Wireless communication pairing system and wireless communication pairing method
The wireless communication pairing system and method automatically completes the pairing of multiple wireless communication modules, solving the problem that Bluetooth and Wi-Fi modules need to be manually paired in the prior art, thus improving ease of use and efficiency.
Patent Information
- Application Number
- CN202510248627.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Priority Date
- 2024-05-30
- Filing Date
- 2025-03-04
- Publication Date
- 2025-12-02
AI Technical Summary
In existing technologies, the Bluetooth and Wi-Fi modules of electronic devices need to be manually paired separately, which is inconvenient to use.
A wireless communication pairing system and method are provided, which automatically completes the pairing of multiple wireless communication modules through the control circuit of the wireless transceiver and peripheral devices, stores and manages the pairing data using a storage circuit, and selects the best connection based on the signal strength.
It enables automatic pairing of multiple wireless communication modules, eliminating repetitive manual operations and improving ease of use and efficiency.
Smart Images

Figure CN121056878A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of wireless transmission, and more particularly to a wireless communication pairing system and a wireless communication pairing method. Background Technology
[0002] With the advancement of information technology, many electronic devices, such as mobile phones, tablets, laptops, desktop computers, mice, and keyboards, can be equipped with multiple types of wireless communication modules. Generally, before two electronic devices can wirelessly transmit data to each other, their individual wireless communication modules must first be paired.
[0003] For example, each of the two electronic devices has a Bluetooth module and a Wi-Fi module. When a user manually pairs the Bluetooth module of one device with the Bluetooth module of another, the pairing information required for Bluetooth pairing is not the same as that required for Wi-Fi pairing. Therefore, when the user switches from Bluetooth to Wi-Fi, they must manually pair the Wi-Fi module of the other device again, causing inconvenience.
[0004] Invention content
[0005] The technical problem to be solved by the present invention is to provide a wireless communication pairing system and a wireless communication pairing method to address the shortcomings of the prior art.
[0006] To address the aforementioned technical problems, one technical solution adopted by the present invention is to provide a wireless communication pairing system. The wireless communication pairing system includes a wireless transceiver and peripheral devices. The peripheral devices include a control circuit and multiple wireless communication modules, and the control circuit is connected to the multiple wireless communication modules. The control circuit is configured to perform the following operations: pairing with the wireless transceiver through one of the multiple wireless communication modules; in response to the pairing of the wireless communication modules with the wireless transceiver, obtaining multiple pairs of pairing data required for pairing the multiple wireless communication modules from the wireless transceiver through the paired wireless communication module; and pairing with the wireless transceiver through the multiple unpaired wireless communication modules based on the multiple pairs of pairing data.
[0007] Optionally, the wireless transceiver includes multiple different wireless communication modules, and each pairing data includes a communication protocol data and an identification data of the wireless communication module of the wireless transceiver.
[0008] Optionally, each of the wireless communication modules of the peripheral device includes a wireless communication circuit and an antenna, the wireless communication circuit being connected to the control circuit and the antenna.
[0009] Optionally, the wireless transceiver includes a storage circuit configured to store multiple pairs of pairing data from the peripheral device, each pair of pairing data containing communication protocol data and identification data of the wireless communication module of the peripheral device.
[0010] Optionally, the wireless transceiver includes a control circuit, multiple different wireless communication modules, and a port. The control circuit of the wireless transceiver is connected to the multiple wireless communication modules and the port of the wireless transceiver.
[0011] Optionally, it also includes a host, to which the wireless transceiver is connected, the wireless transceiver being configured to acquire multiple pairing data from multiple wireless communication modules and transmit multiple pairs of the pairing data to the host, and the host being configured to transmit multiple pairs of the pairing data to a cloud server.
[0012] Optionally, the control circuit of the peripheral device is configured to determine a wireless signal strength between each wireless communication module and the wireless transceiver and select the wireless communication module with the largest wireless signal strength to establish a wireless connection with the wireless transceiver.
[0013] Optionally, the plurality of wireless communication modules include a Bluetooth communication module and a 2.4GHz communication module.
[0014] Optionally, the peripheral device also includes a wired transmission module.
[0015] To address the aforementioned technical problems, another technical solution adopted by the present invention is to provide a wireless communication pairing method. The wireless communication pairing method includes: providing a wireless transceiver and a peripheral device comprising a plurality of wireless communication modules; pairing one of the plurality of wireless communication modules with the wireless transceiver; in response to the wireless communication module completing pairing with the wireless transceiver, obtaining multiple pairs of pairing data required for pairing the plurality of wireless communication modules from the wireless transceiver through the paired wireless communication module; and, based on the multiple pairs of pairing data, pairing the plurality of wireless communication modules that have not yet completed pairing with the wireless transceiver.
[0016] Optionally, the wireless transceiver includes multiple different wireless communication modules, and each pairing data includes a communication protocol data and an identification data of the wireless communication module of the wireless transceiver.
[0017] Optionally, it further includes: storing multiple pairing data from the peripheral device in a storage circuit of the wireless transceiver via a control circuit of the wireless transceiver, wherein each pairing data from the peripheral device includes communication protocol data and identification data of the wireless communication module of the peripheral device.
[0018] Optionally, it also includes: transmitting multiple pairing data from the peripheral device to a host via the wireless transceiver; and the host transmitting the multiple pairing data from the peripheral device to a cloud server.
[0019] Optionally, a control circuit of the peripheral device is configured to determine a wireless signal strength between each wireless communication module and the wireless transceiver; and the control circuit selects the wireless communication module with the largest wireless signal strength to establish a wireless connection with the wireless transceiver.
[0020] To further understand the features and technical content of the present invention, please refer to the following detailed description and drawings of the present invention. However, the drawings provided are for reference and illustration only and are not intended to limit the present invention. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of a first embodiment of the wireless communication pairing system of the present invention.
[0022] Figure 2 for Figure 1 Functional block diagram of a wireless communication pairing system.
[0023] Figure 3 This is a functional block diagram of a second embodiment of the wireless communication pairing system of the present invention.
[0024] Figure 4 This is a functional block diagram of a third embodiment of the wireless communication pairing system of the present invention.
[0025] Figure 5 This is a flowchart of a first embodiment of the wireless communication pairing method of the present invention.
[0026] Figure 6 This is a flowchart of a second embodiment of the wireless communication pairing method of the present invention.
[0027] Figure 7 This is a flowchart of a third embodiment of the wireless communication pairing method of the present invention.
[0028] Figure 8 This is a flowchart of a fourth embodiment of the wireless communication pairing method of the present invention. Detailed Implementation
[0029] The following are specific examples.
[0030] Figure 1 This is a schematic diagram of a first embodiment of the wireless communication pairing system of the present invention. Figure 2 for Figure 1 A functional block diagram of a wireless communication pairing system. See also... Figure 1 and Figure 2 The wireless communication pairing system includes a wireless transceiver 1 and a peripheral device 2. The wireless transceiver 1 is, for example, a wireless network card. The wireless transceiver 1 is configured to connect to a host 3 to obtain the power required for the operation of the wireless transceiver 1. The host 3 is, for example, a tablet computer, a laptop computer, a desktop computer, or a mobile communication device. In this embodiment, the host 3 is a laptop computer.
[0031] Peripheral device 2 is, for example, a wireless keyboard or a wireless mouse. In this embodiment, peripheral device 2 is a wireless mouse, and peripheral device 2 has a built-in battery to provide the power required for peripheral device 2 to operate.
[0032] The wireless transceiver 1 includes a control circuit 11, a storage circuit 12, multiple different wireless communication modules 13 and 14, and a port 15. The control circuit 11 is, for example, a programmable logic controller circuit, a microprocessor circuit, a microcontroller circuit, or other processor or controller with signal processing capabilities. The storage circuit 12 is, for example, random access memory (RAM), read-only memory (ROM), flash memory, a hard disk, or other storage devices with data storage capabilities. The wireless communication modules 13 and 14 are, for example, two of the following: a Bluetooth module, a 2.4GHz communication module, an ultra-wideband (UWB) module, and a Wi-Fi compatibility certified module. The port 15 is, for example, a Universal Serial Bus (USB) Type-A, USB Type-B, or USB Type-C.
[0033] The control circuit 11 is connected to the storage circuit 12, multiple wireless communication modules 13 and 14, and port 15. Port 15 is also connected to the storage circuit 12, multiple different wireless communication modules 13 and 14, and the host 3. The wireless transceiver 1 obtains the power required for its operation from the host 3.
[0034] The storage circuit 12 pre-stores the pairing data of the wireless communication module 13, the pairing data of the wireless communication module 14, and multiple verification data.
[0035] Wireless communication module 13 includes wireless communication circuit 131 and antenna 132, wherein wireless communication circuit 131 is connected to antenna 132. Wireless communication module 14 includes wireless communication circuit 141 and antenna 142, wherein wireless communication circuit 141 is connected to antenna 142.
[0036] Peripheral device 2 includes a control circuit 21, a storage circuit 22, a switching switch 23, and multiple different wireless communication modules 24 and 25. The control circuit 21 is, for example, a programmable logic controller circuit, a microprocessor circuit, a microcontroller circuit, or other processors or controllers with signal processing capabilities. The storage circuit 22 is, for example, random access memory (RAM), read-only memory (ROM), flash memory, a hard disk, or other storage devices with data storage capabilities. The two wireless communication modules 24 and 25 of peripheral device 2 are of the same type as the two wireless communication modules 13 and 14 of wireless transceiver device 1.
[0037] The control circuit 21 is connected to the storage circuit 22 and the switch 23, and the switch 23 is connected to the control circuit 21 and the wireless communication modules 24 and 25.
[0038] The storage circuit 22 pre-stores the pairing data of the wireless communication module 24, the pairing data of the wireless communication module 25, and multiple verification data.
[0039] Wireless communication module 24 includes wireless communication circuit 241 and antenna 242, wherein wireless communication circuit 241 is connected to switch 23 and antenna 242. Wireless communication module 25 includes wireless communication circuit 251 and antenna 252, wherein wireless communication circuit 251 is connected to switch 23 and antenna 252. Either wireless communication circuit 241 or 251 may include, for example, a processor, radio frequency (RF) circuit, baseband circuit, and media access control (MAC) circuit. The processor is connected to MAC circuit, MAC circuit is connected to baseband circuit, baseband circuit is connected to RF circuit, and RF circuit is connected to antenna. Data from the processor can be processed sequentially by MAC circuit, baseband circuit, and RF circuit to generate a transmission signal to antenna. The RF circuit can receive RF signals, which are processed sequentially by RF signal, baseband circuit, and MAC circuit to generate processed data to processor.
[0040] The user can operate the switch 23 to connect the control circuit 21 to the wireless communication module 24 or the wireless communication module 25. When the control circuit 21 is connected to the wireless communication module 24, the control circuit 21 controls the wireless communication module 24 to transmit wireless signals. When the control circuit 21 is connected to the wireless communication module 25, the control circuit 21 controls the wireless communication module 25 to transmit wireless signals. In this embodiment, the control circuit 21 of the peripheral device 2 is connected to the wireless communication module 24.
[0041] The control circuit 21 of the peripheral device 2 accesses the storage circuit 22 and controls the wireless communication circuit 241 to transmit a first signal L1 towards the wireless transceiver device 1 via the antenna 242. The first signal L1 contains pairing data for both the wireless communication module 24 and the wireless communication module 25. Specifically, the pairing data packet for the wireless communication module 24 contains communication protocol data, identification data, and configuration data for the wireless communication module 24. The pairing data packet for the wireless communication module 25 contains communication protocol data, identification data, and configuration data for the wireless communication module 25. For example, when the wireless communication module is a Bluetooth module, the pairing data packet contains a media access control address and a device name. When the wireless communication module is a Wi-Fi module, the pairing data packet contains a service set identifier and a device name.
[0042] Next, the antenna 132 of the wireless transceiver 1 receives the first signal L1, and the wireless communication circuit 131 transmits the first signal to the control circuit 11 of the wireless transceiver 1. The control circuit 11 determines whether the pairing data of the wireless communication module 24 and the pairing data of the wireless communication module 25 match two of the verification data in the storage circuit 12.
[0043] When the pairing data of wireless communication module 24 and wireless communication module 25 match two of the verification data in storage circuit 12, the control circuit 11 of wireless transceiver device 1 controls wireless communication circuit 131 to send a second signal L2 to peripheral device 2 through antenna 132, wherein the second signal L2 contains the pairing data of wireless communication module 13 and wireless communication module 14.
[0044] Next, the antenna 242 of the peripheral device 2 receives the second signal L2, and the wireless communication circuit 241 transmits the second signal L2 to the control circuit 21 of the peripheral device 2. The control circuit 21 determines whether the pairing data of the wireless communication module 13 and the pairing data of the wireless communication module 14 match two of the verification data in the storage circuit 22.
[0045] When the pairing data of wireless communication module 13 and wireless communication module 14 match two of the verification data in storage circuit 22, the wireless communication modules 24 and 25 of peripheral device 2 are paired with the wireless communication modules 13 and 14 of wireless transceiver device 1.
[0046] Figure 3 This is a functional block diagram of a second embodiment of the wireless communication pairing system of the present invention. See also... Figure 3 The wireless communication pairing system includes a wireless transceiver 1, a peripheral device 2, and a host 3. The wireless transceiver 1 includes a control circuit 11, a storage circuit 12, a port 15, and a wireless communication module 16. The storage circuit 12 pre-stores pairing data and multiple verification data entries of the wireless communication module 16. The wireless communication module 16 includes a wireless communication circuit 161 and an antenna 162, with the wireless communication circuit 161 connected to the antenna 162.
[0047] Peripheral device 2 includes control circuit 21, storage circuit 22, switch 23 and multiple wireless communication modules 24, 25 and 26, while host 3 includes processing circuit 31, storage circuit 32, multiple wireless communication modules 33 and 34 and port 35.
[0048] In this embodiment, the wireless communication module 16 of the wireless transceiver 1 is a 2.4GHz communication module, the wireless communication modules 24, 25, and 26 of the peripheral device 2 are a Bluetooth module, a Wi-Fi module, and a 2.4GHz communication module, respectively, and the wireless communication modules 33 and 34 of the host 3 are a Bluetooth module and a Wi-Fi module, respectively.
[0049] The control circuit 11 of the wireless transceiver 1 is connected to the storage circuit 12, port 15 and wireless communication circuit 161. Port 15 is also connected to the storage circuit 12, wireless communication module 16 and port 35 of the host 3.
[0050] The control circuit 21 of the peripheral device 2 is connected to the storage circuit 22, the switch 23, and the wireless communication modules 24, 25, and 26, while the switch 23 is connected to the control circuit 21 and the wireless communication modules 24, 25, and 26. The storage circuit 22 pre-stores multiple pairing data and multiple verification data from the wireless communication modules 24, 25, and 26.
[0051] The wireless communication module 26 includes a wireless communication circuit 261 and an antenna 262, wherein the wireless communication circuit 261 is connected to the switch 23 and the antenna 262.
[0052] The processing circuit 31 of the host 3 is connected to the storage circuit 32, multiple wireless communication modules 33 and 34, and port 35. The storage circuit 32 pre-stores multiple pairing data entries of the wireless communication modules 33 and 34. The processing circuit 31 is configured to transmit the pairing data of the wireless communication modules 33 and 34 to the control circuit 11 of the wireless transceiver 1, and the control circuit 11 of the wireless transceiver 1 stores the pairing data of the wireless communication modules 33 and 34 in the storage circuit 12.
[0053] The control circuit 21 of the peripheral device 2 accesses the storage circuit 22 and controls the wireless communication circuit 261 to transmit a first signal L1 toward the wireless transceiver device 1 via the antenna 262. The first signal L1 includes pairing data of the wireless communication module 24, pairing data of the wireless communication module 25, and pairing data of the wireless communication module 26.
[0054] The antenna 162 of the wireless transceiver 1 receives the first signal L1, and the wireless communication circuit 161 transmits the first signal L1 to the control circuit 11 of the wireless transceiver 1. The control circuit 11 determines whether the pairing data of the wireless communication module 24, the pairing data of the wireless communication module 25, and the pairing data of the wireless communication module 26 match three of the verification data in the storage circuit 12.
[0055] When the pairing data of wireless communication module 24, wireless communication module 25, and wireless communication module 26 match three of the verification data in storage circuit 12, the control circuit 11 of wireless transceiver device 1 accesses storage circuit 12 and controls wireless communication circuit 161 to send a second signal L2 to peripheral device 2 through antenna 162. The second signal L2 includes the pairing data of wireless communication module 16 of peripheral device 2, the pairing data of wireless communication module 33 of host 3, and the pairing data of wireless communication module 34 of host 3.
[0056] The antenna 262 of the peripheral device 2 receives the second signal L2, and the wireless communication circuit 261 transmits the second signal L2 to the control circuit 21 of the peripheral device 2. The control circuit 21 determines whether the pairing data of the wireless communication module 16, the pairing data of the wireless communication module 33, and the pairing data of the wireless communication module 34 match three of the verification data in the storage circuit 22.
[0057] When the pairing data of wireless communication module 16, wireless communication module 33, and wireless communication module 34 match three of the verification data in storage circuit 22, the wireless communication modules 24 and 25 of peripheral device 2 complete pairing with the wireless communication modules 33 and 34 of host 3, and the wireless communication module 26 of peripheral device 2 completes pairing with the wireless communication module 16 of wireless transceiver device 1.
[0058] Figure 4 This is a functional block diagram of a third embodiment of the wireless communication pairing system of the present invention. See also... Figure 4 The wireless transceiver 1 includes a control circuit 11, a storage circuit 12, a port 15, and a wireless communication module 16. The storage circuit 12 pre-stores pairing data and multiple verification data entries for the wireless communication module 16. The control circuit 11 is connected to the storage circuit 12, the port 15, and the wireless communication module 16. In this embodiment, the wireless communication module 16 is an ultra-wideband (UWB) communication module.
[0059] Peripheral device 2 includes a control circuit 21, a storage circuit 22, a switch 23, multiple wireless communication modules 24, 25, and 26, and a wired transmission module 27. The storage circuit 22 pre-stores multiple pairing data and multiple verification data of the multiple wireless communication modules 24, 25, and 26. The control circuit 21 is connected to the storage circuit 22, the switch 23, the multiple wireless communication modules 24, 25, and 26, and the wired transmission module 27, while the switch 23 is connected to the control circuit 21 and the multiple wireless communication modules 24, 25, and 26. In this embodiment, the wireless communication module 24 is a Bluetooth module, the wireless communication module 25 is a Wi-Fi module, and the wireless communication module 26 is an ultra-wideband (UWB) module.
[0060] The host 3 includes a processing circuit 31, a storage circuit 32, multiple wireless communication modules 33 and 34, and multiple ports 35 and 36. The storage circuit 32 pre-stores multiple pairing data entries of the multiple wireless communication modules 33 and 34, while the processing circuit 31 is connected to the storage circuit 32, the multiple wireless communication modules 33 and 34, and the multiple ports 35 and 36. In this embodiment, the wireless communication module 33 is a Bluetooth module, and the wireless communication module 34 is a Wi-Fi module.
[0061] Port 15 of the wireless transceiver 1 is connected to port 35 of the host 3, while the wired transmission module 27 of the peripheral device 2 is connected to port 36 of the host 3.
[0062] The control circuit 21 of the peripheral device 2 accesses the storage circuit 22 and controls the wireless communication circuit 261 to transmit a first signal L1 toward the wireless transceiver device 1 via the antenna 262, wherein the first signal L1 contains pairing data of the wireless communication module 26.
[0063] The antenna 162 of the wireless transceiver 1 receives the first signal L1, and the wireless communication circuit 161 transmits the first signal L1 to the control circuit 11 of the wireless transceiver 1. The control circuit 11 determines whether the pairing data of the wireless communication module 26 matches one of the verification data entries of the storage circuit 12.
[0064] When the pairing data of the wireless communication module 26 matches one of the verification data of the storage circuit 12, the control circuit 11 of the wireless transceiver device 1 controls the wireless communication circuit 161 to send a second signal L2 toward the peripheral device 2 through the antenna 162, wherein the second signal L2 contains the pairing data of the wireless communication module 16.
[0065] The antenna 262 of the peripheral device 2 receives the second signal L2, and the wireless communication circuit 241 transmits the second signal to the control circuit 21 of the peripheral device 2. The control circuit 21 determines whether the pairing data of the wireless communication module 16 matches one of the verification data entries of the storage circuit 22.
[0066] When the pairing data of the wireless communication module 16 matches one of the verification data of the storage circuit 22, the wireless communication module 26 of the peripheral device 2 completes the pairing with the wireless communication module 16 of the wireless transceiver device 1.
[0067] The control circuit 21 of the peripheral device 2 transmits the pairing data of the wireless communication module 24 and the pairing data of the wireless communication module 25 to the host 3 through the wired transmission module 27.
[0068] The processing circuit 31 of the host 3 determines whether the pairing data of the wireless communication module 24 and the pairing data of the wireless communication module 25 match two of the verification data in the storage circuit 32. When the pairing data of the wireless communication module 24 and the pairing data of the wireless communication module 25 match two of the verification data in the storage circuit 32, the processing circuit 31 of the host 3 transmits the pairing data of the wireless communication module 33 and the pairing data of the wireless communication module 34 to the control circuit 21 of the peripheral device 2 through the wired transmission module 27.
[0069] The control circuit 21 of the peripheral device 2 determines whether the pairing data of the wireless communication module 33 and the pairing data of the wireless communication module 34 match two of the verification data in the storage circuit 22.
[0070] When the pairing data of wireless communication module 33 and wireless communication module 34 match two of the verification data in storage circuit 22, the wireless communication modules 24 and 25 of peripheral device 2 complete the pairing with the wireless communication modules 33 and 34 of host 3.
[0071] Figure 5 This is a flowchart of a first embodiment of the wireless communication pairing method of the present invention. See also... Figure 5 In step S501, a wireless transceiver 1 and a peripheral device 2 are provided, wherein the wireless transceiver 1 includes multiple wireless communication modules 13 and 14, and the peripheral device 2 includes multiple wireless communication modules 24 and 25.
[0072] In step S502, one of the wireless communication modules 24 of the peripheral device 2 transmits a first signal L1, wherein the first signal L1 contains multiple pairs of pairing data corresponding to the multiple wireless communication modules 24 and 25 of the peripheral device 2, respectively. Specifically, the storage circuit 22 of the peripheral device 2 pre-stores the pairing data of the wireless communication modules 24 and the pairing data of the wireless communication modules 25.
[0073] In step S503, one of the wireless communication modules 13 of the wireless transceiver 1 receives the first signal L1 from the peripheral device 2.
[0074] In step S504, the control circuit 11 of the wireless transceiver 1 determines whether the multiple pairing data of the first signal L1 matches the multiple verification data of the wireless transceiver 1. If yes, proceed to step S505; otherwise, end the process (step S506). Specifically, the storage circuit 12 of the wireless transceiver 1 pre-stores multiple verification data.
[0075] In step S505, the control circuit 11 of the wireless transceiver 1 controls the wireless communication module 13 to transmit a second signal L2, wherein the second signal L2 contains multiple pairs of pairing data corresponding to the multiple wireless communication modules 13 and 14 of the wireless transceiver 1. Specifically, the storage circuit 12 of the wireless transceiver 1 pre-stores the pairing data of the wireless communication modules 13 and 14.
[0076] In step S507, the wireless communication module 24 of the peripheral device 2 receives the second signal L2 from the wireless transceiver device 1.
[0077] In step S508, the control circuit 21 of the peripheral device 2 determines whether the multiple pairing data of the second signal L2 matches the multiple verification data of the peripheral device 2. If yes, proceed to step S509; otherwise, end the method (step S510). Specifically, the storage circuit 22 of the peripheral device 2 pre-stores multiple verification data.
[0078] In step S509, the multiple wireless communication modules 24 and 25 of the peripheral device 2 are paired with the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1.
[0079] pass Figure 5 In one embodiment, after one of the wireless communication modules of the peripheral device 2 is paired with the wireless transceiver device 1, the other wireless communication modules that have not yet been paired are automatically paired with the wireless transceiver device 1, eliminating the hassle of manual repetitive pairing operations.
[0080] Figure 6 This is a flowchart of a second embodiment of the wireless communication pairing method of the present invention. See also... Figure 5In step S601, a wireless transceiver 1 and a peripheral device 2 are provided, wherein the wireless transceiver 1 includes multiple wireless communication modules 13 and 14, and the peripheral device 2 includes multiple wireless communication modules 24 and 25.
[0081] In step S602, one of the wireless communication modules 24 of the peripheral device 2 transmits a first signal L1, wherein the first signal L1 contains multiple pairs of pairing data corresponding to the wireless communication modules 24 and 25 of the peripheral device 2, respectively.
[0082] In step S603, one of the wireless communication modules 13 of the wireless transceiver device 1 receives the first signal L1.
[0083] In step S604, the control circuit 11 of the wireless transceiver 1 determines whether the multiple pairing data of the first signal L1 matches the multiple verification data of the wireless transceiver 1. If yes, proceed to step S605; otherwise, end the process (step S606).
[0084] In step S605, the control circuit 11 of the wireless transceiver 1 stores multiple pairs of data of the first signal L1 in the storage circuit 12 of the wireless transceiver 1.
[0085] In step S607, the control circuit 11 of the wireless transceiver device 1 controls the wireless communication module 13 to transmit a second signal L2, wherein the second signal L2 contains multiple pairs of data corresponding to the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1.
[0086] In step S608, the wireless communication module 24 of the peripheral device 2 receives the second signal L2.
[0087] In step S609, the control circuit 21 of the peripheral device 2 determines whether the multiple pairing data of the second signal L2 matches the multiple verification data of the peripheral device 2. If yes, proceed to step S610; otherwise, end the method (step S611).
[0088] In step S610, the multiple wireless communication modules 24 and 25 of the peripheral device 2 are paired with the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1.
[0089] In step S612, the control circuit 21 of the peripheral device 2 stores multiple paired data of the second signal L2 in the storage circuit 22 of the peripheral device 2.
[0090] pass Figure 6In this embodiment, since the pairing data stored in the wireless transceiver 1 and the pairing data stored in the peripheral device 2 have both been verified before pairing, even if the wireless transceiver 1 is connected to different hosts, the peripheral device 2 does not need to pair with the wireless transceiver 1 again and can immediately establish a wireless connection with the wireless transceiver 1.
[0091] Figure 7 This is a flowchart of a third embodiment of the wireless communication pairing method of the present invention. See also... Figure 7 In step S701, a wireless transceiver 1, a peripheral device 2, a host 3, and a cloud server are provided, wherein the wireless transceiver 1 includes multiple wireless communication modules 13 and 14, and the peripheral device 2 includes multiple wireless communication modules 24 and 25.
[0092] In step S702, one of the wireless communication modules 24 of the peripheral device 2 transmits a first signal L1, wherein the first signal L1 contains multiple pairs of pairing data corresponding to the multiple wireless communication modules 24 and 25 of the peripheral device 2 respectively.
[0093] In step S703, one of the wireless communication modules 13 of the wireless transceiver device 1 receives the first signal L1.
[0094] In step S704, the control circuit 11 of the wireless transceiver 1 determines whether the multiple pairing data of the first signal L1 matches the multiple verification data of the wireless transceiver 1. If yes, proceed to step S705; otherwise, end the process (step S706).
[0095] In step S705, the control circuit 11 of the wireless transceiver 1 transmits multiple pairs of paired data of the first signal L1 to the host 3.
[0096] In step S707, host 3 transmits multiple pairs of pairing data of the first signal L1 to the cloud server via the network.
[0097] In step S708, the control circuit 11 of the wireless transceiver device 1 controls the wireless communication module 13 to transmit a second signal L2, wherein the second signal L2 contains multiple pairs of paired data corresponding to the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1.
[0098] In step S709, the wireless communication module 24 of the peripheral device 2 receives the second signal L2.
[0099] In step S710, the control circuit 21 of the peripheral device 2 determines whether the multiple pairing data of the second signal L2 matches the multiple verification data of the peripheral device 2. If yes, proceed to step S711; otherwise, end the method (step S712).
[0100] In step S711, the multiple wireless communication modules 24 and 25 of the peripheral device 2 are paired with the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1, respectively.
[0101] In step S713, the control circuit 21 of the peripheral device 2 stores multiple paired data of the second signal L2 in the storage circuit 22 of the peripheral device 2.
[0102] pass Figure 7 In this embodiment, since the pairing data stored in the peripheral device 2 and the pairing data stored in the cloud server have been verified in advance, the wireless transceiver 1 can immediately establish a wireless connection with the wireless transceiver 1 as long as it downloads the pairing data from the cloud server.
[0103] Figure 8 This is a flowchart of a fourth embodiment of the wireless communication pairing method of the present invention. See also... Figure 8 In step S801, a wireless transceiver 1 and a peripheral device 2 are provided, wherein the wireless transceiver 1 includes multiple wireless communication modules 13 and 14, and the peripheral device 2 includes multiple wireless communication modules 24 and 25.
[0104] In step S802, one of the wireless communication modules 24 of the peripheral device 2 transmits a first signal L1, wherein the first signal L1 contains multiple pairs of pairing data corresponding to the multiple wireless communication modules 24 and 25 of the peripheral device 2 respectively.
[0105] In step S803, one of the wireless communication modules 13 of the wireless transceiver device 1 receives the first signal L1.
[0106] In step S804, the control circuit 11 of the wireless transceiver 1 determines whether the multiple pairing data of the first signal L1 matches the multiple verification data of the wireless transceiver 1. If yes, proceed to step S805; otherwise, end the process (step S806).
[0107] In step S805, the control circuit 11 of the wireless transceiver device 1 controls the wireless communication module 13 to transmit a second signal L2, wherein the second signal L2 contains multiple pairs of data corresponding to the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1.
[0108] In step S807, the wireless communication module 24 of the peripheral device 2 receives the second signal L2.
[0109] In step S808, the control circuit 21 of the peripheral device 2 determines whether the multiple pairing data of the second signal L2 matches the multiple verification data of the peripheral device 2. If yes, proceed to step S809; otherwise, end the method (step S810).
[0110] In step S809, the multiple wireless communication modules 24 and 25 of the peripheral device 2 are paired with the multiple wireless communication modules 13 and 14 of the wireless transceiver device 1, respectively.
[0111] In step S811, the control circuit 21 of the peripheral device 2 determines the strength of multiple wireless signals between the multiple wireless communication modules 24 and 25 of the peripheral device 2 and the wireless transceiver device 1.
[0112] In step S812, the control circuit 21 of the peripheral device 2 selects one of the wireless communication modules 24 to establish a wireless connection with the wireless transceiver device 1, and the wireless communication module 24 selected by the control circuit 21 corresponds to the maximum wireless signal strength.
[0113] pass Figure 8 In this embodiment, after all wireless communication modules of the peripheral device 2 are paired with the wireless transceiver device 1, the peripheral device 2 can automatically select the wireless communication module with the strongest signal strength to establish a wireless connection with the wireless transceiver device 1. Therefore, the peripheral device 2 can automatically select the wireless communication module with the best communication quality to establish a wireless connection with the wireless transceiver device 1 according to different environments.
[0114] One of the advantages of this invention is that the wireless communication pairing system and method provided by this invention allow the other unpaired wireless communication modules to automatically pair with the wireless transceiver device once one of the multiple wireless communication modules of the peripheral device has completed pairing. This eliminates the hassle of manual, repetitive pairing operations.
[0115] The content disclosed above is only a preferred and feasible embodiment of the present invention, and is not intended to limit the scope of protection of the claims of the present invention. Therefore, all equivalent technical changes made based on the content of the present invention specification and drawings are included within the scope of protection of the claims of the present invention.
Claims
1. A wireless communication pairing system, characterized in that, The wireless communication pairing system includes: A wireless transceiver; A peripheral device includes a control circuit and a plurality of wireless communication modules, the control circuit being connected to the plurality of wireless communication modules, and the control circuit being configured to perform the following operations: The wireless transceiver is paired with one of the multiple wireless communication modules. In response to the pairing of the wireless communication module and the wireless transceiver device, multiple pairing data required for pairing of multiple wireless communication modules are obtained from the wireless transceiver device through the paired wireless communication module. Based on multiple pairs of pairing data, the wireless transceiver is paired with multiple wireless communication modules that have not yet been paired.
2. The wireless communication pairing system according to claim 1, characterized in that, The wireless transceiver includes multiple different wireless communication modules, and each pairing data includes communication protocol data and identification data of the wireless communication module of the wireless transceiver.
3. The wireless communication pairing system according to claim 2, characterized in that, Each of the wireless communication modules of the peripheral device includes a wireless communication circuit and an antenna, the wireless communication circuit being connected to the control circuit and the antenna.
4. The wireless communication pairing system according to claim 1, characterized in that, The wireless transceiver includes a storage circuit configured to store multiple pairs of pairing data from the peripheral device, each pairing data containing communication protocol data and identification data of the wireless communication module of the peripheral device.
5. The wireless communication pairing system according to claim 1, characterized in that, The wireless transceiver includes a control circuit, multiple different wireless communication modules, and a port. The control circuit of the wireless transceiver is connected to the multiple wireless communication modules and the port of the wireless transceiver.
6. The wireless communication pairing system according to claim 1, characterized in that, The wireless communication pairing system further includes a host, and the wireless transceiver is connected to the host. The wireless transceiver is configured to acquire multiple pairing data from multiple wireless communication modules and transmit multiple pairs of the pairing data to the host. The host is configured to transmit multiple pairs of the pairing data to a cloud server.
7. The wireless communication pairing system according to claim 1, characterized in that, The control circuit of the peripheral device is configured to determine a wireless signal strength between each wireless communication module and the wireless transceiver and select the wireless communication module with the largest wireless signal strength to establish a wireless connection with the wireless transceiver.
8. The wireless communication pairing system according to claim 1, characterized in that, The plurality of wireless communication modules include a Bluetooth communication module and a 2.4 GHz communication module.
9. The wireless communication pairing system according to claim 1, characterized in that, The peripheral device also includes a wired transmission module.
10. A wireless communication pairing method, characterized in that, The wireless communication pairing method includes: A wireless transceiver and a peripheral device comprising multiple wireless communication modules are provided; The wireless transceiver is paired with one of the multiple wireless communication modules. In response to the pairing of the wireless communication module and the wireless transceiver, multiple pairing data entries required for pairing of the multiple wireless communication modules are obtained from the wireless transceiver through the paired wireless communication module; and Based on multiple pairs of pairing data, the wireless transceiver is paired with multiple wireless communication modules that have not yet completed pairing.
11. The wireless communication pairing method according to claim 10, characterized in that, The wireless transceiver includes multiple different wireless communication modules, and each pairing data includes communication protocol data and identification data of the wireless communication module of the wireless transceiver.
12. The wireless communication pairing method according to claim 10, characterized in that, The wireless communication pairing method further includes: storing multiple pairing data from the peripheral device in a storage circuit of the wireless transceiver device via a control circuit of the wireless transceiver device, wherein each pairing data from the peripheral device includes communication protocol data and identification data of the wireless communication module of the peripheral device.
13. The wireless communication pairing method according to claim 10, characterized in that, The wireless communication pairing method further includes: transmitting multiple pairs of pairing data from the peripheral device to a host via the wireless transceiver; and the host transmitting the multiple pairs of pairing data from the peripheral device to a cloud server.
14. The wireless communication pairing method according to claim 10, characterized in that, A control circuit of the peripheral device is configured to determine a wireless signal strength between each of the wireless communication modules and the wireless transceiver; and the control circuit selects the wireless communication module with the largest wireless signal strength to establish a wireless connection with the wireless transceiver.