WO2018205941A1 - Procédé, appareil et système de traitement d'informations - Google Patents

Procédé, appareil et système de traitement d'informations Download PDF

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Publication number
WO2018205941A1
WO2018205941A1 PCT/CN2018/086069 CN2018086069W WO2018205941A1 WO 2018205941 A1 WO2018205941 A1 WO 2018205941A1 CN 2018086069 W CN2018086069 W CN 2018086069W WO 2018205941 A1 WO2018205941 A1 WO 2018205941A1
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WIPO (PCT)
Prior art keywords
short message
control
target
instruction
server
Prior art date
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PCT/CN2018/086069
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English (en)
Chinese (zh)
Inventor
朱忠磊
Original Assignee
Oppo广东移动通信有限公司
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Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Publication of WO2018205941A1 publication Critical patent/WO2018205941A1/fr

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72484User interfaces specially adapted for cordless or mobile telephones wherein functions are triggered by incoming communication events
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • H04L67/125Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04WWIRELESS COMMUNICATION NETWORKS
    • H04W4/00Services specially adapted for wireless communication networks; Facilities therefor
    • H04W4/12Messaging; Mailboxes; Announcements
    • H04W4/14Short messaging services, e.g. short message services [SMS] or unstructured supplementary service data [USSD]

Definitions

  • the embodiments of the present application relate to the field of communications, and in particular, to an information processing method, apparatus, and system.
  • the Find Phone feature is an accessibility feature available on your smartphone. When the user cannot find the mobile phone at home or the mobile phone is lost, at least one of the operations of locating, ringing, locking the mobile phone or erasing the mobile phone by finding the mobile phone function.
  • the server can use the short message control to implement the function of finding a mobile phone.
  • the user selects an operation on the control terminal (such as the user's computer), and the control terminal sends a control command for ringing to the server, and the server sends a control message to the controlled mobile phone according to the control command, and the control message is
  • the control command is carried in the control phone; after receiving the control message, the controlled mobile phone will ring according to the control instruction in the control message.
  • the embodiment of the present application provides an information processing method, device, and system, which can solve the problem that the short message reception may be delayed, resulting in abnormal execution of the controlled terminal service.
  • the technical solution is as follows:
  • an information processing method comprising:
  • the controlled terminal receives the first control short message sent by the server, where the first control short message belongs to the target control short message sequence maintained by the server, and the first control short message includes a first control command and a first short message serial number, the first The short message sequence number is used to indicate the order of the first control short message in the target control short message sequence;
  • the controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is the control short message that has been responded to by the controlled terminal in the target control short message sequence.
  • the second control short message includes a second control instruction and the second short message serial number, and the second short message serial number is used to indicate an order of the second control short message in the target control short message sequence;
  • the controlled terminal does not respond to the first control instruction.
  • the method before the controlled terminal detects whether the first short message sequence number is greater than the second short message sequence number of the second control short message, the method further includes:
  • the controlled terminal determines the latest response control short message as the second control short message.
  • each control message included in the target control short message sequence includes a control instruction having the same instruction type
  • the method further includes:
  • the controlled terminal determines one or more target control short messages, and the target control short message includes a control instruction of the same instruction type as the first control instruction;
  • the controlled terminal determines the latest response target control short message as the second control short message.
  • the first control message further carries a target user identifier
  • the method further includes:
  • the controlled terminal generates a controlled user identification code according to the bound user identifier of the controlled terminal and/or the device identifier of the controlled terminal;
  • the controlled terminal determines whether the target user identification code and the controlled user identification code match
  • the controlled terminal does not respond to the first control instruction.
  • an information processing method comprising:
  • each of the control short messages includes a corresponding control instruction and a short message serial number, wherein the short message serial number is used to indicate the order of the control short message in the target control short message sequence;
  • the server generates a first control short message, where the first control short message includes the first control instruction and the first short message serial number;
  • the server adds the first control short message to the target control short message sequence
  • the server sequentially sends the control short message in the target control short message sequence to the controlled terminal.
  • the server controls the short message sequence according to the target, and determines the first short message serial number corresponding to the first control instruction, including:
  • the server sums the short message number of the last control short message in the target control short message sequence with a predetermined value, and obtains the first short message serial number corresponding to the first control instruction;
  • the server uses the timestamp corresponding to the first control instruction as the first short message serial number.
  • the server maintains a plurality of control short message sequences including a target control short message sequence, and the control commands included in each control short message in the same control short message sequence have the same instruction type;
  • the server controls the short message sequence according to the target, and before determining the first short message serial number corresponding to the first control instruction, the server further includes:
  • the method further includes:
  • the server generates a target user identification code according to the user identifier and/or the device identifier;
  • the server generates a first control message, where the first control message includes the first control instruction and the first message sequence number includes:
  • the server generates a first control short message, where the first control short message includes the first control instruction, the first short message serial number, and the target user identification code.
  • an information processing apparatus comprising:
  • the short message receiving module is configured to receive a first control short message sent by the server, where the first control short message belongs to a target control short message sequence maintained by the server, and the first control short message includes a first control command and a first short message serial number.
  • the first short message sequence number is used to indicate the order of the first control short message in the target control short message sequence;
  • a sequence number detecting module configured to detect whether the first short message serial number is greater than a second short message serial number of the second control short message, where the second control short message is a control short message that has been responded by the controlled terminal in the target control short message sequence
  • the second control message includes a second control command and the second short message sequence, and the second short message sequence is used to indicate an order of the second control short message in the target control short message sequence;
  • the command response module is configured to not respond to the first control instruction when the first short message sequence number is smaller than the second short message sequence number.
  • the device further includes:
  • the first determining module is configured to determine the latest response control SMS as the second control SMS.
  • each control message included in the target control short message sequence includes a control instruction having the same instruction type
  • the device further includes:
  • a type determining module configured to determine an instruction type of the first control instruction
  • a second determining module configured to determine one or more target control short messages, where the target control short message includes a control instruction of the same instruction type as the first control instruction;
  • the third determining module is configured to determine the latest response target control short message as the second control short message.
  • the first control message further carries a target user identifier
  • the device further includes:
  • a first generating module configured to generate a controlled user identifier according to the bound user identifier of the controlled terminal and/or the device identifier of the controlled terminal;
  • An identifier determining module configured to determine whether the target user identifier and the controlled user identifier match
  • the command response module is configured to not respond to the first control instruction when the target user identification code and the controlled user identification code do not match.
  • an information processing apparatus comprising:
  • An instruction receiving module configured to receive a first control instruction sent by the control terminal, where the first control instruction is used to control the controlled terminal, the server maintains a target control short message sequence, and the target controls the short message sequence Include one or more control messages, each of the control messages includes a corresponding control command and a message sequence number, where the message sequence number is used to indicate an order of the control message in the target control message sequence;
  • a sequence number determining module configured to control a short message sequence according to the target, and determine a first short message serial number corresponding to the first control instruction
  • a short message generating module configured to generate a first control short message, where the first control short message includes the first control instruction and the first short message serial number;
  • a sequence adding module configured to add the first control short message to the target control short message sequence
  • the short message sending module is configured to sequentially send the control short message in the target control short message sequence to the controlled terminal.
  • the sequence number determining module is configured to sum the short message number of the last control short message in the target control short message sequence with a predetermined value, to obtain the first corresponding to the first control instruction. And a sequence number determining module, configured to use the timestamp corresponding to the first control instruction as the first short message serial number.
  • the device controls a plurality of control short message sequences including a target control short message sequence, and the control commands included in each control short message in the same control short message sequence have the same instruction type;
  • the device also includes:
  • a fourth determining module configured to determine, according to the instruction type of the first control instruction, that the first control instruction belongs to the target control short message sequence.
  • the apparatus further includes:
  • An identifier receiving module configured to receive a user identifier and/or a device identifier corresponding to the first control instruction
  • a second generating module configured to generate a target user identifier according to the user identifier and/or the device identifier
  • the short message generating module is configured to generate a first control short message, where the first control short message includes the first control instruction, the first short message serial number, and the target user identification code.
  • a controlled terminal comprising: a processor, a memory connected to the processor, and program instructions stored on the memory, the processor executing the program
  • the steps of the information processing method as described in the first aspect are implemented at the time of instruction.
  • a server comprising: a processor, a memory connected to the processor, and program instructions stored on the memory, the processor implementing the program instructions, such as The steps of the information processing method of the second aspect.
  • an information processing system includes: a server and at least one terminal;
  • the server includes the information processing apparatus according to the fourth aspect; the at least one terminal includes the information processing apparatus according to the third aspect;
  • the server is the server according to the sixth aspect; the terminal is the controlled terminal as described in the fifth aspect.
  • a computer readable medium having stored thereon program instructions, the program instructions being executed by a processor to implement the steps of the information processing method of the first aspect.
  • a ninth aspect is a computer readable medium having stored thereon program instructions, the program instructions being executed by a processor to implement the steps of the information processing method of the second aspect.
  • the controlled terminal Receiving, by the controlled terminal, the first control short message sent by the server, where the first control short message includes a first control command and a first short message serial number, where the first short message serial number is used to indicate the order of the first control short message in the target control short message sequence, If the short message number is smaller than the second short message serial number, the controlled terminal does not respond to the first control command, and the second control short message is the control short message in the target control short message sequence that has been responded by the controlled terminal, thereby solving the possibility that the short message receiving may be delayed.
  • the situation leads to the problem that the controlled terminal service performs abnormally; it is able to determine whether it is necessary to execute the control command in the control short message according to the short message serial number, and reduce or eliminate the possibility of abnormal execution of the service of the controlled terminal.
  • FIG. 1 is a schematic structural diagram of an information processing system according to various embodiments of the present application.
  • FIG. 3 is a flowchart of an information processing method provided by another embodiment of the present application.
  • FIG. 5 is a schematic diagram of an interface provided by another embodiment of the present application.
  • FIG. 6 is a schematic diagram of an interface provided by another embodiment of the present application.
  • FIG. 7 is a block diagram showing the structure of an information processing apparatus according to an embodiment of the present application.
  • FIG. 8 is a block diagram showing the structure of an information processing apparatus according to another embodiment of the present application.
  • FIG. 9 is a schematic structural diagram of a terminal according to an embodiment of the present disclosure.
  • FIG. 10 is a schematic structural diagram of a server according to an embodiment of the present application.
  • the server Since the short message reception may be delayed, for example, when the mobile phone is turned off, the server first sends a first control short message for locking the mobile phone, and then sends a second control short message for unlocking the mobile phone after a period of time; When the device is powered on, the second control message may be received and executed first, and then the first control message is received and executed, so that the phone is still locked and the service execution is abnormal.
  • the information processing method provided by the embodiment of the present application can solve the technical problem.
  • the information processing method provided by the embodiment of the present application can be applied to a scenario of a remote control terminal.
  • application scenarios are included:
  • another mobile phone B (or tablet or computer) is used to remotely control the mobile phone A to perform at least one of positioning, ringing, locking the mobile phone or erasing the data by means of short message.
  • User A uses mobile phone A and has a console program installed.
  • User B uses mobile phone B to install a controlled terminal program.
  • Mobile phone A remotely controls mobile phone B to perform an operation by sending a short message to help user B use mobile phone B. Or repair.
  • the user uses the mobile phone A to install the smart terminal control program, and at the same time set multiple smart home devices at home.
  • the mobile phone A performs a certain operation by remotely sending the smart home device by sending a short message.
  • FIG. 1 is a schematic structural diagram of an information processing system shown in an exemplary embodiment of the present application.
  • the information processing system includes a control terminal 120, a server 140, and a controlled terminal 160.
  • the control terminal 120 is connected to the server 140 via a wired network or a wireless network.
  • the server 140 is connected to the controlled terminal 160 through a short message channel.
  • the short message channel is a channel for transmitting and receiving short messages in the mobile communication network, and the short message channel can be realized by a circuit switching domain (CS domain) in the mobile communication network.
  • CS domain circuit switching domain
  • the control terminal 120 and the controlled terminal 160 may be a mobile phone, a tablet computer, a wearable electronic device, an e-book reader, an MP3 (Moving Picture Experts Group Audio Layer III) player, and an MP4 (Moving). Picture Experts Group Audio Layer IV, motion imaging experts compress standard audio layers 4) terminals such as players and laptops.
  • Control terminal 120 has the ability to send control commands.
  • the controlled terminal 160 has the ability to receive control text messages.
  • the server 140 may be a background server that controls an application to remotely control the controlled terminal by using a short message.
  • Applications for remotely controlling a controlled terminal include, but are not limited to, a remote control application in a corporate office scenario, a remote control application in a home mutual help scenario, a remote control application in a maintenance scenario, and a lookup mobile application. In this embodiment, an example is found by looking up a mobile phone application.
  • the server 140 can be a server, a server cluster composed of multiple servers, or a cloud computing center.
  • the server 140 has a background function for finding a mobile phone, such as storing user information, device information, finding user and device information, receiving and forwarding instructions, and the like.
  • the server 140 has a function of generating a control short message according to a control command of the control terminal 120, and transmitting a control short message to the controlled terminal 160.
  • control terminal 120 and the controlled terminal 160 are different terminals, and the controlled terminal 160 may also have more than one.
  • the control terminal 120 and the controlled terminal 160 may also be the same terminal, which is not limited in this embodiment.
  • FIG. 2 is a flowchart of a method of an information processing method illustrated by an exemplary embodiment of the present application. This embodiment is exemplified by applying the information processing method to the controlled terminal 160 shown in FIG. 1.
  • the information processing method includes:
  • Step 202 The controlled terminal receives the first control short message sent by the server, where the first control short message belongs to the target control short message sequence maintained by the server, and the first control short message includes the first control command and the first short message serial number, and the first short message serial number is used to indicate First controlling the order of the short messages in the target control short message sequence;
  • Step 204 The controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is the control short message that has been responded to by the controlled terminal in the target control short message sequence, and the second control short message includes the first a second control command and a second short message serial number, wherein the second short message serial number is used to indicate the order of the second control short message in the target control short message sequence;
  • Step 206 If the first short message sequence number is smaller than the second short message serial number, the controlled terminal does not respond to the first control instruction.
  • the controlled terminal If the first short message sequence number is smaller than the second short message serial number, the controlled terminal considers that the first control short message has expired or expired, and does not respond to the first control instruction.
  • the information processing method provided by the embodiment receives the first control short message sent by the server by the controlled terminal, and the first control short message belongs to the target control short message sequence maintained by the server, and the first control short message includes the first control instruction and The first short message serial number is used to indicate the order of the first control short message in the target control short message sequence; the controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is The target controls the control message that has been responded to by the controlled terminal in the short message sequence; if the first short message sequence number is smaller than the second short message serial number, the controlled terminal does not respond to the first control instruction, and the situation that the short message reception may be delayed may be solved, resulting in being The problem of abnormal operation of the control terminal is achieved; it is determined that the control command in the control short message needs to be executed according to the short message sequence number, thereby reducing the possibility of abnormal execution of the terminal service.
  • FIG. 3 is a flowchart of a method of an information processing method illustrated by another exemplary embodiment of the present application. This embodiment is exemplified by applying the information processing method to the server 140 shown in FIG. 1.
  • the information processing method includes:
  • Step 302 The server receives a first control instruction sent by the control terminal, where the first control instruction is used to control the controlled terminal, the server maintains a target control short message sequence, and the target control short message sequence includes one or more control short messages.
  • Each control message includes a corresponding control instruction and a short message serial number, and the short message serial number is used to indicate the order in which the control short message is controlled in the target control short message sequence;
  • Step 304 The server controls the short message sequence according to the target, and determines a first short message serial number corresponding to the first control instruction.
  • Step 306 The server generates a first control short message, where the first control short message includes a first control instruction and a first short message serial number;
  • Step 308 the server adds the first control short message to the target control short message sequence
  • Step 310 The server sequentially sends the control short message in the target control short message sequence to the controlled terminal.
  • the information processing method provided by the embodiment receives the first control command sent by the control terminal by the server, and the target control short message sequence is maintained in the server, and the target control short message sequence includes one or more control short messages, each of which The control short message includes a corresponding control instruction and a short message serial number; the server controls the short message sequence according to the target, and determines a first short message serial number corresponding to the first control instruction; the server generates a first control short message, where the first control short message includes the first control instruction and the first a short message serial number; the server adds the first control short message to the target control short message sequence; the server sequentially sends the control short message in the target control short message sequence to the controlled terminal, which solves the situation that the short message receiving may be delayed, resulting in the service execution of the controlled terminal The abnormal problem is achieved; the server determines the short message serial number of each control short message, so that the controlled terminal can determine whether it is necessary to execute the control instruction in the control short message according to the short message serial number, thereby reducing
  • FIG. 4 is a flowchart of a method of an information processing method illustrated by another exemplary embodiment of the present application. This embodiment is exemplified by applying the information processing method to the information processing system shown in FIG. 1.
  • the information processing method includes:
  • Step 401 The control terminal sends a first control instruction to the server.
  • control terminal When the user triggers a control operation on the control terminal, the control terminal generates a control command according to the control operation.
  • control terminal runs an application for remotely controlling the controlled terminal.
  • Applications for remotely controlling a controlled terminal include, but are not limited to, a remote control application in a corporate office scenario, a remote control application in a home mutual help scenario, a remote control application in a remote maintenance scenario, and a lookup mobile application.
  • a remote control application in a corporate office scenario a remote control application in a home mutual help scenario
  • a remote control application in a remote maintenance scenario a lookup mobile application.
  • an example is found by looking up a mobile phone application.
  • a search mobile application is run in the control terminal.
  • Finding a mobile app usually provides at least one of the functions of finding a phone and controlling a phone.
  • the user logs in to their user account in the Find Mobile app, which is the unique identifier that the user is looking for in the mobile app.
  • the bottom operation area of the user interface 001 of the mobile phone A includes a "play sound” control 002, a "locked mobile phone” control 003, a “change password” control 004, and an "erase data” control 005, and the user clicks " Play sound "control 002, mobile phone A generates a "play sound” control command.
  • the mobile phone A sends a control command of "playing sound” to the server.
  • the function is in a sending instruction state, and the icon changes to a waiting state to prompt the user that the controlled terminal is processing the instruction, preventing the user from clicking multiple times.
  • control terminal sends control information to the server through the communication network, where the control information includes: a device identifier of the control terminal, a user account, a device identifier of the controlled terminal, and a first control instruction.
  • the device identifier is represented by an International Mobile Equipment Identity (IMEI).
  • Step 402 The server receives a first control instruction sent by the control terminal.
  • the server receives control information sent by the control terminal through the communication network, where the control information includes: a device identifier of the control terminal, a user account, a device identifier of the controlled terminal, and a first control instruction. Then, the server extracts a first control instruction from the control information, and the first control instruction is used to control the controlled terminal.
  • the server further pre-stores a binding relationship (or an association relationship) between the user account and the device identifier of each terminal, and the server detects, according to the binding relationship, whether the control terminal has the control authority for the controlled terminal; When the control terminal has the control authority corresponding to the controlled terminal, the server performs the next step.
  • a binding relationship or an association relationship
  • Table 1 schematically shows the binding relationship between the user account and the device identification.
  • the user account Z1 has a binding relationship with the device identifier B1, the device identifier B2, and the device identifier B3. It is assumed that the terminal D1 corresponding to the device identifier B1 is the control terminal, the device identifier B1 of the user account Z1, the device ID B2 of the terminal D2, and the device identifier B3 of the terminal D3. With a binding relationship, the control terminal D1 has control authority for the controlled terminal D2 and the controlled terminal D3. User account Z2 is the same. When the control terminal D1 has the control authority corresponding to the controlled terminal D2, the server performs the next step.
  • control terminal does not have the control authority corresponding to the controlled terminal, the server does not perform the next step.
  • Step 403 The server controls the short message sequence according to the target, and determines the first short message serial number corresponding to the first control instruction.
  • the server maintains a target control short message sequence, and the target control short message sequence includes one or more control short messages, and each control short message includes a control command and a short message serial number.
  • the message sequence number is used to indicate the order in which the control message is in the target control message sequence.
  • the short message sequence number is represented by at least one of a number, a letter, a symbol, and a time stamp.
  • Table 2 schematically shows a target control short message sequence.
  • the target control short message sequence includes a plurality of control short messages: control short message X1, control short message X2, control short message X3 to control short message X10, and the corresponding short message serial numbers are sequentially sorted into: serial number 001, serial number 002, serial number 003 to serial number 010.
  • Table 3 schematically shows another target control short message sequence.
  • the server maintains a plurality of control short message sequences including a target control short message sequence: a control short message sequence L1, a control short message sequence L2 (target control short message sequence), and a control short message sequence L3, and each control short message sequence separately includes multiple control short message sequences. .
  • the server sends the control short message sent to all controlled terminals to be maintained in the same control short message sequence; in another possible implementation manner, the server controls each controlled terminal correspondingly.
  • the short message is separately maintained to the control short message sequence corresponding to the controlled terminal; for example, the control short message of the controlled terminal 1 is maintained in the control short message sequence 1; the control short message of the controlled terminal 2 is maintained in the control short message sequence 2 in.
  • the server maintains all control short messages in the same control short message sequence.
  • the server separately maintains multiple control short message sequences according to different types of instructions, and each control short message in the control short message sequence has a control instruction of the same instruction type; for example, carries a control instruction.
  • the control short message of the "playing sound” is maintained in the control short message sequence 1
  • the control short message carrying the control command "erasing data” is maintained in the control short message sequence 2.
  • Table 4 schematically shows a plurality of control short message sequences maintained by the server according to different types of instructions.
  • the user account Z1 and the device identifier B2 have a binding relationship, and the server maintains two control short message sequences according to different types of instructions sent to the controlled terminal B2: the control short message sequence L1 corresponding to the command type N1 and the command type N2 Control the SMS sequence L2.
  • the control short message sequence L1 includes: control short message M1, control short message M2 and control short message M3, control short message M1 corresponding to short message serial number N1-001, control short message M2 corresponding short message serial number N1-002, control short message M3 corresponding short message serial number N1-003.
  • the control short message sequence L2 includes: control short message S1, control short message S2 and control short message S3, control short message S1 corresponding to short message serial number N2-001, control short message S2 corresponding short message serial number N2-002, control short message S3 corresponding short message serial number N2-003.
  • the target control short message sequence is the control short message sequence maintained by the server, as shown in Table 2; when the server maintains at least two control short message sequences, the target control short message sequence is the server.
  • the server determines the target control short message sequence according to at least one of the user account, the device identifier, and the instruction type of the first control instruction.
  • the server After receiving the first control instruction, the server needs to allocate a short message serial number to the first control instruction to generate the first control short message.
  • the manner in which the server determines the first short message sequence number includes but is not limited to the following two types:
  • the server sums the short message number of the last control short message in the target control short message sequence with a predetermined value, and obtains the first short message serial number corresponding to the first control instruction.
  • the predetermined value is a positive number. As shown in Table 2, assuming that the predetermined value is 1, the last message number of the control short message is 010, and the last message number 010 of the control message is summed with the predetermined value 1 to obtain 011, and the first message sequence number corresponding to the first control command is obtained. 011.
  • the server uses the timestamp corresponding to the first control instruction as the first short message serial number.
  • the short message number can also be represented by a timestamp.
  • the timestamp of each control message in the target control short message sequence may be the time when the server receives the control command.
  • the server receives the first control command at 01:00 on June 01, 2017, and the server uses the time stamp 01:00 on June 01, 2017 as the first short message number 201706010100.
  • the corresponding examples are shown in Table 5.
  • Control command receiving time Control SMS SMS serial number May 20, 2017 09:00 Control SMS P1 201705200900 ?? .... .
  • the server controls multiple control message sequences including the target control short message sequence
  • the control commands included in each control short message in the same control short message sequence have the same instruction type, and the server determines that the first control instruction corresponds to
  • the steps of the first SMS serial number are as follows:
  • Step 1 The server determines, according to the instruction type of the first control instruction, the target control short message sequence to which the first control instruction belongs.
  • the instruction type of each control short message in the target control short message sequence is the same as the instruction type of the first control instruction.
  • the instruction type refers to the type of operation indicated by the control instruction.
  • the instruction type includes at least one of locating, changing a password, playing a sound, unlocking or locking the terminal, and erasing the data.
  • the server determines that the first control instruction belongs to the target control short message sequence L2.
  • Step 2 The server controls the short message sequence according to the target, and determines the first short message serial number corresponding to the first control instruction.
  • the server has determined that the first control instruction belongs to the target control short message sequence L2, and assuming that the predetermined value is 1, the server sums the short message number N2-003 of the last control short message in the target control short message sequence L2 with the predetermined value 1.
  • the first short message number corresponding to the first control instruction is N2-004.
  • Step 404 The server generates a first control short message, where the first control short message includes a first control instruction and a first short message serial number.
  • the server encodes the first control instruction and the first short message sequence to generate a control short message.
  • the server inserts the first short message number into the front, middle or back of the first control command.
  • control short message may carry the target user identification code in addition to the control command and the short message serial number, and the steps are as follows:
  • Step 1 The server receives the user identifier and/or the device identifier corresponding to the first control instruction.
  • the user identifier is a user account.
  • the controlled terminal and the control terminal are bound to the same user account.
  • the device identifier is used to uniquely identify the controlled terminal.
  • the device identifier is a physical device identifier of the controlled terminal, such as an IMEI.
  • the user identifier and/or the device identifier corresponding to the first control instruction may also be sent at the same time. For example, suppose the user account in the mobile phone A: YHJ login to find the mobile phone application, the user operates on the mobile phone A to control the mobile phone B, and when the mobile phone A sends the first control command for playing the sound to the server, the user account can also be sent: YHJ and IMEI B of mobile phone B.
  • Step 2 The server generates a target user identifier according to the user identifier and/or the device identifier.
  • the target user identifier is a user identifier, a device identifier, a user identifier, and a device identifier, a value calculated by a predetermined algorithm on the user identifier, a value calculated by a predetermined algorithm on the device identifier, or a user identifier and a device identifier by a predetermined algorithm. Calculated value. For example, after the user identifier and the device identifier are hashed, an MD5 value is generated, and the MD5 value is used as the target user identifier.
  • Step 3 The server generates a first control short message, where the first control short message includes a first control instruction, a first short message serial number, and a target user identification code.
  • control instruction includes: a positioning instruction, a ringing instruction, a locking instruction, and an erasing data instruction
  • the instruction identifier corresponding to the positioning instruction is 12
  • the instruction identifier corresponding to the ringing instruction is 15,
  • the locking instruction corresponds to
  • the instruction identifier is 48
  • the instruction identifier corresponding to the erase data instruction is 51.
  • the format of the control message is: 0
  • 0 indicates that the short message is a downlink short message sent by the server to the controlled terminal
  • the uniqueId is the MD5 value corresponding to the user identifier and the device identifier
  • the msgId is the short message serial number
  • the msg is the reserved field.
  • the msg can carry the specific content. You can also not carry specific content.
  • the first control instruction is a lock instruction
  • the server generates a first control short message of 048IMEIB N2-004, wherein 48 is an instruction identifier of the lock instruction, IMEIB is the IMEI of the mobile phone B, and N2-004 is the first short message serial number. .
  • Step 405 The server adds the first control short message to the target control short message sequence.
  • the server adds the control short message S4 (first control short message) corresponding to the short message serial number (first short message serial number) N2-004 to the target control short message sequence L2.
  • Step 406 The server sequentially sends the control short message in the target control short message sequence to the controlled terminal.
  • Sending in sequence means that the server sends a control message to the controlled terminal according to the order in which the control message is in the target control sequence. For example, the server sends a control message to the controlled terminal according to the size of the order.
  • the present embodiment does not limit the order between step 406 and the aforementioned steps.
  • the server sends the control message with the same sorting, the control message with the lower order can be generated at the same time.
  • Step 407 The controlled terminal receives the first control short message sent by the server.
  • the controlled terminal refers to a terminal for executing a control instruction corresponding to the control short message.
  • the controlled terminal runs a host application for remote control.
  • the host application for remote control includes but is not limited to: the host application in the enterprise office scene, the host application in the home mutual help scenario, the host application in the remote maintenance scenario, and the search for the mobile phone. application. In this embodiment, an example is found by looking up a mobile phone application.
  • a search mobile application is run in the controlled terminal.
  • Finding a mobile app usually provides at least one feature for finding and controlling a phone.
  • the Find Mobile app the user logs in to their user account in the Find Mobile app, which is the unique identifier that the user is looking for in the mobile app.
  • Step 408 The controlled terminal determines the latest response control short message as the second control short message.
  • the controlled terminal determines a latest control short message as the second control short message according to the response time.
  • the step includes the following steps:
  • step one the controlled terminal determines the instruction type of the first control instruction.
  • the controlled terminal determines the instruction type of the first control instruction according to the instruction identifier in the first control short message.
  • the first control short message is 048IMEIBN2-004.
  • the controlled terminal determines that the instruction type of the first control instruction is a lock instruction.
  • Step 2 The controlled terminal determines one or more target control short messages, and the target control short message includes a control instruction having the same instruction type as the first control instruction.
  • the controlled terminal determines one or more target control short messages from the plurality of control short messages that have been responded: the target control short message S1, the target control short message S2, and the target control short message S3.
  • the instruction types of the three control instructions in the control SMS are all N2.
  • Step 3 The controlled terminal determines the latest response target control short message as the second control short message.
  • the controlled terminal determines the latest response target control message S3 as the second control message.
  • the controlled terminal determines the second control short message
  • the second short message serial number in the second control short message is obtained.
  • the controlled terminal acquires the second short message number N2-003 according to the control short message S3.
  • Step 409 The controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message.
  • the second control short message is a control short message in the target control short message sequence that has been responded by the controlled terminal, the second control short message includes a second control command and a second short message serial number, and the second short message serial number is used to indicate that the second control short message is in the target control The order in the SMS sequence.
  • the mobile phone B receives a control message for changing the password at 9:00, and the serial number of the control message for changing the password is 99.
  • the mobile phone B receives a control message for playing the sound.
  • the sequence number of the control message for playing the sound is 100, the second message number is 100, and the first message number is 99.
  • the mobile phone B detects whether the first short message serial number 99 is greater than the second short message serial number 100.
  • the mobile phone B receives a control message for changing the password at 9:00, and the serial number of the control message for changing the password is 99.
  • the SMS number of the latest response control SMS is 98, and the mobile phone B detects whether the serial number 99 of the control SMS is greater than the SMS number 98 of the latest response control SMS.
  • Step 410 If the first short message number is smaller than the second short message serial number, the controlled terminal does not respond to the first control instruction.
  • the mobile phone B when the mobile phone B detects that the first short message number 99 is smaller than the second short message serial number 100, the mobile phone B does not respond to the control command for changing the password.
  • the first short message number is N2-002
  • the second short message serial number is N2-003.
  • the first short message serial number N2-002 is smaller than the second short message serial number N2-003, and the controlled terminal does not Responding to the first control instruction.
  • the short message number is determined according to the generated number of the control short message or the receiving time stamp of the control command. Therefore, when the first short message sequence number is smaller than the second short message serial number, the controlled terminal may first consider that the controlled terminal first receives the control short message with a late sending time. .
  • the first control short message has an abnormal situation during transmission, and the abnormal situation includes at least one of delay, interception, and tampering.
  • the controlled terminal may consider that the first control short message has expired or expired, and does not execute the first control instruction.
  • Step 411 If the first short message number is greater than the second short message serial number, the controlled terminal responds to the first control instruction.
  • the mobile phone B when the mobile phone B detects that the first short message number 99 is greater than the second short message serial number 98, the mobile phone B responds to the control command for changing the password.
  • the first short message number is N2-004
  • the second short message serial number is N2-003.
  • the first short message serial number N2-004 is greater than the second short message serial number N2-003, and the controlled terminal responds.
  • the first control instruction is the first short message serial number N2-004.
  • the number of the short message is determined according to the number and/or the time of controlling the short message in the history control short message sequence. Therefore, when the first short message serial number is greater than the second short message serial number, the first control short message may be regarded as a normally received control short message.
  • the control terminal executes the first control instruction.
  • the mobile phone B responds to the first control command: playing the sound, and the "play sound" control 002 in the user interface of the mobile phone A becomes the icon 006 of "playing successfully”.
  • the controlled terminal may further determine whether to respond to the first control instruction according to whether the target user identification code matches the controlled user identification code, and then, step 411 Previously, the following steps were included:
  • Step 1 The controlled terminal generates a controlled user identification code according to the user identifier bound by the controlled terminal and/or the device identifier of the controlled terminal.
  • the controlled user ID is: the user ID bound to the controlled terminal, the device identifier of the controlled terminal, the user identifier and the device identifier, the value calculated by the predetermined algorithm for the user identifier, and the device identifier calculated by the predetermined algorithm.
  • the value, or the value calculated by the predetermined algorithm for the user identification and the device identification are hashed to generate an MD5 value, and the MD5 value is used as the controlled user identifier.
  • binding in this embodiment may also be understood as meanings such as login, association, and the like.
  • Step 2 The controlled terminal determines whether the target user identifier and the controlled user identifier match.
  • whether the target user identifier and the controlled user identifier match or not means that the target user identifier and the controlled user identifier are the same.
  • Step 3 If the target user identification code and the controlled user identification code do not match, the controlled terminal does not respond to the first control instruction.
  • the control short message is erroneously transmitted, and the controlled terminal does not respond to the first control instruction.
  • the mobile phone A and mobile phone B are equipped with a search mobile phone application, and use the same user account A to log in; user A accidentally If the mobile phone B is lost, the user B obtains the mobile phone B, and erases the data information about the user account A on the mobile phone B; the user B uses his own user account B to log in to the mobile phone B.
  • the mobile phone B still retains the original user A
  • the mobile phone SIM card K but due to the change of the user account, the mobile phone B determines that the user account A does not match the user account B, then the mobile phone B does not respond to the first control instruction.
  • the first control command is an erase data command.
  • the mobile phone A cannot control the mobile phone B to delete the data information about the user account B, so the data information of other users is not deleted by mistake.
  • the mobile phone A has two terminals, mobile phone A and mobile phone B. Both mobile phone A and mobile phone B are equipped with a search mobile phone application, and use the same user account A to log in; user A is careless. Lost phone B, user B gets phone B. User B unplugs the mobile phone card K into the mobile phone C. Since the user account B of the mobile phone C does not match the user account A, and the IMEIC does not match the IMEIB, the mobile phone C does not respond to the first control command.
  • the first control command is an erase data command, and the mobile phone A cannot control the mobile phone C to delete the data information about the user account B and/or the mobile phone C, so the data on other user accounts and/or other mobile phones are not accidentally deleted. information.
  • the information processing method provided by the embodiment receives the first control short message sent by the server by the controlled terminal, and the first control short message belongs to the target control short message sequence maintained by the server, and the first control short message includes the first control instruction and The first short message serial number is used to indicate the order of the first control short message in the target control short message sequence; the controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is The target controls the control short message in the short message sequence that has been responded by the controlled terminal; if the first short message serial number is smaller than the second short message serial number, the controlled terminal does not respond to the first control command, thereby solving the situation that the short message receiving may be delayed, resulting in being The problem of abnormal operation of the control terminal is achieved; it is determined that the control command in the control short message needs to be executed according to the short message sequence number, thereby reducing the possibility of abnormal execution of the terminal service.
  • the terminal after changing the user account is not mistakenly controlled.
  • the effect of not controlling the other terminals inserted by the original SIM card is achieved.
  • the other terminal has the same device identifier as the original terminal, even if the original SIM card is inserted into the other terminal, the effect of the other terminals inserted by the original card is not mistakenly controlled. .
  • FIG. 7 is a structural block diagram of an information processing apparatus according to an embodiment of the present application.
  • the information processing apparatus can be controlled by the software, the hardware, or a combination of the two to be controlled in the information processing system shown in FIG. 1 . Part or all of the terminal.
  • the information processing apparatus may include:
  • the short message receiving module 720 is configured to receive a first control short message sent by the server, where the first control short message belongs to a target control short message sequence maintained by the server, and the first control short message includes a first control instruction and a first short message serial number, where the first short message serial number is used Representing the order in which the first control short message is in the target control short message sequence;
  • the serial number detecting module 740 is configured to detect whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is the control short message that has been responded to by the controlled terminal in the target control short message sequence, and the second control short message includes a second control instruction and a second short message serial number, wherein the second short message serial number is used to indicate an order of the second control short message in the target control short message sequence;
  • the command response module 760 is configured to not respond to the first control instruction when the first short message sequence number is less than the second short message sequence number.
  • the device further includes:
  • the first determining module is configured to determine the latest response control SMS as the second control SMS.
  • control instructions included in each control short message in the target control short message sequence have the same instruction type
  • the device also includes:
  • a type determining module configured to determine an instruction type of the first control instruction
  • a second determining module configured to determine one or more target control short messages, where the target control short message includes a control instruction of the same instruction type as the first control instruction;
  • the third determining module is configured to determine the latest response target control short message as the second control short message.
  • the first control message further carries a target user identifier
  • the device further includes:
  • a first generating module configured to generate a controlled user identifier according to the bound user identifier of the controlled terminal and/or the device identifier of the controlled terminal;
  • An identifier determination module configured to determine whether the target user identifier and the controlled user identifier match
  • the command response module is configured to not respond to the first control instruction when the target user identifier and the controlled user identifier do not match.
  • the information processing apparatus receives the first control short message sent by the server through the controlled terminal, and the first control short message belongs to the target control short message sequence maintained by the server, and the first control short message includes the first control instruction and The first short message serial number is used to indicate the order of the first control short message in the target control short message sequence; the controlled terminal detects whether the first short message serial number is greater than the second short message serial number of the second control short message, and the second control short message is The target controls the control message that has been responded to by the controlled terminal in the short message sequence; if the first short message sequence number is smaller than the second short message serial number, the controlled terminal does not respond to the first control instruction, and the situation that the short message reception may be delayed may be solved, resulting in being The problem of abnormal operation of the control terminal is achieved; it is determined that the control command in the control short message needs to be executed according to the short message sequence number, thereby reducing the possibility of abnormal execution of the terminal service.
  • the controlled terminal determines whether the target user identification code and the controlled user identification code match; if the target user identification code and the controlled user identification code do not match, the controlled terminal does not respond to the first control instruction. When the target user identification code and the controlled user identification code do not match, the controlled terminal does not respond to the control instruction, and does not continue to perform detection of other information, thereby saving the effect of computing resources.
  • the terminal after changing the user account is not mistakenly controlled.
  • FIG. 8 is a structural block diagram of an information processing apparatus according to an embodiment of the present application.
  • the information processing apparatus can be implemented as a server in the information processing system shown in FIG. 1 by software, hardware, or a combination of both. Part or all.
  • the information processing apparatus may include:
  • the instruction receiving module 810 is configured to receive a first control instruction sent by the control terminal, where the first control instruction is used to control the controlled terminal, the target control short message sequence is maintained in the server, and the target control short message sequence includes one or more Controlling the short message, each control message includes a corresponding control instruction and a short message serial number, and the short message serial number is used to indicate the order in which the control short message is controlled in the target control short message sequence;
  • the sequence number determining module 820 is configured to control the short message sequence according to the target, and determine the first short message serial number corresponding to the first control instruction;
  • the short message generating module 830 is configured to generate a first control short message, where the first control short message includes a first control instruction and a first short message serial number;
  • the sequence adding module 840 is configured to add the first control short message to the target control short message sequence
  • the short message sending module 850 is configured to sequentially send the control short message in the target control short message sequence to the controlled terminal.
  • the sequence number determining module 820 is configured to sum the short message number of the last control short message in the target control short message sequence and the predetermined value to obtain the first short message serial number corresponding to the first control instruction; or the sequence number determining module 820 is configured to be the first The timestamp corresponding to the control instruction is used as the first short message serial number.
  • the server maintains a plurality of control short message sequences including a target control short message sequence, and the control commands included in each control short message in the same control short message sequence have the same instruction type;
  • the device also includes:
  • the fourth determining module is configured to determine, according to the instruction type of the first control instruction, that the first control instruction belongs to the target control short message sequence.
  • the device further includes:
  • An identifier receiving module configured to receive a user identifier and/or a device identifier corresponding to the first control instruction
  • a second generating module configured to generate a target user identifier according to the user identifier and/or the device identifier
  • the short message generating module is configured to generate a first control short message, where the first control short message includes a first control instruction, a first short message serial number, and a target user identification code.
  • the information processing apparatus receives the first control command sent by the control terminal through the server, and the target control short message sequence is maintained in the server, and the target control short message sequence includes one or more control short messages, each of which The control short message includes a corresponding control instruction and a short message serial number; the server controls the short message sequence according to the target, and determines a first short message serial number corresponding to the first control instruction; the server generates a first control short message, where the first control short message includes the first control instruction and the first a short message serial number; the server adds the first control short message to the target control short message sequence; the server sequentially sends the control short message in the target control short message sequence to the controlled terminal, which solves the situation that the short message receiving may be delayed, resulting in the service execution of the controlled terminal The abnormal problem is achieved; the server determines the short message serial number of each control short message, so that the controlled terminal can determine whether it is necessary to execute the control instruction in the control short message according to the short message serial number, thereby reducing
  • the user identifier and/or the device identifier corresponding to the first control instruction are received; the target user identifier is generated according to the user identifier and/or the device identifier; and the first control short message is generated, where the first control message includes the first control instruction, The first short message serial number and the target user identification code; when the controlled terminal determines that the target user identification code and the controlled user identification code do not match, the controlled terminal does not respond to the control instruction, and does not continue to perform detection of other information, thereby saving Calculate the effect of the resource.
  • the information processing apparatus provided by the foregoing embodiment only illustrates the division of each functional module described above when processing information. In actual applications, the function allocation may be completed by different functional modules as needed. The internal structure of the terminal or server is divided into different functional modules to perform all or part of the functions described above.
  • the information processing apparatus and the information processing method embodiment provided in the foregoing embodiments are in the same concept, and the specific implementation process is described in detail in the method embodiment, and details are not described herein again.
  • FIG. 9 is a schematic structural diagram of a terminal involved in an exemplary embodiment of the present application.
  • the terminal includes: the terminal includes a processor 911, a receiver 912, a transmitter 913, a memory 914, and a bus 915.
  • the processor 911 includes one or more processing cores.
  • the memory 914 is coupled to the processor 911 via a bus 915 for storing program instructions.
  • the processor 911 executes the instructions shown in FIGS. 2 and 4 when executing program instructions in the memory 914. The steps of the information processing method on the terminal side in the embodiment.
  • Receiver 912 and transmitter 913 can be implemented as a communication component, which can be a communication chip for modulating and/or demodulating information and receiving or transmitting the information over a wireless signal.
  • memory 914 can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable In addition to Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM Programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk
  • Optical Disk Optical Disk
  • the terminal may include more or fewer components.
  • the terminal may not include a transmitter, or the terminal may further include other components such as a sensor, a display, a power supply, and the like. Let me repeat.
  • the embodiment of the present application further provides a computer readable medium storing program instructions thereon.
  • program instructions When the program instructions are executed by the processor 911, the steps of the information processing method on the terminal side in the method embodiment shown in FIG. 2 and FIG. 4 are implemented.
  • FIG. 10 is a block diagram showing a structure of a server provided by an exemplary embodiment of the present application.
  • the server includes a processor 921, a receiver 922, a transmitter 923, a memory 924, a bus 925, and a network interface 926.
  • the processor 921 includes one or more processing cores.
  • the memory 924 is coupled to the processor 921 via a bus 925 for storing program instructions.
  • the processor 921 executes the instructions shown in FIGS. 3 and 4 when executing program instructions in the memory 924. The steps of the information processing method on the server side in the embodiment.
  • Receiver 922 and transmitter 923 can be implemented as a communication component, which can be a communication chip for modulating and/or demodulating information and receiving or transmitting the information over a wireless signal.
  • the receiver 922 and the transmitter 923 can alternatively be implemented as a network interface 926 through which the server is connected to the short message transmitting platform to send and receive short messages through the short message transmitting platform.
  • memory 924 can be implemented by any type of volatile or non-volatile storage device, or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read only memory (EEPROM), erasable In addition to Programmable Read Only Memory (EPROM), Programmable Read Only Memory (PROM), Read Only Memory (ROM), Magnetic Memory, Flash Memory, Disk or Optical Disk.
  • SRAM static random access memory
  • EEPROM electrically erasable programmable read only memory
  • EPROM Programmable Read Only Memory
  • PROM Programmable Read Only Memory
  • ROM Read Only Memory
  • Magnetic Memory Flash Memory
  • Disk Disk
  • Disk Disk or Optical Disk
  • the server may include more or less components, such as the server also includes other components such as an I/O interface such as a keyboard and a mouse, a power supply, and the like, which will not be described in this embodiment. .
  • the embodiment of the present application further provides a computer readable medium storing program instructions thereon.
  • program instructions When the program instructions are executed by the processor 921, the steps of the server side information processing method in the method embodiments shown in FIG. 3 and FIG. 4 are implemented.
  • a person skilled in the art may understand that all or part of the steps of implementing the above embodiments may be completed by hardware, or may be instructed by a program to execute related hardware, and the program may be stored in a computer readable storage medium.
  • the storage medium mentioned may be a read only memory, a magnetic disk or an optical disk or the like.

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Abstract

L'invention concerne un procédé, un appareil, et un système de traitement d'informations, appartenant au domaine technique des communications. Le procédé comprend les étapes suivantes : un terminal commandé reçoit un premier message court de commande envoyé par un serveur, le premier message court de commande étant une séquence de message court de commande cible conservée par le serveur, et le premier message court de commande comprenant une première instruction de commande et un premier numéro de message court ; le terminal commandé détecte si le premier numéro de message court est supérieur à un second numéro de message court d'un second message court de commande, le second message court de commande étant un message court de commande auquel le terminal commandé a répondu dans la séquence de message court de commande cible ; et si le premier numéro de message court est inférieur au second numéro de message court, le terminal commandé ne répond pas à la première instruction de commande. Selon le procédé, un problème d'exécution de service anormale par le terminal commandé provoqué par la réception de message court retardé est résolu ; et s'il faut exécuter l'instruction de commande dans le message court de commande est déterminé en fonction du nombre de messages courts, réduisant ou éliminant la possibilité d'une exécution anormale de service par le terminal commandé.
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