WO2018090381A1 - 接入端间的连接装置和无线通信设备 - Google Patents

接入端间的连接装置和无线通信设备 Download PDF

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Publication number
WO2018090381A1
WO2018090381A1 PCT/CN2016/106665 CN2016106665W WO2018090381A1 WO 2018090381 A1 WO2018090381 A1 WO 2018090381A1 CN 2016106665 W CN2016106665 W CN 2016106665W WO 2018090381 A1 WO2018090381 A1 WO 2018090381A1
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WO
WIPO (PCT)
Prior art keywords
access
connection
access terminal
modem
control
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Application number
PCT/CN2016/106665
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English (en)
French (fr)
Inventor
丁玉江
杨玉巍
Original Assignee
深圳前海达闼云端智能科技有限公司
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 深圳前海达闼云端智能科技有限公司 filed Critical 深圳前海达闼云端智能科技有限公司
Priority to PCT/CN2016/106665 priority Critical patent/WO2018090381A1/zh
Priority to CN201680002945.4A priority patent/CN107005261A/zh
Publication of WO2018090381A1 publication Critical patent/WO2018090381A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04BTRANSMISSION
    • H04B1/00Details of transmission systems, not covered by a single one of groups H04B3/00 - H04B13/00; Details of transmission systems not characterised by the medium used for transmission
    • H04B1/38Transceivers, i.e. devices in which transmitter and receiver form a structural unit and in which at least one part is used for functions of transmitting and receiving
    • H04B1/3816Mechanical arrangements for accommodating identification devices, e.g. cards or chips; with connectors for programming identification devices
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/0249Details of the mechanical connection between the housing parts or relating to the method of assembly
    • 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

Definitions

  • the present invention relates to the field of wireless communication technologies, and in particular, to a connection device and a wireless communication device between access terminals.
  • the SIM card access end is realized through a connection between a SIM (Subscriber Identification Module) card access terminal and a Modem (Modulator-Demodulator) access terminal.
  • SIM Subscriber Identification Module
  • Modem Modem-Demodulator
  • the access terminal is the SIM card access terminal and the modem access terminal.
  • the current connection method between the access terminals is as follows: the SIM card access terminal is connected to the Modem access terminal in advance, and the SIM card access terminal is connected. After the SIM card is connected to the Modem, the connected SIM card is connected to the Modem connected through the connection between the SIM card access terminal and the Modem access terminal.
  • the wireless communication device includes a SIM card access terminal A and a Modem access terminal A, and the SIM card access terminal A is connected to the Modem access terminal A in advance, and the SIM card access terminal A is connected to the SIM card A. After the Modem access terminal A accesses Modem A, the SIM card A is connected to the Modem A through the connection between the SIM card access terminal A and the Modem access terminal A.
  • the fixed connection between the SIM card and the Modem is not conducive to the rational use of the Modem.
  • the wireless communication device is a dual-card smart phone, and the dual-card smart phone is connected to two Modem access terminals (Modem access terminal A and Modem access terminal B), and two SIM card access terminals (SIM card access terminal). A and SIM card access terminal B), wherein Modem access terminal A supports dual card dual standby.
  • the SIM card access terminal A is connected to the Modem access terminal A in advance, and the SIM card access terminal B is also connected to the Modem access terminal A.
  • Modem access terminal A accesses Modem A
  • SIM card access terminal A accesses SIM card A
  • SIM card access terminal B accesses SIM card B
  • Modem access terminal B does not access any Modem
  • SIM card A It will be connected to Modem A through the connection between the SIM card access terminal A and the Modem access terminal A.
  • the SIM card B is connected to the Modem A through the connection between the SIM card access terminal B and the Modem access terminal A.
  • the connection between the SIM card access terminal and the Modem access terminal does not change. Therefore, the SIM card A still passes through the SIM card access terminal A and the Modem. The connection between access terminals A is connected to Modem A. The SIM card B is still connected to the Modem A through the connection between the SIM card access terminal B and the Modem access terminal A. In this case, there is no SIM card access terminal connected to the Modem access terminal B, and there is no SIM card connected to the Modem B, which causes the Modem B to be idle and waste resources.
  • the SIM card access terminal A is connected to the Modem access terminal A in advance, and the SIM card access terminal B is connected to the Modem access terminal B. At this time, the dual card dual standby function of the Modem access terminal A cannot be utilized well. If you want to use its dual card dual standby function, you need to introduce SIM card access terminal C to achieve.
  • the embodiment of the present invention provides a connection device between the access terminals and a wireless communication device.
  • an embodiment of the present invention provides a connection device between access terminals, where the device is applied to a wireless communication device, where the wireless communication device includes m first access terminals and n second access terminals.
  • the device includes: a connection control module, and a connection execution module; wherein n is greater than or equal to 2;
  • connection execution module includes m*n control switches
  • Each of the first access terminals corresponds to n control switches and n second access terminals, and one end of each of the n control switches is connected to the first access end, and the other end is connected one to one.
  • connection control module is connected to the connection execution module, and configured to send a control signal to the connection execution module to control on and off of each control switch in the connection execution module;
  • connection execution module is configured to: turn on and off a corresponding control switch according to the received control signal
  • the first access end is a SIM card access end of the customer identification module
  • the second access end is a modem Modem access end
  • the second access end is a SIM card access end.
  • the first access end is a Modem access end.
  • the embodiment of the present invention provides a wireless communication device, where the wireless communication device includes m first access terminals and n second access terminals, where the wireless communication device further includes The connection device between the access terminals described in the first aspect.
  • the device provided by the embodiment of the present invention includes: a connection control module, and a connection execution module, wherein the connection execution module includes m*n control switches, and the connection control module is connected to the connection execution module, and is configured to send a control signal to the connection execution module.
  • the connection execution module is configured to switch on and off the corresponding control switch according to the received control signal, thereby realizing that the connection connection execution terminal is not required, but the control connection execution module According to the situation of each access terminal, a control signal is sent to the connection execution module, and the on/off function of each control switch in the connection execution module is dynamically controlled, thereby implementing flexible connection between the access terminals.
  • FIG. 1 is a schematic structural diagram of a wireless communication device connected to a SIM card access end and a Modem access end according to an embodiment of the present invention
  • FIG. 2 is a schematic structural diagram of a wireless communication device A according to an embodiment of the present invention.
  • FIG. 3 is a schematic flowchart of a connection method between access terminals according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a connection manner between access terminals according to an embodiment of the present invention.
  • FIG. 5 is a schematic structural diagram of a wireless communication device B according to an embodiment of the present invention.
  • FIG. 6 is a schematic flowchart of another connection method between access terminals according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of another connection manner between access terminals according to an embodiment of the present invention.
  • FIG. 8 is a schematic structural diagram of a connection device between access terminals according to an embodiment of the present invention.
  • FIG. 9 is a schematic structural diagram of another connection device between access terminals according to an embodiment of the present invention.
  • FIG. 10 is a schematic structural diagram of a wireless communication device according to an embodiment of the present invention.
  • FIG. 11 is a schematic structural diagram of another wireless communication device according to an embodiment of the present invention.
  • connection method between the access terminals is: pre-fixing the connection relationship between the access terminals.
  • the method is not suitable for the reasonable utilization of the access terminal.
  • the present invention provides a connection device and a wireless communication device between the access terminals, wherein the wireless communication device provided by the present invention includes the connection device between the access terminals provided by the present invention, and the device includes: connection control a module, a connection execution module, wherein the connection execution module includes m*n control switches, and the connection control module is connected to the connection execution module, and is configured to send a control signal to the connection execution module to control each control switch in the connection execution module.
  • the connection execution module is configured to switch on and off the corresponding control switch according to the received control signal, thereby implementing the connection connection execution module to connect according to the situation of each access terminal.
  • the execution module sends a control signal to dynamically control the on/off function of each control switch in the connection execution module, thereby implementing a flexible connection between the access terminals.
  • the wireless communication device provided by the present invention includes, in addition to the connection device between the access terminals provided by the present invention, m first access terminals and n second access terminals, wherein the first access terminal is The SIM card access end, the second access end is a Modem access end; or the second access end is a SIM card access end, the first access end is a Modem access end, and n is greater than or equal to 2.
  • the SIM card access terminal may be located inside the wireless communication device, or may be located outside the wireless communication device, wherein the specific manner of being located outside the wireless communication device may be: located on the outer casing of the wireless communication device, as shown in FIG. As shown in (a), it may be located at another location unrelated to the wireless communication device, as long as it is connected to the wireless communication device, as shown in FIG. 1(b).
  • any SIM card access end is located at the location of the wireless communication device, and has no effect on the location of other SIM card access terminals in the wireless communication device.
  • Each SIM card access terminal can access the SIM physical card.
  • one SIM card access terminal can only be connected to the same Modem access terminal.
  • SIM card access terminal is a SIM card slot.
  • the Modem access terminal may be located inside the wireless communication device, or may be located outside the wireless communication device.
  • the specific implementation manner of the wireless communication device may be located on the outer casing of the wireless communication device, as shown in FIG. 1 . As shown in (c), it may be located at another location independent of the wireless communication device, as long as it is connected to the wireless communication device, as shown in FIG. 1(d).
  • any Modem access terminal is located at the location of the wireless communication device, and has no effect on the location of other Modem access terminals in the wireless communication device.
  • one Modem access terminal may be connected to multiple SIM card access terminals.
  • Modem access terminal is the SMART PORT access terminal.
  • the following is a wireless communication device including a connection device between the m first access terminals, the n second access terminals, and the access terminals, and the first access terminal is a SIM card access terminal, and the second access terminal is The Modem access terminal, where n is greater than or equal to 2, is an example of a specific implementation manner in which the connection device between the access terminals provided by the present invention is flexibly connected to the access terminal without being pre-connected to the access terminal.
  • the value of m may be 1 or greater than or equal to 2. In the following two embodiments, the case where m is 1 and m is greater than or equal to 2 is respectively described.
  • the embodiment provides a connection method between the access terminals.
  • the connection method between the access terminals is implemented in the case where the m value is 1.
  • the wireless communication device A (including one SIM card access terminal and n modem interfaces) is implemented.
  • the connection device between the ingress terminal and the access terminal is flexibly connected to the access terminal by using the connection device between the access terminals provided by the present invention without pre-connecting the access terminal.
  • the present embodiment takes the wireless communication device A shown in FIG. 2 as an example.
  • the wireless communication device A has one SIM card access end (for the SIM card access terminal 211) and four Modem access terminals (the Modem access terminal 221, the Modem access terminal 222, and the Modem access respectively).
  • the connection device 23 between the access terminals includes a second monitoring module 231, a first monitoring module 232, a connection control module 233, and a connection execution module 234.
  • the second monitoring module 231 is connected to the Modem access terminal 221, the Modem access terminal 222, the Modem access terminal 223, and the Modem access terminal 224, and is configured to monitor the Modem access terminal 221, the Modem access terminal 222, and the Modem access. Whether the terminal 223 and the Modem access terminal 224 are connected to the Modem;
  • the first monitoring module 232 is connected to the SIM card access terminal 211 for monitoring whether the SIM card access terminal 211 is connected to the SIM card.
  • the connection execution module 234 includes four control switches, namely, a switch 1 between the SIM card 211 and the Modem access terminal 221, a switch 2 between the SIM card 211 and the Modem access terminal 222, and the SIM card 211 is connected to the Modem.
  • the switch 3 between the input terminals 223 and the SIM card 211 are connected to the Modem.
  • Switch 4 between the inlet ends 224 For the control switch, the embodiment is described as an example of a high-low level control switch. In the specific implementation, other types of switches may also be used.
  • each SIM card access end corresponds to four high and low level control switches and four Modem access terminals, and each of the four high and low level control switches has a high level and low level control switch.
  • One end is connected to the SIM card access end, and the other end is connected to a Modem access end one by one;
  • connection control module 233 is a decision module, and is connected to the connection execution module 234, and is configured to send a control signal to the connection execution module 234 to control the on/off of each control switch in the connection execution module 234;
  • connection execution module 234 is configured to turn on and off the corresponding control switch according to the received control signal.
  • the SIM card monitoring module 232 monitors that the SIM card access terminal 211 has accessed the SIM card 211.
  • the Modem monitoring module 231 detects that three Modem access terminals are connected to the Modem, and the Modem access terminal 221 is connected to the Modem 221, and the Modem accessing end 222 is connected to the Modem 222 and Modem.
  • the terminal 223 is connected to the Modem 223.
  • the connection device between the access terminals provided in this embodiment can determine the modem access terminal to be connected according to the actual application, and connect the SIM card access terminal 211 to be connected.
  • the Modem access terminal is connected, so that the SIM card 211 is connected to the Modem connected to the Modem access terminal to be connected.
  • FIG. 3 shows a specific implementation manner of the connection device between the access terminals, as shown in FIG. 3, including:
  • the method provided in this embodiment may be performed for the first time, and the wireless communication device A may not perform the method provided in this embodiment for the first time.
  • the SIM card access terminal 211 may not be connected to any one of the Modem access terminals.
  • the SIM card access terminal 211 is connected to the Modem access terminal to which the method provided in this embodiment is connected.
  • the SIM card access terminal 211 is currently connected to the Modem access terminal. Limited.
  • the modem access terminal connected to the SIM card access terminal 211 can be modified by this embodiment.
  • the SIM card access terminal 211 is not connected to the Modem access terminal, the SIM card access terminal 211 and the Modem access terminal may be connected through this embodiment.
  • Step 301 The connection control module 233 determines a Modem access terminal in the Modem access terminal 221, the Modem access terminal 222, and the Modem access terminal 223 of the Modem that is monitored by the Modem monitoring module 231.
  • the modem access end determined in step 301 is not connected to the SIM card access terminal 211.
  • the first implementation method of the connection control module 233 to determine the Modem access terminal is that the connection control module 233 is connected to the Modem access terminal (Modem access terminal 221) of all access Modems monitored by the Modem monitoring module 231 according to a preset determination rule.
  • the Modem access terminal 222 and the Modem access terminal 223) determine a Modem access terminal.
  • the preset determining rule may be: randomly determining the Modem access end, or if the Modem access end has the priority attribute, selecting the Modem access end with the highest priority, or selecting the Modem located outside the wireless communication device.
  • the access terminal selects the Modem access terminal that accesses the optimal Modem, or selects the Modem access end that best matches the performance of the SIM card access terminal 211.
  • connection control module 233 determines the Modem access terminal designated by the user.
  • connection control module 233 obtains the Modem access end identifier input by the user through the input device of the wireless communication device A, and determines the Modem access end corresponding to the Modem access end identifier.
  • the wireless communication device A provides the user with description information of the Modem 221, the Modem 222, and the Modem 223.
  • the connection control module 233 determines the corresponding Modem description information. Modem connected Modem access terminal.
  • the wireless communication device A provides the user with description information of the Modem access terminal 221, the Modem access terminal 222, and the Modem access terminal 223.
  • the connection control module 233 determines the Modem access end corresponding to the clicked Modem access end description information.
  • step 302 is also required to determine whether the SIM card access terminal 211 is connected to the Modem. If the access terminal is connected, the connection between the SIM card access terminal 211 and the connected Modem access terminal needs to be disconnected, and then the SIM card access terminal 211 is connected to the Modem access terminal determined in step 301. .
  • the connected Modem access terminal is a Modem access terminal that is not included in step 301 included in the wireless communication device A.
  • Step 302 The connection control module 233 detects whether the SIM card access terminal 211 is connected to the Modem access terminal. If it is detected that the SIM card access terminal 211 is connected to the Modem access terminal, step 303 to step 306 are performed, if the SIM is detected. If the card access terminal 211 is not connected to the modem access terminal, step 305 and step 306 are performed;
  • This embodiment does not limit whether the connected Modem access terminal is connected to the Modem.
  • the Modem access terminal determined in the step 301 is the Modem access terminal 222
  • the Modem access terminal connected in this step is one of the Modem access terminal 221, the Modem access terminal 223, and the Modem access terminal 224. .
  • connection control module 233 detects that the SIM card access terminal 211 is not connected to the Modem access terminal, and then performs step 305 and subsequent steps.
  • connection control module 233 detects that the SIM card access terminal 211 is connected to the Modem access terminal 221, and then performs step 303 and subsequent steps. Continue the steps.
  • connection control module 233 sends a control signal to the connection execution module 234 to control the disconnection of the control switch between the SIM card access terminal 211 and the connected Modem access terminal;
  • the disconnection signal is a predefined high level signal or a low level signal.
  • connection control module 233 sends a control signal to the connection execution module 234 to control the disconnection of the control switch between the SIM card access terminal 211 and the Modem access terminal 221.
  • Step 304 The connection execution module 234 disconnects the connection access terminal 211 from the connected Modem access terminal according to the received control signal that controls the disconnection of the control switch between the SIM card access terminal 211 and the connected Modem access terminal. High and low level control switch;
  • connection execution module 234 disconnects the connection terminal 211 and the Modem access terminal according to a control signal for controlling the disconnection of the control switch between the SIM card access terminal 211 and the connected Modem access terminal.
  • the SIM card access terminal 211 in the wireless communication device A is not connected to any Modem access terminal.
  • connection control module 233 sends a control signal to the connection execution module 234 to control the communication between the SIM card access terminal 211 and the determined Modem access terminal.
  • connection signal is a predefined low level signal or a high level signal.
  • connection signal here is associated with the disconnection signal in step 303. If the pre-defined disconnection signal in step 303 is a high level signal, the pre-defined connection signal in this step is a low level signal; The pre-defined break signal is a low level signal, and the pre-defined connection signal in this step is a high level signal.
  • the connection control module 233 sends a control SIM card access to the connection execution module 234.
  • the control switch is connected between the terminal 211 and the Modem access terminal 222. control signal.
  • Step 306 The connection execution module 234 connects the SIM card access terminal 211 and the determined second access terminal according to the received control signal for controlling the communication between the SIM card access terminal 211 and the determined second access terminal. Control switch between.
  • connection execution module 234 connects the SIM card access terminal 211 and the Modem according to the received control signal for controlling the control switch between the SIM card access terminal 211 and the Modem access terminal 222. Switch 2 between terminals 222, see Figure 4(d).
  • the modem access terminal 222 and the SIM card access terminal 211 are connected, and the SIM card 211 accessed by the SIM card access terminal 211 is based on the modem access terminal 222 and the SIM card access terminal.
  • the connection between the 211 is connected to the Modem 222 accessed by the Modem access terminal 222.
  • the SIM card access terminal 211 is not connected to the Modem access terminal 222 in advance, the SIM card access terminal 211 is connected to the Modem access terminal 222, so that the SIM card 211 is connected to the Modem 222.
  • the connection relationship between the SIM card access terminal 211 and the Modem access terminal 221, the Modem access terminal 222, the Modem access terminal 223, or the Modem access terminal 224 can also be adjusted. To make more rational use of Modem.
  • the connection control module after determining the Modem access terminal to be connected, sends a control signal to the connection execution module to control the connection between the SIM card access terminal and the Modem access terminal to be connected.
  • the control switch can dynamically adjust between the SIM card access terminal and the Modem access terminal according to the SIM card access terminal and the Modem access terminal without connecting the SIM card access terminal and the Modem access terminal to be connected in advance.
  • the connection enables a flexible connection between the SIM card and the Modem, thereby making more rational use of the Modem.
  • the embodiment provides a connection method between access terminals, and the connection method between the access terminals is directed to If the value of m is greater than or equal to 2, the wireless communication device B (including the connection devices of the m SIM card access terminals, the n modem interfaces, and the access terminals) is connected by the access terminal provided by the present invention.
  • the device flexibly connects to the access terminal without pre-connecting the access terminal.
  • the present embodiment takes the wireless communication device B shown in FIG. 5 as an example.
  • the wireless communication device B has four SIM card access terminals (SIM card access terminal 511, SIM card access terminal 512, SIM card access terminal 513, SIM card access terminal 514), and four Modems.
  • the access device (the modem access terminal 521, the Modem access terminal 522, the Modem access terminal 523, and the Modem access terminal 524) and the connection device 53 between the access terminals.
  • the connection device 53 between the access terminals includes a second monitoring module 531, a first monitoring module 532, a connection control module 533, and a connection execution module 534.
  • the second monitoring module 531 is connected to the Modem access terminal 521, the Modem access terminal 522, the Modem access terminal 523, and the Modem access terminal 524, and is configured to monitor the Modem access terminal 521, the Modem access terminal 522, and the Modem access. Whether the terminal 523 and the Modem access terminal 524 are connected to the Modem;
  • the first monitoring module 532 is connected to the SIM card access terminal 511, the SIM card access terminal 512, the SIM card access terminal 513, and the SIM card access terminal 514 for monitoring the SIM card access terminal 511 and the SIM card access terminal.
  • 512, the SIM card access terminal 513, the SIM card access terminal 514 is connected to the SIM card;
  • the connection execution module 534 includes 16 control switches, namely: a switch 11 between the SIM card 511 and the Modem access terminal 521, a switch 12 between the SIM card 511 and the Modem access terminal 522, and the SIM card 511 is connected to the Modem.
  • the switch 22 between the SIM card 512 and the Modem access terminal 523, the switch 24 between the SIM card 512 and the Modem access terminal 524, the switch 31 between the SIM card 513 and the Modem access terminal 521, SIM
  • the embodiment is described as an
  • each SIM card access end corresponds to four high and low level control switches and four Modem access terminals, and each of the four high and low level control switches has a high level and low level control switch.
  • One end is connected to the SIM card access end, and the other end is connected to a Modem access end one by one;
  • connection control module 533 is a decision module, and is connected to the connection execution module 534, and is configured to send a control signal to the connection execution module 534 to control the on/off of each control switch in the connection execution module 534;
  • connection execution module 534 is configured to turn on and off the corresponding control switch according to the received control signal.
  • the SIM card monitoring module 532 detects that four SIM card access terminals are connected to the SIM card, and the SIM card access terminal 511 has access to the SIM card 511 and the SIM.
  • the card access terminal 512 has access to the SIM card 512
  • the SIM card access terminal 513 has access to the SIM card 513.
  • the Modem monitoring module 531 detects that the three Modem access terminals are connected to the Modem, and the Modem access terminal 521 is connected to the Modem 521 and the Modem accessing end 522 is connected to the Modem 522 and Modem.
  • the access terminal 523 is connected to the Modem 523.
  • the connection device between the access terminals provided by the embodiment may determine a SIM card access terminal and a Modem access terminal to be connected according to actual application conditions, and determine The SIM card access terminal to be connected is connected to the Modem access terminal, and the SIM card connected to the SIM card access terminal to be connected is connected to the Modem connected to the Modem access terminal to be connected.
  • FIG. 6 shows a specific implementation manner of the connection device between the access terminals. As shown in FIG. 6, the method includes:
  • Step 601 the connection control module 533 is in the SIM card access terminal 511, the SIM card access terminal 512, and the SIM card access terminal 513 of the accessed SIM card monitored by the SIM card monitoring module 532.
  • This embodiment does not limit whether the determined SIM card access terminal is currently connected to the Modem access terminal.
  • the modem access terminal connected to the determined SIM card access end may be changed by using the embodiment.
  • the determined SIM card access end may be connected to the Modem access end by using the embodiment.
  • the first implementation method of the connection control module 533 for determining the SIM card access end is that the connection control module 533 monitors all SIM card access terminals (SIMs) that are monitored by the SIM card monitoring module 532 according to preset determination rules.
  • SIMs SIM card access terminals
  • a SIM card access terminal is determined.
  • the preset determining rule may be: randomly determining a SIM card access terminal that is not connected to the Modem access terminal, or determining a Modem access terminal matched by each SIM card access end, and determining an unmatched The SIM card access terminal connected to the modem access terminal.
  • connection control module 533 determining the SIM card access end is that the connection control module 533 determines the SIM card access end designated by the user.
  • connection control module 533 obtains the SIM card access end identifier input by the user through the input device of the wireless communication device B, and determines the SIM card access end corresponding to the SIM card access end identifier.
  • the wireless communication device B provides the user with description information of the SIM card 511, the SIM card 512, and the SIM card 513.
  • the connection control module 533 determines the clicked SIM.
  • the wireless communication device B provides the user with description information of the SIM card access terminal 511, the SIM card access terminal 512, and the SIM card access terminal 513, and the description information of any modem access terminal is monitored. After clicking, the connection control module 233 determines the clicked SIM card access end. Describe the SIM card access end corresponding to the information.
  • Step 602 The connection control module 533 determines a Modem access terminal in the Modem access terminal 521, the Modem access terminal 522, and the Modem access terminal 523 of the Modem that is monitored by the Modem monitoring module 531.
  • the modem access end determined in step 602 is not connected to the SIM card access end determined in step 601.
  • connection control module 533 determines the implementation method of the modem access terminal is the same as the method for the connection control module 233 to determine the modem access terminal in step 301. For details, refer to step 301, and details are not described herein again.
  • the modem access terminal determined in step 602 is not connected to the SIM card access terminal determined in step 601. However, it may be connected to another SIM card access terminal included in the wireless communication device B. In this embodiment, whether the Modem access terminal determined in step 602 and other SIMs other than the SIM card access terminal determined in step 601 are not used in this embodiment. The card access end connection is limited.
  • a SIM card access terminal can only be connected to the same modem access terminal. Therefore, after performing a step 602 to determine a modem access terminal, step 603 is also required to determine the SIM card access terminal determined in step 601. Whether the modem access terminal is connected, if it is connected, the connection between the SIM card access end determined in step 601 and the connected modem access terminal needs to be disconnected, thereby ensuring the SIM card access determined in step 601. The terminal is connected to the Modem access terminal determined in step 602.
  • the connected Modem access end is a Modem access end that is not included in step 602 included in the wireless communication device B.
  • Step 603 The connection control module 533 detects whether the determined SIM card access end is connected to the Modem access terminal. If it is detected that the determined SIM card access end is connected to the Modem access terminal, step 604 to step 607 are performed. The modem is not connected to the determined SIM card access terminal. Step 606 and step 607;
  • This embodiment does not limit whether the connected Modem access terminal is connected to the Modem.
  • connection control module 533 sends a control signal to the connection execution module 534 to control the disconnection of the control switch between the SIM card access end and the connected Modem access terminal.
  • the disconnection signal is a predefined high level signal or a low level signal.
  • the wireless communication device B shown in FIG. 7(a) is taken as an example, wherein the SIM card access terminal determined in step 601 is the SIM card access terminal 511, and the Modem access terminal determined in step 602 is the Modem access terminal. 522, the Modem access terminal connected to the SIM card access terminal 511 is the Modem access terminal 521, and the connection control module 533 sends a control switch between the control SIM card access terminal 511 and the Modem access terminal 521 to the connection execution module 534. Disconnected control signal.
  • Step 605 The connection execution module 534 disconnects the control signal of the control switch disconnected between the SIM card access end and the connected Modem access terminal determined according to the received control, and disconnects the determined SIM card access terminal and the connected Modem. High and low level control switches between the access terminals;
  • connection execution module 534 disconnects the SIM card access terminal 511 and the Modem access terminal according to a control signal for controlling the disconnection of the control switch between the SIM card access terminal 511 and the Modem access terminal 521. Switch 11 between 521, see Figure 7(b).
  • step 604 After performing step 604 and step 605, the SIM card access end determined in step 601 is not connected to any Modem access terminal.
  • Step 606 The connection control module 533 sends, to the connection execution module 534, a control signal that controls the control switch between the SIM card access end and the determined Modem access terminal.
  • connection signal is a predefined low level signal or a high level signal.
  • the connection signal here is associated with the disconnection signal in step 604. If the pre-defined disconnection signal in step 604 is a high level signal, the pre-defined connection signal in this step is a low level signal; The pre-defined break signal is a low level signal, and the pre-defined connection signal in this step is a high level signal.
  • the wireless communication device B shown in FIG. 7(b) is taken as an example, wherein the SIM card access terminal determined in step 601 is the SIM card access terminal 511, and the Modem access terminal determined in step 602 is the Modem access terminal. 522, the connection control module 533 sends a control signal to the connection execution module 534 to control the control switch between the SIM card access terminal 511 and the Modem access terminal 522.
  • Step 607 The connection execution module 534 connects, according to the received control, a control signal that is connected between the SIM card access end and the determined Modem access terminal, and connects the determined SIM card access end with the determined second access. Control switch between the ends.
  • connection execution module 534 connects the SIM card access terminal 511 and the Modem according to the received control signal for controlling the communication between the SIM card access terminal 511 and the Modem access terminal 522.
  • Switch 12 between terminals 522 see Figure 7(c).
  • the modem access terminal 522 and the SIM card access terminal 511 are connected, and the SIM card 511 accessed by the SIM card access terminal 511 is based on the modem access terminal 522 and the SIM card access terminal.
  • the connection between the 511 is connected to the Modem 522 accessed by the Modem access terminal 522.
  • the SIM card access terminal 511 is not connected to the Modem access terminal 522 in advance, the SIM card access terminal 511 is connected to the Modem access terminal 522, so that the SIM card 511 is connected to the Modem 522.
  • the connection relationship between the SIM card access terminal 511 and the Modem access terminal 521, the Modem access terminal 522, the Modem access terminal 523 or the Modem access terminal 524 can also be adjusted. To make more rational use of Modem.
  • the connection control module after determining the SIM card access end to be connected and the Modem access end to be connected, the connection control module sends a control signal to the connection execution module to control the connection execution module to connect the SIM card to be connected.
  • the control switch between the terminal and the modem access terminal to be connected may be in the case that the SIM card access terminal and the Modem access terminal to be connected are not connected in advance. According to the situation of the SIM card access terminal and the Modem access terminal, the connection between the SIM card access terminal and the Modem access terminal is dynamically adjusted to realize the flexible connection between the SIM card and the Modem, so that the Modem can be utilized more reasonably.
  • the embodiment provides a connection device between access terminals, and the device is applied to a wireless communication device, where the wireless communication device includes m first access terminals and n second access terminals.
  • connection between the access terminals solves the problem similarly to the connection method between the access terminals shown in FIG. 3 or FIG. 6, the implementation of the connection device between the access terminals can be seen in FIG. 3 or FIG. Methods, repetitions will not be repeated.
  • connection device between the access terminals, comprising: a connection control module 803, a connection execution module 804;
  • connection execution module 804 includes m*n control switches 8041; wherein n is greater than or equal to 2;
  • Each of the first access terminals corresponds to n control switches 8041 and n second access terminals, and one end of each of the n control switches 8041 is connected to the first access end, and the other end is connected Connecting a second access terminal;
  • connection control module 803 is connected to the connection execution module 804 for transmitting a control signal to the connection execution module 804 to control the on/off of each control switch 8041 in the connection execution module 804;
  • connection execution module 804 is configured to: turn on and off the corresponding control switch 8041 according to the received control signal;
  • the first access end is a SIM card access end
  • the second access end is a Modem access end
  • the second access end is a SIM card access end
  • the first access end is a Modem access end.
  • m is greater than or equal to 2;
  • connection control module 803 is further configured to randomly determine a first access end that is not connected to the second access end before sending the control signal to the connection execution module 804; or determine a first access end designated by the user; or Determining a second access end matched by each first access end, determining an unconnected The matching first access end is connected to the second access end.
  • connection control module 803 determines the first access terminal, before sending the control signal to the connection execution module 804, the connection control module 803 is further configured to randomly determine a second access terminal; or determine a second access end designated by the user; Alternatively, a second access end that matches the determined performance of the first access end is determined.
  • the device further includes: a first monitoring module 801, a second monitoring module 802;
  • the first monitoring module 801 is connected to the first access terminal, and is configured to monitor whether the first access end accesses the first device.
  • the second monitoring module 802 is connected to the second access terminal, and is configured to monitor whether the second access terminal accesses the second device.
  • the connection control module 803 is configured to randomly determine, in the first access end that is connected to the first device that is monitored by the first monitoring module 801, a first access terminal that is not connected to the second access terminal; or Determining, by the first monitoring module 801, the first access terminal that has accessed the first device, determining the first access terminal specified by the user; or the first access device monitored by the first monitoring module 801 Determining, by the first access end, the second access end that is matched by each first access end, and determining a first access end that is not connected to the matched second access end;
  • the connection control module 803 is configured to randomly determine a second access end in the second access end that has been accessed by the second monitoring module 802 and has been accessed by the second monitoring module 802. Determining, by the second access end of the second device, the second access end specified by the user; or determining, by the second monitoring module 802, the second access end that has accessed the second device, determining A second access end that matches the determined performance of the first access end.
  • connection control module 803, when transmitting the control signal to the connection execution module 804, is specifically configured to send, to the connection execution module 804, a control switch 8041 between the first access end and the determined second access end. Connected control signal;
  • connection execution module 804 configured to determine, according to the received control, the first access terminal and the determined A control signal for controlling the communication between the second access terminal and the control switch 8041 is connected to the control switch 8041 between the determined first access terminal and the determined second access terminal.
  • the first access end is a SIM card access end
  • connection control module 803 is further configured to send, to the connection execution module 804, a control signal 8041 that is connected between the first access end and the determined second access end.
  • connection execution module 804 sends a control signal of the control switch disconnecting 8041 between the first access end determined by the control and the connected second access end, wherein the connected second access end Non-deterministic second access end;
  • connection execution module 804 is configured to disconnect the determined first access end and the connected control signal according to the control signal that the control switch 8041 is disconnected between the first access end and the connected second access end determined according to the received control.
  • a control switch 8041 between the second access terminals.
  • the second access end is a SIM card access end
  • connection control module 803 is further configured to send, to the connection execution module 804, a control signal that is determined by the first access terminal and the determined second access terminal to communicate with the control switch 8041, and is further configured to be used on the determined second access end.
  • the connection execution module 804 sends a control signal that the control switch 8041 is disconnected between the first access end of the control connection and the determined second access end, wherein the connected first access end Non-deterministic first access end;
  • the connection execution module 804 is configured to disconnect the first access terminal and the determined one according to a control signal that the control switch 8041 is disconnected between the first access end of the received control connection and the determined second access end. A control switch 8041 between the second access terminals.
  • control switch 8041 is a high and low level control switch
  • the control signal of the 8042 is a high level signal.
  • the connection control module in the connection device between the access terminals provided by the embodiment of the present invention controls the connection by sending a control signal to the connection execution module after determining the SIM card access terminal to be connected and the Modem access terminal to be connected.
  • the control module is connected to the control switch between the SIM card access terminal to be connected and the Modem access terminal to be connected, and may be based on the SIM card without connecting the SIM card access terminal and the Modem access terminal to be connected in advance.
  • the access terminal and the modem access terminal dynamically adjust the connection between the SIM card access terminal and the Modem access terminal to implement flexible connection between the SIM card and the Modem, thereby making more rational use of the Modem.
  • the present embodiment provides a wireless communication device.
  • the wireless communication device includes m first access terminals 1001 and n second access terminals 1002.
  • the wireless communication device further includes : A connection device 1003 between the access terminals.
  • connection device 1003 between the access terminals includes: a connection control module 10033, and a connection execution module 10034;
  • connection execution module 10034 includes m*n control switches 100341; wherein n is greater than or equal to 2;
  • Each of the first access terminals 1001 corresponds to n control switches 100341 and n second access terminals 1002, and one end of each of the n control switches 100341 controls one end of the switch 100341 to be connected to the first access terminal 1001, and another One end to one end connected to a second access end 1002;
  • connection control module 10033 is connected to the connection execution module 10034 for transmitting a control signal to the connection execution module 10034 to control the on/off of each control switch 100341 in the connection execution module 10034;
  • connection execution module 10034 is configured to: turn on and off the corresponding control switch 100341 according to the received control signal;
  • the first access end 1001 is a SIM card access end, and the second access end 1002 is a Modem.
  • the access end; or the second access end 1002 is a SIM card access end, and the first access end 1001 is a Modem access end.
  • m is greater than or equal to 2;
  • connection control module 10033 is further configured to randomly determine a first access end 1001 that is not in communication with the second access end 1002 before sending the control signal to the connection execution module 10034; or determine the first access end 1001 specified by the user. Or determining the second access end 1002 matched by each first access end 1001 to determine a first access end 1001 that is not in communication with the matched second access end 1002.
  • connection control module 10033 determines the first access terminal 1001, before sending the control signal to the connection execution module 10034, the connection control module 10033 is further configured to randomly determine a second access terminal 1002; or determine the second access specified by the user. End 1002; or, determine a second access end 1002 that matches the determined performance of the first access end 1001.
  • connection device 1003 between the access terminals further includes: a first monitoring module 10031, a second monitoring module 10032;
  • the first monitoring module 10031 is connected to the first access terminal 1001, and is configured to monitor whether the first access terminal 1001 accesses the first device.
  • the second monitoring module 10032 is connected to the second access terminal 1002, and configured to monitor whether the second access terminal 1002 accesses the second device.
  • the connection control module 10033 is configured to randomly determine, in the first access end 1001 of the first device that has been accessed by the first monitoring module 10031, a first access terminal 1001 that is not connected to the second access terminal 1002. Or, in the first access end 1001 of the first device that has been accessed by the first monitoring module 10031, determine the first access end 1001 designated by the user; or, the monitored by the first monitoring module 10031 Accessing the first access end 1001 of the first device, determining the second access end 1002 matched by each first access end, and determining a first access end that is not connected to the matched second access end 1002. 1001;
  • the connection control module 10033 is configured to be connected to the second monitored module 10032.
  • a second access end 1002 is randomly determined; or, in the second access end 1002 of the second monitoring module 10032 that has been connected to the second device, the user-specified The second access end 1002; or, in the second access end 1002 of the accessed second device monitored by the second monitoring module 10032, determining a second connection that matches the determined performance of the first access end 1001 Entry 1002.
  • connection control module 10033 when transmitting the control signal to the connection execution module 10034, specifically controls the connection between the first access end 1001 and the determined second access end 1002 that sends the control determination to the connection execution module 10034. a control signal that the switch 100341 is connected to;
  • connection execution module 10034 is configured to connect, according to the received control, a control signal that is connected between the first access end 1001 and the determined second access end 1002 to control the switch 100341, and connect the determined first access end 1001 with the determination.
  • the first access end 1001 is a SIM card access end
  • connection control module 10033 before transmitting the control signal 100341 that controls the connection between the first access end 1001 and the determined second access end 1002 to the connection execution module 10034, is also used for determining the first access.
  • the connection execution module 10234 sends a control signal for controlling the switch disconnection 100341 between the first access terminal 1001 and the connected second access terminal 1002, where the connection is determined.
  • the second access end 1002 is not determined by the second access end 1002;
  • connection execution module 10034 is configured to disconnect the determined first access end 1001 according to the control signal that the control switch 100341 is disconnected between the first access end 1001 and the connected second access end 1002 determined according to the received control.
  • a control switch 100341 is connected to the connected second access terminal 1002.
  • the second access end 1002 is a SIM card access end
  • connection control module 10033 is further configured to determine the second access before transmitting, to the connection execution module 10034, a control signal that controls the connection between the first access end 1001 and the determined second access end 1002 to control the switch 100341.
  • the execution module 10034 sends a control signal that the control switch 100341 is disconnected between the first access end 1001 and the determined second access end 1002, wherein the connected first access end 1001 is not determined by the first access. End 1001;
  • the connection execution module 10034 is configured to disconnect the first access terminal 1001 according to a control signal that the control switch 100341 is disconnected between the first access terminal 1001 of the received control connection and the determined second access terminal 1002.
  • a control switch 100341 is formed with the determined second access terminal 1002.
  • control switch 100341 is a high and low level control switch
  • the control signal for controlling the communication control switch 100341 is a low level signal
  • the control signal for controlling the opening control switch 100342 is a high level signal.
  • the wireless communication device passes through the connection control module in the connection device between the access terminals, and after determining the SIM card access terminal to be connected and the Modem access terminal to be connected, the connection execution module is Sending a control signal, controlling the connection execution module to connect the control switch between the SIM card access end to be connected and the Modem access terminal to be connected, may not be connected in advance to the SIM card access end and the Modem access terminal to be connected
  • the connection between the SIM card access terminal and the Modem access terminal is dynamically adjusted according to the situation of the SIM card access terminal and the Modem access terminal, so that the flexible connection between the SIM card and the Modem is realized, thereby making more rational use of the Modem.
  • embodiments of the present invention can be provided as a method, system, or computer program product. Accordingly, the present invention may take the form of an entirely hardware embodiment, an entirely software embodiment, or a combination of software and hardware. Moreover, the present invention can employ a computer program product embodied on one or more computer usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) having computer usable program code embodied therein. form.
  • computer usable storage media including but not limited to disk storage, CD-ROM, optical storage, etc.
  • the computer program instructions can also be stored in a computer readable memory that can direct a computer or other programmable data processing device to operate in a particular manner, such that the instructions stored in the computer readable memory produce an article of manufacture comprising the instruction device.
  • the apparatus implements the functions specified in one or more blocks of a flow or a flow and/or block diagram of the flowchart.
  • These computer program instructions can also be loaded onto a computer or other programmable data processing device such that a series of operational steps are performed on a computer or other programmable device to produce computer-implemented processing for execution on a computer or other programmable device.
  • the instructions provide steps for implementing the functions specified in one or more of the flow or in a block or blocks of a flow diagram.

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Abstract

本发明提供了一种接入端间的连接装置和无线通信设备,应用于无线通信技术领域,该装置包括:连接控制模块,连接执行模块,其中,连接执行模块,包括m*n个控制开关,连接控制模块,与连接执行模块相连,用于向连接执行模块发送控制信号,以控制连接执行模块中各个控制开关的通断,连接执行模块,用于根据接收到的控制信号通断对应的控制开关。本发明提供的装置不需要预先连接接入端,可以由控制连接执行模块根据各接入端的情况向连接执行模块发送控制信号,动态控制连接执行模块中各个控制开关的通断,实现接入端之间的灵活连接。

Description

接入端间的连接装置和无线通信设备 技术领域
本发明涉及无线通信技术领域,特别涉及一种接入端间的连接装置和无线通信设备。
背景技术
随着无线通信技术的飞速发展,无线通信技术广已泛应用于各个领域。在众多利用无线通信技术的实现方式中,通过通过SIM(Subscriber Identification Module,客户识别模块)卡接入端与Modem(Modulator-Demodulator,调制解调器)接入端之间的连接,实现SIM卡接入端所接入的SIM卡与Modem接入端所接入的Modem连接,进而实现无线通信的方式成为常用的无线通信方式之一。
以接入端为SIM卡接入端和Modem接入端为例,目前接入端间的连接方法为:预先将SIM卡接入端与Modem接入端连接,当SIM卡接入端接入SIM卡,Modem接入端接入Modem后,接入的SIM卡通过SIM卡接入端与Modem接入端之间的连接与接入的Modem连接。例如,无线通信设备中包括SIM卡接入端A与Modem接入端A,并预先将SIM卡接入端A与Modem接入端A连接,当SIM卡接入端A中接入SIM卡A,Modem接入端A接入Modem A后,SIM卡A,通过SIM卡接入端A与Modem接入端A之间的连接,与Modem A连接。
随着无线通信设备中包括的Modem接入端数量的增多,SIM卡与Modem固定连接不利于Modem的合理利用。
例如:无线通信设备为双卡智能手机,该双卡智能手机连接2个Modem接入端(Modem接入端A和Modem接入端B),2个SIM卡接入端(SIM卡接入端A和SIM卡接入端B),其中Modem接入端A支持双卡双待。
情形1:
预先将SIM卡接入端A与Modem接入端A连接,将SIM卡接入端B也与Modem接入端A连接。
如果Modem接入端A接入Modem A,SIM卡接入端A接入SIM卡A,SIM卡接入端B接入SIM卡B,Modem接入端B未接入任何Modem,则SIM卡A,会通过SIM卡接入端A与Modem接入端A之间的连接,与Modem A连接。SIM卡B,会通过SIM卡接入端B与Modem接入端A之间的连接,与Modem A连接。
若Modem接入端B接入Modem B,此时,各SIM卡接入端与Modem接入端之间的连接关系并不会改变,因此,SIM卡A依然通过SIM卡接入端A与Modem接入端A之间的连接,与Modem A连接。SIM卡B也依然通过SIM卡接入端B与Modem接入端A之间的连接,与Modem A连接。此种情况下,不存在与Modem接入端B连接的SIM卡接入端,也不存在与Modem B连接的SIM卡,造成Modem B的闲置,资源的浪费。
情形2:
预先将SIM卡接入端A与Modem接入端A连接,将SIM卡接入端B与Modem接入端B连接,此时Modem接入端A的双卡双待功能就不能很好利用,若想利用其双卡双待功能,则需要引入SIM卡接入端C来实现。
发明内容
在接入端为多个的情况下,为了合理利用各接入端,本发明实施例提供了一种接入端间的连接装置及无线通信设备。
第一方面,本发明实施例提供了一种接入端间的连接装置,所述装置应用于无线通信设备,所述无线通信设备包括m个第一接入端和n个第二接入端,其特征在于,所述装置,包括:连接控制模块,连接执行模块;其中,n大于等于2;
所述连接执行模块,包括m*n个控制开关;
每一个第一接入端对应于n个控制开关和n个第二接入端,该n个控制开关中的每一个控制开关的一端连接该第一接入端,另一端一对一连接一个第二接入端;
所述连接控制模块,与所述连接执行模块相连,用于向所述连接执行模块发送控制信号,以控制所述连接执行模块中各个控制开关的通断;
所述连接执行模块,用于根据接收到的控制信号通断对应的控制开关;
其中,所述第一接入端为客户识别模块SIM卡接入端,所述第二接入端为调制解调器Modem接入端;或者,所述第二接入端为SIM卡接入端,所述第一接入端为Modem接入端。
第二方面,本发明实施例提供了一种无线通信设备,所述无线通信设备包括m个第一接入端和n个第二接入端,其特征在于,所述无线通信设备,还包括:第一方面所述的接入端间的连接装置。
有益效果如下:
本发明实施例提供的装置包括:连接控制模块,连接执行模块,其中,连接执行模块,包括m*n个控制开关,连接控制模块,与连接执行模块相连,用于向连接执行模块发送控制信号,以控制连接执行模块中各个控制开关的通断,连接执行模块,用于根据接收到的控制信号通断对应的控制开关,进而实现不需要预先连接接入端,而是由控制连接执行模块根据各接入端的情况向连接执行模块发送控制信号,动态控制连接执行模块中各个控制开关的通断功能,从而实现接入端之间的灵活连接。
附图说明
下面将参照附图描述本发明的具体实施例,其中:
图1为本发明实施例中无线通信设备与SIM卡接入端、Modem接入端连接的结构示意图;
图2为本发明实施例中的无线通信设备A的结构示意图;
图3为本发明实施例中的一种接入端间的连接方法流程示意图;
图4为本发明实施例中的一种接入端间的连接方式示意图;
图5为本发明实施例中的无线通信设备B的结构示意图;
图6为本发明实施例中的另一种接入端间的连接方法流程示意图;
图7为本发明实施例中的另一种接入端间的连接方式示意图;
图8为本发明实施例中的一种接入端间的连接装置的结构示意图;
图9为本发明实施例中的另一种接入端间的连接装置的结构示意图;
图10为本发明实施例中的一种无线通信设备的结构示意图;
图11为本发明实施例中的另一种无线通信设备的结构示意图。
具体实施方式
为了使本发明的技术方案及优点更加清楚明白,以下结合附图对本发明的示例性实施例进行进一步详细的说明,显然,所描述的实施例仅是本发明的一部分实施例,而不是所有实施例的穷举。并且在不冲突的情况下,本发明中的实施例及实施例中的特征可以互相结合。
发明人在发明过程中注意到:
目前接入端间的连接方法为:预先固定接入端间的连接关系,随着无线通信设备中包含的接入端数量的增多,该方法不利于接入端的合理利用。
基于此,本发明提供了一种接入端间的连接装置和无线通信设备,其中,本发明提供的无线通信设备中包含本发明提供的接入端间的连接装置,该装置包括:连接控制模块,连接执行模块,其中,连接执行模块,包括m*n个控制开关,连接控制模块,与连接执行模块相连,用于向连接执行模块发送控制信号,以控制连接执行模块中各个控制开关的通断,连接执行模块,用于根据接收到的控制信号通断对应的控制开关,进而实现不需要预先连接接入端,而是由控制连接执行模块根据各接入端的情况向连接 执行模块发送控制信号,动态控制连接执行模块中各个控制开关的通断功能,从而实现接入端之间的灵活连接。
本发明提供的无线通信设备,除包括本发明提供的接入端间的连接装置之外,还包括m个第一接入端和n个第二接入端,其中,第一接入端为SIM卡接入端,第二接入端为Modem接入端;或者,第二接入端为SIM卡接入端,第一接入端为Modem接入端,且n大于等于2。
对于无线通信设备包括的SIM卡接入端:
(1)SIM卡接入端可以位于无线通信设备的内部,也可以位于无线通信设备的外部,其中,位于无线通信设备的外部的具体方式可以为:位于无线通信设备的外壳上,如图1(a)所示,也可以为位于与该无线通信设备无关的其他位置,只要与该无线通信设备连接即可,如图1(b)所示。另外,任一SIM卡接入端位于无线通信设备的位置,对其他SIM卡接入端在无线通信设备中的位置无影响
(2)每个SIM卡接入端均可接入SIM实体卡。
(3)同一时间,一个SIM卡接入端只能同一个Modem接入端连接。
(4)SIM卡接入端常见的实现方式之一为SIM卡槽。
对于无线通信设备包括的Modem接入端:
(1)Modem接入端可以位于无线通信设备的内部,也可以位于无线通信设备的外部,其中,位于无线通信设备的外部的具体实现方式可以为:位于无线通信设备的外壳上,如图1(c)所示,也可以为位于与该无线通信设备无关的其他位置,只要与该无线通信设备连接即可,如图1(d)所示。另外,任一Modem接入端位于无线通信设备的位置,对其他Modem接入端在无线通信设备中的位置无影响。
(2)同一时间,一个Modem接入端可能与多个SIM卡接入端连接。
(3)Modem接入端常见的实现方式之一为SMART PORT接入端。
下面以包括m个第一接入端、n个第二接入端、接入端间的连接装置的无线通信设备,且第一接入端为SIM卡接入端,第二接入端为Modem接入端,n大于等于2为例,对其通过本发明提供的接入端间的连接装置,在未预先连接接入端的前提下,灵活连接接入端的具体实现方式进行说明。
在实际应用过程中,m取值可以为1,也可以大于等于2,下面以2个实施例,针对m取值为1,以及m取值大于等于2的情况分别进行说明。
本实施例提供一种接入端间的连接方法,该接入端间的连接方法针对m取值为1的情况,实现无线通信设备A(包括1个SIM卡接入端、n个Modem接入端、接入端间的连接装置)通过本发明提供的接入端间的连接装置,在未预先连接接入端的前提下,灵活的连接接入端。
为了便于说明,本实施例以图2所示的无线通信设备A为例。
参见图2,无线通信设备A有1个SIM卡接入端(为SIM卡接入端211)、4个Modem接入端(分别为Modem接入端221、Modem接入端222、Modem接入端223、Modem接入端224)和接入端间的连接装置23。
其中,接入端间的连接装置23中包括第二监测模块231、第一监测模块232、连接控制模块233,连接执行模块234。
第二监测模块231分别与Modem接入端221、Modem接入端222、Modem接入端223、Modem接入端224连接,用于监测Modem接入端221、Modem接入端222、Modem接入端223、Modem接入端224是否接入Modem;
第一监测模块232与SIM卡接入端211连接,用于监测SIM卡接入端211是否接入SIM卡;
连接执行模块234,包括4个控制开关,分别为:SIM卡211与Modem接入端221之间的开关1,SIM卡211与Modem接入端222之间的开关2,SIM卡211与Modem接入端223之间的开关3,SIM卡211与Modem接 入端224之间的开关4。对于控制开关,本实施例以为高低电平控制开关为例进行说明,在具体实现时,还可以为其他形式的开关。
另外,由图2所示,每一个SIM卡接入端对应于4个高低电平控制开关和4个Modem接入端,该4个高低电平控制开关中的每一个高低电平控制开关的一端连接该SIM卡接入端,另一端一对一连接一个Modem接入端;
连接控制模块233为决策模块,与连接执行模块234相连,用于向连接执行模块234发送控制信号,以控制连接执行模块234中各个控制开关的通断;
连接执行模块234,用于根据接收到的控制信号通断对应的控制开关。
另外,SIM卡监测模块232监测到SIM卡接入端211已接入SIM卡211。
Modem监测模块231监测到4个Modem接入端中,有3个Modem接入端已接入Modem,分别为:Modem接入端221接入Modem221、Modem接入端222接入Modem222、Modem接入端223接入Modem223。
对于图2所示的无线通信设备A,通过本实施例提供的接入端间的连接装置,可以根据实际应用情况,确定待连接的Modem接入端,将SIM卡接入端211与待连接的Modem接入端连接,进而实现SIM卡211与待连接的Modem接入端所接入的Modem连接。
图3示出了接入端间的连接装置的具体实现方式,如图3所示,包括:
对于无线通信设备A可能首次执行本实施例提供的方法,无线通信设备A也可能非首次执行本实施例提供的方法。
对于无线通信设备A首次执行本实施例提供的方法的情况,SIM卡接入端211可能未与任何一个Modem接入端连接。
对于无线通信设备A非首次执行本实施例提供的方法的情况,SIM卡接入端211与前一次执行本实施例提供的方法所连接的Modem接入端连接。
因此,本实施例不对SIM卡接入端211当前是否已连接Modem接入端 进行限定。
若SIM卡接入端211已连接Modem接入端,则可以通过本实施例更改SIM卡接入端211连接的Modem接入端。
若SIM卡接入端211未连接Modem接入端,则可以通过本实施例将SIM卡接入端211与Modem接入端连接。
步骤301、连接控制模块233在Modem监测模块231监测到的已接入Modem的Modem接入端221、Modem接入端222、Modem接入端223中,确定一个Modem接入端;
其中,步骤301中确定的Modem接入端未与SIM卡接入端211连接。
连接控制模块233确定Modem接入端的第一种实现方法为,连接控制模块233根据预设的确定规则,在Modem监测模块231监测到的所有接入Modem的Modem接入端(Modem接入端221、Modem接入端222、Modem接入端223)中,确定一个Modem接入端。
其中,预设的确定规则可以为:随机确定Modem接入端,或者,若Modem接入端具有优先级属性,则选择优先级最高的Modem接入端,或者,选择位于无线通信设备外部的Modem接入端,或者,选择接入性能最优Modem的Modem接入端,或者,选择与SIM卡接入端211性能最匹配的Modem接入端等。
连接控制模块233确定Modem接入端的第二种实现方法为,连接控制模块233确定用户指定的Modem接入端。
例如:连接控制模块233获取用户通过无线通信设备A的输入设备输入的Modem接入端标识,确定该Modem接入端标识对应的Modem接入端。
再例如:无线通信设备A向用户提供可供选择的Modem 221、Modem 222、Modem 223的描述信息,当监测到任一Modem描述信息被点击后,连接控制模块233确定点击的Modem描述信息对应的Modem所接入的 Modem接入端。
还例如:无线通信设备A向用户提供可供选择的Modem接入端221、Modem接入端222、Modem接入端223的描述信息,当监测到任一Modem接入端的描述信息被点击后,连接控制模块233确定点击的Modem接入端描述信息对应的Modem接入端。
由于同一时间,一个SIM卡接入端只能同一个Modem接入端连接,因此,在执行步骤301确定一个Modem接入端之后,还需要执行步骤302确定SIM卡接入端211是否已连接Modem接入端,若已连接,则需要先断开SIM卡接入端211与连接的Modem接入端之间的连接,进而保证SIM卡接入端211与步骤301中确定的Modem接入端连接。
其中,连接的Modem接入端为无线通信设备A包括的非步骤301中确定的Modem接入端。
步骤302、连接控制模块233检测SIM卡接入端211是否已连接Modem接入端,若检测到SIM卡接入端211已连接Modem接入端,则执行步骤303至步骤306,若检测到SIM卡接入端211未连接Modem接入端,则执行步骤305及步骤306;
本实施例并不限定连接的Modem接入端是否接入Modem。
例如,若步骤301中确定的Modem接入端为Modem接入端222,则此步骤中连接的Modem接入端为Modem接入端221、Modem接入端223、Modem接入端224中的一个。
若SIM卡接入端211的连接情况如图4(a)所示,则连接控制模块233检测到SIM卡接入端211未连接Modem接入端,则执行步骤305及后续步骤。
若SIM卡接入端211的连接情况如图4(b)所示,则连接控制模块233检测到SIM卡接入端211已连接Modem接入端221,则执行步骤303及后 续步骤。
步骤303、连接控制模块233向连接执行模块234发送控制SIM卡接入端211与连接的Modem接入端之间控制开关断开的控制信号;
其中,断开信号为预先定义的高电平信号或低电平信号。
以步骤302中的例子为例,连接控制模块233向连接执行模块234发送控制SIM卡接入端211与Modem接入端221之间控制开关断开的控制信号
步骤304、连接执行模块234根据接收到的控制SIM卡接入端211与连接的Modem接入端之间控制开关断开的控制信号,断开连接接入端211与连接的Modem接入端之间的高低电平控制开关;
以步骤303中的例子为例,连接执行模块234根据控制SIM卡接入端211与连接的Modem接入端之间控制开关断开的控制信号,断开连接接入端211与Modem接入端221之间的开关1,参见图4(c)。
执行步骤303和步骤304后,无线通信设备A中的SIM卡接入端211未与任何Modem接入端连接。
步骤305、连接控制模块233向连接执行模块234发送控制SIM卡接入端211与确定的Modem接入端之间控制开关连通的控制信号;
其中,连接信号为预先定义的低电平信号或高电平信号。
此处的连接信号与步骤303中的断开信号相关联,若步骤303预先定义的中断开信号为高电平信号,则此步骤中预先定义的连接信号为低电平信号;若步骤303预先定义的中断开信号为低电平信号,则此步骤中预先定义的连接信号为高电平信号。
以图4(c)所示的无线通信设备A为例,其中,步骤301中确定的Modem接入端为Modem接入端222,则连接控制模块233向连接执行模块234发送控制SIM卡接入端211与Modem接入端222之间控制开关连通的 控制信号。
步骤306、连接执行模块234根据接收到的控制SIM卡接入端211与确定的第二接入端之间控制开关连通的控制信号,连通SIM卡接入端211与确定的第二接入端之间的控制开关。
以步骤305中的例子为例,连接执行模块234根据接收到的控制SIM卡接入端211与Modem接入端222之间控制开关连通的控制信号,连通SIM卡接入端211与Modem接入端222之间的开关2,参见图4(d)。
步骤301至步骤306执行后,Modem接入端222与SIM卡接入端211之间连接,进而SIM卡接入端211接入的SIM卡211,基于Modem接入端222与SIM卡接入端211之间的连接,与Modem接入端222接入的Modem 222连接。
实现在SIM卡接入端211未预先与Modem接入端222连接的情况下,将SIM卡接入端211与Modem接入端222连接,进而实现SIM卡211与Modem 222连接。
同时,通过重复执行本实施例提供的方法,还可以调整SIM卡接入端211与Modem接入端221、Modem接入端222、Modem接入端223或Modem接入端224之间的连接关系,从而更加合理地利用Modem。
有益效果:
本发明实施例中连接控制模块在确定待连接的Modem接入端后,通过向连接执行模块发送控制信号,控制连接执行模块连通连接SIM卡接入端与待连接的Modem接入端之间的控制开关,可以在不预先连接SIM卡接入端和待连接的Modem接入端的情况下,根据SIM卡接入端以及Modem接入端的情况动态调整SIM卡接入端和Modem接入端之间的连接,实现SIM卡与Modem的灵活连接,从而更加合理地利用Modem。
本实施例提供一种接入端间的连接方法,该接入端间的连接方法针对 m取值大于等于2的情况,实现无线通信设备B(包括m个SIM卡接入端、n个Modem接入端、接入端间的连接装置)通过本发明提供的接入端间的连接装置,在未预先连接接入端的前提下,灵活的连接接入端。
为了便于说明,本实施例以图5所示的无线通信设备B为例。
参见图5,无线通信设备B有4个SIM卡接入端(为SIM卡接入端511、SIM卡接入端512、SIM卡接入端513、SIM卡接入端514)、4个Modem接入端(分别为Modem接入端521、Modem接入端522、Modem接入端523、Modem接入端524)和接入端间的连接装置53。
其中,接入端间的连接装置53中包括第二监测模块531、第一监测模块532、连接控制模块533,连接执行模块534。
第二监测模块531分别与Modem接入端521、Modem接入端522、Modem接入端523、Modem接入端524连接,用于监测Modem接入端521、Modem接入端522、Modem接入端523、Modem接入端524是否接入Modem;
第一监测模块532与SIM卡接入端511、SIM卡接入端512、SIM卡接入端513、SIM卡接入端514连接,用于监测SIM卡接入端511、SIM卡接入端512、SIM卡接入端513、SIM卡接入端514是否接入SIM卡;
连接执行模块534,包括16个控制开关,分别为:SIM卡511与Modem接入端521之间的开关11,SIM卡511与Modem接入端522之间的开关12,SIM卡511与Modem接入端523之间的开关13,SIM卡511与Modem接入端524之间的开关14,SIM卡512与Modem接入端521之间的开关21,SIM卡512与Modem接入端522之间的开关22,SIM卡512与Modem接入端523之间的开关23,SIM卡512与Modem接入端524之间的开关24,SIM卡513与Modem接入端521之间的开关31,SIM卡513与Modem接入端522之间的开关32,SIM卡513与Modem接入端523之间的开关33,SIM卡513与Modem接入端524之间的开关34,SIM卡514与Modem 接入端521之间的开关41,SIM卡514与Modem接入端522之间的开关42,SIM卡514与Modem接入端523之间的开关43,SIM卡514与Modem接入端524之间的开关44。对于控制开关,本实施例以为高低电平控制开关为例进行说明,在具体实现时,还可以为其他形式的开关。
另外,由图5所示,每一个SIM卡接入端对应于4个高低电平控制开关和4个Modem接入端,该4个高低电平控制开关中的每一个高低电平控制开关的一端连接该SIM卡接入端,另一端一对一连接一个Modem接入端;
连接控制模块533为决策模块,与连接执行模块534相连,用于向连接执行模块534发送控制信号,以控制连接执行模块534中各个控制开关的通断;
连接执行模块534,用于根据接收到的控制信号通断对应的控制开关。
另外,SIM卡监测模块532监测到4个SIM卡接入端中,有3个SIM卡接入端已接入SIM卡接,分别为:SIM卡接入端511已接入SIM卡511、SIM卡接入端512已接入SIM卡512、SIM卡接入端513已接入SIM卡513。
Modem监测模块531监测到4个Modem接入端中,有3个Modem接入端已接入Modem,分别为:Modem接入端521接入Modem 521、Modem接入端522接入Modem 522、Modem接入端523接入Modem 523。
对于图5所示的无线通信设备B,通过本实施例提供的接入端间的连接装置,可以根据实际应用情况,确定一个待连接的SIM卡接入端和Modem接入端,并将确定的待连接的SIM卡接入端与Modem接入端连接,进而实现待连接的SIM卡接入端所接入的SIM卡与待连接的Modem接入端所接入的Modem连接。
图6示出了接入端间的连接装置的具体实现方式,如图6所示,包括:
步骤601、连接控制模块533在SIM卡监测模块532监测到的已接入SIM卡的SIM卡接入端511、SIM卡接入端512、SIM卡接入端513中,确 定一个SIM卡接入端;
本实施例不对确定的SIM卡接入端当前是否已连接Modem接入端进行限定。
若确定的SIM卡接入端已连接Modem接入端,则可以通过本实施例更改确定的SIM卡接入端连接的Modem接入端。
若确定的SIM卡接入端未连接Modem接入端,则可以通过本实施例将确定的SIM卡接入端与Modem接入端连接。
连接控制模块533确定SIM卡接入端的第一种实现方法为,连接控制模块533根据预设的确定规则,在SIM卡监测模块532监测到的所有接入SIM卡的SIM卡接入端(SIM卡接入端511、SIM卡接入端512、SIM卡接入端513)中,确定一个SIM卡接入端。
其中,预设的确定规则可以为:随机确定一个未与Modem接入端连通的SIM卡接入端,或者,确定各SIM卡接入端所匹配的Modem接入端,确定一个未与匹配的Modem接入端连通的SIM卡接入端等。
连接控制模块533确定SIM卡接入端的第二种实现方法为,连接控制模块533确定用户指定的SIM卡接入端。
例如:连接控制模块533获取用户通过无线通信设备B的输入设备输入的SIM卡接入端标识,确定该SIM卡接入端标识对应的SIM卡接入端。
再例如:无线通信设备B向用户提供可供选择的SIM卡511、SIM卡512、SIM卡513的描述信息,当监测到任一SIM卡描述信息被点击后,连接控制模块533确定点击的SIM卡信息对应的SIM卡所接入的SIM卡接入端。
还例如:无线通信设备B向用户提供可供选择的SIM卡接入端511、SIM卡接入端512、SIM卡接入端513的描述信息,当监测到任一Modem接入端的描述信息被点击后,连接控制模块233确定点击的SIM卡接入端 描述信息对应的SIM卡接入端。
步骤602、连接控制模块533在Modem监测模块531监测到的已接入Modem的Modem接入端521、Modem接入端522、Modem接入端523中,确定一个Modem接入端;
其中,步骤602中确定的Modem接入端未与步骤601中确定的SIM卡接入端连接。
连接控制模块533确定Modem接入端的实现方法与步骤301中连接控制模块233确定Modem接入端的方法相同,可参见步骤301,此处不再赘述。
需要说明的是,由于同一时间,一个Modem接入端可能与多个SIM卡接入端连接,因此,步骤602中确定的Modem接入端虽然未与步骤601中确定的SIM卡接入端连接,但可以与无线通信设备B包括的其他SIM卡接入端连接连接,本实施例不对步骤602中确定的Modem接入端是否与除步骤601中确定的SIM卡接入端之外的其他SIM卡接入端连接进行限定。
由于同一时间,一个SIM卡接入端只能同一个Modem接入端连接,因此,在执行步骤602确定一个Modem接入端之后,还需要执行步骤603确定步骤601中确定的SIM卡接入端是否已连接Modem接入端,若已连接,则需要先断开步骤601中确定的SIM卡接入端与连接的Modem接入端之间的连接,进而保证步骤601中确定的SIM卡接入端与步骤602中确定的Modem接入端连接。
其中,连接的Modem接入端为无线通信设备B包括的非步骤602中确定的Modem接入端。
步骤603、连接控制模块533检测确定的SIM卡接入端是否已连接Modem接入端,若检测到确定的SIM卡接入端已连接Modem接入端,则执行步骤604至步骤607,若检测到确定的SIM卡接入端未连接Modem接 入端,则执行步骤606及步骤607;
本实施例并不限定连接的Modem接入端是否接入Modem。
步骤604、连接控制模块533向连接执行模块534发送控制确定的SIM卡接入端与连接的Modem接入端之间控制开关断开的控制信号;
其中,断开信号为预先定义的高电平信号或低电平信号。
以图7(a)所示的无线通信设备B为例,其中,步骤601中确定的SIM卡接入端为SIM卡接入端511,步骤602中确定的Modem接入端为Modem接入端522,SIM卡接入端511已连接的Modem接入端为Modem接入端521,则连接控制模块533向连接执行模块534发送控制SIM卡接入端511与Modem接入端521之间控制开关断开的控制信号。
步骤605、连接执行模块534根据接收到的控制确定的SIM卡接入端与连接的Modem接入端之间控制开关断开的控制信号,断开连接确定的SIM卡接入端与连接的Modem接入端之间的高低电平控制开关;
以步骤604中的例子为例,连接执行模块534根据控制SIM卡接入端511与Modem接入端521之间控制开关断开的控制信号,断开SIM卡接入端511与Modem接入端521之间的开关11,参见图7(b)。
执行步骤604和步骤605后,步骤601确定的SIM卡接入端未与任何Modem接入端连接。
步骤606、连接控制模块533向连接执行模块534发送控制确定的SIM卡接入端与确定的Modem接入端之间控制开关连通的控制信号;
其中,连接信号为预先定义的低电平信号或高电平信号。此处的连接信号与步骤604中的断开信号相关联,若步骤604预先定义的中断开信号为高电平信号,则此步骤中预先定义的连接信号为低电平信号;若步骤604预先定义的中断开信号为低电平信号,则此步骤中预先定义的连接信号为高电平信号。
以图7(b)所示的无线通信设备B为例,其中,步骤601中确定的SIM卡接入端为SIM卡接入端511,步骤602中确定的Modem接入端为Modem接入端522,则连接控制模块533向连接执行模块534发送控制SIM卡接入端511与Modem接入端522之间控制开关连通的控制信号。
步骤607、连接执行模块534根据接收到的控制确定的SIM卡接入端与确定的Modem接入端之间控制开关连通的控制信号,连通确定的SIM卡接入端与确定的第二接入端之间的控制开关。
以步骤606中的例子为例,连接执行模块534根据接收到的控制SIM卡接入端511与Modem接入端522之间控制开关连通的控制信号,连通SIM卡接入端511与Modem接入端522之间的开关12,参见图7(c)。
步骤601至步骤607执行后,Modem接入端522与SIM卡接入端511之间连接,进而SIM卡接入端511接入的SIM卡511,基于Modem接入端522与SIM卡接入端511之间的连接,与Modem接入端522接入的Modem522连接。
实现在SIM卡接入端511未预先与Modem接入端522连接的情况下,将SIM卡接入端511与Modem接入端522连接,进而实现SIM卡511与Modem522连接。
同时,通过重复执行本实施例提供的方法,还可以调整SIM卡接入端511与Modem接入端521、Modem接入端522、Modem接入端523或Modem接入端524之间的连接关系,从而更加合理地利用Modem。
有益效果:
本发明实施例中连接控制模块在确定待连接的SIM卡接入端以及待连接的Modem接入端后,通过向连接执行模块发送控制信号,控制连接执行模块连通连接待连接的SIM卡接入端与待连接的Modem接入端之间的控制开关,可以在不预先连接SIM卡接入端和待连接的Modem接入端的情况下, 根据SIM卡接入端以及Modem接入端的情况动态调整SIM卡接入端和Modem接入端之间的连接,实现SIM卡与Modem的灵活连接,从而更加合理地利用Modem。
基于上述构思,本实施例提供了一种接入端间的连接装置,该装置应用于无线通信设备,该无线通信设备包括m个第一接入端和n个第二接入端。
由于接入端间的连接装置解决问题的原理与图3或图6所示的接入端间的连接方法相似,因此接入端间的连接装置的实施可以参见图3或图6所示的方法,重复之处不再赘述。
参见图8,该接入端间的连接装置,包括:连接控制模块803,连接执行模块804;
连接执行模块804,包括m*n个控制开关8041;其中,n大于等于2;
每一个第一接入端对应于n个控制开关8041和n个第二接入端,该n个控制开关8041中的每一个控制开关8041的一端连接该第一接入端,另一端一对一连接一个第二接入端;
连接控制模块803,与连接执行模块804相连,用于向连接执行模块804发送控制信号,以控制连接执行模块804中各个控制开关8041的通断;
连接执行模块804,用于根据接收到的控制信号通断对应的控制开关8041;
其中,第一接入端为SIM卡接入端,第二接入端为Modem接入端;或者,第二接入端为SIM卡接入端,第一接入端为Modem接入端。
可选地,m大于等于2;
连接控制模块803,向连接执行模块804发送控制信号之前,还用于随机确定一个未与第二接入端连通的第一接入端;或者,确定用户指定的第一接入端;或者,确定各第一接入端所匹配的第二接入端,确定一个未与 匹配的第二接入端连通的第一接入端。
可选地,连接控制模块803确定第一接入端之后,向连接执行模块804发送控制信号之前,还用于随机确定一个第二接入端;或者,确定用户指定的第二接入端;或者,确定与确定的第一接入端性能匹配的一个第二接入端。
参见图9,该装置,还包括:第一监测模块801、第二监测模块802;
第一监测模块801与第一接入端连接,用于监测第一接入端是否接入第一设备;
第二监测模块802与第二接入端连接,用于监测第二接入端是否接入第二设备;
连接控制模块803,用于在第一监测模块801监测到的已接入第一设备的第一接入端中,随机确定一个未与第二接入端连通的第一接入端;或者,在第一监测模块801监测到的已接入第一设备的第一接入端中,确定用户指定的第一接入端;或者,在第一监测模块801监测到的已接入第一设备的第一接入端中,确定各第一接入端所匹配的第二接入端,确定一个未与匹配的第二接入端连通的第一接入端;
连接控制模块803,用于在第二监测模块802监测到的已接入第二设备的第二接入端中,随机确定一个第二接入端;或者,在第二监测模块802监测到的已接入第二设备的第二接入端中,确定用户指定的第二接入端;或者,在第二监测模块802监测到的已接入第二设备的第二接入端中,确定与确定的第一接入端性能匹配的一个第二接入端。
可选地,连接控制模块803,在向连接执行模块804发送控制信号时,具体用于向连接执行模块804发送控制确定的第一接入端与确定的第二接入端之间控制开关8041连通的控制信号;
连接执行模块804,用于根据接收到的控制确定的第一接入端与确定的 第二接入端之间控制开关8041连通的控制信号,连通确定的第一接入端与确定的第二接入端之间的控制开关8041。
可选地,第一接入端为SIM卡接入端;
连接控制模块803,向连接执行模块804发送控制确定的第一接入端与确定的第二接入端之间控制开关连通的控制信号8041之前,还用于在确定的第一接入端已连接第二接入端时,向连接执行模块804发送控制确定的第一接入端与连接的第二接入端之间控制开关断开8041的控制信号,其中,连接的第二接入端非确定的第二接入端;
连接执行模块804,用于根据接收到的控制确定的第一接入端与连接的第二接入端之间控制开关8041断开的控制信号,断开确定的第一接入端与连接的第二接入端之间的控制开关8041。
可选地,第二接入端为SIM卡接入端;
连接控制模块803,向连接执行模块804发送控制确定的第一接入端与确定的第二接入端之间控制开关8041连通的控制信号之前,还用于在确定的第二接入端已连接第一接入端时,向连接执行模块804发送控制连接的第一接入端与确定的第二接入端之间控制开关8041断开的控制信号,其中,连接的第一接入端非确定的第一接入端;
连接执行模块804,用于根据接收到的控制连接的第一接入端与确定的第二接入端之间控制开关8041断开的控制信号,断开连接的第一接入端与确定的第二接入端之间的控制开关8041。
可选地,控制开关8041为高低电平控制开关;
控制连通控制开关8041的控制信号为高电平信号,控制断开控制开关8041的控制信号为低电平信号;
或者,
控制连通控制开关8041的控制信号为低电平信号,控制断开控制开关 8042的控制信号为高电平信号。
有益效果:
本发明实施例所提供的接入端间的连接装置中的连接控制模块在确定待连接的SIM卡接入端以及待连接的Modem接入端后,通过向连接执行模块发送控制信号,控制连接执行模块连通连接待连接的SIM卡接入端与待连接的Modem接入端之间的控制开关,可以在不预先连接SIM卡接入端和待连接的Modem接入端的情况下,根据SIM卡接入端以及Modem接入端的情况动态调整SIM卡接入端和Modem接入端之间的连接,实现SIM卡与Modem的灵活连接,从而更加合理地利用Modem。
基于同一发明构思,本实施例提供了一种无线通信设备,参见图10,该无线通信设备包括m个第一接入端1001和n个第二接入端1002,该无线通信设备,还包括:接入端间的连接装置1003。
其中,该接入端间的连接装置1003,包括:连接控制模块10033,连接执行模块10034;
连接执行模块10034,包括m*n个控制开关100341;其中,n大于等于2;
每一个第一接入端1001对应于n个控制开关100341和n个第二接入端1002,该n个控制开关100341中的每一个控制开关100341的一端连接该第一接入端1001,另一端一对一连接一个第二接入端1002;
连接控制模块10033,与连接执行模块10034相连,用于向连接执行模块10034发送控制信号,以控制连接执行模块10034中各个控制开关100341的通断;
连接执行模块10034,用于根据接收到的控制信号通断对应的控制开关100341;
其中,第一接入端1001为SIM卡接入端,第二接入端1002为Modem 接入端;或者,第二接入端1002为SIM卡接入端,第一接入端1001为Modem接入端。
可选地,m大于等于2;
连接控制模块10033,向连接执行模块10034发送控制信号之前,还用于随机确定一个未与第二接入端1002连通的第一接入端1001;或者,确定用户指定的第一接入端1001;或者,确定各第一接入端1001所匹配的第二接入端1002,确定一个未与匹配的第二接入端1002连通的第一接入端1001。
可选地,连接控制模块10033确定第一接入端1001之后,向连接执行模块10034发送控制信号之前,还用于随机确定一个第二接入端1002;或者,确定用户指定的第二接入端1002;或者,确定与确定的第一接入端1001性能匹配的一个第二接入端1002。
参见图11,该接入端间的连接装置1003,还包括:第一监测模块10031、第二监测模块10032;
第一监测模块10031与第一接入端1001连接,用于监测第一接入端1001是否接入第一设备;
第二监测模块10032与第二接入端1002连接,用于监测第二接入端1002是否接入第二设备;
连接控制模块10033,用于在第一监测模块10031监测到的已接入第一设备的第一接入端1001中,随机确定一个未与第二接入端1002连通的第一接入端1001;或者,在第一监测模块10031监测到的已接入第一设备的第一接入端1001中,确定用户指定的第一接入端1001;或者,在第一监测模块10031监测到的已接入第一设备的第一接入端1001中,确定各第一接入端所匹配的第二接入端1002,确定一个未与匹配的第二接入端1002连通的第一接入端1001;
连接控制模块10033,用于在第二监测模块10032监测到的已接入第二 设备的第二接入端1002中,随机确定一个第二接入端1002;或者,在第二监测模块10032监测到的已接入第二设备的第二接入端1002中,确定用户指定的第二接入端1002;或者,在第二监测模块10032监测到的已接入第二设备的第二接入端1002中,确定与确定的第一接入端1001性能匹配的一个第二接入端1002。
可选地,连接控制模块10033,在向连接执行模块10034发送控制信号时,具体用于向连接执行模块10034发送控制确定的第一接入端1001与确定的第二接入端1002之间控制开关100341连通的控制信号;
连接执行模块10034,用于根据接收到的控制确定的第一接入端1001与确定的第二接入端1002之间控制开关100341连通的控制信号,连通确定的第一接入端1001与确定的第二接入端1002之间的控制开关100341。
可选地,第一接入端1001为SIM卡接入端;
连接控制模块10033,向连接执行模块10034发送控制确定的第一接入端1001与确定的第二接入端1002之间控制开关连通的控制信号100341之前,还用于在确定的第一接入端1001已连接第二接入端1002时,向连接执行模块10034发送控制确定的第一接入端1001与连接的第二接入端1002之间控制开关断开100341的控制信号,其中,连接的第二接入端1002非确定的第二接入端1002;
连接执行模块10034,用于根据接收到的控制确定的第一接入端1001与连接的第二接入端1002之间控制开关100341断开的控制信号,断开确定的第一接入端1001与连接的第二接入端1002之间的控制开关100341。
可选地,第二接入端1002为SIM卡接入端;
连接控制模块10033,向连接执行模块10034发送控制确定的第一接入端1001与确定的第二接入端1002之间控制开关100341连通的控制信号之前,还用于在确定的第二接入端1002已连接第一接入端1001时,向连接 执行模块10034发送控制连接的第一接入端1001与确定的第二接入端1002之间控制开关100341断开的控制信号,其中,连接的第一接入端1001非确定的第一接入端1001;
连接执行模块10034,用于根据接收到的控制连接的第一接入端1001与确定的第二接入端1002之间控制开关100341断开的控制信号,断开连接的第一接入端1001与确定的第二接入端1002之间的控制开关100341。
可选地,控制开关100341为高低电平控制开关;
控制连通控制开关100341的控制信号为高电平信号,控制断开控制开关100341的控制信号为低电平信号;
或者,
控制连通控制开关100341的控制信号为低电平信号,控制断开控制开关100342的控制信号为高电平信号。
有益效果:
本发明实施例中无线通信设备通过其包含的接入端间的连接装置中的连接控制模块,在确定待连接的SIM卡接入端以及待连接的Modem接入端后,通过向连接执行模块发送控制信号,控制连接执行模块连通连接待连接的SIM卡接入端与待连接的Modem接入端之间的控制开关,可以在不预先连接SIM卡接入端和待连接的Modem接入端的情况下,根据SIM卡接入端以及Modem接入端的情况动态调整SIM卡接入端和Modem接入端之间的连接,实现SIM卡与Modem的灵活连接,从而更加合理地利用Modem。
本领域内的技术人员应明白,本发明的实施例可提供为方法、系统、或计算机程序产品。因此,本发明可采用完全硬件实施例、完全软件实施例、或结合软件和硬件方面的实施例的形式。而且,本发明可采用在一个或多个其中包含有计算机可用程序代码的计算机可用存储介质(包括但不限于磁盘存储器、CD-ROM、光学存储器等)上实施的计算机程序产品的 形式。
本发明是参照根据本发明实施例的方法、设备(系统)、和计算机程序产品的流程图和/或方框图来描述的。应理解可由计算机程序指令实现流程图和/或方框图中的每一流程和/或方框、以及流程图和/或方框图中的流程和/或方框的结合。可提供这些计算机程序指令到通用计算机、专用计算机、嵌入式处理机或其他可编程数据处理设备的处理器以产生一个机器,使得通过计算机或其他可编程数据处理设备的处理器执行的指令产生用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的装置。
这些计算机程序指令也可存储在能引导计算机或其他可编程数据处理设备以特定方式工作的计算机可读存储器中,使得存储在该计算机可读存储器中的指令产生包括指令装置的制造品,该指令装置实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能。
这些计算机程序指令也可装载到计算机或其他可编程数据处理设备上,使得在计算机或其他可编程设备上执行一系列操作步骤以产生计算机实现的处理,从而在计算机或其他可编程设备上执行的指令提供用于实现在流程图一个流程或多个流程和/或方框图一个方框或多个方框中指定的功能的步骤。
尽管已描述了本发明的优选实施例,但本领域内的技术人员一旦得知了基本创造性概念,则可对这些实施例作出另外的变更和修改。所以,所附权利要求意欲解释为包括优选实施例以及落入本发明范围的所有变更和修改。

Claims (9)

  1. 接入端间的连接装置,所述装置应用于无线通信设备,所述无线通信设备包括m个第一接入端和n个第二接入端,其特征在于,所述装置,包括:连接控制模块,连接执行模块;其中,n大于等于2;
    所述连接执行模块,包括m*n个控制开关;
    每一个第一接入端对应于n个控制开关和n个第二接入端,该n个控制开关中的每一个控制开关的一端连接该第一接入端,另一端一对一连接一个第二接入端;
    所述连接控制模块,与所述连接执行模块相连,用于向所述连接执行模块发送控制信号,以控制所述连接执行模块中各个控制开关的通断;
    所述连接执行模块,用于根据接收到的控制信号通断对应的控制开关;
    其中,所述第一接入端为客户识别模块SIM卡接入端,所述第二接入端为调制解调器Modem接入端;或者,所述第二接入端为SIM卡接入端,所述第一接入端为Modem接入端。
  2. 根据权利要求1所述的装置,其特征在于,所述m大于等于2;
    所述连接控制模块,向所述连接执行模块发送控制信号之前,还用于随机确定一个未与第二接入端连通的第一接入端;或者,确定用户指定的第一接入端;或者,确定各第一接入端所匹配的第二接入端,确定一个未与匹配的第二接入端连通的第一接入端。
  3. 根据权利要求2所述的装置,其特征在于,所述连接控制模块确定第一接入端之后,向所述连接执行模块发送控制信号之前,还用于随机确定一个第二接入端;或者,确定用户指定的第二接入端;或者,确定与所述确定的第一接入端性能匹配的一个第二接入端。
  4. 根据权利要求3所述的装置,其特征在于,所述装置,还包括:第一监测模块、第二监测模块;
    所述第一监测模块与所述第一接入端连接,用于监测所述第一接入端是否接入第一设备;
    所述第二监测模块与所述第二接入端连接,用于监测所述第二接入端是否接入第二设备;
    所述连接控制模块,用于在所述第一监测模块监测到的已接入第一设备的第一接入端中,随机确定一个未与第二接入端连通的第一接入端;或者,在所述第一监测模块监测到的已接入第一设备的第一接入端中,确定用户指定的第一接入端;或者,在所述第一监测模块监测到的已接入第一设备的第一接入端中,确定各第一接入端所匹配的第二接入端,确定一个未与匹配的第二接入端连通的第一接入端;
    所述连接控制模块,用于在所述第二监测模块监测到的已接入第二设备的第二接入端中,随机确定一个第二接入端;或者,在所述第二监测模块监测到的已接入第二设备的第二接入端中,确定用户指定的第二接入端;或者,在所述第二监测模块监测到的已接入第二设备的第二接入端中,确定与所述确定的第一接入端性能匹配的一个第二接入端。
  5. 根据权利要求3或4所述的装置,其特征在于,连接控制模块,在向所述连接执行模块发送控制信号时,具体用于向所述连接执行模块发送控制所述确定的第一接入端与确定的第二接入端之间控制开关连通的控制信号;
    所述连接执行模块,用于根据接收到的控制所述确定的第一接入端与确定的第二接入端之间控制开关连通的控制信号,连通所述确定的第一接入端与确定的第二接入端之间的控制开关。
  6. 根据权利要求5所述的装置,其特征在于,所述第一接入端为SIM卡接入端;
    所述连接控制模块,向所述连接执行模块发送控制所述确定的第一接 入端与确定的第二接入端之间控制开关连通的控制信号之前,还用于在确定的第一接入端已连接第二接入端时,向所述连接执行模块发送控制所述确定的第一接入端与连接的第二接入端之间控制开关断开的控制信号,其中,所述连接的第二接入端非确定的第二接入端;
    所述连接执行模块,用于根据接收到的控制所述确定的第一接入端与连接的第二接入端之间控制开关断开的控制信号,断开所述确定的第一接入端与连接的第二接入端之间的控制开关。
  7. 根据权利要求5所述的装置,其特征在于,所述第二接入端为SIM卡接入端;
    所述连接控制模块,向所述连接执行模块发送控制所述确定的第一接入端与确定的第二接入端之间控制开关连通的控制信号之前,还用于在确定的第二接入端已连接第一接入端时,向所述连接执行模块发送控制连接的第一接入端与所述确定的第二接入端之间控制开关断开的控制信号,其中,所述连接的第一接入端非确定的第一接入端;
    所述连接执行模块,用于根据接收到的控制连接的第一接入端与所述确定的第二接入端之间控制开关断开的控制信号,断开连接的第一接入端与所述确定的第二接入端之间的控制开关。
  8. 根据权利要求6或7所述的装置,其特征在于,所述控制开关为高低电平控制开关;
    控制连通控制开关的控制信号为高电平信号,控制断开控制开关的控制信号为低电平信号;
    或者,
    控制连通控制开关的控制信号为低电平信号,控制断开控制开关的控制信号为高电平信号。
  9. 一种无线通信设备,所述无线通信设备包括m个第一接入端和n 个第二接入端,其特征在于,所述无线通信设备,还包括:权利要求1至权利要求8任一权利要求所述的接入端间的连接装置。
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