WO2021102719A1 - 一种邻站信息检测方法、装置及终端 - Google Patents

一种邻站信息检测方法、装置及终端 Download PDF

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Publication number
WO2021102719A1
WO2021102719A1 PCT/CN2019/121138 CN2019121138W WO2021102719A1 WO 2021102719 A1 WO2021102719 A1 WO 2021102719A1 CN 2019121138 W CN2019121138 W CN 2019121138W WO 2021102719 A1 WO2021102719 A1 WO 2021102719A1
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WO
WIPO (PCT)
Prior art keywords
target time
time slot
current target
terminal
information
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PCT/CN2019/121138
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English (en)
French (fr)
Inventor
杨洋
罗正华
刘星
Original Assignee
海能达通信股份有限公司
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Application filed by 海能达通信股份有限公司 filed Critical 海能达通信股份有限公司
Priority to PCT/CN2019/121138 priority Critical patent/WO2021102719A1/zh
Publication of WO2021102719A1 publication Critical patent/WO2021102719A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W36/00Hand-off or reselection arrangements
    • H04W36/0005Control or signalling for completing the hand-off
    • H04W36/0055Transmission or use of information for re-establishing the radio link
    • H04W36/0061Transmission or use of information for re-establishing the radio link of neighbour cell information

Definitions

  • This application relates to the field of communication technology, and in particular to a method, device and terminal for detecting neighboring station information.
  • the terminal may pass through multiple overlapping coverage areas in the process of moving. During this process, if the condition of the base station where the terminal is located reaches the threshold for detecting neighboring station information, the terminal will detect neighboring station information and select the best neighboring station. Stand and switch.
  • the embodiments of the present application provide a neighboring station information detection method, device, and terminal, so as to achieve the purpose of quickly detecting neighboring station information while reducing the impact on terminal services.
  • the technical solutions are as follows:
  • a method for detecting neighboring station information is applied to a terminal, and the method includes:
  • the current target time slot is used to detect information about neighboring stations of the base station where the terminal is currently located.
  • the current target time slot is used to process the information, and the next target time slot or time slots after the current target time slot are used to detect the current target time slot of the terminal.
  • Information about neighboring stations of the base station where it is located including:
  • the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located, or use the current target time slot and the next one or more targets after the current target time slot
  • the time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located.
  • the periodic information includes:
  • the method further includes:
  • next target time slot after the current target time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located, and the next target time slot after the current target time slot is used as the target time slot.
  • the current target time slot and return to execute the step of judging whether the information of all neighboring stations of the base station where the terminal is currently located when the next target time slot after the current target time slot is reached.
  • the method further includes:
  • the method also includes:
  • the current target time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located;
  • the current target time slot is used for the step of detecting the information of the neighboring station of the base station where the terminal is currently located.
  • a neighboring station information detection device applied to a terminal, and the device includes:
  • the parsing module is configured to analyze the message sent by the base station if the message sent by the base station is received in the current target time slot when it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information;
  • the first judging module is configured to, if the type of the message is parsed, judge whether the message is a message concerned by the terminal according to the type of the message;
  • the first determining module is configured to use the current target time slot for processing the message if the message is of interest to the terminal, and use the current target time slot for the next one or more target time after the current target time slot
  • the slot is used to detect information about neighboring stations of the base station where the terminal is currently located;
  • the second determining module is configured to use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located if the message is not a message that the terminal is concerned about.
  • the first determining module is specifically configured to:
  • the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located, or use the current target time slot and the next one or more targets after the current target time slot
  • the time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located.
  • the periodic information includes:
  • the device also includes:
  • the second judgment module is configured to judge whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the next target time slot after the current target time slot;
  • the third determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has been detected, end the detection, and use the next target time slot after the current target time slot for receiving messages;
  • the fourth determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the next target time slot after the current target time slot to detect the base station where the terminal is currently located Information of neighboring stations, the next target time slot after the current target time slot is taken as the current target time slot, and the execution of the next target time slot after the current target time slot is returned to the judgment when it reaches the next target time slot after the current target time slot.
  • the step of checking whether the information of all neighboring stations of the base station where the terminal is currently located has been detected.
  • the device also includes:
  • a fifth determining module configured to respectively use the first to Nth target time slots after the current target time slot to receive messages, where N is an integer not less than 1;
  • the third judgment module is used for judging whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the N+1th target time slot after the current target time slot;
  • the sixth determining module is used to end the detection if the information of all neighboring stations of the base station where the terminal is currently located has been detected, and the N+1th target time slot after the current target time slot is used for receiving news;
  • the seventh determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the N+1th target time slot after the current target time slot as the current target time slot , And return to the step of using the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • the device also includes:
  • An eighth determining module configured to use the current target time slot to detect where the terminal is currently located if the message sent by the base station is not received or the type of the message is not resolved in the current target time slot Information of neighboring stations of the base station;
  • a ninth determining module configured to respectively use the first to Nth target time slots after the current target time slot to receive messages, where N is an integer not less than 1;
  • the fourth judgment module is used for judging whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the N+1th target time slot after the current target time slot;
  • the tenth determining module is used to end the detection if the information of all neighboring stations of the base station where the terminal is currently located has been detected, and the N+1th target time slot after the current target time slot is used for receiving news;
  • the eleventh determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the N+1th target time slot after the current target time slot as the current target time If the message sent by the base station is not received or the type of the message is not resolved in the current target time slot, the current target time slot is used to detect where the terminal is currently located. Steps for the information of the neighboring stations of the base station.
  • a terminal including:
  • Memory used to store programs
  • the processor is configured to run the program, and when the processor runs the program, the processor implements the neighboring station information detection method as described in any one of the foregoing items.
  • the neighboring station information needs to be detected. Specifically, if the message sent by the base station is received in the current target time slot, Analyze the message sent by the base station, if the type of the message is parsed, and if the message is of interest to the terminal, the current target time slot is used to process the message, reducing the impact on the terminal’s services, The next one or more target time slots after the current target time slot are used to detect the information of the neighboring stations of the base station where the terminal is currently located, so as to avoid detecting the information of the neighboring stations of the base station where the terminal is currently located at a long interval, Realize the rapid detection of neighboring station information; if the next message is a message that is not of interest to the terminal, the current target time slot can be used to detect the information of the neighboring station of the base station where the terminal is currently located regardless of the impact on the terminal service , To achieve rapid
  • FIG. 1 is a flowchart of Embodiment 1 of a method for detecting neighboring station information provided by this application;
  • FIG. 2 is a schematic diagram of allocation of a target time slot provided by the present application
  • FIG. 3 is a flowchart of Embodiment 2 of a method for detecting neighboring station information provided by this application;
  • FIG. 4 is a schematic diagram of the allocation of another target time slot provided by the present application.
  • FIG. 5 is a flowchart of Embodiment 3 of a method for detecting neighboring station information provided by this application;
  • FIG. 6 is a schematic diagram of another target time slot allocation provided by the present application.
  • FIG. 7 is a flowchart of Embodiment 4 of a method for detecting neighboring station information provided by this application;
  • FIG. 8 is a schematic diagram of the logical structure of a neighboring station information detection device provided by the present application.
  • the embodiment of the present application discloses a method for detecting neighboring station information, which is applied to a terminal.
  • the method includes: when the condition of detecting the base station where the terminal is currently located reaches a threshold for detecting neighboring station information, if the current target time slot is After receiving the message sent by the base station, the message is parsed; if the type of the message is parsed, it is judged whether the type of the message is a message that the terminal pays attention to; if so, the current target time slot is used to process the message, and the current target time slot is used to process the message.
  • the next one or more target time slots after the time slot are used to detect the information of the neighboring stations of the base station where the terminal is currently located; if not, the current target time slot is used to detect the information of the neighboring stations of the base station where the terminal is currently located.
  • the current target time slot is used to detect the information of the neighboring stations of the base station where the terminal is currently located.
  • Embodiment 1 of a method for detecting neighboring station information provided by the present application. This method is applied to a terminal. It can include the following steps:
  • Step S11 When it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, if a message issued by the base station is received in the current target time slot, the message is analyzed.
  • the current target time slot can be understood as: a certain target time slot currently being visited.
  • the target time slot can be set to be used for receiving messages issued by the base station or monitoring neighboring station information. Based on this, when it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, the current target time slot is not directly used to detect neighboring station information, but to determine whether to receive information in the current target time slot. For the message sent to the base station, if the message sent by the base station is received in the current target time slot, the message sent by the base station is analyzed.
  • the message delivered by the base station may be, but is not limited to: service signaling delivered by the base station.
  • Step S12 If the type of the message is parsed, it is judged whether the message is a message concerned by the terminal according to the type of the message.
  • step S13 If yes, go to step S13; if not, go to step S14.
  • the type of the message can be parsed, it can be judged whether the message is of interest to the terminal, and the current target time slot can be determined according to the judgment result to be used for service processing or neighboring station information detection.
  • the message that the terminal pays attention to can be understood as: a message that may affect the service of the terminal.
  • Step S13 Use the current target time slot to process the message, and use the next target time slot or time slots after the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • the priority of processing the message is set to the highest, so the current target time slot can be used to process the message first, reducing the impact on the terminal's services.
  • next one or more target time slots after the current target time slot are used to detect the information of the neighboring stations of the base station where the terminal is currently located, avoiding a long interval before detecting the neighboring stations of the base station where the terminal is currently located.
  • Information to achieve rapid detection of neighboring station information.
  • step S13 Use the current target time slot for processing the message, and use the next target time slot or time slots after the current target time slot for detection
  • the information of neighboring stations of the base station where the terminal is currently located may include:
  • the process of judging whether the processing of the message has not ended may include:
  • the processing period of the message can be understood as: the period of processing the message.
  • step S132 If yes, go to step S132; if not, go to step S133.
  • the priority of processing the message is higher, so the priority is given to The current target time slot is used to process the message.
  • S133 Use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located, or combine the current target time slot and the next one or more target time after the current target time slot
  • the slot is used to detect the information of neighboring stations of the base station where the terminal is currently located.
  • the current target time slot is used to detect information about neighboring stations of the base station where the terminal is currently located, or the current target time slot and the next one or more target time slots after the current target time slot are used for Detect information of neighboring stations of the base station where the terminal is currently located.
  • the current target time slot and the next one or more target time slots after the current target time slot are used to detect the information of the neighboring stations of the base station where the terminal is currently located, so that continuous target time slots can be used for neighboring. Detection of station information.
  • the foregoing periodic information can be understood as: a message that needs to be processed once every preset time.
  • the periodic information can be, but is not limited to: periodic service signaling.
  • periodic services are services that need to be processed every preset time.
  • the allocation of the target time slots introduced in steps S131-S133 can be seen in Fig. 2.
  • the neighboring station’s time slot is used to process the message; if it is not in the message processing period , All target time slots that are not in the message processing period can be used to detect the information of neighboring stations of the base station where the terminal is currently located.
  • Step S14 Use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • the priority of processing the message is lower than the detection of neighboring station information, so the current target time slot can be used to detect the neighboring station information of the base station where the terminal is currently located, without affecting the terminal
  • the rapid detection of neighboring station information is realized.
  • the neighboring station information needs to be detected. Specifically, if the message sent by the base station is received in the current target time slot, Analyze the message sent by the base station, if the type of the message is parsed, and if the message is of interest to the terminal, the current target time slot is used to process the message, reducing the impact on the terminal’s services, The next one or more target time slots after the current target time slot are used to detect the information of the neighboring stations of the base station where the terminal is currently located, so as to avoid detecting the information of the neighboring stations of the base station where the terminal is currently located at a long interval, Realize the rapid detection of neighboring station information; if the downlink service is a message that is not of interest to the terminal, the current target time slot can be used to detect the information of the neighboring station of the base station where the terminal is currently located regardless of the impact on the terminal service. , To
  • Embodiment 2 of a neighboring station information detection method As another optional embodiment of the present application, referring to FIG. 3, a flowchart of Embodiment 2 of a neighboring station information detection method provided by this application. This embodiment mainly focuses on the neighboring station information detection method described in Embodiment 1 above. As shown in Figure 3, the method can include but is not limited to the following steps:
  • Step S21 When it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, if a message issued by the base station is received in the current target time slot, the message is parsed.
  • Step S22 If the type of the message is parsed, it is judged whether the message is a message concerned by the terminal according to the type of the message.
  • step S23 If yes, go to step S23; if not, go to step S24.
  • Step S23 Use the current target time slot to process the message, and use the next target time slot or time slots after the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • Step S24 Use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • steps S21-S24 please refer to the related introduction of steps S11-S14 in Embodiment 1, which will not be repeated here.
  • Step S25 When the time reaches the next target time slot after the current target time slot, it is determined whether the information of all neighboring stations of the base station where the terminal is currently located has been detected.
  • step S26 If yes, go to step S26; if not, go to step S27.
  • Step S26 End the detection, and use the next target time slot after the current target time slot to receive a message.
  • the next target time slot after the current target time slot is used to receive the message, and the next target time after the current target time slot is used.
  • the slot is used as the current target time slot, so that it can continue to execute when it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, judging whether the downlink service signaling is received in the current target time slot.
  • Step S27 Use the next target time slot after the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located, and use the next target time slot after the current target time slot as the Current target time slot, and return to step S25.
  • the next target time slot after the current target time slot is used to detect the information of the neighboring stations of the base station where the terminal is currently located, and the information of the neighboring stations of the base station where the terminal is currently located is detected.
  • the next target time slot after the current target time slot is used as the current target time slot, and step S25 is returned to perform step S25 to realize the detection of neighboring station information using continuous target time slots when the message is a message that is not of interest to the terminal .
  • continuous target time slots can be used to detect neighboring station information until all neighboring station information is detected.
  • FIG. 5 is a flowchart of Embodiment 3 of a neighboring station information detection method provided by this application. This embodiment mainly focuses on the neighboring station information detection method described in Embodiment 1 above. As shown in Figure 5, the method can include but is not limited to the following steps:
  • Step S31 When it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, if a message issued by the base station is received in the current target time slot, the message is analyzed.
  • Step S32 If the type of the message is parsed, it is judged whether the message is a message concerned by the terminal according to the type of the message.
  • step S33 If yes, go to step S33; if not, go to step S34.
  • Step S33 Use the current target time slot to process the message, and use the next or more target time slots after the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • Step S34 Use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • steps S31-S34 please refer to the related introduction of steps S11-S14 in Embodiment 1, which will not be repeated here.
  • step S35 the first to Nth target time slots after the current target time slot are respectively used for receiving messages, and the N is an integer not less than 1.
  • Step S36 When the time reaches the N+1th target time slot after the current target time slot, it is determined whether the information of all neighboring stations of the base station where the terminal is currently located has been detected.
  • step S37 If yes, go to step S37; if not, go to step S38.
  • Step S37 End detection, and use the N+1th target time slot after the current target time slot to receive a message.
  • Step S38 Use the N+1th target time slot after the current target time slot as the current target time slot, and return to step S34.
  • Steps S35-S38 realize that according to the user configuration, the information of neighboring stations is detected in the specified target time slot, and signaling is received in other target time slots, as shown in Figure 6, which can also reduce the impact on terminal services. , Improve the efficiency of information detection of neighboring stations.
  • FIG. 7 a schematic flowchart of Embodiment 4 of a neighboring station information detection method provided by this application.
  • This embodiment mainly focuses on the neighboring station information detection method described in Embodiment 1 above.
  • the method can include but is not limited to the following steps:
  • Step S41 When it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information, if a message issued by the base station is received in the current target time slot, the message is parsed.
  • Step S42 If the type of the message is parsed, it is determined whether the message is of interest to the terminal according to the type of the message.
  • step S43 If yes, go to step S43; if not, go to step S44.
  • Step S43 Use the current target time slot to process the message, and use the next or more target time slots after the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • Step S44 Use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • steps S41-S44 please refer to the related introduction of steps S11-S14 in Embodiment 1, which will not be repeated here.
  • Step S45 If the message sent by the base station is not received in the current target time slot or the type of the message is not resolved, the current target time slot is used to detect information about neighboring stations of the base station where the terminal is currently located ;
  • Step S46 Use the first to Nth target time slots after the current target time slot to receive messages, and the N is an integer not less than 1.
  • Step S47 When the time reaches the N+1th target time slot after the current target time slot, it is determined whether the information of all neighboring stations of the base station where the terminal is currently located has been detected.
  • step S48 If yes, go to step S48; if not, go to step S49.
  • Step S48 End the detection, and use the N+1th target time slot after the current target time slot to receive a message.
  • Step S49 Use the N+1th target time slot after the current target time slot as the current target time slot, and return to step S45.
  • Steps S45-S49 realize that according to the user configuration, the information of neighboring stations is detected in the specified target timeslots, and messages are received in other target timeslots, which can improve the detection of neighboring station information while reducing the impact on terminal services. effectiveness.
  • the neighboring station information detection device introduced below and the neighboring station information detection method introduced above can be referred to each other.
  • the neighboring station information detection device includes: an analysis module 11, a first judgment module 12, a first determination module 13, and a second determination module 14.
  • the parsing module 11 is configured to analyze the message sent by the base station if the message sent by the base station is received in the current target time slot when it is detected that the condition of the base station where the terminal is currently located reaches the threshold for detecting neighboring station information;
  • the first judgment module 12 is configured to, if the type of the message is parsed, judge whether the message is a message that the terminal pays attention to according to the type of the message;
  • the first determining module 13 is configured to, if the message is a message of interest to the terminal, use the current target time slot for processing the message, and use the current target time slot for the next one or more targets after the current target time slot
  • the time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located;
  • the second determining module 14 is configured to use the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located if the message is not a message that the terminal is concerned about.
  • the first determining module may be specifically used for:
  • the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located, or use the current target time slot and the next one or more targets after the current target time slot
  • the time slot is used to detect the information of neighboring stations of the base station where the terminal is currently located.
  • the periodic information may be, but is not limited to: periodic service signaling.
  • the device for detecting neighboring station information may further include:
  • the second judgment module is configured to judge whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the next target time slot after the current target time slot;
  • the third determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has been detected, end the detection, and use the next target time slot after the current target time slot for receiving messages;
  • the fourth determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the next target time slot after the current target time slot to detect the base station where the terminal is currently located Information of neighboring stations, the next target time slot after the current target time slot is taken as the current target time slot, and the execution of the next target time slot after the current target time slot is returned to the judgment when it reaches the next target time slot after the current target time slot.
  • the step of checking whether the information of all neighboring stations of the base station where the terminal is currently located has been detected.
  • the device for detecting neighboring station information may further include:
  • a fifth determining module configured to respectively use the first to Nth target time slots after the current target time slot to receive messages, where N is an integer not less than 1;
  • the third judgment module is used for judging whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the N+1th target time slot after the current target time slot;
  • the sixth determining module is used to end the detection if the information of all neighboring stations of the base station where the terminal is currently located has been detected, and the N+1th target time slot after the current target time slot is used for receiving news;
  • the seventh determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the N+1th target time slot after the current target time slot as the current target time slot , And return to the step of using the current target time slot to detect information about neighboring stations of the base station where the terminal is currently located.
  • the device for detecting neighboring station information may further include:
  • An eighth determining module configured to use the current target time slot to detect the current target time slot of the base station where the terminal is currently located if the message sent by the base station is not received or the type of the message is not resolved in the current target time slot Information of neighboring stations;
  • a ninth determining module configured to respectively use the first to Nth target time slots after the current target time slot to receive messages, where N is an integer not less than 1;
  • the fourth judgment module is used for judging whether the information of all neighboring stations of the base station where the terminal is currently located has been detected when the time reaches the N+1th target time slot after the current target time slot;
  • the tenth determining module is used to end the detection if the information of all neighboring stations of the base station where the terminal is currently located has been detected, and the N+1th target time slot after the current target time slot is used for receiving news;
  • the eleventh determining module is configured to, if the information of all neighboring stations of the base station where the terminal is currently located has not been detected, use the N+1th target time slot after the current target time slot as the current target time If the message sent by the base station is not received or the type of the message is not resolved in the current target time slot, the current target time slot is used to detect where the terminal is currently located. Steps for the information of the neighboring stations of the base station.
  • a terminal including: a memory and a processor.
  • Memory used to store programs
  • the processor is configured to run the program.
  • the processor implements the neighboring station information detection method introduced in any one of the embodiments 1-4.
  • each embodiment focuses on the differences from other embodiments, and the same or similar parts between the various embodiments can be referred to each other.
  • the description is relatively simple, and for related parts, please refer to the part of the description of the method embodiment.

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Abstract

本申请提供了一种邻站信息检测方法、装置及终端,该方法包括:在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对消息进行解析;若解析出消息的类型,依据消息的类型,判断消息是否为终端关注的消息;若是,则将当前目标时隙用于处理消息,将当前目标时隙之后的下一个或多个目标时隙用于检测终端当前所在的基站的邻站的信息;若否,则将当前目标时隙用于检测终端当前所在的基站的邻站的信息。在本申请中,通过以上方式可以在降低对终端业务的影响的情况下,进行邻站信息的快速检测。

Description

一种邻站信息检测方法、装置及终端 技术领域
本申请涉及通信技术领域,特别涉及一种邻站信息检测方法、装置及终端。
背景技术
在无线通信网内,终端移动过程中可能经过多个重叠覆盖区,在此过程中,如果终端所在的基站的条件达到检测邻站信息的门限,终端会检测邻站信息,选择最好的邻站并切换。
目前的邻站信息检测方案中,快速检测与减少对终端业务的影响不可兼得,因此,亟需一种邻站信息检测方法,可以在降低对终端业务的影响的情况下,进行邻站信息的快速检测。
发明内容
为解决上述技术问题,本申请实施例提供一种邻站信息检测方法、装置及终端,以达到在降低对终端业务的影响的情况下,进行邻站信息的快速检测的目的,技术方案如下:
一种邻站信息检测方法,应用于终端,该方法包括:
在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析;
若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息;
若是,则将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息;
若否,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
若所述终端关注的信息为周期性信息,将所述当前目标时隙用于处理所述信息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,包括:
判断所述当前目标时隙是否处于所述信息的处理周期内;
若是,将所述当前目标时隙用于处理所述消息;
若否,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
所述周期性信息,包括:
周期性业务的信令。
将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息之后,还包括:
在时间到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
若是,则结束检测,并将所述当前目标时隙之后的下一个目标时隙用于接收消息;
若否,则将所述当前目标时隙之后的下一个目标时隙用于检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行在到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完的步骤。
将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息之后,还包括:
分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
若是,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
若否,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
所述方法还包括:
若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信 息;
分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
若是,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
若否,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行所述若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
一种邻站信息检测装置,应用于终端,该装置包括:
解析模块,用于在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析;
第一判断模块,用于若解析出所述消息的类型,则依据所述消息的类型,判断所述消息是否为所述终端关注的消息;
第一确定模块,用于若所述消息为所述终端关注的消息,则将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息;
第二确定模块,用于若所述消息为非所述终端关注的消息,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
若所述终端关注的信息为周期性信息,所述第一确定模块,具体用于:
判断所述当前目标时隙是否处于所述信息的处理周期内;
若是,将所述当前目标时隙用于处理所述消息;
若否,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
所述周期性信息,包括:
周期性业务的信令。
所述装置还包括:
第二判断模块,用于在时间到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第三确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的下一个目标时隙用于接收消息;
第四确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的下一个目标时隙用于检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行在到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完的步骤。
所述装置还包括:
第五确定模块,用于分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
第三判断模块,用于在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第六确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
第七确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
所述装置还包括:
第八确定模块,用于若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息;
第九确定模块,用于分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
第四判断模块,用于在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第十确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
第十一确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行所述若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
一种终端,包括:
存储器,用于存储程序;
所述处理器,用于运行所述程序,当所述处理器运行所述程序时,所述处理器实现了如上述任意一项所述的邻站信息检测方法。
与现有技术相比,本申请的有益效果为:
在本申请中,在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,需要进行邻站信息的检测,具体若在当前目标时隙接收到基站下发的消息,则对基站下发的消息进行解析,若解析出消息的类型,若消息为终端关注的消息,则将所述当前目标时隙用于处理所述消息,降低对终端业务的影响,在将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,避免间隔很长时间才会检测终端当前所在的基站的邻站的信息,实现邻站信息的快速检测;若下消息为非终端关注的消息,则可以不考虑对终端业务的影响,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,实现邻站信息的快速检测。
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,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1是本申请提供的一种邻站信息检测方法实施例1的流程图;
图2是本申请提供的一种目标时隙的分配示意图;
图3是本申请提供的一种邻站信息检测方法实施例2的流程图;
图4是本申请提供的另一种目标时隙的分配示意图;
图5是本申请提供的一种邻站信息检测方法实施例3的流程图;
图6是本申请提供的再一种目标时隙的分配示意图;
图7是本申请提供的一种邻站信息检测方法实施例4的流程图;
图8是本申请提供的一种邻站信息检测装置的逻辑结构示意图。
具体实施方式
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,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
本申请实施例公开了一种邻站信息检测方法,应用于终端,该方法包括:在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对消息进行解析;若解析出消息的类型,判断消息的类型是否为终端关注的消息;若是,则将当前目标时隙用于处理所述消息,将当前目标时隙之后的下一个或多个目标时隙用于检测终端当前所在的基站的邻站的信息;若否,则将当前目标时隙用于检测终端当前所在的基站的邻站的信息。在本申请中,可以在降低对终端的业务的影响的情况下,进行邻站信息的快速检测。
接下来对本申请实施例公开的邻站信息检测方法进行介绍,如图1所示的,为本申请提供的一种邻站信息检测方法实施例1的流程图,该方法应用于终端,该方法可以包括以下步骤:
步骤S11、在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析。
当前目标时隙可以理解为:某一个当前被访问的目标时隙。
本实施例中,可以将目标时隙设置为:用于接收基站下发的消息或监测邻站信息。基于此,在检测到所述终端当前所在的基站的条件达到需要检测邻站 信息的门限时,并不直接将当前目标时隙用于检测邻站信息,而是判断在当前目标时隙是否接收到基站下发的消息,若在当前目标时隙接收到基站下发的消息,则对基站下发的消息进行解析。
本实施例中,基站下发的消息可以为但不局限于:基站下发的业务信令。
步骤S12、若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息。
若是,则执行步骤S13;若否,则执行步骤S14。
若可以解析出消息的类型,则可以判断消息是否为所述终端关注的消息,并根据判断的结果确定当前目标时隙用于处理业务或进行邻站信息检测。
终端关注的消息可以理解为:可能会对终端的业务产生影响的消息。
步骤S13、将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
在所述消息的为终端关注的消息的情况下,将处理所述消息的优先级设置为最高,因此可以优先将当前目标时隙用于处理所述消息,降低对终端的业务的影响。
并将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,避免间隔很长时长才检测终端当前所在的基站的邻站的信息,实现邻站信息的快速检测。
若所述终端关注的消息为周期性信息,则步骤S13、将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,可以包括:
S131、判断所述消息的处理过程是否未结束。
判断所述消息的处理过程是否未结束的过程,可以包括:
判断所述当前目标时隙是否处于所述消息的处理周期内;
所述消息的处理周期,可以理解为:处理所述消息的周期。
若是,则执行步骤S132;若否,则执行步骤S133。
S132、将所述当前目标时隙用于处理所述消息;
在所述消息的处理过程未结束的情况下(如,在所述当前目标时隙处于所述消息的处理周期内的情况下),处理所述消息的优先级较高,因此优先将所 述当前目标时隙用于处理所述消息。
S133、将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
在所述消息的处理过程已结束的情况下(如,在所述当前目标时隙未处于所述消息的处理周期内的情况下),邻站的信息检测的优先级较高,因此可以将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,可以实现使用连续的目标时隙进行邻站的信息的检测。
本实施例中,上述周期性信息可以理解为:每隔预设时间需要处理一次的消息。周期性信息可以为但不局限于:周期性业务的信令。
可以理解的是,周期性业务为每隔预设时间需要处理一次的业务。
步骤S131-S133介绍的目标时隙的分配可以参见图2,如图2所示,在所述消息的处理周期内,邻站时隙用于处理所述消息;若未在消息的处理周期内,则未处于消息的处理周期内的目标时隙均可以用于检测终端当前所在的基站的邻站的信息。
步骤S14、将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
在消息为非终端关注的消息的情况下,处理消息的优先级低于邻站信息的检测,因此可以将当前目标时隙用于检测终端当前所在的基站的邻站的信息,在不影响终端的业务的情况下,实现邻站信息的快速检测。
在本申请中,在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,需要进行邻站信息的检测,具体若在当前目标时隙接收到基站下发的消息,则对基站下发的消息进行解析,若解析出消息的类型,若消息为终端关注的消息,则将所述当前目标时隙用于处理所述消息,降低对终端业务的影响,在将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,避免间隔很长时间才会检测终端当前所在的 基站的邻站的信息,实现邻站信息的快速检测;若下行业务为非终端关注的消息,则可以不考虑对终端业务的影响,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,实现邻站信息的快速检测。
作为本申请另一可选实施例,参照图3,为本申请提供的一种邻站信息检测方法实施例2的流程图,本实施例主要是对上述实施例1描述的邻站信息检测方法的扩展方案,如图3所示,该方法可以包括但并不局限于以下步骤:
步骤S21、在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析。
步骤S22、若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息。
若是,则执行步骤S23;若否,则执行步骤S24。
步骤S23、将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S24、将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S21-S24的详细过程可以参见实施例1中步骤S11-S14的相关介绍,在此不再赘述。
步骤S25、在时间到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完。
若是,则执行步骤S26;若否,则执行步骤S27。
步骤S26、结束检测,并将所述当前目标时隙之后的下一个目标时隙用于接收消息。
在终端当前所在的基站的所有邻站的信息均检测完的情况下,将所述当前目标时隙之后的下一个目标时隙用于接收消息,并将当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,以便可以继续执行在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,判断在当前目标时隙是否接收到下行业务的信令。
步骤S27、将所述当前目标时隙之后的下一个目标时隙用于检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行步骤S25。
在终端当前所在的基站的所有邻站的信息未检测完的情况下,利用所述当前目标时隙之后的下一个目标时隙检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行步骤S25,实现在消息为非终端关注的消息的情况下,使用连续的目标时隙进行邻站信息的检测。如图4所示,可以使用连续的目标时隙进行邻站信息的检测,直至所有邻站的信息均检测完。
作为本申请另一可选实施例,参照图5,为本申请提供的一种邻站信息检测方法实施例3的流程图,本实施例主要是对上述实施例1描述的邻站信息检测方法的扩展方案,如图5所示,该方法可以包括但并不局限于以下步骤:
步骤S31、在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析。
步骤S32、若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息。
若是,则执行步骤S33;若否,则执行步骤S34。
步骤S33、将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S34、将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S31-S34的详细过程可以参见实施例1中步骤S11-S14的相关介绍,在此不再赘述。
步骤S35、分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数。
步骤S36、在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完。
若是,则执行步骤S37;若否,则执行步骤S38。
步骤S37、结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息。
步骤S38、将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行步骤S34。
步骤S35-S38实现了根据用户配置,在规定的目标时隙检测邻站的信息,在另外一些目标时隙接收信令,如图6所示,同样可以在降低对终端业务的影响的情况下,提高对邻站信息检测的效率。
作为本申请另一可选实施例,参照图7,为本申请提供的一种邻站信息检测方法实施例4的流程示意图,本实施例主要是对上述实施例1描述的邻站信息检测方法的扩展方案,如图7所示,该方法可以包括但并不局限于以下步骤:
步骤S41、在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析。
步骤S42、若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息。
若是,则执行步骤S43;若否,则执行步骤S44。
步骤S43、将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S44、将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
步骤S41-S44的详细过程可以参见实施例1中步骤S11-S14的相关介绍,在此不再赘述。
步骤S45、若在当前目标时隙未接收到基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息;
步骤S46、分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数。
步骤S47、在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完。
若是,则执行步骤S48;若否,则执行步骤S49。
步骤S48、结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息。
步骤S49、将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行步骤S45。
步骤S45-S49实现了根据用户配置,在规定的目标时隙检测邻站的信息,在另外一些目标时隙接收消息,可以在降低对终端业务的影响的情况下,提高对邻站信息检测的效率。
接下来对本申请提供的邻站信息检测装置进行介绍,下文介绍的邻站信息检测装置与上文介绍的邻站信息检测方法可相互对应参照。
请参见图8,邻站信息检测装置包括:解析模块11、第一判断模块12、第一确定模块13和第二确定模块14。
解析模块11,用于在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析;
第一判断模块12,用于若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息;
第一确定模块13,用于若所述消息为所述终端关注的消息,则将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息;
第二确定模块14,用于若所述消息为非所述终端关注的消息,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
若所述终端关注的信息为周期性信息,所述第一确定模块,具体可以用于:
判断所述当前目标时隙是否处于所述信息的处理周期内;
若是,将所述当前目标时隙用于处理所述消息;
若否,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时 隙用于检测所述终端当前所在的基站的邻站的信息。
本实施例中,周期性信息可以为但不局限于:周期性业务的信令。
本实施例中,邻站信息检测装置还可以包括:
第二判断模块,用于在时间到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第三确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的下一个目标时隙用于接收消息;
第四确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的下一个目标时隙用于检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行在到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完的步骤。
本实施例中,邻站信息检测装置还可以包括:
第五确定模块,用于分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
第三判断模块,用于在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第六确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
第七确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
本实施例中,邻站信息检测装置还可以包括:
第八确定模块,用于若在当前目标时隙未接收到基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息;
第九确定模块,用于分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
第四判断模块,用于在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
第十确定模块,用于若所述终端当前所在的基站的所有邻站的信息均检测完,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
第十一确定模块,用于若所述终端当前所在的基站的所有邻站的信息未检测完,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行所述若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
在本申请的另一个实施例中,提供一种终端,包括:存储器和处理器。
存储器,用于存储程序;
所述处理器,用于运行所述程序,当所述处理器运行所述程序时,所述处理器实现了如实施例1-4中任意一个实施例介绍的邻站信息检测方法。
需要说明的是,每个实施例重点说明的都是与其他实施例的不同之处,各个实施例之间相同相似的部分互相参见即可。对于装置类实施例而言,由于其与方法实施例基本相似,所以描述的比较简单,相关之处参见方法实施例的部分说明即可。
最后,还需要说明的是,在本文中,诸如第一和第二等之类的关系术语仅仅用来将一个实体或者操作与另一个实体或操作区分开来,而不一定要求或者暗示这些实体或操作之间存在任何这种实际的关系或者顺序。而且,术语“包括”、“包含”或者其任何其他变体意在涵盖非排他性的包含,从而使得包括一系列要素的过程、方法、物品或者设备不仅包括那些要素,而且还包括没有明确列出的其他要素,或者是还包括为这种过程、方法、物品或者设备所固有的要素。在没有更多限制的情况下,由语句“包括一个……”限定的要素,并不排除在包括所述要素的过程、方法、物品或者设备中还存在另外的相同要素。
为了描述的方便,描述以上装置时以功能分为各种单元分别描述。当然,在实施本申请时可以把各单元的功能在同一个或多个软件和/或硬件中实现。
通过以上的实施方式的描述可知,本领域的技术人员可以清楚地了解到本申请可借助软件加必需的通用硬件平台的方式来实现。基于这样的理解,本申请的技术方案本质上或者说对现有技术做出贡献的部分可以以软件产品的形式体现出来,该计算机软件产品可以存储在存储介质中,如ROM/RAM、磁碟、光盘等,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)执行本申请各个实施例或者实施例的某些部分所述的方法。
以上对本申请所提供的一种邻站信息检测方法、装置及终端进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请的方法及其核心思想;同时,对于本领域的一般技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (10)

  1. 一种邻站信息检测方法,其特征在于,应用于终端,该方法包括:
    在检测到所述终端当前所在的基站的条件达到需要检测邻站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析;
    若解析出所述消息的类型,依据所述消息的类型,判断所述消息是否为所述终端关注的消息;
    若是,则将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息;
    若否,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
  2. 根据权利要求1所述的方法,其特征在于,在所述终端关注的信息为周期性信息时,所述将所述当前目标时隙用于处理所述信息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息,包括:
    判断所述当前目标时隙是否处于所述信息的处理周期内;
    若是,将所述当前目标时隙用于处理所述消息;
    若否,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
  3. 根据权利要求2所述的方法,其特征在于,所述周期性信息,包括:
    周期性业务的信令。
  4. 根据权利要求1-3任意一项所述的方法,其特征在于,所述将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息之后,还包括:
    在时间到达所述当前目标时隙之后的下一个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
    若是,则结束检测,并将所述当前目标时隙之后的下一个目标时隙用于接收消息;
    若否,则将所述当前目标时隙之后的下一个目标时隙用于检测所述终端当前所在的基站的邻站的信息,将所述当前目标时隙之后的下一个目标时隙作为所述当前目标时隙,并返回执行所述在到达所述当前目标时隙之后的下一个目 标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完的步骤。
  5. 根据权利要求1-3任意一项所述的方法,其特征在于,所述将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息之后,还包括:
    分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
    在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
    若是,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
    若否,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行所述将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
  6. 根据权利要求1-3任意一项所述的方法,其特征在于,所述方法还包括:
    若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息;
    分别将所述当前目标时隙之后的第1个至第N个目标时隙,均用于接收消息,所述N为不小于1的整数;
    在时间到达所述当前目标时隙之后的第N+1个目标时隙时,判断所述终端当前所在的基站的所有邻站的信息是否均检测完;
    若是,则结束检测,并将所述当前目标时隙之后的第N+1个目标时隙用于接收消息;
    若否,则将所述当前目标时隙之后的第N+1个目标时隙作为所述当前目标时隙,并返回执行所述若在当前目标时隙未接收到所述基站下发的消息或未解析出所述消息的类型,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息的步骤。
  7. 一种邻站信息检测装置,其特征在于,应用于终端,该装置包括:
    解析模块,用于在检测到所述终端当前所在的基站的条件达到需要检测邻 站信息的门限时,若在当前目标时隙接收到基站下发的消息,则对所述消息进行解析;
    第一判断模块,用于若解析出所述消息的类型,则依据所述消息的类型,判断所述消息是否为所述终端关注的消息;
    第一确定模块,用于若所述消息为所述终端关注的消息,则将所述当前目标时隙用于处理所述消息,将所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息;
    第二确定模块,用于若所述消息为非所述终端关注的消息,则将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息。
  8. 根据权利要求7所述的装置,其特征在于,若所述终端关注的信息为周期性信息,所述第一确定模块,具体用于:
    判断所述当前目标时隙是否处于所述信息的处理周期内;
    若是,将所述当前目标时隙用于处理所述消息;
    若否,将所述当前目标时隙用于检测所述终端当前所在的基站的邻站的信息,或,将所述当前目标时隙及所述当前目标时隙之后的下一个或多个目标时隙用于检测所述终端当前所在的基站的邻站的信息。
  9. 根据权利要求8所述的装置,其特征在于,所述周期性信息,包括:
    周期性业务的信令。
  10. 一种终端,其特征在于,包括:
    存储器,用于存储程序;
    所述处理器,用于运行所述程序,当所述处理器运行所述程序时,所述处理器实现了如权利要求1-6任意一项所述的邻站信息检测方法。
PCT/CN2019/121138 2019-11-27 2019-11-27 一种邻站信息检测方法、装置及终端 WO2021102719A1 (zh)

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CN101594682A (zh) * 2008-05-29 2009-12-02 大唐移动通信设备有限公司 移动通信系统及其下行反馈方法
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