WO2022089313A1 - 通信处理方法、装置、存储介质、芯片及相关设备 - Google Patents

通信处理方法、装置、存储介质、芯片及相关设备 Download PDF

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Publication number
WO2022089313A1
WO2022089313A1 PCT/CN2021/125667 CN2021125667W WO2022089313A1 WO 2022089313 A1 WO2022089313 A1 WO 2022089313A1 CN 2021125667 W CN2021125667 W CN 2021125667W WO 2022089313 A1 WO2022089313 A1 WO 2022089313A1
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WIPO (PCT)
Prior art keywords
service
time
sim card
connected state
terminal
Prior art date
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PCT/CN2021/125667
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English (en)
French (fr)
Inventor
杨江
黄利军
何翠
邹旭
Original Assignee
紫光展锐(重庆)科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 紫光展锐(重庆)科技有限公司 filed Critical 紫光展锐(重庆)科技有限公司
Priority to US18/251,139 priority Critical patent/US20230413247A1/en
Priority to EP21885040.2A priority patent/EP4240079A4/en
Publication of WO2022089313A1 publication Critical patent/WO2022089313A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W8/00Network data management
    • H04W8/18Processing of user or subscriber data, e.g. subscribed services, user preferences or user profiles; Transfer of user or subscriber data
    • H04W8/183Processing at user equipment or user record carrier
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/04Wireless resource allocation
    • H04W72/044Wireless resource allocation based on the type of the allocated resource
    • H04W72/0446Resources in time domain, e.g. slots or frames
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/12Wireless traffic scheduling
    • H04W72/1263Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows
    • H04W72/1273Mapping of traffic onto schedule, e.g. scheduled allocation or multiplexing of flows of downlink data flows
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W72/00Local resource management
    • H04W72/50Allocation or scheduling criteria for wireless resources
    • H04W72/53Allocation or scheduling criteria for wireless resources based on regulatory allocation policies
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W88/00Devices specially adapted for wireless communication networks, e.g. terminals, base stations or access point devices
    • H04W88/02Terminal devices
    • H04W88/06Terminal devices adapted for operation in multiple networks or having at least two operational modes, e.g. multi-mode terminals
    • 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 invention relates to the field of communication, and in particular, to a communication processing method, device, storage medium, chip and related equipment.
  • SIM Subscriber Identity Module
  • the two SIM cards configured in the terminal usually share a set of terminal hardware resources; if the terminal performs the connected service through the SIM card in the connected state, and the SIM card in the disconnected state needs to perform the disconnected service, it is necessary to The SIM card in the connected state service is punched so that an autonomous Gap (time slot) is allocated for the terminal to perform the disconnected state service through the SIM card in the disconnected state.
  • This method of allocating autonomous gaps based on connected services needs to know the reception timing of non-connected services in advance, while the reception timing of non-connected services is flexible, resulting in inaccurate allocation of autonomous gaps by punching holes, which is unnecessary.
  • the connected state service is interrupted; and the duration of the allocated autonomous gap is fixed, which causes the non-connected state service to be executed in advance at the corresponding receiving time, but the autonomous gap cannot be released in advance, which prolongs the delay of the interrupted service in the connected state. .
  • Embodiments of the present application provide a communication processing method, apparatus, storage medium, chip, and related equipment, which can flexibly allocate a connection-state service Gap, and effectively reduce the time delay when the connection-state service is interrupted.
  • an embodiment of the present application provides a communication processing method, and the method is applied to a terminal, where the terminal is provided with a first user identification module SIM card and a second SIM card, the The first SIM card and the second SIM card time-division multiplex the hardware resources of the terminal, and the method includes:
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • an embodiment of the present application further provides a communication processing device, where the communication processing device includes: a storage device and a processor,
  • the storage device for storing program codes
  • the processor when invoking the stored code, is configured to execute the communication processing method according to the first aspect.
  • an embodiment of the present application further provides a communication processing device, the communication processing device is applied in a terminal, the terminal is provided with a first user identity module SIM card and a second SIM card, the first SIM card The card and the second SIM card time-division multiplex the hardware resources of the terminal; the communication processing device includes:
  • an acquisition module configured to acquire a reception opportunity for performing a service in a non-connected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • a determining module configured to determine the connected service time slot Gap according to the receiving timing
  • the terminal is allowed to execute the connected state service through the first SIM card in the connected state service Gap.
  • an embodiment of the present application further provides a computer-readable storage medium, where the computer-readable storage medium is used to store a computer program, and the computer program causes a computer to execute the communication processing method described in the first aspect.
  • an embodiment of the present application further provides a chip, the chip is applied in a terminal, and the terminal is provided with a first user identification module SIM card and a second SIM card, the first SIM card and the The second SIM card time-division multiplexes the hardware resources of the terminal;
  • the chip is configured to acquire the reception opportunity for performing a service in a disconnected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the embodiments of the present application further provide a modular device, the modular device is applied in a terminal, and the terminal is provided with a first user identification module SIM card and a second SIM card, the first SIM card The card and the second SIM card time-division multiplex the hardware resources of the terminal, and the module device includes a chip module, wherein:
  • the chip module is configured to acquire a reception opportunity for performing a service in a disconnected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the terminal flexibly allocates the connected state service gap to the SIM card in the connected state according to the reception timing of the non-connected state service, which improves the flexibility and accuracy of allocating the connected state service gap and reduces the connected state service gap.
  • FIG. 1 is a scene diagram of a communication processing method provided by an embodiment of the present application
  • FIG. 2 is a schematic flowchart of a communication processing method provided by an embodiment of the present application.
  • FIG. 3 is a schematic flowchart of another communication processing method provided by an embodiment of the present application.
  • FIG. 4 is a schematic diagram of allocation of a connected state service Gap according to an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a communication processing device according to an embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of a communication processing apparatus provided by an embodiment of the present application.
  • FIG. 7 is a schematic structural diagram of a module device according to an embodiment of the present application.
  • FIG. 1 is a scene diagram of a communication processing method provided by an embodiment of the present application.
  • the terminal 10 is provided with a first SIM (Subscriber Identity Module, a user identity identification module). module) card 101 and the second SIM card 102, the first SIM card 101 and the second SIM card 102 time-division multiplex the hardware resources of the terminal 10, that is, the first SIM card 101 and the second SIM card 102 can be used staggered The same set of hardware resources of the terminal 10.
  • SIM Subscriber Identity Module
  • the first SIM card 101 When the first SIM card 101 is in a connected state and the second SIM card 102 is in a disconnected state, the first SIM card 101 is allowed to perform a connected state service, for example, the terminal 10 performs PS between the first SIM card 101 and the base station 11 (Packet Switch, packet switching) service, to realize the data service between the terminal 10 and the data network 12, the second SIM card 102 is allowed to perform non-connected state services, such as: paging reception, SI (System Information, system message) Non-connected services such as reception, signal measurement, and cell search.
  • a connected state service for example, the terminal 10 performs PS between the first SIM card 101 and the base station 11 (Packet Switch, packet switching) service, to realize the data service between the terminal 10 and the data network 12
  • the second SIM card 102 is allowed to perform non-connected state services, such as: paging reception, SI (System Information, system message)
  • Non-connected services such as reception, signal measurement, and cell search.
  • the terminal 10 allocates the connected state to the first SIM card 101 based on the reception timing of the service in the disconnected state.
  • Traffic time slot (Gap) Traffic time slot
  • the terminal 10 detects a trigger event for executing a service in a disconnected state, for example, if it receives an instruction to perform cell measurement sent by the network side, it can obtain the receiving timing closest to the trigger event for executing a service in a disconnected state, and store the The interval time period between the time when the trigger event for executing the service in the disconnected state is detected and the start time of the reception opportunity is determined as the Gap of the service in the connected state, and is allocated to the first SIM card 101 for use.
  • the terminal 10 executes the non-connected state service of reading SI1 in advance through the second SIM card 102 in the receiving opportunity of reading SI1 (System Information1, system message 1), but the service of reading SI2 has not been completed, Then the interval time period between the time when the non-connected state service of SI1 is read and the start time of the last time to read the reception opportunity of SI2 (System Information2, system message 2) is determined as the connected state service Gap, which is assigned to the first A SIM card 101 is used.
  • the terminal 10 is allowed to execute the connected state service through the first SIM card 101 in the connected state service Gap, that is, the connected state service Gap is allocated to the terminal 10 to perform the connected state service through the first SIM card 101, and the terminal 10 In the connected state service gap, the first SIM card 101 may or may not execute the connected state service.
  • the terminal 10 currently does not need to execute the connected state service, even if the connected state service gap is allocated to the first SIM card 101
  • the connected state service Gap executes the connected state service.
  • the terminal 10 needs to execute the connected state service, and the terminal 10 needs to execute the connected state service in the connected state service Gap.
  • the first SIM card 101 is limited to the connected state service Gap, and can only perform the sending and receiving of connected state services within the connected state service Gap. For example, after obtaining the allocated connected state service Gap, the service arbitration module of the terminal is notified to control the A SIM card 101 is limited by the connected state service Gap, and executes the sending and receiving of connected state services in the connected state service Gap; after all the non-connected state services are executed, the service arbitration module of the terminal is notified to control the first SIM card 101 not to Restricted by the connection state service Gap, the connection state service is received and sent according to the conventional connection state scenario.
  • the terminal 10 includes but is not limited to an access terminal, a subscriber unit, a subscriber station, a mobile station, a mobile station (Mobile Station, MS), a remote station, a remote terminal, a mobile device, a user terminal, a terminal equipment (Terminal Equipment), a wireless communication device, user agent, or user device.
  • the terminal 10 may also be a cellular phone, a cordless phone, a session initiation protocol (Session Initiation Protocol, SIP) phone, a wireless local loop (Wireless Local Loop, WLL for short) station, a personal digital assistant (Personal Digital Assistant, abbreviated as PDA), with Wireless communication capable handheld devices, computing devices or other processing devices connected to wireless modems, in-vehicle devices, wearable devices, end devices in other 4G networks, end devices in future 5G networks or future evolved public land mobile communication networks (Public Land Mobile Network, referred to as PLMN) in the terminal equipment and other equipment with wireless communication functions.
  • PLMN Public Land Mobile Network
  • FIG. 2 is a schematic flowchart of a communication processing method provided by an embodiment of the present application.
  • This specification provides the operation steps of the method as described in the embodiment or the flowchart, but based on conventional or non-creative work, it may include: More or fewer steps.
  • the sequence of steps enumerated in the embodiments is only one of the execution sequences of many steps, and does not represent the only execution sequence.
  • the methods shown in the embodiments or the accompanying drawings may be executed sequentially or in parallel.
  • the method is applied to a terminal, and the terminal is provided with a first user identity module SIM card and a second SIM card, and the first SIM card and the second SIM card are time-shared.
  • the method includes:
  • S202 Determine the connected service time slot Gap according to the receiving timing
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the terminal flexibly allocates the connected state service gap to the SIM card in the connected state according to the reception timing of the non-connected state service, which improves the flexibility and accuracy of allocating the connected state service gap and reduces the connected state service gap.
  • FIG. 3 is a schematic flowchart of another communication processing method provided by an embodiment of the application.
  • This specification provides the method operation steps as described in the embodiment or the flowchart, but based on conventional or non-creative work, it can be Include more or fewer steps.
  • the sequence of steps enumerated in the embodiments is only one of the execution sequences of many steps, and does not represent the only execution sequence.
  • the methods shown in the embodiments or the accompanying drawings may be executed sequentially or in parallel.
  • the method is applied to a terminal, and the terminal is provided with a first user identity module SIM card and a second SIM card, and the first SIM card and the second SIM card are time-shared.
  • the method includes:
  • the obtaining the reception timing for performing the disconnected service through the second SIM card includes:
  • the target disconnected state service refers to the determined disconnected state service that has not been executed and completed.
  • the most recent reception timing is after the current time, for example: the current time is the time when the execution of the disconnected service is detected, and the latest reception timing is after the time when the execution of the non-connected service is detected, for example:
  • the connected service includes a first service and a second service, the current time is the time when the first service is executed and completed, and the latest reception timing is the reception timing of the second service, and the reception timing is after the time when the first service is executed and completed, and the first time is the time when the first service is completed. 2.
  • the business has not been completed.
  • the determined disconnected service that has not been executed and completed refers to a disconnected service that has not yet been executed or a disconnected service that has been partially executed but not completed.
  • the receiving timing closest to the first time is obtained, and the first time refers to the time when the trigger event for executing a service in a disconnected state is detected;
  • the receiving opportunity closest to the first time is located after the first time.
  • the time when the trigger event for executing the disconnected service is detected may be the time when the instruction to execute the disconnected service is received, or it may be processed and analyzed after the received instruction to execute the disconnected service is confirmed to be executed. The time of the connected service.
  • the non-connection state service includes only the first service, or the non-connection state service includes the first service and the second service.
  • the non-connected service includes the first service and the second service, including two cases:
  • Case 1 The non-connected service only includes the first service and the second service;
  • the non-connected service includes at least two services in addition to the first service, and the second service is the service whose reception timing is closest to the time when the first service is executed and completed, and/or , the second service is a service whose reception timing is closest to the end time of the reception timing of the first service among the at least two services.
  • the reception timing of the disconnected state service may appear periodically when the disconnected state service is not executed; the periods of occurrence of the reception opportunities of different disconnected state services may be different or the same, for example: non-connected state services.
  • the connected state services include: reading SI1 services, reading SI2 services, and reading SI3 (System Information 3, system message 3) services.
  • the reception timing of reading SI1 services occurs at a cycle of 160ms, and reading SI2 services.
  • the cycle of occurrence of the receiving opportunity of SI2 is 640ms, for another example: the cycle of occurrence of the receiving opportunity of the service of reading SI2 and the service of reading SI3 is both 160ms.
  • the non-connected service includes the first service and the second service
  • the execution of the first service for example, it is detected that the first service corresponds to the current first service of the first service.
  • the execution of the reception timing is completed, and it is detected that the second service is not executed and completed, the reception timing of the second service closest to the time when the execution of the first service is completed is obtained; the second service closest to the time when the execution of the first service is completed is obtained.
  • the reception timing of the service is located after the time when the execution of the first service is completed.
  • the second reception opportunity closest to the first reception opportunity is obtained; the second reception opportunity closest to the first reception opportunity is located at the After the first reception opportunity described above.
  • a non-connected service includes a first service
  • the first service corresponds to the first reception timing, that is, the first reception timing is used to execute the first service, but the first service is not completed within the first reception timing service, it needs to continue to execute the first service in the subsequent receiving opportunities periodically allocated to execute the first service.
  • the second reception timing corresponds to the first service, that is, the second reception timing is used to execute the first service.
  • the second reception opportunity corresponds to the first service or the second service, that is, the second reception opportunity is used to execute the first service or the second service.
  • the second reception timing corresponds to the first service or the second service, and consists of the period in which the reception timing of the first service occurs and the time when the reception timing of the first service first occurs, and the period in which the reception timing of the second service occurs and the second service occurs. is determined by the time when the reception timing first appears.
  • S302 Determine the connected-state service time slot Gap according to the receiving timing.
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the determining of the connected-state service time slot Gap according to the receiving timing includes:
  • the first interval time period between the first time and the second time is determined as the connected state service time slot Gap;
  • the first time refers to the time when the trigger event for executing the disconnected service is detected
  • the second time refers to the start time of the receiving opportunity closest to the first time; the first time is located in the two time ago.
  • FIG. 4 is a schematic diagram of the allocation of a service gap in a connected state provided by an embodiment of the present application.
  • the state service is SI read service, including three services: read SI1, read SI2, and read SI3.
  • the reception timing for reading SI1 is 160ms
  • the reception timing for reading SI2 is 320ms.
  • the reception event occurrence period of the service of SI3 is taken as 640ms
  • the first interval time period between t 0 and t 1 is determined as the first connected state service time slot Gap, and is allocated to the first SIM card for use.
  • t 1 is the time starting point of an integer multiple of 640ms, and represents the starting time of the reception timing of the non-connected service (the service of reading SI1) closest to t 0 .
  • the determining of the connected-state service time slot Gap according to the receiving timing includes:
  • the connected-state service time slot Gap is determined according to the start time.
  • the execution status of the non-connected service includes a status of completion of execution and a status of no completion of execution; the status of non-completion of execution includes a status of not started execution and a status of partially executed service content.
  • determining the start time of the connected service time slot Gap according to the receiving timing and the execution state of the non-connected service includes:
  • the third time refers to the time when it is detected that the execution of the first service is completed.
  • the reception timing corresponding to the second service closest to the third time is the second interval time period from the third time; the reception timing corresponding to the second service closest to the third time at the third time
  • the determining of the connected service time slot Gap according to the start time includes:
  • the fourth time refers to the start time of the receiving opportunity corresponding to the second service closest to the third time; the third time is located before the fourth time.
  • the third time is located between the start time of the reception opportunity corresponding to the first service and the end time of the reception opportunity.
  • the reception timing corresponding to the first service may have one or more periodically occurring reception events, and the third time is located within the same reception timing corresponding to the first service, including two cases:
  • Case 1 The first time is located after the start time of the reception opportunity corresponding to the first service and before the end time of the reception opportunity.
  • the business of reading SI1 is not performed at the first receiving opportunity of reading SI1
  • the business of reading SI1 is completed at the second receiving opportunity of reading SI1
  • the business of reading SI2 is executed at the second receiving opportunity of reading SI1.
  • the business of reading SI2 is not executed at the first reception timing
  • the service of reading SI3 is not executed at the first reception timing of reading SI3
  • the second reception timing of reading SI2 is far from the completion of reading SI1.
  • the third time t6 of the service is the most recent. Therefore, when the first service is a service of reading SI1, the second service is a service of reading SI2.
  • the third time t 6 when the service of reading SI1 is executed is located before the end time of the second receiving opportunity of SI1, and the starting time (fourth time) of the second receiving opportunity of reading SI2 is t 9 .
  • the second interval time period between 6 and t 9 is determined to be the service Gap in the connected state.
  • Case 2 The first time coincides with the end time of the receiving opportunity corresponding to the first service.
  • the business of reading SI2 is not performed at the first receiving opportunity of reading SI2
  • the business of reading SI3 is not performed at the first receiving opportunity of reading SI3
  • the business of reading SI2 is not performed at the first receiving opportunity of reading SI3.
  • the second receiving opportunity executes and completes the business of reading SI2, and the time t10 that executes the business that completes reading SI2 coincides with the end time of the second receiving opportunity of reading SI2; at this time, there is no completed reading SI3 business, the starting time t 15 of the second reception opportunity of reading SI3 is the closest to the time t 10 when the execution completes the business of reading SI2, then when the first business is the business of reading SI2, the second business is to read the business of reading SI2.
  • the second interval time period between the time t10 when the service of reading SI2 is completed and the start time t15 of the second receiving opportunity of reading SI3 is determined as the connected service Gap.
  • determining the start time of the connected service time slot Gap according to the receiving timing and the execution state of the non-connected service includes:
  • the start time of the connected state service time slot Gap is determined to be the end time of the first receiving opportunity.
  • the determining of the connected service time slot Gap according to the start time includes:
  • the second reception timing is a reception timing corresponding to a service in a disconnected state closest to the first reception timing, and the first reception timing is located before the second reception timing.
  • both the first receiving occasion and the second receiving occasion are the receiving occasions of the first service, and are used to execute and complete the first service.
  • the non-connected service includes the first service and the second service, there are two corresponding situations between the first receiving timing and the receiving timing of the second service and the non-connected service:
  • Case A When the first reception timing is the reception timing of the first service, if the reception timing (start time) closest to the first reception timing (end time) is the reception timing of the first service, the second reception timing The timing is the reception timing of the first service, and is used for continuing to execute the content of the first service that has not been executed.
  • Case B when the first reception timing is the reception timing of the first service, if the reception timing (start time) closest to the first reception timing (end time) is the reception timing of the second service, the second reception timing The timing is the reception timing of the second service, which is used to execute the second service.
  • the first business is the business of reading SI3
  • the business of reading SI3 is not executed at the first receiving opportunity of reading SI3
  • the end time of the first receiving opportunity of reading SI3 ( t 4 ) is the second receiving opportunity of reading SI1 (starting time t 5 ) recently
  • the business of reading SI1 is not completed at the first receiving opportunity of reading SI1
  • the difference between t 4 and t 5 is The third interval time period between is determined to be the service Gap in the connected state.
  • step S303 is executed.
  • Step S303 is executed after t16 .
  • steps S301 and S302 After the execution of steps S301 and S302 is stopped, if the terminal has a connected state service that needs to be executed, the terminal executes the connected state service by itself through the first SIM card, and does not need to consider the execution requirements of the non-connected state service, for example: execute it according to the conventional connection state scenario For connection-state services, no longer refer to the connection-state service Gap.
  • the SIM card in the disconnected state can use the SIM card in the disconnected state to change the interval time between the current time (the time when the trigger event for executing the disconnected state service is detected) and the latest reception opportunity of its own service (the disconnected state service). It is allocated to the SIM card in the connected state for the SIM card in the connected state to perform the service in the connected state, and can adapt to the flexible reception timing of the service in the non-connected state.
  • the SIM card in the non-connected state can terminate the reception timing of the non-connected state service in advance according to the execution situation of its own service (non-connected state service), and then according to the execution situation of its own service (non-connected state service), some
  • the interval time between the time when the non-connected state service (first service) is executed and the time when the most recent uncompleted non-connected state service (second service) is received is allocated to the SIM card in the connected state for use in the connected state.
  • the connected SIM card is used for connected state services, so that the receiving timing of non-connected state services can occupy terminal hardware resources as needed.
  • the terminal flexibly allocates the connected state service gap to the SIM card in the connected state according to the reception timing of the non-connected state service, which improves the flexibility and accuracy of allocating the connected state service gap and reduces the connected state service gap.
  • FIG. 5 is a schematic structural diagram of a communication processing device provided by an embodiment of the application.
  • the communication processing device includes: a storage device 501 and a processor 502; and the communication
  • the processing device may also include a data interface 503 , a user interface 504 .
  • Various types of buses can also be used to establish connections between various hardwares.
  • the communication processing device can exchange data with other terminals, servers and other devices; the user interface 504 is used to realize human-computer interaction between the user and the communication processing device; the user The interface 504 may provide a touch display screen, physical keys, etc. to realize human-computer interaction between the user and the communication processing device.
  • the storage device 501 may include a volatile memory (Volatile memory), such as a random access memory (Random-Access Memory, RAM); the storage device 501 may also include a non-volatile memory (Non-Volatile Memory), such as a flash memory. Flash memory (Flash Memory), solid-state drive (Solid-State Drive, SSD), etc.; the storage device 501 may also include a combination of the above-mentioned types of memory.
  • volatile memory such as a random access memory (Random-Access Memory, RAM)
  • non-Volatile Memory such as a flash memory.
  • Flash memory Flash Memory
  • Solid-State Drive SSD
  • the storage device 501 may also include a combination of the above-mentioned types of memory.
  • the processor 502 may be a central processing unit (Central Processing Unit, CPU).
  • the processor 502 may further include a hardware chip.
  • the above-mentioned hardware chip can be an application-specific integrated circuit (Application-Specific Integrated Circuit, ASIC), a programmable logic device (Programmable Logic Device, PLD), and the like.
  • the above-mentioned PLD may be a Field-Programmable Gate Array (FPGA), a Generic Array Logic (GAL), or the like.
  • the communication processing device is applied in a terminal, the terminal is provided with a first user identity module SIM card and a second SIM card, the first SIM card and the second SIM card time-division multiplexing of the terminal's hardware resources;
  • the storage device 501 is used to store program codes
  • the processor 502 when invoking the stored code, is configured to acquire, when the first SIM card is in a connected state and the second SIM card is in a disconnected state, obtaining the execution of disconnection through the second SIM card. the receiving timing of the state service;
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the processor 502 is specifically configured to acquire the latest reception timing corresponding to a target disconnected service, where the target disconnected service refers to a determined disconnected service that has not been executed and completed. .
  • the processor 502 is specifically configured to determine a first interval time period between the first time and the second time as a connected service if a trigger event for executing a disconnected service is detected slot Gap;
  • the first time refers to the time when the trigger event for executing the disconnected service is detected
  • the second time refers to the start time of the receiving opportunity closest to the first time; the first time is located in the two time ago.
  • the processor 502 is specifically configured to determine the start time of the connected state service time slot Gap according to the receiving timing and the execution state of the disconnected state service;
  • the connected-state service time slot Gap is determined according to the start time.
  • the disconnected service includes: a first service and a second service
  • the processor 502 is specifically configured to determine that the start time of the connected service time slot Gap is the third time if it is detected that the execution of the first service is completed and that the execution of the second service is not completed. ;
  • the third time refers to the time when it is detected that the execution of the first service is completed.
  • the processor 502 is specifically configured to determine the second interval time period between the third time and the fourth time as a connected service Gap;
  • the fourth time refers to the start time of the receiving opportunity corresponding to the second service closest to the third time; the third time is before the fourth time.
  • the third time is located between the start time of the reception opportunity corresponding to the first service and the end time of the reception opportunity.
  • the processor 502 is specifically configured to determine that the start time of the connected service time slot Gap is the first time slot of the first receiving opportunity if the non-connected service is not completed within the first receiving opportunity. End Time.
  • the processor 502 is specifically configured to determine a third interval time period between the end time of the first reception opportunity and the start time of the second reception opportunity as a connected service Gap;
  • the second reception timing is a reception timing corresponding to a service in a disconnected state closest to the first reception timing, and the first reception timing is located before the second reception timing.
  • FIG. 6 is a schematic structural diagram of a communication processing apparatus provided by an embodiment of the present application. Specifically, as shown in FIG. 6, the communication processing apparatus is applied to a terminal, and the terminal is provided with a first user identification A module SIM card and a second SIM card, wherein the first SIM card and the second SIM card time-division multiplex the hardware resources of the terminal; the communication processing device includes:
  • An acquisition module 601 configured to acquire the reception opportunity for performing a service in a non-connected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • a determining module 602 configured to determine the connected service time slot Gap according to the receiving timing
  • the terminal is allowed to execute the connected state service through the first SIM card in the connected state service Gap.
  • the obtaining module 601 is specifically configured to obtain the latest reception timing corresponding to a target disconnected service, where the target disconnected service refers to a determined disconnected service that has not been executed and completed. .
  • the determining module 602 is specifically configured to determine the first interval time period between the first time and the second time as a connected service if a trigger event for executing a non-connected service is detected slot Gap;
  • the first time refers to the time when the trigger event for executing the disconnected service is detected
  • the second time refers to the start time of the receiving opportunity closest to the first time; the first time is located in the two time ago.
  • the determining module 602 is specifically configured to determine the start time of the connected state service time slot Gap according to the receiving timing and the execution state of the non-connected state service;
  • the connected-state service time slot Gap is determined according to the start time.
  • the disconnected service includes: a first service and a second service
  • the determining module 602 is specifically configured to determine that the start time of the connected service time slot Gap is the third time if it is detected that the execution of the first service is completed and that the execution of the second service is not completed. ;
  • the third time refers to the time when it is detected that the execution of the first service is completed.
  • the determining module 602 is specifically configured to determine the second interval period between the third time and the fourth time as the connected service Gap;
  • the fourth time refers to the start time of the receiving opportunity corresponding to the second service closest to the third time; the third time is located before the fourth time.
  • the third time is located between the start time of the reception opportunity corresponding to the first service and the end time of the reception opportunity.
  • the determining module 602 is specifically configured to determine the start time of the connected service time slot Gap to be the first receiving opportunity if the non-connected service is not completed within the first receiving opportunity. End Time.
  • the determining module 602 is specifically configured to determine a third interval time period between the end time of the first reception opportunity and the start time of the second reception opportunity as a connected service Gap;
  • the second reception timing is a reception timing corresponding to a service in a disconnected state closest to the first reception timing, and the first reception timing is located before the second reception timing.
  • an embodiment of the present invention further provides a computer-readable storage medium, where the computer-readable storage medium is used to store a computer program, and the computer program enables a computer to execute any of steps S201 to S202 and steps S301 to S303 of the present application methods described in the examples.
  • the computer storage medium here may include both the built-in storage medium in the smart terminal, and certainly also the extended storage medium supported by the smart terminal.
  • the computer storage medium provides storage space, and the storage space stores the operating system of the intelligent terminal.
  • one or more instructions suitable for being loaded and executed by the processor are also stored in the storage space, and these instructions may be one or more computer programs (including program codes).
  • the computer storage medium here can be a high-speed RAM memory, or a non-volatile memory (Non-Volatile Memory), such as at least one disk memory; optionally, it can also be at least one memory located far away from the aforementioned processor. computer storage media.
  • an embodiment of the present application further provides a chip, the chip is applied in a terminal, the terminal is provided with a first user identity module SIM card and a second SIM card, the first SIM card and the first SIM card Two SIM cards time-division multiplex the hardware resources of the terminal;
  • the chip is configured to acquire the reception opportunity for performing a service in a disconnected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the chip is specifically configured to acquire the latest reception opportunity corresponding to the target disconnected service in the aspect of acquiring the reception timing of executing the disconnected service through the second SIM card, the target disconnected service being received.
  • a state service refers to a determined non-connection state service that has not been executed and completed.
  • the chip in the aspect of determining the connected service time slot Gap according to the receiving timing, is specifically configured to compare the first time with the second time if a trigger event for executing a non-connected service is detected.
  • the first interval time period between times is determined as the connected service time slot Gap;
  • the first time refers to the time when the trigger event for executing the disconnected service is detected
  • the second time refers to the start time of the receiving opportunity closest to the first time; the first time is located in the two time ago.
  • the chip in the aspect of determining the connected service time slot Gap according to the receiving timing, is specifically configured to determine the connected service time slot according to the receiving timing and the execution state of the non-connected service. Gap start time;
  • the connected-state service time slot Gap is determined according to the start time.
  • the disconnected service includes: a first service and a second service
  • the chip is specifically configured to detect that the execution of the first service is completed and detect If the execution of the second service is not completed, it is determined that the start time of the connected service time slot Gap is the third time;
  • the third time refers to the time when it is detected that the execution of the first service is completed.
  • the chip in the aspect of determining the connected-state service time slot Gap according to the starting time, is specifically configured to determine the second interval time period between the third time and the fourth time as Gap for connected services;
  • the fourth time refers to the start time of the receiving opportunity corresponding to the second service closest to the third time; the third time is located before the fourth time.
  • the third time is located between the start time of the reception opportunity corresponding to the first service and the end time of the reception opportunity.
  • the chip in the aspect of determining the start time of the connected service time slot Gap according to the receiving opportunity and the execution state of the non-connected service, is specifically configured to be used if there is no Gap within the first receiving opportunity. After the non-connected state service is completed, the start time of the connected state service time slot Gap is determined to be the end time of the first reception opportunity.
  • the chip in the aspect of determining the connected-state service time slot Gap according to the start time, is specifically configured to calculate the difference between the end time of the first reception opportunity and the start time of the second reception opportunity The third interval time period is determined as the connected service Gap;
  • the second reception timing is a reception timing corresponding to a service in a disconnected state closest to the first reception timing, and the first reception timing is located before the second reception timing.
  • the chip can execute the steps related to the terminal in the method embodiments shown in FIG. 2 and FIG. 3 .
  • steps related to the terminal in the method embodiments shown in FIG. 2 and FIG. 3 For details, refer to the implementation manners provided by the above steps, and details are not repeated here.
  • the chip includes at least one processor, at least one first memory, and at least one second memory; wherein, the at least one first memory and the at least one processor are interconnected through a line, and the first memory stores There are instructions; the at least one second memory and the at least one processor are interconnected through lines, and the second memory stores the data that needs to be stored in the foregoing method embodiments.
  • each module contained therein may be implemented by hardware such as circuits, or at least some of the modules may be implemented by a software program that runs on the integrated circuit inside the chip.
  • the processor and the remaining (if any) modules can be implemented in hardware such as circuits.
  • FIG. 7 is a schematic structural diagram of a modular device according to an embodiment of the present application.
  • the modular device is applied to a terminal, and the terminal is provided with a first user identification module SIM card and a second SIM card. card, the hardware resources of the terminal are time-multiplexed by the first SIM card and the second SIM card, and the module device includes a chip module 701, wherein:
  • the chip module 701 is configured to acquire a reception opportunity for performing a service in a disconnected state through the second SIM card when the first SIM card is in a connected state and the second SIM card is in a disconnected state;
  • the terminal is allowed to perform a connected state service through the first SIM card in the connected state service time slot Gap.
  • the chip module 701 is specifically configured to acquire the latest reception opportunity corresponding to the target disconnected service in the aspect of acquiring the reception timing of executing the disconnected service through the second SIM card, the The target disconnected service refers to the determined disconnected service that has not been executed and completed.
  • the chip module 701 in the aspect of determining the connected service time slot Gap according to the receiving timing, is specifically configured to: The first interval time period between the second time and the second time is determined as the connected service time slot Gap;
  • the first time refers to the time when the trigger event for executing the disconnected service is detected
  • the second time refers to the start time of the receiving opportunity closest to the first time; the first time is located in the two time ago.
  • the chip module 701 is specifically configured to determine the connected state according to the receiving opportunity and the execution state of the non-connected state service in the aspect of determining the connected state service time slot Gap according to the receiving timing The start time of the service slot Gap;
  • the connected-state service time slot Gap is determined according to the start time.
  • the disconnected service includes: a first service and a second service
  • the chip module 701 in the aspect of determining the start time of the connected service time slot Gap according to the receiving timing and the execution state of the non-connected service, is specifically configured to, if it is detected that the execution of the first service is completed, And it is detected that the second service has not been executed and completed, then it is determined that the start time of the connected service time slot Gap is the third time;
  • the third time refers to the time when it is detected that the execution of the first service is completed.
  • the chip module 701 is specifically configured to use the second interval time between the third time and the fourth time in determining the connected-state service time slot Gap according to the starting time. segment, which is determined as the connected service Gap;
  • the fourth time refers to the start time of the receiving opportunity corresponding to the second service closest to the third time; the third time is located before the fourth time.
  • the third time is located between the start time of the reception opportunity corresponding to the first service and the end time of the reception opportunity.
  • the chip module 701 determines the start time of the connected service time slot Gap according to the receiving timing and the execution state of the non-connected service, specifically, if the first receiving If the non-connected state service is not executed and completed within the opportunity, the start time of the connected state service time slot Gap is determined as the end time of the first reception opportunity.
  • the chip module 701 in the aspect of determining the connected-state service time slot Gap according to the starting time, is specifically configured to compare the ending time of the first receiving opportunity with the starting time of the second receiving opportunity.
  • the third interval time period between the start times is determined as the connected service Gap;
  • the second reception timing is a reception timing corresponding to a service in a disconnected state closest to the first reception timing, and the first reception timing is located before the second reception timing.
  • the module device may further include a communication interface (not shown in FIG. 7 ).
  • the specific connection medium between the communication interface and the chip module 701 is not limited in the embodiments of the present application.
  • the communication interface and the chip module 701 are connected by a bus 702 in FIG. 7 .
  • the bus is represented by a thick line in FIG. 7 . be limited.
  • the bus 702 can be divided into an address bus, a data bus, a control bus, and the like. For ease of presentation, only one thick line is used in FIG. 7, but it does not mean that there is only one bus or one type of bus.

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Abstract

本申请实施例公开了一种通信处理方法、装置、存储介质、芯片及相关设备,所述方法应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述方法包括:在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;根据所述接收时机,确定连接态业务时隙Gap;其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。采用本发明,能够灵活地分配连接态业务Gap,有效降低连接态业务被中断的时延。

Description

通信处理方法、装置、存储介质、芯片及相关设备 技术领域
本发明涉及通信领域,尤其涉及一种通信处理方法、装置、存储介质、芯片及相关设备。
背景技术
随着移动通信技术的发展,配置两张SIM(Subscriber Identity Module,用户身份识别模块)卡的终端越来越普及。目前,终端配置的两张SIM卡通常共用一套终端硬件资源;若在终端通过处于连接态的SIM卡执行连接态业务时,处于非连接态的SIM卡有非连接业务需要执行,则需要对处于连接态业务的SIM卡打孔,以使分配自主Gap(时隙)供终端通过处于非连接态的SIM卡执行非连接态业务。这种基于连接态业务分配自主Gap的方式需要提前获知非连接态业务的接收时机,而非连接态业务的接收时机是灵活多变的,造成打孔分配自主Gap并不准确,从而不必要地中断连接态业务;且分配的自主Gap的持续时间长度是固定的,造成非连接态业务已在对应的接收时机提前执行完成但自主Gap无法提前释放,而延长了连接态业务被中断的延时。
发明内容
本申请实施例提供一种通信处理方法、装置、存储介质、芯片及相关设备,能够灵活地分配连接态业务Gap,有效降低连接态业务被中断的时延。
为了解决上述技术问题,第一方面,本申请实施例提供一种通信处理方法,所述方法应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述方法包括:
在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
第二方面,本申请实施例还提供一种通信处理设备,所述通信处理设备包括:存储装置和处理器,
所述存储装置,用于存储程序代码;
所述处理器,在调用所述存储代码时,用于执行如第一方面所述的通信处理方法。
第三方面,本申请实施例还提供一种通信处理装置,所述通信处理装置应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;所述通信处理装置包括:
获取模块,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
确定模块,用于根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务Gap通过第一SIM卡执行连接态业务。
第四方面,本申请实施例还提供一种计算机可读存储介质,所述计算机可读存储介质用于存储计算机程序,所述计算机程序使得计算机执行第一方面所述的通信处理方法。
第五方面,本申请实施例还提供一种芯片,所述芯片应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;
所述芯片,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
第六方面,本申请实施例还提供一种模组设备,所述模组设备应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述模组设备包括芯片模组,其中:
所述芯片模组,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
实施本申请实施例,具有如下有益效果:
在本申请实施例中,终端根据非连接态业务的接收时机,灵活地向处于连接态的SIM卡分配连接态业务Gap,提高了分配连接态业务Gap的灵活性和准确性,降低了连接态业务被中断的时延。
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发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的一种通信处理方法的场景图;
图2为本申请实施例提供的一种通信处理方法的流程示意图;
图3为本申请实施例提供的另一种通信处理方法的流程示意图;
图4为本申请实施例提供的一种连接态业务Gap的分配示意图;
图5为本申请实施例提供的一种通信处理设备的结构示意图;
图6为本申请实施例提供的一种通信处理装置的结构示意图;
图7为本申请实施例提供的一种模组设备的结构示意图。
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发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
需要说明的是,本申请的说明书和权利要求书中及上述附图中的属于“第一”、“第二”等是用于区别类似的对象,而不必用于描述特定的顺序或先后次序。应该理解这样使用的数据在适当情况下可以互换,以便这里描述的本申请的实施例能够以除了在这里图示或描述以外的顺序实施。此外,术语“包括”及其任何变形,意图在于覆盖不排他的包含,例如,包含了一系列步骤或单元的过程、方法、系统、产品或服务器不必限于清楚地列出的那些步骤或单元,而是可包括没有清楚地列出的或对于这些过程、方法、产品或设备固有的其它步骤或单元。
请参阅图1,图1为本申请实施例提供的一种通信处理方法的场景图,具体如图1所示,在该场景中,终端10设置有第一SIM(Subscriber Identity Module,用户身份识别模块)卡101和第二SIM卡102,第一SIM卡101和第二SIM卡102分时复用所述终端10的硬件资源,即第一SIM卡101和第二SIM卡102可错开时间使用终端10的同一套硬件资源。在第一SIM卡101处于连接态,第二SIM卡102处于非连接态时,第一SIM卡101被允许执行连接态业务,比如:终端10通过第一SIM卡101与基站11之间执行PS(Packet Switch,分组交换)业务,以实现终端10与数据网络12之间的数据业务,第二SIM卡102被允许执行非连接态业务,比如:寻呼接收、SI(System Information,系统消息)接收、信号测量、小区搜索等非连接态业务。
本申请实施例中,终端10在所述第一SIM卡101处于连接态,所述第二SIM卡102处于非连接态时,基于非连接态业务的接收时机向第一SIM卡101分配连接态业务时隙(Gap)。
比如:若终端10检测到执行非连接态业务的触发事件,比如:接收到网络侧发送的进行小区测量的指令,则可获取距离检测到执行非连接态业务的触发事件最近的接收时机,将检测到执行非连接态业务的触发事件的时间与该接收时机的起始时间之间的间隔时间段确定为连接态业务Gap,分配给第一SIM卡101使用。
又比如:终端10通过第二SIM卡102在读取SI1(System Information1,系统消息1)的接收时机内提前执行完成了读取SI1的非连接态业务,但读取SI2的业务并未完成,则将完成读取SI1的非连接态业务的时间与最近一次读取SI2(System Information2,系统消息2)的接收时机的起始时间之间的间隔时间段确定为连接态业务Gap,分配给第一SIM卡101使用。
本申请实施例,终端10被允许在连接态业务Gap通过第一SIM卡101执行连接态业务,即连接态业务Gap是分配给终端10通过第一SIM卡101执行连接态业务使用的,终端10在连接态业务Gap通过第一SIM卡101可以执行或不执行连接态业务,比如:当前终端10没有执行连接态业务的需求,即使给第一SIM卡101分配了连接态业务Gap也无需在该连接态业务Gap执行连接态业务,又比如:当前终端10有执行连接态业务的需求,终端10需在连接态业务Gap执行该连接态业务。
第一SIM卡101受限于连接态业务Gap,只能在连接态业务Gap内执行连接态业务的发送和接收,比如:在获得分配的连接态业务Gap后,通知终端的业务仲裁模块控制第一SIM卡101受限于连接态业务Gap,在连接态业务Gap内执行连接态业务的发送和接收;在非连接态业务全部执行完成后,通知终端的业务仲裁模块控制第一SIM卡101不再受限于连接态业务Gap,按照常规连接态场景进行连接态业务的接收和发送。
需要说明的是,在第二SIM卡102处于连接态,第一SIM卡101处于非连接态时,可执行前述在第一SIM卡101处于连接态,第二SIM卡102处于非连接态时类似或相同的操作,在此不做赘述。终端10包括但不限定于接入终端、用户单元、用户站、移动站、移动台(Mobile Station,MS)、远方站、远程终端、移动设备、用户终端、终端设备(Terminal Equipment)、无线通信设备、用户代理或用户装置。终端10还可以是蜂窝电话、无绳电话、会话启动协议(Session Initiation Protocol,SIP)电话、无线本地环路(Wireless Local Loop,简称WLL)站、个人数字助理(Personal Digital Assistant,简称PDA)、具有无线通信功能的手持设备、计算设备或连接到无线调制解调器的其它处理设备、车载设备、可穿戴设备,其他4G网络中的终端设备,未来5G网络中的终端设备或者未来演进的公用陆地移动通信网络(Public Land Mobile Network,简称PLMN)中的终端设备等具有无线通信功能的设备。
请参阅图2,图2为本申请实施例提供的一种通信处理方法的流程示意图,本说明书提供了如实施例或流程图所述的方法操作步骤,但基于常规或者无创造性的劳动可以包括更多或者更少的操作步骤。实施例中列举的步骤顺序仅仅为众多步骤执行顺序中的一种方式,不代表唯一的执行顺序。在实际中的终端或者存储介质产品执行时,可以按照实施例或者附图所示的方法顺序执行或者并行执行。具体如图2所示,所述方法应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第 二SIM卡分时复用所述终端的硬件资源,所述方法包括:
S201:在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机。
S202:根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
在本申请实施例中,终端根据非连接态业务的接收时机,灵活地向处于连接态的SIM卡分配连接态业务Gap,提高了分配连接态业务Gap的灵活性和准确性,降低了连接态业务被中断的时延。
请参阅图3,图3为本申请实施例提供的另一种通信处理方法的流程示意图,本说明书提供了如实施例或流程图所述的方法操作步骤,但基于常规或者无创造性的劳动可以包括更多或者更少的操作步骤。实施例中列举的步骤顺序仅仅为众多步骤执行顺序中的一种方式,不代表唯一的执行顺序。在实际中的终端或者存储介质产品执行时,可以按照实施例或者附图所示的方法顺序执行或者并行执行。具体如图3所示,所述方法应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述方法包括:
S301:在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机。
本申请实施例中,所述获取通过第二SIM卡执行非连接态业务的接收时机,包括:
获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
所述最近一次的接收时机是位于当前时间之后的,比如:当前时间为检测到执行非连接态业务的时间,最近一次的接收时机位于检测到执行非连接态业务的时间之后,又比如:非连接态业务包括第一业务和第二业务,当前时间为执行完成第一业务的时间,最近一次接收时机为第二业务的接收时机,该接收时机位于执行完成第一业务的时间之后,且第二业务没有执行完成。
所述被确定的未被执行完成的非连接态业务是指还未开始执行的非连接态业务或者执行了部分内容但未执行完成的非连接态业务。
本申请实施例中,若检测到执行非连接态业务的触发事件,则获取距离第一时间最近的接收时机,所述第一时间是指检测到执行非连接态业务的触发事件的时间;所述距离第一时间最近的接收时机位于第一时间之后。
所述检测到执行非连接态业务的触发事件的时间可以是接收到执行非连接态业务的指令的时间,也可以是对接收到的执行非连接态业务的指令进行处理分析后确认要执行非连 接态业务的时间。
本申请实施例中,所述非连接态业务仅包括第一业务,或者,所述非连接态业务包括第一业务和第二业务。
所述非连接态业务包括第一业务和第二业务,包括两种情况:
情况一:非连接态业务仅包括第一业务和第二业务;
情况二:非连接态业务除第一业务外,还包括至少两项业务,所述第二业务是所述至少两项业务中接收时机距离第一业务执行完成的时间最近的业务,和/或,所述第二业务是所述至少两项业务中接收时机距离第一业务的接收时机的结束时间最近的业务。
所述非连接态业务的接收时机在所述非连接态业务没有执行完成的情况下,可周期性的出现;不同的非连接态业务的接收时机出现的周期可以不同也可以相同,比如:非连接态业务包括:读取SI1的业务、读取SI2的业务和读取SI3(System Information3,系统消息3)的业务,读取SI1的业务的接收时机出现的周期为160ms,读取SI2的业务的接收时机出现的周期为640ms,又比如:读取SI2的业务和读取SI3的业务的接收时机出现的周期均为160ms。
本申请实施例中,在所述非连接态业务包括第一业务和第二业务时,若检测到第一业务执行完成,比如:检测到第一业务在第一业务当前的第一业务对应的接收时机执行完成,且检测到所述第二业务没有执行完成,则获取距离第一业务执行完成的时间最近的第二业务的接收时机;所述距离第一业务执行完成的时间最近的第二业务的接收时机位于距离第一业务执行完成的时间之后。
本申请实施例中,若在第一接收时机内没有执行完成非连接态业务,则获取距离第一接收时机最近的第二接收时机;所述距离第一接收时机最近的第二接收时机位于所述第一接收时机之后。
在第一接收时机内没有执行完成非连接态业务是指在第一接收时机内没有完成第一接收时机对应的非连接态业务,需要在后续的接收时机内继续完成第一接收时机对应的非连接态业务,比如:非连接态业务包括第一业务,第一业务与第一接收时机对应,即第一接收时机用于执行第一业务,但是在该第一接收时机内未完成该第一业务,则需要在后续的周期性分配给执行第一业务使用的接收时机内继续执行该第一业务。
在非连接态业务仅包括第一业务时,第二接收时机与第一业务对应,即第二接收时机用于执行第一业务。
在非连接态业务包括第一业务和第二业务时,第二接收时机与第一业务或第二业务对应,即第二接收时机用于执行第一业务或第二业务。第二接收时机与第一业务或第二业务对应,由第一业务的接收时机出现的周期和第一业务的接收时机首次出现的时间,以及第二业务的接收时机出现的周期和第二业务的接收时机首次出现的时间决定。
S302:根据所述接收时机,确定连接态业务时隙Gap。
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
本申请实施例中,所述根据所述接收时机,确定连接态业务时隙Gap包括:
若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
请参阅图4,图4为本申请实施例提供的一种连接态业务Gap的分配示意图,具体如图4所示,在t 0处检测到执行非连接态业务的触发事件,所述非连接态业务为SI读取业务,包括读取SI1、读取SI2和读取SI3等三项业务,读取SI1的接收时机出现周期为160ms,读取SI2的业务的接收时机出现周期为320ms,读取SI3的业务的接收事件出现周期为640ms,将t 0到t 1之间的第一间隔时间段,确定为第一连接态业务时隙Gap,分配给第一SIM卡使用。其中,t 1为640ms的整数倍的时间起点,表示距离t 0最近的非连接态业务(读取SI1的业务)的接收时机的起始时间。
本申请实施例中,所述根据所述接收时机,确定连接态业务时隙Gap包括:
根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
根据所述起始时间确定连接态业务时隙Gap。
其中,所述非连接态业务的执行状态,包括执行完成的状态和没有执行完成的状态;所述没有执行完成的状态包括没有开始执行的状态和已执行部分业务内容的状态。
本申请实施例中,所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间,包括:
若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
其中,所述第三时间是指检测到所述第一业务执行完成的时间。
需要说明的是,此种情况下,距离第三时间最近的第二业务对应的接收时机距离第三时间第二间隔时间段;在第三时间与距离第三时间最近的第二业务对应的接收时机的起始时间重合或者两者之间没有时间间隔的情况下,并不确定连接态业务Gap,而是继续执行第二业务。
本申请实施例中,所述根据所述起始时间确定连接态业务时隙Gap,包括:
将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
本申请实施例中,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
第一业务对应的接收时机可能有一个或多个周期性出现的接收事件,第三时间位于第一业务对应的同一个接收时机内,包括两种情况:
第一种情况:第一时间位于第一业务对应的接收时机的起始时间之后,且位于该接收时机的结束时间之前。
具体如图4所示,在读取SI1的第一个接收时机没有执行完成读取SI1的业务,在读取SI1的第二个接收时机内执行完成读取SI1的业务,在读取SI2的第一个接收时机没有执行完成读取SI2的业务,在读取SI3的第一个接收时机没有执行完成读取SI3的业务,且读取SI2的第二个接收时机距离执行完成读取SI1的业务的第三时间t 6最近,因此,在第一业务为读取SI1的业务时,第二业务为读取SI2的业务。执行完成读取SI1的业务的第三时间t 6位于SI1的第二个接收时机的结束时间之前,读取SI2的第二个接收时机的起始时间(第四时间)为t 9,将t 6与t 9之间的第二间隔时间段,确定为连接态业务Gap。
第二种情况:第一时间与第一业务对应的接收时机的结束时间重合。
具体如图4所示,在读取SI2的第一个接收时机没有执行完成读取SI2的业务,在读取SI3的第一个接收时机没有执行完成读取SI3的业务,在读取SI2的第二个接收时机执行完成读取SI2的业务,且执行完成读取SI2的业务的时间t 10与读取SI2的第二个接收时机的结束时间重合;此时,没有执行完成的读取SI3的业务,读取SI3的第二个接收时机的起始时间t 15距离执行完成读取SI2的业务的时间t 10最近,则在第一业务为读取SI2的业务时,第二业务为读取SI3的业务。将执行完成读取SI2的业务的时间t 10与读取SI3的第二个接收时机的起始时间t 15之间的第二间隔时间段,确定为连接态业务Gap。
本申请实施例中,所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间,包括:
若在第一接收时机内没有执行完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
本申请实施例中,所述根据所述起始时间确定连接态业务时隙Gap,包括:
将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
其中,所述第二接收时机是距离所述第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
若非连接态业务仅包括第一业务,则第一接收时机和第二接收时机均是第一业务的接收时机,用于执行完成第一业务。
若非连接态业务包括第一业务和第二业务,则第一接收时机和第二业务的接收时机与非连接态业务的对应情况有两种:
情况A:在第一接收时机为第一业务的接收时机时,若距离第一接收时机(的结束时间)最近的接收时机(的起始时间)为第一业务的接收时机,则第二接收时机为第一业务 的接收时机,用于继续执行第一业务没有执行完成的内容。
情况B:在第一接收时机为第一业务的接收时机时,若距离第一接收时机(的结束时间)最近的接收时机(的起始时间)为第二业务的接收时机,则第二接收时机为第二业务的接收时机,用于执行第二业务。
具体如图4所示,第一业务为读取SI3的业务,在读取SI3的第一个接收时机没有执行完成读取SI3的业务,距离读取SI3的第一个接收时机(的结束时间t 4)最近是读取SI1的第二个接收时机(的起始时间t 5),且读取SI1的业务在读取SI1的第一个接收时机没有完成,则将t 4与t 5之间的第三间隔时间段,确定为连接态业务Gap。
若所述非连接态业务全部执行完成,则执行步骤S303。
具体如图4所述,在t 6执行完成了读取SI1,在t 10执行完成了读取SI2,在t 16执行完成了读取SI3,即在t 16完成了所有的非连接态业务,在t 16后执行步骤S303。
S303:停止执行步骤S301和S302。
在停止执行步骤S301和S302后,若终端有连接态业务需执行,则终端通过第一SIM卡自行执行连接态业务,不用再考虑非连接态业务的执行需求,比如:按照常规连接态场景执行连接态业务,不再参考连接态业务Gap。
本申请实施例中,可由处于非连接态的SIM卡将当前时间(检测到执行非连接态业务的触发事件的时间)到自身业务(非连接态业务)最近的一次接收时机之间的间隔时间分配给处于连接态的SIM卡,以供处于连接态的SIM卡执行连接态业务使用,能够适应灵活多变地非连接态业务的接收时机。
本申请实施例中,可由非连接态的SIM卡根据自身业务(非连接态业务)执行情况,提前结束非连接态业务的接收时机,再根据自身业务(非连接态业务)执行情况,将部分非连接态业务(第一业务)执行完成的时间到最近一次没有完成的非连接态业务(第二业务)的接收时机之间的间隔时间分配给处于连接态的SIM卡,以供处于连接态的SIM卡执行连接态业务使用,使得非连接态业务的接收时机能够按需占用终端硬件资源。
在本申请实施例中,终端根据非连接态业务的接收时机,灵活地向处于连接态的SIM卡分配连接态业务Gap,提高了分配连接态业务Gap的灵活性和准确性,降低了连接态业务被中断的时延。
请参阅图5,图5为本申请实施例提供的一种通信处理设备的结构示意图,具体如图5所示,所述通信处理设备,包括:存储装置501和处理器502;并且所述通信处理设备还可以包括数据接口503、用户接口504。各个硬件之间还可以通过各种类型的总线建立连接。
通过所述数据接口503,所述通信处理设备可以和其他终端、服务器等设备之间交互数据;所述用户接口504用于实现用户与所述通信处理设备之间的人机交互;所述用户接口504可提供触摸显示屏、物理按键等实现用户与所述通信处理设备之间的人机交互。
所述存储装置501可以包括易失性存储器(Volatile memory),例如随机存取存储器(Random-Access Memory,RAM);存储装置501也可以包括非易失性存储器(Non-Volatile Memory),例如快闪存储器(Flash Memory),固态硬盘(Solid-State Drive,SSD)等;存储装置501还可以包括上述种类的存储器的组合。
所述处理器502可以是中央处理器(Central Processing Unit,CPU)。所述处理器502还可以进一步包括硬件芯片。上述硬件芯片可以是专用集成电路(Application-Specific Integrated Circuit,ASIC),可编程逻辑器件(Programmable Logic Device,PLD)等。上述PLD可以是现场可编程逻辑门阵列(Field-Programmable Gate Array,FPGA),通用阵列逻辑(Generic Array Logic,GAL)等。
所述通信处理设备应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;
所述存储装置501,用于存储程序代码;
所述处理器502,在调用所述存储代码时,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
在一个实施例中,所述处理器502,具体用于获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
在一个实施例中,所述处理器502,具体用于若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
在一个实施例中,所述处理器502,具体用于根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
根据所述起始时间确定连接态业务时隙Gap。
在一个实施例中,所述非连接态业务包括:第一业务和第二业务;
所述处理器502,具体用于若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
其中,所述第三时间是指检测到所述第一业务执行完成的时间。
在一个实施例中,所述处理器502,具体用于将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
在一个实施例中,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
在一个实施例中,所述处理器502,具体用于若在第一接收时机内没有执行完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
在一个实施例中,所述处理器502,具体用于将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
其中,所述第二接收时机是距离第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
请参阅图6,图6为本申请实施例提供的一种通信处理装置的结构示意图,具体如图6所示,所述通信处理装置应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;所述通信处理装置包括:
获取模块601,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
确定模块602,用于根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务Gap通过第一SIM卡执行连接态业务。
在一个实施例中,所述获取模块601,具体用于获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
在一个实施例中,所述确定模块602,具体用于若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
在一个实施例中,所述确定模块602,具体用于根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
根据所述起始时间确定连接态业务时隙Gap。
在一个实施例中,所述非连接态业务包括:第一业务和第二业务;
所述确定模块602,具体用于若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
其中,所述第三时间是指检测到所述第一业务执行完成的时间。
在一个实施例中,所述确定模块602,具体用于将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
在一个实施例中,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
在一个实施例中,所述确定模块602,具体用于若在第一接收时机内没有执行完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
在一个实施例中,所述确定模块602,具体用于将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
其中,所述第二接收时机是距离所述第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
相应地,本发明实施例还提供一种计算机可读存储介质,所述计算机可读存储介质用于存储计算机程序,所述计算机程序使得计算机执行本申请步骤S201至S202、步骤S301至S303中任意实施例描述的方法。可以理解的是,此处的计算机存储介质既可以包括智能终端中的内置存储介质,当然也可以包括智能终端所支持的扩展存储介质。计算机存储介质提供存储空间,该存储空间存储了智能终端的操作系统。并且,在该存储空间中还存放了适于被处理器加载并执行的一条或一条以上的指令,这些指令可以是一个或一个以上的计算机程序(包括程序代码)。需要说明的是,此处的计算机存储介质可以是高速RAM存储器,也可以是非不稳定的存储器(Non-Volatile Memory),例如至少一个磁盘存储器;可选的还可以是至少一个位于远离前述处理器的计算机存储介质。
相应地,本申请实施例还提供一种芯片,所述芯片应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;
所述芯片,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
在一个实施例中,所述芯片在所述获取通过第二SIM卡执行非连接态业务的接收时机方面,具体用于获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
在一个实施例中,所述芯片在所述根据所述接收时机,确定连接态业务时隙Gap方面,具体用于若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间 是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
在一个实施例中,所述芯片在所述根据所述接收时机,确定连接态业务时隙Gap方面,具体用于根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
根据所述起始时间确定连接态业务时隙Gap。
在一个实施例中,所述非连接态业务包括:第一业务和第二业务;
所述芯片在所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间方面,具体用于若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
其中,所述第三时间是指检测到所述第一业务执行完成的时间。
在一个实施例中,所述芯片在所述根据所述起始时间确定连接态业务时隙Gap方面,具体用于将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
在一个实施例中,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
在一个实施例中,所述芯片在所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间方面,具体用于若在第一接收时机内没有执行完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
在一个实施例中,所述芯片在所述根据所述起始时间确定连接态业务时隙Gap方面,具体用于将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
其中,所述第二接收时机是距离所述第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
需要说明的是,所述芯片可以执行上述图2和图3中方法实施例中终端的相关步骤,具体可参见上述各个步骤所提供的实现方式,在此不再赘述。
在一个实施例中,上述芯片包括至少一个处理器、至少一个第一存储器和至少一个第二存储器;其中,前述至少一个第一存储器和前述至少一个处理器通过线路互联,前述第一存储器中存储有指令;前述至少一个第二存储器和前述至少一个处理器通过线路互联,前述第二存储器中存储前述方法实施例中需要存储的数据。
对于应用于或集成于芯片的各个装置、产品,其包含的各个模块可以都采用电路等硬件的方式实现,或者,至少部分模块可以采用软件程序的方式实现,该软件程序运行于芯片内部集成的处理器,剩余的(如果有)部分模块可以采用电路等硬件方式实现。
请参阅图7,图7为本申请实施例提供的一种模组设备的结构示意图,所述模组设备 应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述模组设备包括芯片模组701,其中:
所述芯片模组701,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
根据所述接收时机,确定连接态业务时隙Gap;
其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
在一个实施例中,所述芯片模组701在所述获取通过第二SIM卡执行非连接态业务的接收时机方面,具体用于获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
在一个实施例中,所述芯片模组701在所述根据所述接收时机,确定连接态业务时隙Gap方面,具体用于若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
在一个实施例中,所述芯片模组701在所述根据所述接收时机,确定连接态业务时隙Gap方面,具体用于根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
根据所述起始时间确定连接态业务时隙Gap。
在一个实施例中,所述非连接态业务包括:第一业务和第二业务;
所述芯片模组701在所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间方面,具体用于若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
其中,所述第三时间是指检测到所述第一业务执行完成的时间。
在一个实施例中,所述芯片模组701在所述根据所述起始时间确定连接态业务时隙Gap方面,具体用于将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
在一个实施例中,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
在一个实施例中,所述芯片模组701在所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间方面,具体用于若在第一接收时机内没有执行 完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
在一个实施例中,所述芯片模组701在所述根据所述起始时间确定连接态业务时隙Gap方面,具体用于将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
其中,所述第二接收时机是距离所述第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
本申请实施例中,所述模组设备还可包括通信接口(图7中未画出)。本申请实施例中不限定通信接口与芯片模组701之间的具体连接介质。本申请实施例在图7中以通信接口与芯片模组701之间通过总线702连接,总线在图7中以粗线表示,其它部件之间的连接方式,仅是进行示意性说明,并不引以为限。所述总线702可以分为地址总线、数据总线、控制总线等。为便于表示,图7中仅用一条粗线表示,但并不表示仅有一根总线或一种类型的总线。
以上所揭露的仅为本发明的部分实施例而已,当然不能以此来限定本发明之权利范围,本领域普通技术人员可以理解实现上述实施例的全部或部分流程,并依本发明权利要求所作的等同变化,仍属于发明所涵盖的范围。

Claims (14)

  1. 一种通信处理方法,其特征在于,所述方法应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述方法包括:
    在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
    根据所述接收时机,确定连接态业务时隙Gap;
    其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
  2. 如权利要求1所述的方法,其特征在于,所述获取通过第二SIM卡执行非连接态业务的接收时机,包括:
    获取目标非连接态业务对应的最近一次的接收时机,所述目标非连接态业务是指被确定的未被执行完成的非连接态业务。
  3. 如权利要求1所述的方法,其特征在于,所述根据所述接收时机,确定连接态业务时隙Gap包括:
    若检测到执行非连接态业务的触发事件,则将第一时间与第二时间之间的第一间隔时间段,确定为连接态业务时隙Gap;
    其中,所述第一时间是指检测到执行非连接态业务的触发事件的时间,所述第二时间是指距离第一时间最近的接收时机的起始时间;所述第一时间位于于第二时间之前。
  4. 如权利要求1所述的方法,其特征在于,所述根据所述接收时机,确定连接态业务时隙Gap包括:
    根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间;
    根据所述起始时间确定连接态业务时隙Gap。
  5. 如权利要求4所述的方法,其特征在于,所述非连接态业务包括:第一业务和第二业务;
    所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间,包括:
    若检测到所述第一业务执行完成,且检测到所述第二业务没有执行完成,则确定连接态业务时隙Gap的起始时间为所述第三时间;
    其中,所述第三时间是指检测到所述第一业务执行完成的时间。
  6. 如权利要求5所述的方法,其特征在于,所述根据所述起始时间确定连接态业务时隙Gap,包括:
    将所述第三时间与第四时间之间的第二间隔时间段,确定为连接态业务Gap;
    其中,所述第四时间是指距离所述第三时间最近的第二业务对应的接收时机的起始时间;所述第三时间位于所述第四时间之前。
  7. 如权利要求5或6所述的方法,其特征在于,所述第三时间位于所述第一业务对应的接收时机的起始时间与所述接收时机的结束时间之间。
  8. 如权利要求4所述的方法,其特征在于,所述根据所述接收时机和非连接态业务的执行状态,确定连接态业务时隙Gap的起始时间,包括:
    若在第一接收时机内没有执行完成非连接态业务,则确定连接态业务时隙Gap的起始时间为所述第一接收时机的结束时间。
  9. 如权利要求8所述的方法,其特征在于,所述根据所述起始时间确定连接态业务时隙Gap,包括:
    将所述第一接收时机的结束时间与第二接收时机的起始时间之间的第三间隔时间段,确定为连接态业务Gap;
    其中,所述第二接收时机是距离所述第一接收时机最近的非连接态业务对应的接收时机,所述第一接收时机位于所述第二接收时机之前。
  10. 一种通信处理设备,其特征在于,所述通信处理设备包括:存储装置和处理器,
    所述存储装置,用于存储程序代码;
    所述处理器,在调用所述存储代码时,用于执行如权利要求1-9任一项所述的通信处理方法。
  11. 一种通信处理装置,其特征在于,所述通信处理装置应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;所述通信处理装置包括:
    获取模块,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
    确定模块,用于根据所述接收时机,确定连接态业务时隙Gap;
    其中,所述终端被允许在所述连接态业务Gap通过第一SIM卡执行连接态业务。
  12. 一种计算机可读存储介质,其特征在于,所述计算机可读存储介质用于存储计算机程序,所述计算机程序使得计算机执行权利要求1-9任一项所述的通信处理方法。
  13. 一种芯片,其特征在于,所述芯片应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源;
    所述芯片,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
    根据所述接收时机,确定连接态业务时隙Gap;
    其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业 务。
  14. 一种模组设备,其特征在于,所述模组设备应用于终端中,所述终端设置有第一用户身份识别模块SIM卡和第二SIM卡,所述第一SIM卡和所述第二SIM卡分时复用所述终端的硬件资源,所述模组设备包括芯片模组,其中:
    所述芯片模组,用于在所述第一SIM卡处于连接态,所述第二SIM卡处于非连接态时,获取通过所述第二SIM卡执行非连接态业务的接收时机;
    根据所述接收时机,确定连接态业务时隙Gap;
    其中,所述终端被允许在所述连接态业务时隙Gap通过所述第一SIM卡执行连接态业务。
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