embodiment of the present application.
  • FIG. 6 shows a method flowchart of a cell information processing method provided by yet another embodiment of the present application.
  • FIG. 7 shows a block diagram of a cell information processing apparatus provided by an embodiment of the present application.
  • FIG. 8 shows a structural block diagram of an electronic device provided by an embodiment of the present application.
  • FIG. 9 shows a storage unit for storing or carrying a program code for implementing a cell information processing method according to an embodiment of the present application.
  • FIG. 1 shows a communication system including: a base transceiver station (Base Transceiver Station, BTS) 10, a base station controller (Base Station Controller, BSC) 20, and a mobile switching center (Mobile Switching Center, MSC) 30 ⁇ ⁇ ⁇ 100 ⁇ 30 and electronic equipment 100.
  • BTS Base Transceiver Station
  • BSC Base Station Controller
  • MSC Mobile Switching Center
  • BTS 10 is connected to BSC 20.
  • BSC 20 has the function of controlling one or more BTSs. It is mainly responsible for wireless network resource management, cell configuration data management, power control, positioning, and handover.
  • BTS10 is controlled by BSC20, which is mainly responsible for wireless transmission, complete wireless and wired conversion, wireless diversity, wireless channel encryption, frame skipping and other functions.
  • MSC Mobile Communications Service
  • MSC Mobile Communications Service
  • MSC Mobile Communications Service
  • It is a functional entity that controls and completes the exchange of voice paths for mobile stations (such as electronic equipment 100) located in the area covered by it. It is also the communication system and other public communications. Interface between networks. It can complete the functions of network interface, common channel signaling system and billing, and can also complete the switching between the base station subsystem and the mobile switching center and auxiliary wireless resource management, mobility management, etc.
  • the MSC 30 is also configured to interface with other networks.
  • other networks include the public switched telephone network (Public Switched Telephone Network, PSTN), public land mobile communication network (Public Lands Mobile-communication Network, PLMN) and so on.
  • PSTN Public Switched Telephone Network
  • PLMN Public Lands Mobile-communication Network
  • a base station is a cell (a base station can also be divided into several cells, at this time, the cell and the sector are equivalent), and the cell is divided into sectors (generally, a cell has one / two / Three sectors, or even more), each sector then determines the number of carrier frequencies based on traffic.
  • the electronic device 100 needs to register in a certain cell to complete the network registration process before performing actual services.
  • the user can receive services from the network only after the attachment is successful.
  • an electronic device such as a mobile terminal to register a 4G cell as an example
  • the mobile terminal when the mobile terminal turns on or restarts the network, it receives signals at several center frequency points where there may be a cell, and the received signal strength is used to judge the surrounding of this frequency point Whether there may be a cell, if the mobile terminal saves the frequency point and operator information of the last power-off, it will first try on the cell where it last stayed after booting; if not, it will be in the frequency band allocated to the communication system Do a full-band scan and find the frequency where the signal is strong to try to register.
  • the mobile terminal and the network node After obtaining the cell that meets the registration requirements, perform the attach operation, that is, the mobile terminal and the base station authenticate each other, the mobile terminal and the network node establish a mobility management context, the network node establishes a default bearer for the mobile terminal, and the mobile terminal obtains the IP address, user location registration, allocation of temporary identification.
  • the pseudo base station Since the pseudo base station will obtain the data of the electronic equipment used by the user, violate the privacy of the user and send some spam messages to affect the user experience, there are some technologies for identifying the pseudo base station, mainly including: mobile terminals collect the pseudo base station Characteristics of the mobile terminal, when the mobile terminal selects a cell that resides in the Global System for Mobile Communications network, the mobile terminal checks whether the characteristics of the cell match the characteristics of the collected pseudo base station. If so, it does not camp on the cell and continues searching for other available Residential area.
  • Another way to identify the pseudo base station is for the mobile terminal to extract keywords from the received short message content and determine whether the short message is spam based on the keyword. If so, the mobile terminal determines that the currently camped base station is a pseudo base station, otherwise Is a normal base station.
  • the terminal has The characteristics of the pseudo base station need to be upgraded in order to successfully identify the pseudo base station, which may lead to the failure of the pseudo base station recognition.
  • the electronic device After the electronic device is connected to the base station, it is determined whether the connected base station is a pseudo base station. Before detecting that the base station is a pseudo base station, the data in the electronic device may have been stolen by the pseudo base station and the electronic device has received the pseudo The spam message sent by the base station, that is, the loss has occurred, even if the pseudo base station can be detected and disconnected, the impact of the pseudo base station has become a established fact, it is difficult to recover, and the effect is not good.
  • an embodiment of the present application provides a cell information processing method, which is used to prevent a user's electronic device from connecting to a pseudo base station. Specifically, the method includes: S201 to S203.
  • S201 When the electronic device is registered in a target cell, obtain parameter information, where the parameter information includes at least one of a target time, a residence time of the electronic device in the target cell, or an identification of the target cell Species.
  • the target time is the time registered to the target cell or any time after the target cell is registered. Specifically, the time when the electronic device is registered to the target cell may be recorded as the first time, and the first time may be set As the target time, a certain time interval after the first time may be the target time, or a time period may be set, and the time point of each interval time period after the first time may be used as the target time.
  • the residence time of the electronic device in the target cell is the length of time between the successful registration of the electronic device in the target cell and the deregistration of the target cell, that is, the length of time that the electronic device maintains a heartbeat with the base station of a cell.
  • the electronic device wants to successfully camp on a cell, the current cell must meet the S criterion.
  • the electronic device needs to measure the cell to be selected for channel quality assessment to determine whether it meets the camping standard .
  • the measurement criterion for cell selection is called S criterion. When the channel quality of a certain cell meets the S criterion, it can be selected as a camping cell. Then the S criterion is:
  • Srxlex selects the S value for the cell
  • Qrxlevmeas is the RSRP value of the measured cell
  • Qrxlevmin is the minimum RSRP reception strength requirement in the cell, which can be obtained from the broadcast message
  • Qrxlevminoffset is when it resides on the VPLMN and searches for a high priority PLMN
  • Pcompensation is Max (PEMAX-PUMAX, 0)
  • PEMAX is the maximum uplink transmission power allowed by the electronic device in the cell, which can be obtained from the broadcast message
  • PUMAX is the maximum uplink transmission power determined by the capability of the electronic device.
  • the identification of the target cell may be a cell identification code.
  • the electronic device Before the electronic device registers to a certain cell, it needs to send a broadcast message to all cells on different channels, so that the electronic device knows which networks, available technologies, operators, and channels currently exist And parameters to connect to the network and other information.
  • the cell identification code, tracking area code, network identification code to which the cell belongs, and cell disable status can be obtained.
  • the stay standard can be the length of time reserved.
  • the stay standard can be The preset cell identifier, specifically, will be described in detail in subsequent embodiments.
  • the mobile terminal receives the signal strength Rxlev of the candidate cell and receives the cell of the candidate cell broadcast through the base station to which the candidate cell belongs
  • CRO is a cell reselection bias parameter, which is subject to human intervention.
  • a mobile terminal When a mobile terminal enters an area, it obtains the signal strength and minimum access level of at least two cells in the area; since the minimum access level of a legal base station is usually 8 to 18, the minimum access level of a pseudo base station The incoming level is usually 0, so when there is a pseudo base station in the area, the C1 value of the cell (candidate cell) covered by the pseudo base station is large, and the C2 obtained from the large C1 value is also large. It is easier for the terminal to reselect to the candidate cell covered by the pseudo base station and use the candidate cell as a new serving cell, that is, it is easier to reselect or switch to the cell corresponding to the pseudo base station and connect to the pseudo base station.
  • stopping the operation of registering with the neighboring cell of the target cell may include: stopping the operation of measuring the network state of the neighboring cell of the target cell and / or prohibiting the electronic device from performing cell reselection Operation.
  • the measurement operation of the network state of the neighboring cell of the target cell is stopped, the network state is a reference standard for the electronic device to determine whether to register a cell corresponding to the network state, and the C2 and C1 parameters of the neighboring cell are
  • the network status of the neighboring cell that is, the network status is a reference standard for the electronic device to determine whether to register a cell corresponding to the network status.
  • the electronic device switches or reselects the neighboring cell of the target cell, it needs to measure the neighboring cell to obtain the network status of the neighboring cell. If the network status meets the handover requirements, it switches to the neighboring cell, that is, registers to the neighboring cell And perform the de-registration operation in the target cell.
  • the electronic device may not switch to the neighboring cell of the target cell, that is, continue to camp on the target cell. Therefore, the measurement operation of the network state of the neighboring cell of the target cell may be suspended. Therefore, the electronic device cannot obtain the network status of the neighboring cell, so it cannot register to the neighboring cell of the target cell, and the connection with the pseudo base station in the neighboring cell is completely eliminated.
  • the function of cell reselection of the electronic device may also be turned off, so that the electronic device does not have the function of cell reselection when the operation of the cell reselection by the electronic device is prohibited, and will not switch to another cell.
  • the method includes: S301 to S303.
  • the target time is the time when registering to the target cell or any time after registering to the target cell. Since the electronic device reselects the serving cell in the idle (IDLE) mode due to factors such as location changes and signal changes, the target time may be the time when the electronic device is successfully registered in the target cell and each time the service mode is switched to the idle mode It is the target moment, in which the electronic device is connected to the base station of the target cell in the service mode, but no dedicated service channel is allocated, while in the service mode, the electronic device is connected to the base station of the target cell and is assigned a dedicated service Channel, is performing certain services, for example, call services.
  • the target time may also be the time point when the electronic device is registered in the target cell.
  • the target time includes a first sub-time and a second sub-time, where the first sub-time is the time when the electronic device is registered in the target cell At a time point, the second sub-time is a time point after the first sub-time, and the difference between the second sub-time and the first sub-time is a preset time interval.
  • S302 Determine whether the target time is within a specified time period.
  • the specified time period range is the time period set by the user according to the needs, which can be the infrequent time point when the user uses the electronic device, for example, it can be 22:00 to 06:00, that is, 10:00 pm to the next day 6 o'clock in the morning.
  • the usage frequency is lower than the preset value during the time period of 22:00 to 24:00 and 00:00 to 06:00 every day, or, within one month, from 22:00 to
  • the probability that the usage frequency is lower than the preset value in the time period of 24:00 and 00:00 to 06:00 is relatively high, you can determine the time of 22:00 to 24:00 and 00:00 to 06:00 every day
  • the possibility of users using electronic devices in the period is too low, so the time period of 22:00 to 24:00 and 00:00 to 06:00 every day is used as the specified time period.
  • the operation of stopping the measurement operation of the network state of the neighboring cell of the target cell is performed, and then the next target time is acquired as the new target time, and returned Go to S302.
  • the electronic device when the electronic device is successfully registered in the first sub-time of the target cell as the target time, first determine whether the target time is within the specified time period, and then determine that the target time is within the specified time period , Then the second sub-time is determined according to the target time and the specified time range as the new target time.
  • the specific implementation of determining the second sub-time according to the target time and the specified time period range is to add the first sub-time plus the specified time interval as the second sub-time, that is, the second sub-time is located after the first sub-time, And the difference between the second sub-time and the first sub-time is greater than the specified time period range, so that the second sub-time is outside the specified time period range.
  • the new target time is outside the specified time period, so that the operation of measuring the network state of the neighboring cell of the target cell is performed, that is, from the first sub-time to the specified time period
  • the operation of stopping the measurement operation of the network state of the neighboring cell of the target cell is performed.
  • the specified time interval may be a time period from the first sub-time to the end time of the specified time range.
  • the network state measurement operation of the neighboring cell of the target cell is allowed to be performed, and whether the neighboring cell of the target cell can be selected according to a specific cell reselection strategy Network status measurement. For example, in the idle mode, the electronic device calculates that the C2 value of the neighboring cell of the target cell (which belongs to the same location area as the target cell) exceeds the C2 value of the current serving cell (target cell) for 5 s. Or, the electronic device calculates that the C1 value of the neighboring cell (which does not belong to the same location area as the target cell) exceeds the sum of the C2 value of the target cell and the cell reselection hysteresis value for 5 consecutive seconds.
  • the method includes: S401 to S403.
  • S402 Determine whether the residence duration is greater than a duration threshold.
  • the duration threshold is used to indicate a length of time. For example, it can be 1 hour or half an hour. If the residence time of an electronic device in a cell is greater than the duration threshold, it means that the user stays in the cell for a certain period of time, rather than Passing this cell also means that it will not switch to another cell in a short time.
  • S403 Stop performing the operation of registering with the neighboring cell of the target cell.
  • the electronic device After the electronic device successfully registers in the target cell, it starts to count the residence time of the electronic device in the target cell. If the residence time is less than or equal to the duration threshold, the electronic device allows the network of neighboring cells of the target cell to be performed. State measurement operation. If the cell reselection conditions are met, the electronic device will switch to another cell, so that the residence time of the target cell is cleared to zero, and the next time it registers again with the target cell, the residence time is re-stated.
  • the measurement operation of the network status of the neighboring cell of the target cell is stopped, so that when the user stays in a certain cell for a relatively long time, it indicates the current cell If it can meet the usage requirements, it can avoid the measurement of the network status of neighboring cells and reduce the possibility of connecting to the pseudo base station.
  • the parameter information is the identification of the electronic device in the target cell
  • a specific implementation manner for judging whether the parameter information meets the stay standard can refer to FIG. 5. Specifically, the method includes:
  • S502 Determine whether the identifier of the target cell matches the specified identifier.
  • the designated identifier may be an identifier designated by the user.
  • the identifier may be an identifier of a resident cell of the electronic device of the user. Then, the way to obtain the designated identification is to acquire all the cells registered by the electronic device within the target time period and the residence duration corresponding to each cell; and use the identification of the cell whose residence duration is greater than the threshold of the residence duration as the designated identification.
  • the residence time of each cell is counted from the time of registration to the cell as the starting point, and the time of deregistration in the cell as the end point, so as to count the time period between each successful registration and deregistration
  • each residence time of each cell registered by the electronic device can be counted, so that all the cells whose residence time is greater than the residence time threshold within the target time period are counted.
  • the target time period is 1 month
  • the cell identifiers registered by the electronic device within the 1 month are cell 1, cell 2, cell 3, and cell 4.
  • each time the residence time of each cell is counted.
  • the number of times that the residence time of cell 1 is greater than the resident time threshold is 10 times
  • the number of times that the residence time of cell 1 is greater than the resident time threshold is 8 times.
  • the number of times that the residence time of 1 is greater than the resident time threshold is 3, and the number of times that the residence time of cell 1 is greater than the resident time threshold is 1 time
  • S503 Stop performing the operation of registering with the neighboring cell of the target cell.
  • the parameter information may also include a plurality of parameters instead of a single one. Taking the operation of stopping the registration of the neighboring cell of the target cell as an example of stopping the execution of the measurement operation of the network state of the neighboring cell of the target cell.
  • the parameter information may include a target time and a residence time of the electronic device in the target cell, then determining whether the parameter information meets a stay standard includes: determining whether the target time is at a specified time Within the range and / or whether the residence time is greater than the duration threshold; if the target time is within the specified time period range or the residence time is greater than the duration threshold, it is determined that the parameter information meets the stay standard; if the If the target time is outside the specified time period and the residence time is less than or equal to the duration threshold, it is determined that the parameter information does not meet the stay standard.
  • the target moment is within a specified time period, and if it is within a specified time period, stopping the measurement operation of the network state of the neighboring cell of the target cell. If it is outside the specified time period, the residence time is obtained to determine whether the residence time is greater than the duration threshold. If the residence time is greater than the duration threshold, the measurement operation of the network status of the neighboring cell of the target cell is stopped. Or equal to the duration threshold, it is allowed to perform the measurement operation of the network status of the neighboring cell of the target cell. Therefore, if it is outside the specified time period, but the residence time of the registered target cell is greater than the duration threshold, then the measurement operation of the network state of the neighboring cell of the target cell is also stopped. Therefore, through the secondary detection of the time period and the residence time, it is possible to more accurately prohibit the measurement operation of the network state of the neighboring cell of the target cell, thereby reducing the possibility of connecting to the pseudo base station.
  • the residence time of the cell can be determined when registering to the cell, and the residence time needs a certain time to reach the time threshold, before the residence time reaches the time threshold, first determine a target time and determine the target time Whether it is within the specified time period, the target time may be the time registered to the target cell, if the target time is within the specified time period, it can avoid executing the target cell before the residence time reaches the time threshold The operation of measuring the network status of neighboring cells.
  • the parameter information includes a target time and an identifier of the target cell
  • a specific implementation manner for determining whether the parameter information meets the stay standard is: determining whether the target time is within a specified time period And / or whether the identification of the target cell matches the specified identification; if the target time is within the specified time period or the identification of the target cell matches the specified identification, it is determined that the parameter information meets the stay standard; If the target time is outside the range of the specified time period and the identifier of the target cell does not match the specified identifier, it is determined that the parameter information does not meet the stay standard.
  • the target time may be determined whether the target time is within a specified time period, if it is within a specified time period, then stop performing the measurement of the network state of the neighboring cell of the target cell, and if it is within the specified time period.
  • the identification of the target cell is obtained, and it is judged whether the identification of the target cell matches the specified identification. If it matches, the measurement operation of the network state of the neighboring cell of the target cell is stopped, and if it does not match, the execution is allowed. A measurement operation of the network state of the neighboring cell of the target cell.
  • the identity of the cell Since the identity of the cell has been determined when registering to the target cell, it is first determined whether the identity is the designated identity, and if not, the current time is used as the target time to determine whether the target time is within the specified time period, If it is within the specified time period, then the measurement operation of the network state of the neighboring cell of the target cell is stopped.
  • the parameter information includes a residence time of the electronic device in the target cell and an identification of the target cell
  • the implementation manner for determining whether the parameter information meets a stay standard may be : Determine whether the residence time is greater than the duration threshold and / or whether the target cell ID matches the specified ID, and if the residence time is greater than the duration threshold or the target cell ID matches the specified ID, determine The parameter information satisfies the stay criterion; if the residence duration is less than or equal to the duration threshold and the identifier of the target cell does not match the specified identifier, it is determined that the parameter information does not meet the stay criterion.
  • the residence duration is greater than the duration threshold, if it is greater than the duration threshold, then stop performing the network state measurement operation of the neighboring cells of the target cell, and if less than or equal to the duration threshold, the target cell is acquired
  • the target cell is acquired
  • the target cell ’s ID matches the specified ID, if it matches the specified ID, then stop the measurement of the network status of the target cell ’s neighboring cells, and if it does not match the specified ID, allow the execution A measurement operation of the network state of the neighboring cell of the target cell.
  • the parameter information includes a target time, a residence time of the electronic device in the target cell, and an identifier of the target cell, if the target time is within a specified time range, the If the duration is greater than the duration threshold and the target cell ID matches any of the specified IDs, it is determined that the parameter information satisfies the stay standard, and then the measurement operation of the network status of the neighboring cell of the target cell is stopped, and if the target Occurs when the time is within the specified time period, the residence time is greater than the duration threshold, and the target cell's ID matches the specified ID. If the parameter information does not meet the stay standard, the neighboring cells of the target cell are allowed to perform Network status measurement operation.
  • the judgment order of the three that is, whether the target time is within the specified time period, whether the residence time is greater than the duration threshold, and whether the target cell ID matches the specified ID are not limited. , Can be set according to requirements, and as an embodiment, it can be determined whether the target cell's ID matches the specified ID, then whether the target time is within the specified time period, and finally whether the residence time is determined Greater than the duration threshold.
  • the identification of the target cell is acquired, and it is determined whether the identification of the target cell matches the specified identification. If it matches the specified identifier, stop the measurement operation of the network state of the neighboring cell of the target cell, and if it does not match the specified identifier, then use the current time as the target time to determine whether the target time is within the specified time period , If it is within the specified time period, stop performing the network operation measurement of the neighboring cells of the target cell, and if it is outside the specified time period, obtain the residence time of the electronic device in the target cell, Judging whether the residence time is greater than the duration threshold, if it is greater than the duration threshold, then stop performing the measurement operation of the network status of the neighboring cells of the target cell, if it is less than or equal to the duration threshold, the execution of the target cell is allowed Measurement operation of the network status of neighboring cells.
  • FIG. 6 a cell information processing method provided by an embodiment of the present application is shown. The method includes: S601 to S606.
  • S601 When the electronic device is registered in a target cell, obtain parameter information, where the parameter information includes at least one of a target time, a residence time of the electronic device in the target cell, or an identifier of the target cell Species.
  • S603 Acquire network parameters of the target cell.
  • the network parameters of the target cell may be the connection status between the electronic device and the target cell, the channel quality between the electronic device and the target cell, and the signal strength of the target cell.
  • the connection state between the electronic device and the target cell includes a connected state and a disconnected state
  • the connection state between the electronic device and the target cell can be detected through a heartbeat packet between the electronic device and the target base station corresponding to the target cell, for example,
  • the electronic device sends a beacon to the target base station at a certain time interval. After the target base station obtains the beacon, it returns a specified information to the electronic device. If the electronic device detects that the specified information is obtained, it determines that the electronic The device and the target cell are in a connected state.
  • the connection between the electronic device and the target cell is determined
  • the state is a disconnected state, where the length of time of the predetermined time is greater than the length of the preset interval, and the predetermined number of times may be set according to the communication protocol between the electronic device and the target base station, or may be set by the user.
  • the channel quality between the electronic device and the target cell may be the error vector amplitude of the channel, the number of access points, and signal strength.
  • Error Vector Magnitude refers to the vector difference between the ideal error-free reference signal and the actual transmitted signal at a given time, and is used to measure the amplitude error and phase error of the modulated signal.
  • EVM specifically represents the signal received by the receiving terminal. The closeness of the IQ component generated during demodulation to the ideal signal component is an indicator of the quality of the modulated signal. The smaller the EVM, the better the channel quality of the channel.
  • an electronic device When an electronic device enters a new network environment, it scans multiple supported channels according to the preset channel scanning order, and during the scanning process of each channel, it can obtain the access point on the channel. In this way, the channel where each access point is located can be determined, and further the channel where the target base station is located can be determined, so as to obtain the channel quality of information between the electronic device and the target base station.
  • the electronic device can obtain the signal strength of the target cell after registering to the target cell.
  • the target cell is a 2G / 3G / 4G network
  • it can be obtained through an API interface in the operating system, for example, Android
  • the SignalStrength API interface of the operating system can obtain the signal strength of the currently received target cell.
  • the designated network standard is used to determine whether the currently camped target cell can meet the user's normal business requirements under the current network parameters, and whether it is necessary to abandon the current cell and choose to register another cell.
  • the meanings corresponding to the network parameters are different, the meaning of the designated network standard is also different, and the implementation manner for determining whether the network parameter meets the designated network standard is also different.
  • the network parameter is the connection state between the electronic device and the target cell, it is determined whether the network parameter satisfies the specified network standard. If the connection state between the electronic device and the target cell is the connected state, it is determined that the network parameter meets the specified The network standard, and when the connection state between the electronic device and the network cell is the disconnected state, it is determined that the network parameter does not meet the specified network standard.
  • the network parameter is the channel quality between the electronic device and the target cell
  • the error vector magnitude of the channel between the electronic device and the target cell is used as the channel quality between the electronic device and the target cell. If the magnitude of the error vector is less than the threshold, it is determined that the network parameter meets the specified network standard, and if the magnitude of the error vector is greater than or equal to the threshold, it is determined that the network parameter does not meet the specified network standard.
  • the network parameter is the signal strength of the target cell, and a specific implementation manner for judging whether the network parameter meets the specified network standard is: judging whether the signal strength value is greater than the strength threshold; if it is greater than, then It is determined that the network parameter meets the specified network standard; if less than or equal to, it is determined that the network parameter does not meet the specified network standard.
  • the intensity threshold can be set according to the user's needs or according to the network protocol. Specifically, the intensity threshold is set so that when the user connects the electronic device to the target base station, When the signal strength value of the received signal is greater than the strength threshold value, the target cell can meet the needs of users.
  • the network parameter is a signal strength value.
  • S605 Stop performing the operation of registering to the neighboring cell of the target cell.
  • S606 Perform an operation of registering to the neighboring cell of the target cell.
  • S605 is executed, that is, the operation of neighboring cells registered to the target cell is stopped, for example, the measurement operation of the network state of the neighboring cell of the target cell is stopped.
  • S606 is performed, that is, a network state measurement operation of the neighboring cell of the target cell is performed to obtain the network state of the neighboring cell.
  • the network parameter as the signal strength value as an example, when the signal strength value of the signal received in the target cell registered by the electronic device is greater than the strength threshold value, it indicates that the signal strength in the currently registered cell can meet the user's use requirements .
  • the parameter information satisfies the stay criterion at the same time, it is not necessary to perform the network state measurement operation on the neighboring cell of the target cell. If the signal strength value is less than or equal to the strength threshold value, it means that the signal strength in the currently registered cell cannot meet the user's usage requirements, and the network status of the neighboring cell of the target cell needs to be obtained immediately, and the target cell is executed.
  • the network parameter of the target cell may also be performed, The operation of judging whether the network parameter meets the specified network standard, that is, in the case of allowing the measurement operation of the network state of the neighboring cell of the target cell, if it is detected that the network parameter does not meet the specified network standard, the The operation of measuring the network state of the neighboring cell of the target cell to obtain the network state of the neighboring cell.
  • the cell information processing apparatus 700 may include: an obtaining unit 701, a judging unit 702, and a processing unit 703.
  • the obtaining unit 701 is configured to obtain parameter information when the electronic device is registered in the target cell, where the parameter information includes a target time, a residence time of the electronic device in the target cell, or an identifier of the target cell At least one of them.
  • the judging unit 702 is used to judge whether the parameter information meets the stay standard.
  • the parameter information includes the target time
  • the determining unit 702 is specifically configured to determine whether the target time is within the specified time period; if it is within the specified time period, it is determined that the parameter information meets the stay standard; If it is outside the specified time period, it is determined that the parameter information does not meet the stay standard.
  • the parameter information includes the residence time of the electronic device in the target cell, and the determining unit 702 is specifically configured to determine whether the residence time is greater than the duration threshold; if it is greater than the duration threshold, then determine the The parameter information meets the stay standard; if it is less than or equal to the duration threshold, it is determined that the parameter information does not meet the stay standard.
  • the parameter information includes the target cell identifier
  • the judgment unit 702 is specifically configured to determine whether the target cell identifier matches the specified identifier; if it matches the specified identifier, it is determined that the parameter information meets the stay criteria ; If it does not match the specified identification, it is determined that the parameter information does not meet the stay standard.
  • the parameter information includes the target time and the residence time of the electronic device in the target cell
  • the determining unit 702 is specifically configured to determine whether the target time is within a specified time period and / or Whether the dwell time is greater than the duration threshold; if the target time is within the specified time period or the dwell duration is greater than the time limit, it is determined that the parameter information meets the stay standard; if the target time is within the specified time period If it is outside the range and the residence time is less than or equal to the duration threshold, it is determined that the parameter information does not meet the stay standard.
  • the parameter information includes the target time and the identity of the target cell
  • the determining unit 702 is specifically configured to determine whether the target time is within a specified time period and / or whether the target cell identity is The specified identification matches; if the target time is within the specified time period or if the target cell's identification matches the specified identification, it is determined that the parameter information meets the stay standard; if the target time is outside the specified time period and all If the identifier of the target cell does not match the designated identifier, it is determined that the parameter information does not meet the stay standard.
  • the parameter information includes the residence time of the electronic device in the target cell and the identifier of the target cell
  • the determining unit 702 is specifically configured to determine whether the residence time is greater than the duration threshold And / or whether the identity of the target cell matches the designated identity; if the residence time is greater than the duration threshold or the identity of the target cell matches the designated identity, it is determined that the parameter information meets the stay standard; if the residence If the duration is less than or equal to the duration threshold and the identifier of the target cell does not match the specified identifier, it is determined that the parameter information does not meet the stay standard.
  • the processing unit 703 is configured to stop performing the operation of registering with the neighboring cell of the target cell if the stay criterion is met.
  • the processing unit 703 includes an acquisition subunit and a judgment subunit.
  • the obtaining subunit is used to obtain the network parameters of the target cell.
  • the judgment subunit is used to judge whether the network parameter meets the specified network standard; if it is satisfied, the operation of registering to the neighboring cell of the target cell is stopped; if it is not satisfied, the registration of the neighboring cell of the target cell is performed Operation.
  • the network parameter is a signal strength value.
  • the judging subunit is also used to judge whether the signal strength value is greater than the strength threshold; if it is greater, it is determined that the network parameter meets the specified network standard; if it is less than or equal, it is determined that the network parameter does not meet Specify the network standard.
  • the coupling between the modules may be electrical, mechanical, or other forms of coupling.
  • each functional module in each embodiment of the present application may be integrated into one processing module, or each module may exist alone physically, or two or more modules may be integrated into one module.
  • the above integrated modules may be implemented in the form of hardware or software function modules.
  • the electronic device 100 may be an electronic device capable of running application programs, such as a smart mobile terminal, a tablet computer, and an e-book.
  • the electronic device 100 in this application may include one or more of the following components: a processor 110, a memory 120, and one or more application programs, where one or more application programs may be stored in the memory 120 and configured to be One or more processors 110 execute, and one or more programs are configured to execute the method as described in the foregoing method embodiments.
  • the processor 110 may include one or more processing cores.
  • the processor 110 connects various parts of the entire electronic device 100 by using various interfaces and lines, executes or executes instructions, programs, code sets or instruction sets stored in the memory 120, and calls data stored in the memory 120 to execute Various functions and processing data of the electronic device 100.
  • the processor 110 may use at least one of digital signal processing (Digital Signal Processing, DSP), field programmable gate array (Field-Programmable Gate Array, FPGA), and programmable logic array (Programmable Logic Array, PLA).
  • DSP Digital Signal Processing
  • FPGA field programmable gate array
  • PLA programmable logic array
  • the processor 110 may integrate one or a combination of a central processing unit (Central Processing Unit, CPU), an image processing unit (Graphics Processing Unit, GPU), and a modem.
  • CPU mainly deals with operating system, user interface and application program, etc .
  • GPU is used for rendering and rendering of display content
  • modem is used for handling wireless communication. It can be understood that the above-mentioned modem may not be integrated into the processor 110, and may be implemented by a communication chip alone.
  • the memory 120 may include random access memory (RAM) or read-only memory (Read-Only Memory).
  • the memory 120 may be used to store instructions, programs, codes, code sets, or instruction sets.
  • the memory 120 may include a storage program area and a storage data area, where the storage program area may store instructions for implementing an operating system and instructions for implementing at least one function (such as a touch function, a sound playback function, an image playback function, etc.) , Instructions for implementing the following method embodiments.
  • the storage data area may also store data created by the electronic device 100 in use (such as a phone book, audio and video data, chat history data), and the like.
  • FIG. 9 shows a structural block diagram of a computer-readable storage medium provided by an embodiment of the present application.
  • the computer-readable storage medium 900 stores program code, and the program code can be called by a processor to execute the method described in the foregoing method embodiments.
  • the computer-readable storage medium 900 may be an electronic memory such as flash memory, EEPROM (Electrically Erasable Programmable Read Only Memory), EPROM, hard disk, or ROM.
  • the computer-readable storage medium 900 includes a non-transitory computer-readable storage medium.
  • the computer-readable storage medium 900 has a storage space for the program code 910 that performs any of the method steps described above. These program codes can be read from or written into one or more computer program products.
  • the program code 910 may be compressed in an appropriate form, for example.

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Abstract

一种小区信息处理方法、装置、电子设备及可读取存储介质,涉及移动通信技术领域。该方法包括:当电子设备注册到目标小区时,获取参数信息,参数信息包括目标时刻、电子设备在目标小区内的驻留时长或目标小区的标识中的至少一种,其中,目标时刻为注册到目标小区之后的任意时刻;判断参数信息是否满足停留标准;若满足停留标准,停止执行注册到目标小区的邻近小区的操作。该方法通过停止执行对邻近小区的注册操作,就能够从根本上避免注册至该小区,也就能够避免连接到该小区对应的伪基站。

Description

小区信息处理方法、装置、电子设备及可读取存储介质 技术领域
本申请涉及移动通信技术领域,更具体地,涉及一种小区信息处理方法、装置、电子设备及可读取存储介质。
背景技术
伪基站是移动通信网络之外的非法基站,伪基站为了提取用户终端信息或与用户终端进行信息传递。伪基站设备能够强制连接用户终端,摄取一定半径范围内的用户终端内的信息,覆盖真正运营商的信号,冒用公用服务号码强行向用户终端发送短信,危害通讯安全,扰乱社会公共秩序,降低用户安全,造成用户信息泄露。
发明内容
本申请提出了一种小区信息处理方法、装置、电子设备及可读取存储介质,以改善上述缺陷,
第一方面,本申请实施例提供了一种小区信息处理方法,应用于电子设备,所述方法包括:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种,其中,所述目标时刻为注册到目标小区之后的任意时刻;判断所述参数信息是否满足停留标准;若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
第二方面,本申请实施例还提供了一种小区信息处理装置,应用于电子设备。所述装置包括:获取单元、判断单元和处理单元。获取单元,用于当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种。判断单元,用于判断所述参数信息是否满足停留标准。处理单元,用于若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
第三方面,本申请实施例还提供了一种电子设备,包括:一个或多个处理器;存储器;一个或多个应用程序,其中所述一个或多个应用程序被存储在所述存储器中并被配 置为由所述一个或多个处理器执行,所述一个或多个程序配置用于执行上述方法。
第四方面,本申请实施例还提供了一种计算机可读取存储介质,所述计算机可读取存储介质中存储有程序代码,所述程序代码可被处理器调用执行上述方法。
本申请实施例提供的小区信息处理方法、装置、电子设备及可读取存储介质,电子设备在注册到目标小区后,获取目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种作为参数信息,其中,目标时刻为注册到目标小区之后的任意时刻,再根据所获取的参数信息是否满足停留标准的判断结果判断是否执行对所述目标小区的邻近小区的注册的操作。则如果参数信息满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。因此,如果停止执行对邻近小区的注册操作,就能够从根本上避免注册至该小区,也就能够避免连接到该小区对应的伪基站。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1示出了本申请实施例提供的通信提供的示意图;
图2示出了本申请一实施例提供的一种小区信息处理方法的方法流程图;
图3示出了本申请另一实施例提供的一种小区信息处理方法的方法流程图;
图4示出了本申请又一实施例提供的一种小区信息处理方法的方法流程图;
图5示出了本申请再一实施例提供的一种小区信息处理方法的方法流程图;
图6示出了本申请再又一实施例提供的一种小区信息处理方法的方法流程图;
图7示出了本申请实施例提供的一种小区信息处理装置的模块框图;
图8示出了本申请实施例提供的电子设备的结构框图;
图9示出了本申请实施例的用于保存或者携带实现根据本申请实施例的小区信息处理方法的程序代码的存储单元。
具体实施方式
为了使本技术领域的人员更好地理解本申请方案,下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述。
请参阅图1,示出了一种通信系统,该通信系统包括:基站收发台(Base Transceiver Station,BTS)10、基站控制器(Base Station Controller,BSC)20、移动交换中心(Mobile Switching Center,MSC)30和电子设备100。
BTS 10与BSC 20连接,BSC 20具有对一个或多个BTS进行控制的功能,它主要负责无线网络资源的管理、小区配置数据管理、功率控制、定位和切换等。BTS 10由BSC20控制,主要负责无线传输,完成无线与有线的转换、无线分集、无线信道加密、跳帧等功能。
BSC 20与MSC 30连接,MSC是通信系统的而核心,是对位于它所覆盖区域中的移动台(如电子设备100)进行控制和完成话路交换的功能实体,也是通信系统与其他公用通信网之间的接口。它可完成网络接口、公共信道信令系统和计费等功能,还可以完成基站子系统与移动交换中心之间的切换和辅助性的无线资源管理、移动性管理等。
MSC 30还被构造为与其他网络形成接口。其中,其他网络包括公共交换电话网(Public Switched Telephone Network,PSTN)、公用陆地移动通信网(Public Lands Mobile-communication Network,PLMN)等。
其中,移动通信中将无线信号覆盖的区域称之为小区,一般是指一个基站的信号所能覆盖的范围。一般来说,一个基站就是一个小区(一个基站也可以划分为几个小区,这时候小区和扇区就等同了),小区再分为扇区(一般情况下,一个小区有一个/二个/三个扇区,甚至更多),每个扇区再根据话务量决定载频的数量。
电子设备100在进行实际业务前需要在某个小区注册以完成网络注册的过程,用户只有在附着成功后才可以接收来自网络的服务。示例性地,以电子设备如移动终端注册4G小区为例,移动终端在开启或者重新启动网络时,在可能存在小区的几个中心频点上接收信号,以接收信号强度来判断这个频点周围是否可能存在小区,如果移动终端保存了上次关机时的频点和运营商信息,则开机后会先在上次驻留的小区上尝试;如果没有,就要在划分给通信系统的频带范围做全频段扫描,发现信号较强的频点去尝试注册。
在获取到满足注册要求的小区之后,执行附着操作,即移动终端与基站相互鉴权,移动终端与网络节点建立移动性管理上下文,网络节点为移动终端建立默认承载,移动终端获得网络侧分配的IP地址,用户位置登记,临时身份标识的分配。
而由于伪基站会获取用户所使用的电子设备的数据,侵犯用户的隐私而且会发送一些垃圾短信而影响用户体验度,因此,现在存在一些识别伪基站的技术,主要包括:移动终端收集伪基站的特征,当移动终端选择驻留在全球移动通信系统网络的小区时,移动终端检查该小区的特征是否符合收集到的伪基站的特征,若是,则不驻留在该小区,继续搜索其他可驻留小区。
还有一种识别伪基站的方式为移动终端针对接收到的短信内容,提取关键字,根据关键字判断该短信是否为垃圾信息,若是,则该移动终端确定当前驻留的基站为伪基站,否则,为正常基站。
但是,发明人在研究中发现,上述通过识别伪基站的方式并不能够较好解决用户终端与伪基站的连接,因为,伪基站的特征不是一成不变的,当出现新型伪基站时,终端 已存的伪基站特征需要随之升级才能成功识别出伪基站,因此可能导致伪基站识别失败。而单纯通过接收到垃圾信息就判断当前驻留的基站为伪基站,有可能造成误判。
并且,在电子设备连接基站之后,再判断所连接的基站是否为伪基站,而在检测出该基站为伪基站之前,电子设备内的数据可能已经被伪基站窃取,且电子设备已经接收到伪基站发送的垃圾短信,即损失已经发生,即使能够检测到伪基站并断开连接,伪基站所造成的影响已成既定事实,很难追回,效果不佳。
因此,为了克服上述技术缺陷,如图2所示,本申请实施例提供了一种小区信息处理方法,该方法用于避免用户的电子设备连接至伪基站,具体地,该方法包括:S201至S203。
S201:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种。
其中,所述目标时刻为注册到目标小区的时刻或注册到目标小区之后的任意时刻,具体地,可以是设定电子设备注册到目标小区的时刻记为第一时刻,可以将第一时刻设定为目标时刻,也可以将第一时刻之后的某个时间间隔为目标时刻,还可以是设定一个时间周期,将第一时刻之后每间隔时间周期的时间点作为目标时刻。
电子设备在所述目标小区内的驻留时长为电子设备在该目标小区成功注册至在该目标小区去注册之间的时间长度,即电子设备与某个小区的基站保持心跳的时间长度。具体地,电子设备如果想成功驻留一个小区,当前小区必须满足S准则,小区选择过程中,电子设备需要对将要选择的小区进行测量,以便进行信道质量评估,判断其是否符合驻留的标准。而小区选择的测量准则被称为S准则,当某个小区的信道质量满足S准则之后,就可以被选择为驻留小区。则S准则为:
Srxlev=Qrxlevmeas-(Qrxlevmin+Qrxlevminoffset)-Pcompensation。
其中,Srxlex为小区选择S值,Qrxlevmeas为测量小区的RSRP值,Qrxlevmin为小区中RSRP最小接收强度要求,可以从广播消息中获得,Qrxlevminoffset为当驻留在VPLMN上搜索高优先级PLMN上的时候采用Srxlev评估小区质量,需要对Qrxlevmin进行的偏移,用于防止乒乓效应。Pcompensation为Max(PEMAX-PUMAX,0),PEMAX为电子设备在小区中允许的最大上行发送功率,可以从广播消息中获得,PUMAX为由电子设备能力决定的最大上行发送功率。
目标小区的标识可以是小区识别码,当电子设备注册到某个小区之前,需要对不同的信道上所有小区发送广播消息,以使电子设备了解当前存在哪些网络、哪些可用技术、运营商、信道和参数连接网络等信息。则广播消息过程中能够获取到各个小区的小区识别码、跟踪区域码、小区所属网络识别码以及小区禁用状态等。
S202:判断所述参数信息是否满足停留标准。
依据不同的参数信息设置不同的停留标准,例如,当参数信息为驻留时长,该停留 标准可以是预留时长的时间长度,再例如,参数信息为目标小区的标识为,该停留标准可以是预设小区标识,具体地,将在后续实施例中详细介绍。
S203:若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
在通信系统协议中,例如,全球移动通信系统协议中,电子设备如移动终端在发起小区重选时,移动终端接收候选小区的信号强度Rxlev,接收通过该候选小区所属基站广播的候选小区的小区最小接入电平值Rxlev_Access_Min,先计算小区参数C1=Rxlev-Rxlev_Access_Min,再计算小区重选参数C2=C1+CRO,计算得出的小区重选参数C2越大,用户驻留到该候选小区的概率越大。其中,CRO为小区重选偏置参数,由人为干预。
移动终端进入一区域范围时,获取该区域范围内至少两个小区的信号强度、最小接入电平;由于合法基站的最小接入电平通常取值为8~18,而伪基站的最小接入电平通常为0,所以当该区域范围有伪基站出现时,伪基站所覆盖下的小区(候选小区)的C1值较大,由较大的C1值得到的C2也较大,这样移动终端更容易重选到伪基站所覆盖下的候选小区,将该候选小区作为新的服务小区,即更容易重选或切换到伪基站对应的小区,而与伪基站连接。
于本申请实施例中,则停止执行注册到所述目标小区的邻近小区的操作可以包括:停止执行对所述目标小区的邻近小区的网络状态的测量操作和/或禁止电子设备执行小区重选的操作。
其中,停止执行对所述目标小区的邻近小区的网络状态的测量操作,所述网络状态为所述电子设备判定是否注册该网络状态对应的小区的参考标准,则邻近小区的C2和C1参数为邻近小区的网络状态,也就是说,所述网络状态为所述电子设备判定是否注册该网络状态对应的小区的参考标准。则电子设备在切换或重选目标小区的邻近小区的时候,需要对邻近小区测量以获取邻近小区的网络状态,如果该网络状态满足切换要求,就切换至该邻近小区,即注册至该邻近小区并且在目标小区执行去注册操作。其中,切换要求可以是上述的C2=C1+CRO的标准。
而如果参数信息满足停留标准,则表示电子设备可以不切换至目标小区的邻近小区,即继续驻留在目标小区,因此,可以暂停执行对所述目标小区的邻近小区的网络状态的测量操作,从而电子设备无法获取到邻近小区的网络状态,则就无法注册到目标小区的邻近小区,则彻底杜绝了与邻近小区内的伪基站的连接。
另外,也可以将电子设备的小区重选的功能关闭,使得电子设备在电子设备执行小区重选的操作被禁止的过程中,不具备小区重选的功能,则不会切换至其他小区。
另外,当参数信息为目标时刻时,判断参数信息是否满足停留标准的具体实施方式可以参考图3,具体地,该方法包括:S301至S303。
S301:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标 时刻。
其中,目标时刻为注册到目标小区的时刻或注册到目标小区之后的任意时刻。由于电子设备在空闲(IDLE)模式下因位置变动、信号变化等因素导致重新选择服务小区,则目标时刻可以是在电子设备成功注册到目标小区之后,每次由业务模式切换至空闲模式的时刻为目标时刻,其中,业务模式下电子设备与目标小区的基站处于连接状态,但是没有分配专用的业务通道,而业务模式下,电子设备与目标小区的基站处于连接状态且被分配有专用的业务通道,正在执行某些业务,例如,通话业务。
另外,目标时刻也可以是电子设备注册到目标小区的时间点,作为一种实施方式,目标时刻包括第一子时刻和第二子时刻,其中,第一子时刻为电子设备注册到目标小区的时间点,第二子时刻为第一子时刻之后的时间点,则第二子时刻与第一子时刻之间的差值为预设时间间隔。
S302:判断所述目标时刻是否位于指定时间段范围内。
则若位于指定时间段范围内,则判定所述参数信息满足停留标准;若位于指定时间段范围外,则判定所述参数信息不满足停留标准。
其中,指定时间段范围为用户根据需求而设定的时间段,可以是用户使用电子设备的不频繁的时间点,例如,可以是22:00至06:00,即当日晚上十点至次日凌晨6点。
另外,还可以是统计在预设时间段内电子设备的使用时间分布,即统计在预设时间段内用户每天使用电子设备的时间点的分布状态,从而能够确定用户每天在哪个时间段内使用电子设备的使用频率低于预设值,其中,使用频率为在设定的时间间隔内所使用的电子设备的使用时间而计算得到,如,使用次数=t/c,其中,t为使用时间,而c为使用次数,由此就能够确定哪个时间段的使用频率比较高,然后,获取在预设时间段内每天的使用时间分布,即获取在预设时间段内每天对应的使用频率低于预设值的时间间隔,然后,获取出现频率较高的时间间隔,从而能够确定指定时间段。
例如,统计一个月内,每天的22:00至24:00以及00:00至06:00的时间段内,使用频率都低于预设值,或者说,在一个月内,22:00至24:00以及00:00至06:00的时间段内使用频率低于预设值的出现概率比较高,则可以确定每天的22:00至24:00以及00:00至06:00的时间段内用户使用电子设备的可能性过低,则将该每天的22:00至24:00以及00:00至06:00的时间段内作为指定时间段。
从而在判断目标时刻位于指定时间段范围内时,就执行停止执行对所述目标小区的邻近小区的网络状态的测量操作的操作,然后,再获取下一次目标时刻作为新的目标时刻,并返回执行S302。
作为一种实施方式,将电子设备成功注册到目标小区的第一子时刻,作为目标时刻,则先判断目标时刻是否位于指定时间段范围内,则判定该目标时刻位于指定时间段范围内的时候,则根据目标时刻和指定时间段范围确定第二子时刻,作为新的目标时刻。则 根据目标时刻和指定时间段范围确定第二子时刻的具体实施方式为,将第一子时刻加上指定时间间隔的和作为第二子时刻,即第二子时刻位于第一子时刻之后,且第二子时刻与第一子时刻的差值大于指定时间段范围,以使第二子时刻位于指定时间段范围外。
则再判定第一子时刻位于指定时间段范围内之后,执行停止执行对所述目标小区的邻近小区的网络状态的测量操作的操作,然后,再获取下一次目标时刻作为新的目标时刻,并返回执行S302时,新的目标时刻位于指定时间段范围外,从而执行对所述目标小区的邻近小区的网络状态的测量操作的操作,也就是说,在第一子时刻至指定时间段范围的终点时刻之间的时间段内,都判定目标时刻位于指定时间段范围内时,则执行停止执行对所述目标小区的邻近小区的网络状态的测量操作的操作。
其中,作为一种实施方式,上述指定时间间隔可以是第一子时刻至指定时间段范围的终点时刻之间的时间段。
S303:停止执行注册到所述目标小区的邻近小区的操作。
则如果目标时刻位于指定时间段范围外,则允许执行对所述目标小区的邻近小区的网络状态的测量操作,则可以依据具体的小区重选策略而选择是否对所述目标小区的邻近小区的网络状态测量。例如,在空闲模式下,电子设备计算目标小区的邻近小区(与目标小区属于同一位置区)的C2值超过当前服务小区(目标小区)的C2值连续5s。或者,电子设备计算邻近小区(与目标小区不属于同一位置区)的C1值超过目标小区的C2值与小区重选滞后值之和连续5s。
另外,当参数信息为电子设备在所述目标小区内的驻留时长时,判断参数信息是否满足停留标准的具体实施方式可以参考图4,具体地,该方法包括:S401至S403。
S401:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括电子设备在所述目标小区内的驻留时长。
S402:判断所述驻留时长是否大于时长门限。
其中,时长门限用于表示一个时间长度,例如,可以是1小时或者半小时,如果电子设备在某个小区的驻留时长大于时长门限,则表示用户在该小区内驻留一定时间,而非路过该小区,也表示在短时间内不会切换到其他小区。
S403:停止执行注册到所述目标小区的邻近小区的操作。
如果电子设备在目标小区成功注册之后,开始统计该电子设备在该目标小区的驻留时长,如果该驻留时长小于或等于时长门限,则电子设备允许执行对所述目标小区的邻近小区的网络状态的测量操作。则如果满足小区重选的条件,电子设备会切换到其他小区,从而在该目标小区的驻留时长清零,而在下一次再次注册到该目标小区的时候,重新统计驻留时长。
而在该驻留时长大于时长门限的时候,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,从而能够使得用户在某个小区下驻留时间比较久的时候,表示当前 小区能够满足用于的使用需求,则可以避免对邻近小区的网络状态的测量,而减少连接到伪基站的可能。
另外,当参数信息为电子设备在所述目标小区内的标识时,判断参数信息是否满足停留标准的具体实施方式可以参考图5,具体地,该方法包括:
S501:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标小区的标识。
S502:判断所述目标小区的标识是否与指定标识匹配。
若与指定标识匹配,则判定所述参数信息满足停留标准。
若与指定标识不匹配,则判定所述参数信息不满足停留标准。
其中,指定标识可以是用户所指定的标识,作为一种实施方式,可以是用户的电子设备常驻小区的标识。则获取指定标识的方式为:获取所述电子设备在目标时间段内所注册的所有小区以及每个小区对应的驻留时长;将驻留时长大于常驻时长门限的小区的标识作为指定标识。具体地,每个小区的驻留时长的统计以每次注册到该小区的时刻为起点,以在该小区去注册的时刻为终点,从而统计出每次成功注册与去注册之间的时间段作为该次的驻留时长,从而能够统计出电子设备所注册的每个小区的每次的驻留时长,从而统计出在目标时间段内,所有的驻留时长大于常驻时长门限的小区。
例如,该目标时间段为1个月,则统计出该1个月内,电子设备注册的小区标识为小区1、小区2、小区3、小区4。则统计每个小区的每次的驻留时长,其中,小区1的驻留时长大于常驻时长门限的次数为10次,小区1的驻留时长大于常驻时长门限的次数为8次,小区1的驻留时长大于常驻时长门限的次数为3次,小区1的驻留时长大于常驻时长门限的次数为1次,则可以将小区1和小区2作为常驻小区,即为指定标识为小区1和小区2的标识。
S503:停止执行注册到所述目标小区的邻近小区的操作。
另外,该参数信息还可以包括多个,而不是单一的某个参数。以停止执行注册到所述目标小区的邻近小区的操作为停止执行对所述目标小区的邻近小区的网络状态的测量操作为例。
作为一种实施方式,参数信息可以包括目标时刻和所述电子设备在所述目标小区内的驻留时长,则判断所述参数信息是否满足停留标准,包括:判断所述目标时刻是否位于指定时间段范围内和/或所述驻留时长是否大于时长门限;若所述目标时刻位于指定时间段范围内或所述驻留时长大于时长门限,则判定所述参数信息满足停留标准;若所述目标时刻位于指定时间段范围外且所述驻留时长小于或等于时长门限,则判定所述参数信息不满足停留标准。
具体地,可以是判断所述目标时刻是否位于指定时间段范围内,若位于指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作。若位于指定时 间段范围外,则获取驻留时长,判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若小于或等于时长门限,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。因此,如果是在指定时间段范围外,但是所注册的目标小区的驻留时长大于时长门限,则同样停止执行对所述目标小区的邻近小区的网络状态的测量操作。从而,通过时间段和驻留时长的二级检测,能够更加准确的禁止对所述目标小区的邻近小区的网络状态的测量操作,从而能够减少连接到伪基站的可能性。
还可以是,判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若小于或等于时长门限,则获取目标时刻,判断所述目标时刻是否位于指定时间段范围内,若位于指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,其中,目标时刻为判定驻留时长小于时长门限之后的任意时刻。若位于指定时间段范围外,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。由于在注册到小区的时候就能够确定该小区的驻留时长,而驻留时长到达时长门限需要一定的时间,则在驻留时长到达时长门限之前,先确定一个目标时刻,并判定该目标时刻是否位于指定时间段范围内,则该目标时刻可以是注册到目标小区的时刻,如果该目标时刻位于指定时间段范围内,从而能够避免在驻留时长到达时长门限之前,执行对所述目标小区的邻近小区的网络状态的测量操作。
作为另一种实施方式,所述参数信息包括目标时刻和所述目标小区的标识,则判断所述参数信息是否满足停留标准的具体实施方式为:判断所述目标时刻是否位于指定时间段范围内和/或所述目标小区的标识是否与指定标识匹配;若所述目标时刻位于指定时间段范围内或所述目标小区的标识与指定标识匹配,则判定所述参数信息满足停留标准;若所述目标时刻位于指定时间段范围外且所述目标小区的标识与指定标识不匹配,则判定所述参数信息不满足停留标准。
具体地,可以是判断所述目标时刻是否位于指定时间段范围内,若位于指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若位于指定时间段范围外,则获取目标小区的标识,判断所述目标小区的标识是否与指定标识匹配,若匹配,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若不匹配,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。
还可以是,判断所述目标小区的标识是否与指定标识匹配,若匹配,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若不匹配,则获取目标时刻,判断所述目标时刻是否位于指定时间段范围内,若位于指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若位于指定时间段范围外允许执行对所述目标小区的邻近小区的网络状态的测量操作。由于在注册到目标小区的时候就已经确定了该小区的标识,从而先判断该标识是否为指定标识,如果不是,再将当前时刻作为目 标时刻,判断该目标时刻是否位于指定时间段范围内,如果位于该指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作。
作为又一种实施方式,所述参数信息包括所述电子设备在所述目标小区内的驻留时长和所述目标小区的标识,所述判断所述参数信息是否满足停留标准的实施方式可以是:判断所述驻留时长是否大于时长门限和/或所述目标小区的标识是否与指定标识匹配,若所述驻留时长大于时长门限或所述目标小区的标识与指定标识匹配,则判定所述参数信息满足停留标准;若所述驻留时长小于或等于时长门限且所述目标小区的标识与指定标识不匹配,则判定所述参数信息不满足停留标准。
具体地,可以是判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若小于或等于时长门限,则获取目标小区的标识,判断所述目标小区的标识是否与指定标识匹配,若与指定标识匹配,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若与指定标识不匹配,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。
另外,还可以是,判断所述目标小区的标识是否与指定标识匹配,若与指定标识匹配,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若与指定标识不匹配,则获取驻留时长,判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若小于或等于时长门限,允许执行对所述目标小区的邻近小区的网络状态的测量操作。
作为再一种实施方式,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长和所述目标小区的标识,则如果目标时刻位于指定时间段范围内、驻留时长大于时长门限和目标小区的标识与指定标识匹配三者中的任意一个发生,则判定参数信息满足停留标准,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,而如果目标时刻位于指定时间段范围内、驻留时长大于时长门限和目标小区的标识与指定标识匹配三者中均发生,则判定参数信息不满足停留标准,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。其中,三者的判断顺序,即判断所述目标时刻是否位于指定时间段范围内、判断所述驻留时长是否大于时长门限、判断所述目标小区的标识是否与指定标识匹配的顺序不做限定,可以根据需求而设定,而作为一种实施方式,可以先判断目标小区的标识是否与指定标识匹配、再判断目标时刻是否位于指定时间段范围内,最后再判断判断所述驻留时长是否大于时长门限。
具体地,当所述电子设备注册到目标小区时,获取目标小区的标识,判断所述目标小区的标识是否与指定标识匹配。若与指定标识匹配,停止执行对所述目标小区的邻近小区的网络状态的测量操作,若与指定标识不匹配,则将当前时刻作为目标时刻,判断所述目标时刻是否位于指定时间段范围内,若位于指定时间段范围内,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若位于指定时间段范围外,则 获取电子设备在所述目标小区内的驻留时长,判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行对所述目标小区的邻近小区的网络状态的测量操作,若小于或等于时长门限,则允许执行对所述目标小区的邻近小区的网络状态的测量操作。
通过上述方法,不仅可以通过停止对邻近小区的网络状态的测量,而避免连接到邻近小区内的伪基站,而且还可以节省电子设备的功耗。
另外,为了保证用户能够正常访问移动网络,在电子设备在当前注册的目标小区内不满足驻留条件的情况下,即无法在该小区内实现正常业务的情况下,需要切换或者重选小区,具体地,如图6所示,示出了本申请实施例提供的一种小区信息处理方法,该方法包括:S601至S606。
S601:当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种。
S602:判断所述参数信息是否满足停留标准。
S603:获取所述目标小区的网络参数。
其中,目标小区的网络参数可以是电子设备与目标小区的连接状态、电子设备与目标小区之间的信道质量、目标小区的信号强度等。
则电子设备与目标小区的连接状态包括已连接状态和断开连接状态,则可以通过电子设备与目标小区对应的目标基站之间的心跳包检测电子设备与目标小区之间的连接状态,例如,电子设备在空闲模式下,间隔一定时间发送一个信标至目标基站,目标基站在获取到该信标之后会返回一个指定信息至电子设备,则电子设备如果检测获取到该指定信息,就判定电子设备与目标小区处于已连接状态,如果检测到在预定时间内没超过该指定信息,或者,在预定时间内没超过该指定信息的次数超过预定次数,就判定电子设备与目标小区之间的连接状态为断开连接状态,其中,预定时间的时间长度大于预设间隔的时间长度,预定次数可以根据电子设备与目标基站之间的通信协议而设定,也可以由用户设定。
电子设备与目标小区之间的信道质量可以是信道的误差向量幅度、接入点个数、信号强度等。其中,误差向量幅度(Error Vector Magnitude,简称EVM)指在给定时刻理想无误差基准信号与实际发射信号的向量差,用于衡量调制信号的幅度误差和相位误差,EVM具体表示接收终端对信号进行解调时产生的IQ分量与理想信号分量的接近程度,是考量调制信号质量的一种指标。EVM越小,信道的信道质量越好。
电子设备在进入到一个新的网络环境的时候,会根据预设信道扫描顺序对所支持的多个信道进行扫描,而在每个信道的扫描过程中,能够得到该信道上的接入点,由此就能够确定每个接入点所在的信道,进而就能够确定目标基站所在的信道,从而获取电子设备与目标基站之间的信息的信道质量。
而电子设备在注册到目标小区之后,能够获取该目标小区的信号强度,具体地,如 果该目标小区为2G/3G/4G网络,可以通过操作系统内的API接口获取,例如,安卓(Android)操作系统的SignalStrength类API接口,从而能够获得当前所接收的目标小区的信号强度。
S604:判断所述网络参数是否满足指定网络标准。
其中,指定网络标准用于判断在当前的网络参数的情况下,当前所驻留的目标小区是否能够满足用户正常的业务需求,是否需要放弃当前的小区而选择注册其他小区。具体地,在网络参数对应的含义不同的情况下,该指定网络标准的含义也不同,而判断所述网络参数是否满足指定网络标准的实施方式也不同。
作为一种实施方式,网络参数为电子设备与目标小区的连接状态,则判断所述网络参数是否满足指定网络标准为若电子设备与目标小区的连接状态为已连接状态,则判定网络参数满足指定网络标准,而在电子设备与网络小区的连接状态为断开连接状态时,则判定网络参数不满足指定网络标准。
作为另一种实施方式,网络参数为电子设备与目标小区之间的信道质量,则将电子设备与目标小区之间的信道的误差向量幅度作为电子设备与目标小区之间的信道质量,如果该误差向量幅度小于阈值,则判定网络参数满足指定网络标准,而如果该误差向量幅度大于或等于阈值,则判定网络参数不满足指定网络标准。
作为再一种实施方式,网络参数为目标小区的信号强度,则判断所述网络参数是否满足指定网络标准的具体实施方式为:判断所述信号强度值是否大于强度门限值;若大于,则判定所述网络参数满足指定网络标准;若小于或等于,则判定所述网络参数不满足指定网络标准。其中,强度门限值可以根据用户需求而设定,也可以是根据网络协议而设定,具体地,设定该强度门限值,以使用户在将电子设备连接至该目标基站时,所接收到的信号的信号强度值在大于该强度门限值的时候,该目标小区能够满足用户的需求。于本申请实施例中,所述网络参数为信号强度值。
S605:停止执行注册到所述目标小区的邻近小区的操作。
S606:执行注册到所述目标小区的邻近小区的操作。
如果网络参数满足指定网络标准,则执行S605,即停止执行注册到所述目标小区的邻近小区的操作,例如,停止执行对所述目标小区的邻近小区的网络状态的测量操作。如果网络参数不满足指定网络标准,则执行S606,即执行对所述目标小区的邻近小区的网络状态的测量操作,以获取所述邻近小区的网络状态。
以网络参数为信号强度值为例,则在电子设备所注册的目标小区内接收的信号的信号强度值大于强度门限值时,则表示当前注册的小区中的信号强度能够满足用户的使用需求,则在同时满足参数信息满足停留标准的情况下,可以不必对目标小区的邻近小区执行网络状态的测量操作。而如果信号强度值小于或等于强度门限值,则表示当前注册的小区中的信号强度无法满足用户的使用需求,则需要立刻获取目标小区的邻近小区的 网络状态,则执行对所述目标小区的邻近小区的网络状态的测量操作,以获取所述邻近小区的网络状态,从而再根据所获取的网络状态判断是否需要选择注册到邻近小区而放弃使用当前正在注册的目标小区。从而,能够在当前小区不适合用户正常使用时,即使当前获得的参数信息满足停留标准,也立刻执行对邻近小区的网络状态的测量,从而满足用户正常使用的需求。
另外,在S602中,如果判定所述参数信息不满足停留标准,则允许执行对所述目标小区的邻近小区的网络状态的测量操作,而此时也可以执行获取所述目标小区的网络参数,判断所述网络参数是否满足指定网络标准的操作,即在允许对所述目标小区的邻近小区的网络状态的测量操作的情况下,如果检测到网络参数不满足指定网络标准,则立刻执行对所述目标小区的邻近小区的网络状态的测量操作,以获取所述邻近小区的网络状态。
请参阅图7,其示出了本申请实施例提供的一种小区信息处理装置的结构框图,该小区信息处理装置700可以包括:获取单元701、判断单元702和处理单元703。
获取单元701,用于当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种。
判断单元702,用于判断所述参数信息是否满足停留标准。
作为一种实施方式,参数信息包括目标时刻,则判断单元702具体用于判断所述目标时刻是否位于指定时间段范围内;若位于指定时间段范围内,则判定所述参数信息满足停留标准;若位于指定时间段范围外,则判定所述参数信息不满足停留标准。
作为另一种实施方式,参数信息包括电子设备在所述目标小区内的驻留时长,则判断单元702具体用于判断所述驻留时长是否大于时长门限;若大于时长门限,则判定所述参数信息满足停留标准;若小于或等于时长门限,则判定所述参数信息不满足停留标准。
作为又一种实施方式,参数信息包括目标小区的标识,则判断单元702具体用于判断所述目标小区的标识是否与指定标识匹配;若与指定标识匹配,则判定所述参数信息满足停留标准;若与指定标识不匹配,则判定所述参数信息不满足停留标准。
作为又一种实施方式,参数信息包括目标时刻和所述电子设备在所述目标小区内的驻留时长,则判断单元702具体用于判断所述目标时刻是否位于指定时间段范围内和/或所述驻留时长是否大于时长门限;若所述目标时刻位于指定时间段范围内或所述驻留时长大于时长门限,则判定所述参数信息满足停留标准;若所述目标时刻位于指定时间段范围外且所述驻留时长小于或等于时长门限,则判定所述参数信息不满足停留标准。
作为又一种实施方式,参数信息包括目标时刻和所述目标小区的标识,则判断单 元702具体用于判断所述目标时刻是否位于指定时间段范围内和/或所述目标小区的标识是否与指定标识匹配;若所述目标时刻位于指定时间段范围内或所述目标小区的标识与指定标识匹配,则判定所述参数信息满足停留标准;若所述目标时刻位于指定时间段范围外且所述目标小区的标识与指定标识不匹配,则判定所述参数信息不满足停留标准。
作为再又一种实施方式,参数信息包括所述电子设备在所述目标小区内的驻留时长和所述目标小区的标识,则判断单元702具体用于判断所述驻留时长是否大于时长门限和/或所述目标小区的标识是否与指定标识匹配;若所述驻留时长大于时长门限或所述目标小区的标识与指定标识匹配,则判定所述参数信息满足停留标准;若所述驻留时长小于或等于时长门限且所述目标小区的标识与指定标识不匹配,则判定所述参数信息不满足停留标准。
处理单元703,用于若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
具体地,处理单元703包括获取子单元和判断子单元。
获取子单元,用于获取所述目标小区的网络参数。
判断子单元,用于判断所述网络参数是否满足指定网络标准;若满足,则停止执行注册到所述目标小区的邻近小区的操作;若不满足,则执行注册到所述目标小区的邻近小区的操作。
所述网络参数为信号强度值。所述判断子单元,还用于;判断所述信号强度值是否大于强度门限值;若大于,则判定所述网络参数满足指定网络标准;若小于或等于,则判定所述网络参数不满足指定网络标准。
所属领域的技术人员可以清楚地了解到,为描述的方便和简洁,上述描述装置和模块的具体工作过程,可以参考前述方法实施例中的对应过程,在此不再赘述。
在本申请所提供的几个实施例中,模块相互之间的耦合可以是电性,机械或其它形式的耦合。
另外,在本申请各个实施例中的各功能模块可以集成在一个处理模块中,也可以是各个模块单独物理存在,也可以两个或两个以上模块集成在一个模块中。上述集成的模块既可以采用硬件的形式实现,也可以采用软件功能模块的形式实现。
请参考图8,其示出了本申请实施例提供的一种电子设备的结构框图。该电子设备100可以是智能移动终端、平板电脑、电子书等能够运行应用程序的电子设备。本申请中的电子设备100可以包括一个或多个如下部件:处理器110、存储器120、以及一个或多个应用程序,其中一个或多个应用程序可以被存储在存储器120中并被配置为由一个或多个处理器110执行,一个或多个程序配置用于执行如前述方法实施例所描述的方法。
处理器110可以包括一个或者多个处理核。处理器110利用各种接口和线路连接整个电子设备100内的各个部分,通过运行或执行存储在存储器120内的指令、程序、代码集或指令集,以及调用存储在存储器120内的数据,执行电子设备100的各种功能和处理数据。可选地,处理器110可以采用数字信号处理(Digital Signal Processing,DSP)、现场可编程门阵列(Field-Programmable Gate Array,FPGA)、可编程逻辑阵列(Programmable Logic Array,PLA)中的至少一种硬件形式来实现。处理器110可集成中央处理器(Central Processing Unit,CPU)、图像处理器(Graphics Processing Unit,GPU)和调制解调器等中的一种或几种的组合。其中,CPU主要处理操作系统、用户界面和应用程序等;GPU用于负责显示内容的渲染和绘制;调制解调器用于处理无线通信。可以理解的是,上述调制解调器也可以不集成到处理器110中,单独通过一块通信芯片进行实现。
存储器120可以包括随机存储器(Random Access Memory,RAM),也可以包括只读存储器(Read-Only Memory)。存储器120可用于存储指令、程序、代码、代码集或指令集。存储器120可包括存储程序区和存储数据区,其中,存储程序区可存储用于实现操作系统的指令、用于实现至少一个功能的指令(比如触控功能、声音播放功能、图像播放功能等)、用于实现下述各个方法实施例的指令等。存储数据区还可以存储电子设备100在使用中所创建的数据(比如电话本、音视频数据、聊天记录数据)等。
请参考图9,其示出了本申请实施例提供的一种计算机可读存储介质的结构框图。该计算机可读存储介质900中存储有程序代码,所述程序代码可被处理器调用执行上述方法实施例中所描述的方法。
计算机可读存储介质900可以是诸如闪存、EEPROM(电可擦除可编程只读存储器)、EPROM、硬盘或者ROM之类的电子存储器。可选地,计算机可读存储介质900包括非易失性计算机可读介质(non-transitory computer-readable storage medium)。计算机可读存储介质900具有执行上述方法中的任何方法步骤的程序代码910的存储空间。这些程序代码可以从一个或者多个计算机程序产品中读出或者写入到这一个或者多个计算机程序产品中。程序代码910可以例如以适当形式进行压缩。
最后应说明的是:以上实施例仅用以说明本申请的技术方案,而非对其限制;尽管参照前述实施例对本申请进行了详细的说明,本领域的普通技术人员当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不驱使相应技术方案的本质脱离本申请各实施例技术方案的精神和范围。

Claims (20)

  1. 一种小区信息处理方法,其特征在于,应用于电子设备,所述方法包括:
    当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种,其中,所述目标时刻为注册到目标小区的时刻或注册到目标小区之后的任意时刻;
    判断所述参数信息是否满足停留标准;
    若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
  2. 根据权利要求1所述的方法,其特征在于,所述参数信息包括目标时刻,所述判断所述参数信息是否满足停留标准,若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标时刻是否位于指定时间段范围内;
    若位于指定时间段范围内,则停止执行注册到所述目标小区的邻近小区的操作。
  3. 根据权利要求1所述的方法,其特征在于,所述参数信息包括电子设备在所述目标小区内的驻留时长,所述判断所述参数信息是否满足停留标准,若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述驻留时长是否大于时长门限;
    若大于时长门限,则停止执行注册到所述目标小区的邻近小区的操作。
  4. 根据权利要求1所述的方法,其特征在于,所述参数信息包括所述目标小区的标识,所述判断所述参数信息是否满足停留标准,若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标小区的标识是否与指定标识匹配;
    若与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作。
  5. 根据权利要求1所述的方法,其特征在于,所述参数信息包括目标时刻和所述电子设备在所述目标小区内的驻留时长,所述判断所述参数信息是否满足停留标准,若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标时刻是否位于指定时间段范围内和/或所述驻留时长是否大于时长门限;
    若所述目标时刻位于指定时间段范围内或所述驻留时长大于时长门限,则停止执行注册到所述目标小区的邻近小区的操作。
  6. 根据权利要求5所述的方法,其特征在于,所述判断所述目标时刻是否位于指定时间段范围内和/或所述驻留时长是否大于时长门限,若所述目标时刻位于指定时间段范围内或所述驻留时长大于时长门限,则停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标时刻是否位于指定时间段范围内;
    若位于指定时间段范围内,则停止执行注册到所述目标小区的邻近小区的操作;
    若位于指定时间段范围外,则获取电子设备在所述目标小区内的驻留时长;
    判断所述驻留时长是否大于时长门限,若大于时长门限,则停止执行注册到所述目标小区的邻近小区的操作。
  7. 根据权利要求1所述的方法,其特征在于,所述参数信息包括目标时刻和所述目标小区的标识,所述判断所述参数信息是否满足停留标准,包括:
    判断所述目标时刻是否位于指定时间段范围内和/或所述目标小区的标识是否与指定标识匹配;
    若所述目标时刻位于指定时间段范围内或所述目标小区的标识与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作。
  8. 根据权利要求7所述的方法,其特征在于,所述判断所述目标时刻是否位于指定时间段范围内和/或所述目标小区的标识是否与指定标识匹配;若所述目标时刻位于指定时间段范围内或所述目标小区的标识与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标小区的标识是否与指定标识匹配;
    若匹配,则停止执行注册到所述目标小区的邻近小区的操作;
    若不匹配,则将当前时刻作为目标时刻;
    判断所述目标时刻是否位于指定时间段范围内;
    若位于指定时间段范围内,则停止执行注册到所述目标小区的邻近小区的操作。
  9. 根据权利要求1所述的方法,其特征在于,所述参数信息包括所述电子设备在所述目标小区内的驻留时长和所述目标小区的标识,所述判断所述参数信息是否满足停留标准,若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述驻留时长是否大于时长门限和/或所述目标小区的标识是否与指定标识匹配;
    若所述驻留时长大于时长门限或所述目标小区的标识与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作。
  10. 根据权利要求9所述的方法,其特征在于,所述判断所述驻留时长是否大于时长门限和/或所述目标小区的标识是否与指定标识匹配;若所述驻留时长大于时长门限或所述目标小区的标识与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作,包括:
    判断所述目标小区的标识是否与指定标识匹配;
    若与指定标识匹配,则停止执行注册到所述目标小区的邻近小区的操作;
    若与指定标识不匹配,则获取电子设备在所述目标小区内的驻留时长;
    判断所述驻留时长是否大于时长门限;
    若大于时长门限,则停止执行注册到所述目标小区的邻近小区的操作。
  11. 根据权利要求4、8或10所述的方法,其特征在于,所述判断所述目标小区的标识是否与指定标识匹配之前,还包括:
    获取所述电子设备在目标时间段内所注册的所有小区以及每个小区对应的驻留时长;
    将驻留时长大于常驻时长门限的小区的标识作为指定标识。
  12. 根据权利要求1-11任一所述的方法,其特征在于,所述停止执行注册到所述目标小区的邻近小区的操作,包括:
    获取所述目标小区的网络参数;
    判断所述网络参数是否满足指定网络标准;
    若满足,则停止执行注册到所述目标小区的邻近小区的操作;
    若不满足,则执行注册到所述目标小区的邻近小区的操作。
  13. 根据权利要求12所述的方法,其特征在于,所述网络参数为信号强度值;判断所述网络参数是否满足指定网络标准,包括:
    判断所述信号强度值是否大于强度门限值;
    若大于,则判定所述网络参数满足指定网络标准;
    若小于或等于,则判定所述网络参数不满足指定网络标准。
  14. 根据权利要求1-13任一所述的方法,其特征在于,所述停止执行注册到所述目标小区的邻近小区的操作,包括:
    停止执行对所述目标小区的邻近小区的网络状态的测量操作,其中,所述网络状态为所述电子设备判定是否注册该网络状态对应的小区的参考标准。
  15. 根据权利要求1-13任一所述的方法,其特征在于,所述停止执行注册到所述目标小区的邻近小区的操作,包括:
    禁止电子设备执行小区重选的操作。
  16. 一种小区信息处理装置,其特征在于,应用于电子设备,所述装置包括:
    获取单元,用于当所述电子设备注册到目标小区时,获取参数信息,所述参数信息包括目标时刻、所述电子设备在所述目标小区内的驻留时长或所述目标小区的标识中的至少一种;
    判断单元,用于判断所述参数信息是否满足停留标准;
    处理单元,用于若满足停留标准,停止执行注册到所述目标小区的邻近小区的操作。
  17. 根据权利要求16所述的装置,其特征在于,所述处理单元包括获取子单元和判断子单元;
    获取子单元,用于获取所述目标小区的网络参数;
    判断子单元,用于判断所述网络参数是否满足指定网络标准;若满足,则停止执行注册到所述目标小区的邻近小区的操作;若不满足,则执行注册到所述目标小区的邻近小区的操作。
  18. 根据权利要求17所述的装置,其特征在于,所述网络参数为信号强度值,所述判断子单元,还用于;
    判断所述信号强度值是否大于强度门限值;
    若大于,则判定所述网络参数满足指定网络标准;
    若小于或等于,则判定所述网络参数不满足指定网络标准。
  19. 一种电子设备,其特征在于,包括:
    一个或多个处理器;
    存储器;
    一个或多个应用程序,其中所述一个或多个应用程序被存储在所述存储器中并被配置为由所述一个或多个处理器执行,所述一个或多个程序配置用于执行如权利要求1-15任一项所述的方法。
  20. 一种计算机可读取存储介质,其特征在于,所述计算机可读取存储介质中存储有程序代码,所述程序代码可被处理器调用执行如权利要求1-15任一项所述的方法。
PCT/CN2018/113203 2018-10-31 2018-10-31 小区信息处理方法、装置、电子设备及可读取存储介质 WO2020087413A1 (zh)

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102907133A (zh) * 2010-04-02 2013-01-30 交互数字专利控股公司 低移动性状态和过程
CN103874152A (zh) * 2012-12-18 2014-06-18 展讯通信(上海)有限公司 一种移动终端的控制方法
EP2779745A1 (en) * 2013-03-12 2014-09-17 Orange Method for measuring the cellular mobility of at least one user equipment in a cellular network, corresponding user equipment, cell mobility measurement module and program.
CN104168568A (zh) * 2014-08-28 2014-11-26 中国联合网络通信集团有限公司 一种移动终端及其进行小区身份认证的方法

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104754610B (zh) * 2013-12-25 2018-11-23 中国移动通信集团山东有限公司 伪基站定位方法、装置及系统
CN105744528A (zh) * 2016-04-29 2016-07-06 宇龙计算机通信科技(深圳)有限公司 一种伪基站的识别方法、装置以及终端
CN106211167B (zh) * 2016-06-28 2019-08-02 宇龙计算机通信科技(深圳)有限公司 一种终端、伪基站识别方法及系统
CN108243421B (zh) * 2016-12-26 2020-12-15 中国移动通信集团山东有限公司 伪基站识别方法及系统
CN108449760B (zh) * 2017-02-16 2020-05-26 大唐移动通信设备有限公司 一种伪基站确定方法及设备
CN106851654B (zh) * 2017-04-13 2020-08-18 Oppo广东移动通信有限公司 伪基站识别方法、装置及终端
CN107864477A (zh) * 2017-11-09 2018-03-30 广德宝达精密电路有限公司 一种精度为1米的伪基站定位设备
CN108124262A (zh) * 2017-12-19 2018-06-05 努比亚技术有限公司 伪基站识别方法、终端及计算机可读存储介质

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102907133A (zh) * 2010-04-02 2013-01-30 交互数字专利控股公司 低移动性状态和过程
CN103874152A (zh) * 2012-12-18 2014-06-18 展讯通信(上海)有限公司 一种移动终端的控制方法
EP2779745A1 (en) * 2013-03-12 2014-09-17 Orange Method for measuring the cellular mobility of at least one user equipment in a cellular network, corresponding user equipment, cell mobility measurement module and program.
CN104168568A (zh) * 2014-08-28 2014-11-26 中国联合网络通信集团有限公司 一种移动终端及其进行小区身份认证的方法

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