WO2018018826A1 - 一种用于移动设备的无线连接装置 - Google Patents

一种用于移动设备的无线连接装置 Download PDF

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Publication number
WO2018018826A1
WO2018018826A1 PCT/CN2016/108475 CN2016108475W WO2018018826A1 WO 2018018826 A1 WO2018018826 A1 WO 2018018826A1 CN 2016108475 W CN2016108475 W CN 2016108475W WO 2018018826 A1 WO2018018826 A1 WO 2018018826A1
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Prior art keywords
wireless
network
mobile device
transmitting device
wireless transmitting
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PCT/CN2016/108475
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English (en)
French (fr)
Inventor
施京京
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施京京
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Publication of WO2018018826A1 publication Critical patent/WO2018018826A1/zh

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    • H02J5/005
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J50/00Circuit arrangements or systems for wireless supply or distribution of electric power
    • H02J50/80Circuit arrangements or systems for wireless supply or distribution of electric power involving the exchange of data, concerning supply or distribution of electric power, between transmitting devices and receiving devices
    • H02J7/025
    • 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
    • H04B1/40Circuits

Definitions

  • the present invention relates to the technical field of mobile device connection, and in particular to a wireless connection device for a mobile device.
  • some existing exhibition halls, supermarkets, banks, train boxes, mines, etc. may install multiple mobile electronic devices in a specific space, but there may be some electronic devices in different applications. Need to change the location, or need to add new electronic equipment.
  • the supermarket will change the arrangement of the containers every few months, or the exhibition will change the arrangement of the booths in a fixed time.
  • Electronic equipment may be used to change or increase the corresponding movable parts more conveniently and quickly.
  • the prior art generally uses a wired connection, and connects a corresponding electronic device through a reserved wired wire interface to supply power or provide a network.
  • a wired connection connects a corresponding electronic device through a reserved wired wire interface to supply power or provide a network.
  • the replacement step is cumbersome and time consuming.
  • Energy, on the other hand, reserved wire ends may affect the user's visual aesthetic.
  • the present invention provides a wireless connection device for a mobile device to solve the above problems in the prior art.
  • the application provides a wireless connection device for a mobile device, including: a power supply, a wireless transmission device
  • the wireless receiving device is at least one of the wireless receiving devices, and the wireless receiving device is at least one of the wireless receiving devices;
  • the power source is connected to the wireless transmitting device, the wireless receiving device is disposed on the mobile device body, and the wireless transmitting device transmits power to the electromagnetic coil of the wireless receiving device through an electromagnetic coil, and the wireless receiving device and the wireless receiving device
  • the wireless transmitting device transmits information through a preset wireless network transmission interface.
  • the wireless network interface includes a first network node and a second network node, the first network node is disposed in the wireless transmitting device, and the second network node is disposed in the wireless receiving device, where There is a match between the first network node and the second network node to implement bidirectional information transmission between the wireless transmitting device and the wireless receiving device.
  • the wireless network interface further includes a wireless Bluetooth interface, a wireless serial interface, and/or a wireless power supply that provides low-speed wireless communication functions.
  • the method further includes a conversion interface of the wireless network, where the conversion interface of the wireless network is disposed at a receiving end of the wireless receiving device, and the conversion interface of the wireless network receives the received wireless network according to the device feature of the mobile device body. Converted to an interface type that matches the mobile device body.
  • the device feature for the mobile device body is to identify and acquire an interface type adopted by the mobile device body
  • the wireless device body includes one or more of the following devices: a network camera, a billboard, a smoke alarm, a carbon monoxide alarm, a temperature and humidity alarm, a broadcast speaker, a network controlled lantern, a wireless router.
  • the method further includes a magnetic adsorption device having a shape matching the shape of the wireless transmitting device and the wireless receiving device, wherein the magnetic adsorbing device is disposed opposite to the wireless transmitting device or the wireless receiving device On the contact surface, both the wireless transmitting device and the wireless receiving device are fastened into a sealed structure.
  • the magnetic adsorption devices are two, which are respectively disposed on the contact faces of the wireless transmitting device and the wireless receiving device.
  • the method further includes a securing device that secures the snapped wireless transmitting device and the wireless receiving device into a sealed structure by the clamp.
  • the power source is connected to the wireless transmitting device, wherein the power source supplies power to the wireless transmitting device, and a plurality of the wireless transmitting devices are connected to each other through a wired network;
  • the wireless transmitting device connects to a preset server end through the wired network.
  • the power source is connected to the wireless transmitting device, and specifically, the power source is connected to the wireless transmitting device by means of an active Ethernet; or the power source is connected to the wireless device through a power cable and a network cable. Launcher.
  • the signal shielding device is further disposed, and the signal shielding device is disposed in the wireless transmitting device, the wireless receiving device, and the mobile device body, and is disposed inside the signal shielding device.
  • the wireless receiving device and the transmitting device have a corresponding relationship, and the corresponding relationship includes a one-to-one correspondence, or a one-to-many correspondence, or a many-to-many correspondence.
  • a control device is further included, the control device being connected to the wireless transmitting device to manage power supply power and/or network status output by the wireless transmitting device.
  • the present application provides a wireless connection device for a mobile device, including: a power source, a wireless transmitting device, a wireless receiving device, a mobile device body; At least one of the transmitting devices, the wireless receiving device is at least one; the power source is connected to the wireless transmitting device, the wireless receiving device is disposed on the mobile device body, and the wireless transmitting device transmits power through the electromagnetic coil To the electromagnetic coil of the wireless receiving device, the wireless receiving device and the wireless transmitting device transmit information through a preset wireless network transmission interface.
  • the wireless connection device provided by the present application may implement a wireless connection between the wireless transmitting device and the wireless receiving device, the wireless connection including transmission of radio energy between the wireless transmitting device and the wireless receiving device, and
  • the method includes the wireless receiving device transmitting information through a wireless network transmission interface in the wireless transmitting device. Therefore, the wireless connecting device can implement the hidden installation of the wireless transmitting device, and there is no exposed wired wire head, and the appearance is not affected. And the wireless connection device completely breaks the traditional wired connection manner, and can provide radio energy and wireless network for the mobile device body connected by the wireless transmitting device.
  • the wireless transmitting device may be multiple, as long as the wireless receiving device can be docked with the wireless transmitting device, the wireless transmitting device can be used for charging or connecting to the network, etc., therefore, the wireless receiving device can be replaced at any time.
  • the mobile device body can be interchangeably moved as long as the mobile device body can match the type of the wireless network formed by the wireless transmitting device, without the need for disassembly and installation of any wired connector, and the replacement step is simple and fast. It does not require time and effort, and provides great convenience for users.
  • FIG. 1 is a perspective view of a wireless transmitting device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 2 is a top plan view of a wireless transmitting device in a wireless connection device for a mobile device provided by a first embodiment of the present application.
  • FIG 3 is a perspective view of a wireless receiving device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 4 is a top plan view of a wireless receiving device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 5 is a structural diagram of a connection location of a wireless receiving device and a mobile device body in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 6 is a network transmission topology diagram formed by applying the wireless connection apparatus according to the first embodiment of the present application.
  • 001 wireless transmitting device, 002, wireless receiving device, 001-1, first magnetic adsorption device, 001-2, first network node, 001-3, first coil, 002-1, second magnetic adsorption device , 002-2, second network node, 002-3, second coil, 003, mobile device body.
  • the present application provides a wireless connection device for a mobile device, which can provide wireless energy to a mobile device body by means of a wireless connection, or can also provide a wireless network and a transmission interface of the wireless network and the like for the mobile device body at the same time.
  • the wireless transmitting device in the wireless connecting device can realize hidden installation, and there is no exposed wired wire head, and the appearance is not affected.
  • the wireless connection device completely breaks the traditional wired connection mode, and can provide power and network for the mobile device body connected by the wireless transmitting device.
  • the wireless transmitting device may be multiple, as long as the wireless receiving device can be docked with the wireless transmitting device, the wireless transmitting device can be used for wireless energy transmission or wireless network application, etc., therefore,
  • the mobile device body provided on the wireless receiving device can be replaced at any time, as long as the mobile device body is moved, without the need for disassembly and installation of any wired connector, the replacement step is simple and fast, and does not require time and time. Energy, providing users with great convenience.
  • 1 is a perspective view of a wireless transmitting device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • 2 is a top plan view of a wireless transmitting device in a wireless connection device for a mobile device provided by a first embodiment of the present application.
  • 3 is a perspective view of a wireless receiving device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 4 is a top plan view of a wireless receiving device in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • FIG. 5 is a structural diagram of a connection location of a wireless receiving device and a mobile device body in a wireless connection device for a mobile device according to a first embodiment of the present application.
  • a wireless connection device for a mobile device provided by an embodiment of the present application includes: a power source (not shown), a wireless transmitting device 001, a wireless receiving device 002, and a mobile device body 003. .
  • a power source not shown
  • a wireless transmitting device 001 a wireless transmitting device
  • a wireless receiving device 002 a wireless receiving device
  • a mobile device body 003. The above sections are described and described in detail below.
  • the wireless transmitting device 001 and the wireless receiving device 002 are main parts, and through these two parts, the mobile device body 003 connected to the wireless receiving device 002 can be provided with wireless energy transmission ( Commonly known as wireless charging), as well as providing a wireless network connection.
  • wireless energy transmission Commonly known as wireless charging
  • the power source is a source of electrical energy for the wireless transmitting device 001.
  • the power source is connected to the wireless transmitting device 001.
  • the manner of its specific connection includes two ways, one is to provide only wireless transmission of the wireless transmitting device 001, and the other is not only to provide wireless energy transmission for the wireless transmitting device 001, but also for all wireless Network communication between the transmitting devices 001 provides a means of connecting the ties.
  • the power source is connected to the wireless transmitting device 001, the power source supplies power to the wireless transmitting device 001, and a plurality of the wireless transmitting devices 001 are connected through a wired network, and the wireless The transmitting device connects to the preset server end through the wired network.
  • the network information source may be converted into a streaming media or a data stream matched with the corresponding mobile device body 003 through a subsequent wireless network conversion interface, displayed or embodied in the corresponding Mobile device body 003. The process of information transmission and conversion will be described and illustrated in detail in the subsequent description of the topology relationship of the entire network.
  • the power source is connected to the wireless transmitting device 001. Specifically, the power source is connected to the wireless transmitting device 001 through an active Ethernet mode (POE power supply); or, the power source passes through a power line.
  • the wireless transmitting device 001 is connected to the network cable.
  • all the wireless transmitting devices 001 can be connected by wires to form a network, which can not only supply power to the wireless transmitting device 001, but also form a network.
  • the wire can be a wire and a power cord, in which case two wires need to be laid.
  • Another form can be powered by Power Over Ethernet (POE).
  • POE is also called LAN-based power supply system or active Ethernet.
  • POE technology is a way to power the network cable, eliminating the need for a single power cable. Only need to set the network cable, which can supply power to the wireless transmitting device 001 and provide a network connection network cable. In this case, only one network cable needs to be laid.
  • PLC Power Line Communication
  • the biggest feature of PLC no need to re-establish the network, as long as there is a wire, the data can be transmitted, which has undoubtedly become one of the best solutions to solve this smart home data transmission. At the same time, because the data is only transmitted in the range of the family, the trouble of binding the PLC application will no longer exist.
  • the remote control of the home appliance can also be realized by connecting the PC to the PC through the traditional network and then controlling the home appliance.
  • a control device may be disposed between the power source and the wireless transmitting device 001, and the control device may be implemented by using a server, and the control device is connected to the wireless transmitting device 001 to The power supply and/or network status output by the transmitting device 001 is managed.
  • the management mode may include a case where the power source is 0 (the case where the power is turned off), that is, the management of the power switch, or the management of the network state includes the management of the network traffic and the management of the network state on or off.
  • the power switch of the wireless transmitting device 001 can be controlled by the control device, or the wireless receiving device 002 can be disconnected without permission.
  • the power output power of a certain wireless transmitting device 001 may be controlled, or the network traffic of a certain wireless transmitting device 001 may be limited.
  • the wireless transmitting device 001 is mentioned in the case where the power source is described above, and the following is not mentioned.
  • the line transmitting device 001 is described and illustrated in detail.
  • the wireless transmitting device 001 is at least one. Generally, a plurality of the wireless transmitting devices 001 need to be disposed to implement transmission of wireless power between the wireless receiving device 002 and a wireless network.
  • the wireless transmitting device 001 can be installed in a hidden installation manner, and the hidden installation manner can be fixedly installed in a hidden location. Among them, it can be placed in some baffles or some pipes, or it can be embedded in the power supply box for embedded hidden installation.
  • a supermarket has a decorative wall that is 60 meters long, and a number of (possibly 20) wireless transmitting devices 001 are installed on the decorative wall, and a wireless transmitting device 001 is provided every 3 meters.
  • the wireless transmitting device 001 is installed in a hidden manner. Therefore, there is no line outside the decorative wall, and the appearance of the decorative wall is not affected.
  • the decorative wall is an ordinary ceiling or wall or cabinet when viewed from the outside.
  • the outer casing of the wireless transmitting device 001 can be configured to have a certain thickness, so that the security of the wireless transmitting device 001 can be achieved, thereby preventing damage.
  • the wireless transmitting device 001 Since the transmission of data information is required between the wireless receiving device 002 and the wireless transmitting device 001, the wireless transmitting device 001 is initially introduced and described in conjunction with the wireless receiving device 002.
  • the wireless receiving device 002 is at least one.
  • the wireless receiving device 002 is a device that cooperates with the wireless receiving device 002, and the wireless receiving device 002 is disposed on the mobile device body 003 to implement the mobile device body 003 and the wireless transmitting device 001. Docking and signal transmission.
  • the conversion interface of the wireless network is disposed at a receiving end of the wireless receiving device, and the conversion interface of the wireless network converts the received wireless network into the body of the mobile device according to the device feature of the mobile device body.
  • the device feature for the mobile device body is to identify and acquire an interface type adopted by the mobile device body;
  • the wireless device body includes one or more combinations of the following devices: a network camera, a billboard, a smoke alarm , carbon monoxide alarm, humidity alarm, broadcast speakers, network control lights, wireless routers, etc.
  • audio video passes through the converted network streaming media, its docked mobile device body
  • the network camera can be installed; the network streaming media can be installed with the billboard in the form of audio and video; the gas or temperature humidity sensor can change the network switch, and the docked mobile device body can be a smoke alarm, a carbon monoxide alarm.
  • the temperature alarm, the humidity alarm can be displayed through the audio in the form of a broadcast speaker, and the converted network streaming media can be controlled by the network-controlled colored lights through lighting control; or converted network streaming media After WIFI hotspots can be covered by wireless network coverage.
  • This application is not limited to the cases listed above.
  • the mobile device body 003 can obtain power from the wireless transmitting device 001 via a wireless connection via the wireless receiving device 002, and the mobile device body 003 can also be transmitted from the wireless via the wireless receiving device 002.
  • the device 001 implements network communication by means of wireless connection. Therefore, there is no wired connection between the wireless transmitting device 001 and the mobile device body 003.
  • Wireless can be used to provide lighting for a certain place, provide a network camera for a certain place, provide a network broadcast for a certain place, provide a network billboard for a certain place, provide a network of colored lights for somewhere, provide somewhere with Network-related smoke alarms, etc., and various topological networks such as varying relationships and locations of various devices are very convenient.
  • the wireless connection device 002 of the decorative lantern can be quickly replaced with a network camera or WIFI overlay or the like by using the wireless connection device.
  • the mobile device may not be provided in a section of the wireless receiving device 002. Accordingly, the area may be set as the area of the shelf according to the original plan.
  • the wireless receiving device 002 is wirelessly transmitted with wireless power. Specifically, the wireless transmitting device 001 transmits power to the second coil 002-3 of the wireless receiving device 002 through the first coil 001-3.
  • the wireless energy transmission technology (commonly known as wireless charging technology) belongs to the existing advanced charging technology.
  • the principles generally adopted by the wireless energy transmission technology are electromagnetic induction, radio waves, and resonance principles. At this stage, the principle of electromagnetic induction is generally used to realize the transmission of radio energy.
  • the wireless charging technology can also be called non-contact charging, and the power supply to the power receiving end can be realized by not using a data line or a power line.
  • the near field induction that is, inductive coupling
  • the charger and the electric device transmit energy by inductive coupling, there is no wire connection between the two, so the charger and the electric device can be exposed without conductive contacts.
  • the use of wireless charging technology can save the existence of data lines or power lines, bringing great convenience to users.
  • wireless charging technology now adopts certain standards.
  • Qi is the world's first wireless charging technology standard for wireless charging technology, the Wireless Charging Consortium (WPC), which has the convenience and versatility.
  • WPC Wireless Charging Consortium
  • Great feature First of all, different brands of products, as long as there is a Qi logo, you can use Qi wireless charger to charge. Secondly, it overcomes the technical bottleneck of wireless charging "universality". In the near future, mobile phones, cameras, computers and other products can be charged with Qi wireless charger, providing a possibility for large-scale application of wireless charging.
  • the wireless connection device used in the present application does not necessarily need to adopt the above standard, and the wireless connection device realizes the function of wirelessly charging the wireless receiving device 002 through the self-made wireless transmitting device 001 and the wireless receiving device 002 matched thereto.
  • the wireless transmitting device 001 transmits the electric quantity to the second coil 002-3 of the wireless receiving device 002 and the associated circuit matched by the first coil 001-3 and the associated circuit therewith.
  • the wireless transmitting device 001 transmits the electric quantity to the second coil 002-3 of the wireless receiving device 002 and the associated circuit matched by the first coil 001-3 and the associated circuit therewith.
  • a varying magnetic flux can be generated according to the current change, due to the varying magnetic flux
  • a current may be generated in the second coil 002-3 in the wireless receiving device 002 corresponding thereto, and the electric energy in the wireless transmitting device 001 is transmitted to the wireless receiving device 002, which is implemented as the wireless receiving device. 002 for wireless charging.
  • the first coil 001-3 and the second coil 002- may be copper coils, and the ferrite magnetic material may form a shielding space.
  • the shapes of the first coil 001-3 and the second coil 002-3 may be various, as shown in FIG. 1, the shape may be a circular structure, or the shape of the coil may be elliptical, or square, etc. Its shape does not affect the working process and working principle of the coil.
  • the wireless transmitting device 001 and the wireless receiving device 002 have a wireless network
  • the transmission interface can realize the network connection between the two and the bidirectional transmission of information through the transmission interface of the wireless network.
  • the wireless network interface includes a first network node 001-2 and a second network node 002-2, the first network node 001-2 is disposed in the wireless transmitting device 001, and the second network node 002-2 Provided in the wireless receiving device 002, and having a match between the first network node and the second network node to implement two-way information transmission between the wireless transmitting device and the wireless receiving device (two-way communication).
  • the wireless network interface is not limited to a WIFI connection, and the wireless network interface adopts one or more combinations of the following interfaces: a wireless Bluetooth interface, a wireless serial interface, and a wireless power interface that provides low-speed wireless communication functions.
  • the wireless power interface itself can also provide simple communication, but the current technical level can only be 1Kbps, the rate is very low, can only be used for simple control, such as LED lights, smoke alarms.
  • the first network node 001-2 may be a WIFI transmit antenna
  • the second network node 002-2 may be a WIFI receive antenna, which is achievable between the first network node 001-2 and the second network node 002-2.
  • the two-way communication therefore, the first network node 001-2 may be a WIFI receiving antenna, and correspondingly, the second network node 002-2 may be a WIFI transmitting antenna. Therefore, transmission and reception are relative and a specific degree of matching between transmission and reception.
  • WIFI is a technology that allows electronic devices to connect to a wireless local area network (WLAN), typically using a 2.4G UHF or 5G SHF ISM radio frequency band. Connecting to a wireless LAN usually requires password protection; but it can also be open, allowing any device within the WLAN range to be connected.
  • WLAN wireless local area network
  • the WIFI transmitting antenna is configured to transmit a wireless network signal to the outside, and the WIFI receiving antenna corresponding to the WIFI receiving antenna is used for receiving the wireless network signal transmitted by the WIFI transmitting antenna, and the two are used together of.
  • the above is a detailed introduction and description of the wireless transmitting device 001 and the wireless receiving device 002, and the principle and working process applied to the wireless connection mode between the two. Due to the wireless Since the transmitting device 001 is used in conjunction with the wireless receiving device 002, the following describes and describes the state and cooperation mode of the two devices in the operating state.
  • the wireless transmitting device 001 and the wireless receiving device 002 have an opposite contact surface.
  • the first coil 001-3 and the first network node 001-2 of the wireless transmitting device 001 are both disposed on the contact surface side, and correspondingly, the second coil 002-3 of the wireless receiving device 002 and the second network node 002-2 should also be disposed on the contact surface side.
  • the wireless receiving device 002 and the wireless transmitting device 001 are buckled. In time, the two contact faces need to be relatively engaged to ensure that the first network node 001-2 and the second network node 002-2 are located in the space formed by the fastening.
  • the WIFI transmitting antenna and the WIFI receiving antenna can also be made into directional antennas, corresponding to each other, thus forming a small environment isolated from the outside, forming a natural shielding space, in which the wireless network signal is not Will go out, the outside signal will not enter, interfere with the network information in the small environment.
  • the wireless transmission power and the reception sensitivity can be simultaneously reduced, and the directional antenna is used to make the external wireless signal not enter, and the signal inside cannot be output.
  • This enables wireless network technology (WIFI communication technology) to be applied to highly reliable scenarios and can guarantee relatively high communication bandwidth.
  • the specific manner in which the wireless transmitting device 001 and the wireless receiving device 002 are buckled together to form a shielding space may be a magnetic adsorption method.
  • the wireless connection device further includes a magnetic adsorption device including a first magnetic adsorption device 001-1 and a second magnetic adsorption device 002-1.
  • the shapes of the first magnetic adsorption device 001-1 and the second magnetic adsorption device 002-1 are matched with the shapes of the wireless transmitting device 001 and the wireless receiving device 002, and the first magnetic adsorption device 001-1 is disposed at The wireless transmitting device 001 is disposed on the contact surface of the wireless transmitting device 001, and the second magnetic adsorbing device 002-1 is disposed on an opposite contact surface of the wireless receiving device 002, so that the wireless transmitting device 001 and the wireless receiving device 002 are both buckled Combined into a sealed structure.
  • the first magnetic adsorption device 001-1 and the second magnetic adsorption device 002-1 may be a combination of a permanent magnet and an iron, or both may be matched by two magnets.
  • the wireless transmitting device 001 and the wireless receiving device 002 are both provided with magnetic adsorption devices. Therefore, the magnetic adsorption devices are two, respectively disposed at the contact surface of the wireless transmitting device 001 and the wireless receiving device 002. on.
  • the wireless transmitting device 001 and the wireless receiving device 002 are both flat disk structures.
  • the magnetic adsorption device is also configured as a ring structure, and correspondingly, the first coil 001-3, a second coil 002-3, a first network node 001-2 disposed in a space formed by the wireless transmitting device 001 and the ring structure, and two of the wireless transmitting device 001 and the receiving device After the magnetic adsorption device is adsorbed, the first network node 001-2 on the wireless transmitting device 001 and the second network node 002-2 on the wireless receiving device 002 are in a shielded space to ensure network signals in the space. Free from outside interference.
  • the wireless transmitting device 001 and the wireless receiving device 002 are connected by magnetic attraction, which is convenient for installation and disassembly, and can realize automatic positioning function during installation.
  • the second magnetic adsorption device 002-1 on the wireless receiving device 002 can be set as a permanent magnet
  • the first magnetic adsorption device 001 on the wireless transmitting device 001- 1 is set to iron that can be adsorbed by the permanent magnet. Because the permanent magnet may demagnetize itself, the magnetic force will be weak after a while. In the above manner, it can be ensured that the wireless receiving device 002 is outside, easy to disassemble and repair.
  • the wireless transmitting device 001 is disposed inside, and needs to be hidden and installed, and generally does not need to be replaced.
  • the wireless connection device further includes a fastening device, and the fastening device fixes the engaged wireless transmitting device 001 and the wireless receiving device 002 into a sealed structure by a clamp.
  • the wireless transmitting device 001 can be installed in a fully sealed pipeline, and the wireless receiving device 002 and the mobile device body 003 are explosion-proof and fully sealed. Achieve high standards of explosion protection while achieving easy equipment replacement. In this scenario, the explosion-proof casing will be relatively heavy, and only magnetic attraction is insufficient. It is necessary to add the fastening device, such as a fastening device such as a buckle or a screw, to assist the wireless transmitting device 001 and the The fixing between the wireless receiving devices 002.
  • a fastening device such as a buckle or a screw
  • the wireless receiving device 002 has a corresponding relationship with the transmitting device, and the corresponding relationship is a one-to-one correspondence relationship.
  • the one-to-one correspondence relationship has been described above, but in order to improve the network speed.
  • a mobile device body 003 (which may also be a wireless receiving device 002) has a relatively large volume or a relatively large power or a high network speed requirement
  • at least two wireless transmitting devices 001 can be used by one wireless receiving device 002, and multiple wireless transmitting devices are used.
  • the device 001 can supply power at the same time, and can also achieve several times of power.
  • multiple wireless WIFIs can also be operated simultaneously, thereby achieving an effect of increasing the network speed.
  • WIFI 802.11N is currently a theoretical network speed of 300M, while wired networks currently have a lot of Gigabit networks. Even optical fibers can achieve higher network speeds than Gigabit.
  • Multi-channel wireless networks can be combined into a wider network for terminal devices. service. At the same time, the terminal has high power and can provide multi-channel wireless power supply.
  • the wireless transmitting device 001 is only responsible for wireless power supply and magnetic adsorption, and the terminal devices directly connect to the network server through WIFI, and there is no wired network part. That is, the server directly controls the terminal device through WIFI. In this case, although the communication is disturbed by radio in the air, it is cheap.
  • This simplified solution is suitable for families, such as the back of several decorative walls in the living room bedroom.
  • Some wireless launchers 001 are prefabricated. In one location, it can be set as a lantern today, set as a camera tomorrow, and can be replaced and replaced at any time. The steps are simple, only need to remove the lantern or the camera, and it is not necessary to disassemble the plug wire, etc., and the operability is improved.
  • a special shielding device may be provided.
  • the signal shielding device is disposed in the wireless transmitting device 001, the wireless receiving device 002, and the mobile device body 003, and is disposed inside the signal shielding device.
  • the transmitting coil and its ferrite magnet and receiving coil and its ferrite magnet are responsible for shielding the upper and lower sides, and the magnetic device is responsible for shielding the surrounding, but there is a gap between them, which may cause the shielding layer to be incomplete. Therefore, a special shielding device is added, so that only the gap between the wireless transmitting device 001 and the wireless receiving device 002 exists, the gap is minimized, and the directional antenna is selected to optimize the internal and external isolation.
  • the shielding device may be a cage-shaped metal foil that can cover the entire wireless connection device, and the metal foil of the cage structure can shield external signals from interference to the wireless connection device, and the wireless network generated in the wireless connection device Information will not enter the outside world, so that the internal and external are fully isolated. Reduce internal wireless signal noise, improve signal-to-noise ratio, and enhance network signals in space to a certain extent.
  • both the wireless receiving device 002 and the wireless transmitting device 001 are both transmitted in a wireless manner (including power and communication transmission). Therefore, both the wireless transmitting device 001 and the wireless receiving device 002 can be easily waterproofed and explosion-proof.
  • FIG. 6 is a network transmission topology diagram formed by applying the wireless connection apparatus according to the first embodiment of the present application.
  • the gateway server may be involved in a wide area network or a private network, and the gateway server may use an Ethernet bus, and the power supply function is added to the data line through the power supply system, or the Ethernet line and the power line are combined to form an Ethernet line and a power source.
  • a line power supply network the power supply network provides power and network for the wireless transmitting device, and the wireless transmitting device and the wireless receiving device can be transmitted through wireless power supply and wireless network, that is, the wired power supply is converted into wireless power supply, and the wired network communication is converted into Wireless network communication, and the power supply part can be controlled by the server to realize the management of the power supply and the wireless network by the server. And there is no wire connection between the inside and the outside.
  • This wireless mode can realize all power supply and communication functions.
  • the terminal device bodies having the same function or different functions can be arbitrarily moved and exchanged.
  • the terminal device body may be multiple.
  • the wireless transmitting device may also be configured in multiples, and the number of the wireless transmitting devices may also exceed the number of the terminal device body, and the remaining wireless transmitting devices may be used. You can install the corresponding other terminal devices at any time.
  • the wireless connection device provided by the present application can implement a wireless connection between the wireless transmitting device 001 and the wireless receiving device 002, the wireless connection including a radio between the wireless transmitting device 001 and the wireless receiving device 002
  • the capable transmission further includes the wireless receiving device 002 transmitting the network information through the wireless network interface in the wireless transmitting device 001. Therefore, the wireless connection device can realize hidden installation, and there is no exposed wire line head, and the appearance is not affected.
  • the wireless connection device completely breaks the traditional wired connection manner, and can provide power and network to the mobile device body 003 connected to the wireless transmitting device 001.
  • the wireless transmitting device 001 may be multiple. As long as the wireless receiving device 002 can be connected to the wireless transmitting device 001, the wireless transmitting device 001 can be used for charging or connecting to a network, etc., so that the setting can be changed at any time.
  • the mobile device body 003 having the wireless receiving device 002 can move the mobile device body 003 without any disassembly and installation of any wired connector, and the replacement step is simple and fast, and does not require time and effort. User provided Great convenience.
  • the wireless connection device provided by the present application can be used not only for installing various devices on a wall surface, but also has a wide range of application scenarios in addition to the above application scenarios, and the following is a specific application scenario for the wireless connection device. The effect is described and explained in detail.
  • the wireless connection device can be applied to a door panel or door frame.
  • the specific implementation manner is as follows: the current hotel room door lock is generally opened by an access card, and each door lock is connected to the server for management.
  • the door lock is powered by a common battery, and the battery needs to be replaced in a few months or one year.
  • the wireless connection device provided by the present application, the wireless transmitting device can be mounted on the door frame, and the mobile device body is mounted on the door panel, that is, the device on the door panel can provide wireless power and wireless communication for the door lock, wherein The wireless power supply charges the rechargeable battery on the door lock. Therefore, the device is used to make the door lock no longer need to be replaced frequently.
  • the use of the device to provide power and communication for the door lock can keep the door lock for 10 years or even longer.
  • the device on the door panel does not need special power saving, so it is also possible to add equipment, such as adding an advertising screen on the door panel, displaying advertisements and "do not disturb”. , "Please clean”, "house number” and other identifying information, so that customers and hotel staff can use the corresponding countermeasures through the displayed information.
  • the wireless connection device provided by the present application can also provide power and communication for devices such as sensors, display screens, and theft prevention devices added to devices such as windows or doors.
  • an existing bank card, a security card, or the like is an IC card or a magnetic card.
  • Existing online banking, online securities, etc. use mobile digital certificates (also known as electronic smart keys, USBkey) for account security.
  • the wireless connection device of the present application can be used.
  • the wireless transmitting device is configured as a base, and is connected to a computer or a mobile phone or other device to provide power and network access for the card.
  • the mobile device body and the IC card, the magnetic card, and the mobile digital certificate are made into one card.
  • the confidential information about the account is in the card, the mobile digital certificate function is used through the base, and it can be used as a normal card.
  • the wireless connection device provided by the present application provides stable power and network access for the card, the battery and its management circuit, mobile digital certificate, central processing unit, screen, buttons and the like can be added to the card.
  • the wireless connection device provided by the present application can combine a bank card, a security card, and the like with a mobile digital certificate and the like.
  • the wireless connection device provided by the present application has a wide range of applications, and any scenario in which the wireless connection device is applied is within the scope of protection of the present application.

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Abstract

一种用于移动设备的无线连接装置,该装置可以实现无线发射装置和无线接收装置之间的无线连接,该无线连接包括无线发射装置(001)与无线接收装置(002)之间的无线电能传输,还包括无线接收装置(002)通过无线发射装置(001)中的无线网络传输接口进行网络信息的传输。因此,无线连接装置完全打破传统的有线连接方式,可为无线发射装置(001)连接的移动设备本体(003)提供电能以及网络。另外所述无线发射装置(001)可以为多个,只要无线接收装置(002)可以与所述无线发射装置(001)可以对接,均可以采用该无线发射装置(001)进行充电或者连接网络,只要将该移动设备本体(003)进行移动即可,而不需要涉及任何有线的接头的拆卸和安装等,更换步骤简单快速,不需要耗费时间和精力,为用户提供了极大的便利。

Description

一种用于移动设备的无线连接装置 技术领域
本发明涉及移动设备连接方式的技术领域,具体涉及一种用于移动设备的无线连接装置。
背景技术
随着科技的发展,移动电子设备越来越多的应用于人们的生活中,对于移动电子设备的充电以及移动电子设备在特定的空间中的网络连接问题越来愈受到人们的重视。用户更倾向于采用安装简单、使用方便的装置实现相应的移动设备的功能。
例如,现有的一些展馆、超市、银行、列车箱、矿井等场所,可能会在特定的空间安装多台可移动的电子设备,但是,在不同的应用场合下,也可能存在有些电子设备需要更换位置的问题,或者需要增加新的电子设备等的需求。如超市每几个月就会改变货柜排列,或者展会也是在固定的时间内会改变展台的排列等,相应的,就需要考虑采用何种方式可以更方便快速的改变或增加相应的可移动的电子设备。
现有技术一般是采用有线方式连接,通过预留的有线的线头接口连接相应的电子设备,为其供电或者提供网络,但是采用有线方式连接一方面更换电子设备时需要更换步骤繁琐,耗费时间和精力,另一方面,预留的有线线头可能会影响用户的视觉审美。
因此,亟需一种可以为移动设备提供连接方式的装置。
发明内容
本发明提供一种用于移动设备的无线连接装置,以解决现有技术中存在的上述问题。
本申请提供一种用于移动设备的无线连接装置,包括:电源、无线发射装 置、无线接收装置、移动设备本体;所述无线发射装置为至少一个,所述无线接收装置为至少一个;
所述电源连接所述无线发射装置,所述无线接收装置设置于所述移动设备本体上,所述无线发射装置通过电磁线圈将电量传递至无线接收装置的电磁线圈,所述无线接收装置与所述无线发射装置之间通过预设的无线网络传输接口进行信息的传输。
优选的,所述无线网络接口包括第一网络节点和第二网络节点,所述第一网络节点设置于所述无线发射装置内,所述第二网络节点设置于所述无线接收装置内,所述第一网络节点与所述第二网络节点之间具有匹配性,以实现所述无线发射装置与所述无线接收装置之间的双向信息传输。
优选的,所述无线网络接口还包括无线蓝牙接口、无线串行接口和/或提供低速无线通讯功能的无线电源。
优选的,还包括无线网络的转换接口,所述无线网络的转换接口设置于所述无线接收装置的接收端,该无线网络的转换接口根据所述移动设备本体的设备特征,将接收的无线网络转换为与所述移动设备本体匹配的接口类型。
优选的,针对所述移动设备本体的设备特征是识别并获取所述移动设备本体所采用的接口类型;
所述无线设备本体包括以下设备中的一种或者多种组合:网络摄像机、广告牌、烟雾报警器、一氧化碳报警器、温湿度报警器、广播音箱、网络控制的彩灯、无线路由器。
优选的,还包括磁性吸附装置,所述磁性吸附装置的形状与所述无线发射装置、无线接收装置的形状相匹配,所述磁性吸附装置设置于所述无线发射装置或无线接收装置的相对的接触面上,使所述无线发射装置和无线接收装置两者扣合为密封结构。
优选的,所述磁性吸附装置为两个,分别设置在无线发射装置和无线接收装置的接触面上。
优选的,其特征在于,还包括卡固装置,所述卡固装置通过卡箍将扣合的无线发射装置和无线接收装置卡固为密封结构。
优选的,所述电源连接所述无线发射装置是,所述电源为所述无线发射装置供电,且若干个所述无线发射装置之间通过有线网络进行网络连接;
所述无线发射装置通过所述有线网络连接预设的服务器端。
优选的,所述述电源连接所述无线发射装置,具体是,所述电源通过有源以太网方式连接所述无线发射装置;或者是,所述电源通过电源线和网线的方式连接所述无线发射装置。
优选的,还包括信号屏蔽装置,所述信号屏蔽装置设置于所述无线发射装置、无线接收装置和移动设备本体设置于所述信号屏蔽装置内部。
优选的,所述无线接收装置与所述发射装置之间具有对应关系,该对应关系包括一对一的对应关系、或者一对多的对应关系、或者多对多的对应关系。
优选的,还包括控制装置,所述控制装置连接所述无线发射装置,以对所述无线发射装置输出的电源功率和/或网络状态进行管理。
与现有技术相比,本发明具有以下优点:本申请提供一种用于移动设备的无线连接装置,其特征在于,包括:电源、无线发射装置、无线接收装置、移动设备本体;所述无线发射装置为至少一个,所述无线接收装置为至少一个;所述电源连接所述无线发射装置,所述无线接收装置设置于所述移动设备本体上,所述无线发射装置通过电磁线圈将电量传递至无线接收装置的电磁线圈,所述无线接收装置与所述无线发射装置之间通过预设的无线网络传输接口进行信息传输。
本申请所提供的无线连接装置可以实现所述无线发射装置和无线接收装置之间的无线连接,该无线连接包括所述无线发射装置与所述无线接收装置之间的采用无线电能的传输,还包括无线接收装置通过无线发射装置中的无线网络传输接口进行信息的传输过程。因此,该无线连接装置可以实现将所述无线发射装置进行隐藏安装,不存在外露的有线线头,不影响的外形美观。并且该无线连接装置完全打破传统的有线连接方式,可为无线发射装置连接的移动设备本体提供无线电能以及无线网络。
另外所述无线发射装置可以为多个,只要无线接收装置可以与所述无线发射装置可以对接,均可以采用该无线发射装置进行充电或者连接网络等,因此,可以随意随时更换设置有无线接收装置的移动设备本体,只要将该移动设备本体可与无线发射装置形成的无线网络的类型相匹配即可进行互换移动,而不需要涉及任何有线的接头的拆卸和安装等,更换步骤简单快速,不需要耗费时间和精力,为用户提供了极大的便利。
附图说明
图1是本申请第一实施例提供的用于移动设备的无线连接装置中的无线发射装置的立体图。
图2是本申请第一实施例提供的用于移动设备的无线连接装置中的无线发射装置的俯视图。
图3是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置的立体图。
图4是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置的俯视图。
图5是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置与移动设备本体连接位置的结构图。
图6是本申请第一实施例提供的应用该无线连接装置形成的网络传输拓扑图。其中,001、无线发射装置,002、无线接收装置,001-1、第一磁性吸附装置,001-2、第一网络节点,001-3、第一线圈,002-1、第二磁性吸附装置,002-2、第二网络节点,002-3、第二线圈,003、移动设备本体。
具体实施方式
在下面的描述中阐述了很多具体细节以便于充分理解本发明。但是本发明能够以很多不同于在此描述的其它方式来实施,本领域技术人员可以在不违背本发明内涵的情况下做类似推广,因此本发明不受下面公开的具体实施的限制。
本申请提供一种用于移动设备的无线连接装置,该无线连接装置通过无线连接方式可为移动设备本体提供无线电能,或者也可以同时为移动设备本体提供无线网络以及无线网络的传输接口等。
另外,该无线连接装置中的无线发射装置可以实现隐藏安装,不存在外露的有线线头,不影响的外形美观。并且该无线连接装置完全打破传统的有线连接方式,可为无线发射装置连接的移动设备本体提供电能以及网络。所述无线发射装置可以为多个,只要无线接收装置可以与所述无线发射装置可以对接,均可以采用该无线发射装置进行无线电能的传输或者无线网络的应用等,因此, 可以随意随时更换设置有无线接收装置上的移动设备本体,只要将该移动设备本体进行移动即可,而不需要涉及任何有线的接头的拆卸和安装等,更换步骤简单快速,不需要耗费时间和精力,为用户提供了极大的便利。
以下通过具体的实施例对该无线连接装置进行介绍和说明。图1是本申请第一实施例提供的用于移动设备的无线连接装置中的无线发射装置的立体图。图2是本申请第一实施例提供的用于移动设备的无线连接装置中的无线发射装置的俯视图。图3是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置的立体图。
图4是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置的俯视图。图5是本申请第一实施例提供的用于移动设备的无线连接装置中的无线接收装置与移动设备本体连接位置的结构图。
请参照图1-图5,本申请实施例提供的用于移动设备的无线连接装置,该无线连接装置包括:电源(图未示)、无线发射装置001、无线接收装置002、移动设备本体003。以下分别对上述部分进行详细的说明和介绍。
在本申请实施例中,所述无线发射装置001和所述无线接收装置002为主体部分,通过这两部分,可以为连接所述无线接收装置002的移动设备本体003提供无线电能的传输(可俗称无线充电),以及提供无线网络的连接。以实现本申请所要达到的效果和功能。
现从最基本部件进行介绍和说明。所述电源是为所述无线发射装置001提供电能的源头。所述电源是连接所述无线发射装置001的。其具体的连接的方式包括两种方式,一种是仅为所述无线发射装置001提供无线电能的传输,另一种是不但为所述无线发射装置001提供无线电能的传输,还为所有无线发射装置001之间的网络通信提供连接纽带的方式。
也就是,所述电源连接所述无线发射装置001是,所述电源为所述无线发射装置001供电,且若干个所述无线发射装置001之间通过有线网络进行网络连接,并且,所述无线发射装置通过所述有线网络连接预设的服务器端。通过服务器端为移动设备本体003提供网络信息源,该网络信息源可经过后续的无线网络转换接口转换为与相应的移动设备本体003匹配的流媒体或数据流,展示或体现在所述相应的移动设备本体003上。而该信息传输转换的过程在后续对整个网络的拓扑关系描述时会有详细的介绍和说明。
需要说明的是,所述述电源连接所述无线发射装置001,具体是,所述电源通过有源以太网方式(POE供电)连接所述无线发射装置001;或者是,所述电源通过电源线和网线的方式连接所述无线发射装置001。
例如:可以通过电线将所有的无线发射装置001连接为一个网络形式,不但可以为无线发射装置001供电,还可以组成网络。其中一种形式是,该电线可以是网线加电源线,在该情况下,需要布两条线。另一种形式可以是,网线POE(Power Over Ethernet)供电,POE也被称为基于局域网的供电***或有源以太网,POE技术是电源走网线的一种方式,不再需要单布电源线,只需要设置网线,可为无线发射装置001供电和提供网络连接的网线。该情况下只需要布一条网线。
另外,还可以采用电源线组成网络,该方式也只需布一条电源线,结合PLC电力载波通信网络技术实现网络连接。电力线通信(Power Line Communication,英文简称PLC)技术是指利用电力线传输数据和媒体信号的一种通信方式。该技术是把载有信息的高频加载于电流然后用电线传输接受信息的适配器再把高频从电流中分离出来并传送到计算机或电话以实现信息传递。
PLC的最大特点:不需要重新架设网络,只要有电线,就能进行数据传递,无疑成为了解决这智能家居数据传输的最佳方案之一。同时因为数据仅在家庭这个范围中传输,束缚PLC应用的困扰将不复存在,远程对家电的控制我们也能通过传统网络先连接到PC然后再控制家电方式实现。
另外,在所述电源与所述无线发射装置001之间还可以设置有控制装置,该控制装置可以是通过服务器端实现的,所述控制装置连接所述无线发射装置001,以对所述无线发射装置001输出的电源功率和/或网络状态进行管理。该管理方式可以包括电源功率为0的情况(电源关闭的情况),即电源开关的管理,或者对所述网络状态的管理包括网络流量的管理以及网络状态开启或关闭的管理等。
例如:利用所述控制装置可以控制无线发射装置001的电源开关,或者,在没有允许的情况下,所述无线接收装置002位置可不接入。或者,在特定情况下,可以控制某个无线发射装置001的电源输出功率,或者也可以对某个无线发射装置001的网络流量进行限制等等。
上述介绍所述电源的情况下提及有所述无线发射装置001,以下通对所述无 线发射装置001进行详细的介绍和说明。
所述无线发射装置001为至少一个,一般情况下,需要设置若干个所述无线发射装置001,以实现其与所述无线接收装置002之间的无线电能的传输以及无线网络的连接等。
具体的,所述无线发射装置001可以采用隐藏安装的方式进行安装,该隐藏安装方式可以固定安装在隐藏的位置。其中,可以放在某些挡板或某些管道中,也可以采用电源盒嵌入式安装进行嵌入式的隐藏安装。例如,一个超市的装饰墙长为60米,在该装饰墙上安装若干个(可以是20个)无线发射装置001,每隔3米就会有一个无线发射装置001。并且该无线发射装置001是采用隐藏方式安装的,因此,在装饰墙的外面没有任何线,不影响该装饰墙的外形美观,该装饰墙从外面看的话则是普通的顶棚或墙或柜。
在上述情况下,为了保证无线发射装置001的牢固性和安全性,可以再无线发射装置001的外壳设置为具有一定厚度的结构,即可实现无线发射装置001的安全性,从而防止被破坏。
由于所述无线接收装置002与所述无线发射装置001之间需要有数据信息的传输,所以,在此结合无线接收装置002对无线发射装置001进行初步的介绍和说明。
所述无线接收装置002为至少一个。所述无线接收装置002是与所述无线接收装置002相配合的装置,该无线接收装置002设置于所述移动设备本体003上,以实现所述移动设备本体003与所述无线发射装置001的对接和信号传输。
另外,为了配合具有不同网络类型的所述移动设备本体,需要设置无线网络的转换接口。具体的,所述无线网络的转换接口设置于所述无线接收装置的接收端,该无线网络的转换接口根据所述移动设备本体的设备特征,将接收的无线网络转换为与所述移动设备本体匹配的接口类型。
针对所述移动设备本体的设备特征是识别并获取所述移动设备本体所采用的接口类型;所述无线设备本体包括以下设备中的一种或者多种组合:网络摄像机、广告牌、烟雾报警器、一氧化碳报警器、湿度报警器、广播音箱、网络控制的彩灯、无线路由器等等。
通过设置所述无线网络的转换接口,可以控制不同移动设备本体的开关量或者数据流。例如,音频视频通过转换的网络流媒体,其对接的移动设备本体 可以安装网络摄像机;网络流媒体通过音频视频的形式其对接的移动设备本体可以安装广告牌;气体或温度湿度传感器通过转换的网络开关量,其对接的移动设备本体可以是烟雾报警器、一氧化碳报警器、温度报警器、湿度报警器;所述转换的网络流媒体通过音频可通过广播音箱的形式展现,转换的网络流媒体经过照明控制可通过网络控制的彩灯实现;或转换的网络流媒体经过WIFI热点可通过无线网络覆盖展现等。该应用不仅限于上述列举的情况。
例如,所述移动设备本体003可以经由所述无线接收装置002从所述无线发射装置001采用无线连接的方式获得电能,并且移动设备本体003也可以经由所述无线接收装置002从所述无线发射装置001采用无线连接的方式实现网络通讯。因此,无线发射装置001和移动设备本体003之间没有有线连接。采用无线的方式可以实现为某处提供照明,为某处提供网络摄像机,为某处提供网络广播,为某处提供网络的广告牌,为某处提供网络的彩灯照明,为某处提供与网络相关的烟雾报警等等,并且,各种设备的变化关系和位置等各种拓扑网络非常方便。
根据上述设置,可以再某处迅速安装或移动网络摄像头,或者,在某处可以迅速安装或移动彩灯照明,也可以在某处迅速安装或移动广告牌等,或者,还可以在某处直接拆下某终端设备等等,拆下之后看起来就是一个普通的墙或顶棚或柜。例如,采用该无线连接装置可以将装饰彩灯的无线接收装置002可以迅速换成网络摄像机或者WIFI覆盖等。当然在一些特定情况下,在无线接收装置002的一段也可以不设置移动设备,相应的,可以将该区域按照原定计划设置为货架的区域。
以上是对所述无线发射装置001和无线接收装置002的基本结构特征和功能的介绍,以下对所述无线发射装置001和无线接收装置002之间所采用的无线连接进行详细的介绍和说明。
首先,所述无线发射装置001与所述无线接收装置002之间是通过无线方式为所述无线接收装置002提供无线传输的电能。具体的,所述无线发射装置001通过第一线圈001-3将电能传递至无线接收装置002的第二线圈002-3。
无线电能传输技术(俗称为无线充电技术)属于现有的比较先进的充电技术,无线电能传输技术一般采用的原理是,电磁感应、无线电波、以及共振原理。现阶段,一般采用电磁感应原理实现无线电能的传输。
该无线充电技术也可以称为非接触式充电,不采用数据线或电源线等,可以实现供电端的电能传输至电能接收端。具体的,是利用近场感应,也就是电感耦合,由供电设备(充电器)将能量传送至用电的装置,该装置使用接收到的能量对电池充电,并同时供其本身运作之用。由于充电器与用电装置之间以电感耦合传送能量,两者之间不用电线连接,因此充电器及用电的装置都可以做到无导电接点外露。采用无线充电技术可以省去数据线或电源线的存在,为用户的使用带来极大的便利。
另外,现在无线充电技术也采用一定标准,Qi是全球首个推动无线充电技术的标准化组织-无线充电联盟(Wireless Power Consortium,简称WPC)推出的“无线充电”标准,具备便捷性和通用性两大特征。首先,不同品牌的产品,只要有一个Qi的标识,都可以用Qi无线充电器充电。其次,它攻克了无线充电“通用性”的技术瓶颈,在不久的将来,手机、相机、电脑等产品都可以用Qi无线充电器充电,为无线充电的大规模应用提供可能。
但本申请所采用的无线连接装置不一定要采用上述标准,该无线连接装置通过自制的无线发射装置001以及与其匹配的无线接收装置002实现为所述无线接收装置002进行无线充电的功能。
具体的,利用无线充电技术中电磁感应原理实现无线电能的传输。所述无线发射装置001通过第一线圈001-3以及与之配套的相关电路将电量传递至无线接收装置002的第二线圈002-3以及与之配套的相关电路。通过设置第一线圈001-3和第二线圈002-3以及线圈环绕的铁氧体磁性材料,所述第一线圈001-3通电之后,根据电流变化可产生变化的磁通量,由于该变化的磁通量可导致与之对应的无线接收装置002中的第二线圈002-3内产生电流,进行将所述无线发射装置001中的电能传递至所述无线接收装置002中,实现为所述无线接收装置002进行无线充电。
该第一线圈001-3和第二线圈002-可以是铜线圈,配合所述铁氧体磁性材料可形成屏蔽空间。
所述第一线圈001-3和第二线圈002-3的形状可以是多样的,如图1所示,该形状可以圆形结构,或者该线圈的形状可以为椭圆形,或者为方形等等,其形状并不影响该线圈的工作过程和工作原理。
其次,所述无线发射装置001与所述无线接收装置002之间具有无线网络 的传输接口,可通过该无线网络的传输接口实现两者之间的网路连接以及信息的双向传输等。
所述无线网络接口包括第一网络节点001-2和第二网络节点002-2,所述第一网络节点001-2设置于所述无线发射装置001内,所述第二网络节点002-2设置于所述无线接收装置002内,并且,所述第一网络节点与所述第二网络节点之间具有匹配性,以实现所述无线发射装置与所述无线接收装置之间的双向信息传输(双向通信)。
所述无线网络接口不仅限于WIFI连接,所述无线网络接口采用以下接口中的一种或者多种组合:无线蓝牙接口、无线串行接口、提供低速无线通讯功能的无线电源接口。
其中,无线电源接口本身也能提供的简单通讯,但目前的技术水平只能做到1Kbps,速率很低,只能用于简单的控制,如LED彩灯,烟雾报警器。
针对所述无线网络接口为第一网络节点001-2和第二网络节点002-2的情况进行说明和介绍。
所述第一网络节点001-2可以是WIFI发射天线,所述第二网络节点002-2可以是WIFI接收天线,由于第一网络节点001-2和第二网络节点002-2之间可实现双向通信,所以,所述第一网络节点001-2可以是WIFI接收天线,相应的,所述第二网络节点002-2可以是WIFI发射天线。因此发射和接收是相对的,并且发射与接收之间特定的匹配度。
WIFI是一种允许电子设备连接到一个无线局域网(WLAN)的技术,通常使用2.4G UHF或5G SHF ISM射频频段。连接到无线局域网通常是需要有密码保护的;但也可以是开放的,这样就允许任何在WLAN范围内的设备可以连接上。
所述WIFI发射天线是用于向外界发射无线网络信号的,而与之对应的所述WIFI接收天线是用于接收所述WIFI发射天线所发射的无线网络信号用的,两者是相互配合使用的。
就算是WLAN的网管***不允许其他设备接入,其他电子设备也会对WLAN造成同频干扰,严重影响WLAN的网络速度。
上述是对所述无线发射装置001以及无线接收装置002的详细的介绍和说明,以及两者之间的无线连接方式所应用的原理及工作过程等。由于所述无线 发射装置001与所述无线接收装置002为配合使用的,所以,以下是对两者在工作状态下所处于状态及配合方式进行介绍和说明。
首先,所述无线发射装置001与所述无线接收装置002之间具有一个相对的接触面。所述无线发射装置001的第一线圈001-3以及第一网络节点001-2均设置在该接触面侧,相应的,所述无线接收装置002的第二线圈002-3以及第二网络节点002-2也应该设置在接触面侧,为了将该第一网络节点001-2和第二网络节点002-2进行屏蔽式设置,在所述无线接收装置002与所述无线发射装置001进行扣合时,需要将两个接触面相对进行扣合,保证所述第一网络节点001-2和第二网络节点002-2位于扣合所形成的空间中。
另外,也可以将WIFI发射天线和WIFI接收天线做成定向天线,互相对应,这样就形成了一个与外界隔离的小环境,形成一个自然的屏蔽空间,在该屏蔽空间里面,无线网络信号的不会出去,外面的信号也不会进入,对该小环境里面的网络信息进行干扰。
因此,采用上述方式可以同时降低无线的发射功率和接收灵敏度,使用定向天线,使外面的无线信号进不来,里面的信号出不去。这样可以使无线网络技术(WIFI通信技术)应用于高可靠性的场景,并且可以保证相对较高的通讯带宽。
将所述无线发射装置001和所述无线接收装置002进行扣合并形成一个屏蔽空间的方案一般所采用的具体方式可以是利用磁吸附的方式。
具体的,所述无线连接装置还包括磁性吸附装置,所述磁性吸附装置包括第一磁性吸附装置001-1和第二磁性吸附装置002-1。所述第一磁性吸附装置001-1和第二磁性吸附装置002-1的形状与所述无线发射装置001和无线接收装置002的形状相匹配,所述第一磁性吸附装置001-1设置于所述无线发射装置001接触面上,所述第二磁性吸附装置002-1设置于所述无线接收装置002的相对的接触面上,使所述无线发射装置001和无线接收装置002两者扣合为密封结构。
所述第一磁性吸附装置001-1和第二磁性吸附装置002-1可以为永磁铁和铁的配合,或者均采用两个磁铁配合的方式。一般情况下,在所述无线发射装置001和无线接收装置002是均设置有磁性吸附装置,因此,所述磁性吸附装置为两个,分别设置在无线发射装置001和无线接收装置002的接触面上。
通常情况下,所述无线发射装置001和无线接收装置002均为扁平的圆盘结构,相应的,所述磁性吸附装置也设置为圆环结构,相应的,所述第一线圈001-3、第二线圈002-3、第一网络节点001-2设置于由所述无线发射装置001与所述圆环结构形成的空间内,将所述无线发射装置001和所述接收装置上的两个磁性吸附装置吸附之后,所述无线发射装置001上的第一网络节点001-2以及无线接收装置002上的第二网络节点002-2处于一个屏蔽的空间内,以保证该空间内的网络信号不受外界的干扰。
另外,采用磁力吸附方式连接所述无线发射装置001和无线接收装置002,不但安装拆卸方便,还可以在安装时实现自动定位功能。
需要说明的是,为了方便更换,一般情况下,可以将无线接收装置002上的第二磁性吸附装置002-1设置为永磁铁,而所述无线发射装置001上的第一磁性吸附装置001-1设置为可以被永磁铁吸附的铁。因为永磁铁可能会自己消磁,过一段时间后磁力会弱。采用上述方式设置,可以保证所述无线接收装置002在外面,容易拆装和维修。而所述无线发射装置001设置在里面,需要隐藏安装,一般情况下不需要更换。
不管是否设置上述磁性吸附装置,为了防止在特定场景下,所述无线发射装置001与所述无线接收装置002的分离的问题,还需要设置卡固装置。
具体的,所述无线连接装置还包括卡固装置,所述卡固装置通过卡箍将扣合的无线发射装置001和无线接收装置002卡固为密封结构。
例如,在一些特别的要求防爆的应用场景,可以将无线发射装置001安装在全密封的管道中,无线接收装置002及移动设备本体003为防爆全密封外壳。在实现设备更换非常方便的同时实现高标准防爆需求。这种场景,防爆外壳会比较重,仅有磁吸是不够的,需要增加该卡固装置,如可以是卡扣、螺钉之类的卡固装置,以辅助所述无线发射装置001与所述无线接收装置002之间的固定。
另外,为了适应移动设备需要的高网速,可以采用改变所述无线接收装置002与所述发射装置之间的对应关系的方式实现高网速的情况。
一般情况下,所述无线接收装置002与所述发射装置之间具有对应关系,该对应关系为一对一的对应关系,一对一的对应关系情况上述已经介绍过,但是,为了提高网络速度,可以将所述无线接收装置002与所述发射装置之间设 置为一对多的对应关系。
例如:一个移动设备本体003(也可以是无线接收装置002)体积比较大或者功率比较大或者网络速度要求很高时,可以一个无线接收装置002用至少两个无线发射装置001,多个无线发射装置001可以同时供电,同时也可以实现几倍的功率。
另外,一个无线接收装置002连接多个无线发射装置001时,也可以实现多路无线WIFI同时工作,从而可以实现提高网速的效果。
比如大屏的广告显示器。功率、网络流量、体积都比较大。WIFI 802.11N目前是理论网络速度300M,而有线网络目前千兆网络很多,甚至用光纤可以实现超过千兆的更高的网络速度,多路无线网络可以汇合成一路更宽的网络,为终端设备服务。同时终端功率大,可以提供多路无线供电的电能。
另外,在没有高可靠性要求的场景情况下,比如家庭,可以简化这个方案,无线发射装置001只负责无线供电和磁性吸附,终端设备之间通过WIFI直接连接网络服务器,没有有线网络部分,也就是服务器通过WIFI直接控制终端设备。在该情况下,虽然通讯会受到空中的无线电的干扰,但价格便宜。这个简化方案适合家庭,比如客厅卧室的若干个装修墙的后面,预制好了若干无线发射装置001,在某一位置,可以今天设置为彩灯,明天设置为摄像机,并且可以随时进行更换,更换步骤简单,只需要将彩灯或摄像机取下即可,不需要拆卸插头线头等,可操作性得以提高。
另外,为了提高该无线发射装置001以及无线接收装置002之间的信号不受任何干扰,还可以设置专门的屏蔽装置。所述信号屏蔽装置设置于所述无线发射装置001、无线接收装置002和移动设备本体003设置于所述信号屏蔽装置内部。
发射线圈及其铁氧体磁片和接收线圈及其铁氧体磁片负责屏蔽上下,磁吸装置负责屏蔽周围,但是它们中间有间隙,会造成屏蔽层不完整。所以要增加专门的屏蔽装置,这样,只存在无线发射装置001以及无线接收装置002之间的间隙,将间隙做到最小,选用定向天线,使内外隔离达到最佳。
所述屏蔽装置可以是一个可以笼罩整个无线连接装置的笼状的金属箔,采用该笼状结构的金属箔可以屏蔽外界信号对该无线连接装置的干扰,并且该无线连接装置内产生的无线网络信息也不会进入外界,使内部与外部充分隔离, 减低内部无线信号噪声,提高信噪比,一定程度上可以增强空间内的网络信号。
另外,需要说明的是,所述无线接收装置002与无线发射装置001都是无线方式进行传输的(其中包括电源和通信传输)。所以无线发射装置001和无线接收装置002都可以很容易的做到防水和防爆。
需要说明的是,应用该无线连接装置的情况下,应用网络服务器及终端设备的情况下,其信息流的传输方向和传输方式可通过图6进行展示。图6是本申请第一实施例提供的应用该无线连接装置形成的网络传输拓扑图。
请参照图6,网关服务器可以介入广域网或者专用网络中,并且所述网关服务器可以利用以太网总线,经过供电***采用数据线上加入供电功能,或者以太网线和电源线结合形成包括以太网线和电源线供电网络,该供电网络为无线发射装置提供电能和网络,所述无线发射装置和无线接收装置之间可通过无线供电和无线网络传输,即实现有线供电转化为无线供电,有线网络通信转化为无线网络通信,并且,供电部分可以受服务器的控制,实现服务器对其供电和无线网络的管理。并且内部与外部无任何电线连接,该无线方式可以实现全部的供电和通讯功能。另外,对于功能相同或者不同的终端设备本体,均可以任意移动、交换。需要说明的是,该终端设备本体可以为多个,相应的,所述无线发射装置也可以设置多个,该无线发射装置的数量也可以多余所述终端设备本体的数量,剩余的无线发射装置可以随时安装相应的其他终端设备。
总之,本申请所提供的无线连接装置可以实现所述无线发射装置001和无线接收装置002之间的无线连接,该无线连接包括所述无线发射装置001与所述无线接收装置002之间的无线电能的传输,还包括无线接收装置002通过无线发射装置001中的无线网络接口进行网络信息的传输。因此,该无线连接装置可以实现隐藏安装,不存在外露的有线线头,不影响的外形美观。并且该无线连接装置完全打破传统的有线连接方式,可为无线发射装置001连接的移动设备本体003提供电能以及网络。
另外所述无线发射装置001可以为多个,只要无线接收装置002可以与所述无线发射装置001可以对接,均可以采用该无线发射装置001进行充电或者连接网络等,因此,可以随意随时更换设置有无线接收装置002的移动设备本体003,只要将该移动设备本体003进行移动即可,而不需要涉及任何有线的接头的拆卸和安装等,更换步骤简单快速,不需要耗费时间和精力,为用户提供 了极大的便利。
另外,本申请所提供的无线连接装置不仅可用于墙面上安装各种设备,除了上述应用场景外,还可以具有其他广泛的应用场景,以下通过具体的应用场景对该无线连接装置所具有的效果进行详细的介绍和说明。
例如,可将所述无线连接装置应用在门板或者门框上。其具体实施方式如下:目前的酒店客房门锁,一般是采用门禁卡开启,各个门锁连接到服务器进行管理,门锁采用普通电池供电,而电池需要几个月或1年更换。而采用本申请提供的无线连接装置,可将所述无线发射装置装在门框上,移动设备本体装在门板上,即设置为门板上的设备,可为门锁提供无线电源和无线通讯,其中无线电源可为门锁上充电电池充电。因此,采用该装置使门锁不再需要频繁更换的电池。相应的,利用该装置为门锁提供电源和通讯可以使门锁持续使用10年,甚至更长的时间。
另外,由于本申请为移动的门板提供了稳定的电源,门板上面的设备也不需要特别的节电,因此,还可以增加设备,比如在门板上增加广告屏,显示广告和“请勿打扰”、“请即打扫”、“门牌号码”等等标识性的信息,以方便客户及酒店工作人员通过显示的信息采用相应的应对措施。
再例如,与上述的方式相类似,本申请提供的无线连接装置也可以为窗或门等设备上增加的传感器、显示屏、防盗器等设备提供电源和通讯。
再例如,现有的银行卡,证券卡等为IC卡或磁卡。现有的网上银行,网上证券等为账户安全使用移动数字证书(又叫电子智能钥匙、USBkey)。而针对该情况,可以采用本申请的无线连接装置,具体的,无线发射装置做成一个底座,连接电脑或手机或其他设备,为卡片提供电能和网络接入。移动设备本体和IC卡,磁卡,移动数字证书做成一张卡片。关于账户的保密信息都在卡片中,通过底座使用移动数字证书功能,又可以当普通卡片使用。因为,本申请提供的无线连接装置为卡片提供了稳定的电能和网络接入,所以,可以在卡片中可以加入电池及其管理电路,移动数字证书,中央处理单元,屏幕,按键等。总之,本申请所提供的无线连接装置可以将银行卡,证券卡等与移动数字证书等合二为一。
因此,本申请所提供的无线连接装置的应用范围很广,任何应用该无线连接装置的场景均属于本申请保护的范围。
本发明虽然以较佳实施例公开如上,但其并不是用来限定本发明,任何本领域技术人员在不脱离本发明的精神和范围内,都可以做出可能的变动和修改,因此本发明的保护范围应当以本发明权利要求所界定的范围为准。

Claims (10)

  1. 一种用于移动设备的无线连接装置,其特征在于,包括:电源、无线发射装置、无线接收装置、移动设备本体;所述无线发射装置为至少一个,所述无线接收装置为至少一个;
    所述电源连接所述无线发射装置,所述无线接收装置设置于所述移动设备本体上,所述无线发射装置通过电磁线圈将电量传递至无线接收装置的电磁线圈,所述无线接收装置与所述无线发射装置之间通过预设的无线网络传输接口进行信息的传输。
  2. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,所述无线网络接口包括第一网络节点和第二网络节点,所述第一网络节点设置于所述无线发射装置内,所述第二网络节点设置于所述无线接收装置内,所述第一网络节点与所述第二网络节点之间具有匹配性,以实现所述无线发射装置与所述无线接收装置之间的双向信息传输。
  3. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,所述无线网络接口采用以下接口中的一种或者多种组合:无线蓝牙接口、无线串行接口、提供低速无线通讯功能的无线电源接口。
  4. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,还包括无线网络的转换接口,所述无线网络的转换接口设置于所述无线接收装置的接收端,该无线网络的转换接口根据所述移动设备本体的设备特征,将接收的无线网络转换为与所述移动设备本体匹配的接口类型。
  5. 根据权利要求4所述的用于移动设备的无线连接装置,其特征在于,针对所述移动设备本体的设备特征是识别并获取所述移动设备本体所采用的接口类型;
    所述无线设备本体包括以下设备中的一种或者多种组合:网络摄像机、广告牌、烟雾报警器、一氧化碳报警器、温湿度报警器、广播音箱、网络控制的彩灯、无线路由器。
  6. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,还包括磁性吸附装置,所述磁性吸附装置的形状与所述无线发射装置、无线接收装置的形状相匹配,所述磁性吸附装置设置于所述无线发射装置或无线接收装置的相对的接触面上,使所述无线发射装置和无线接收装置两者扣合为密封结构。
  7. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,所述电源连接所述无线发射装置是,所述电源为所述无线发射装置供电,且若干个所述无线发射装置之间通过有线网络进行网络连接;
    所述无线发射装置通过所述有线网络连接预设的服务器端。
  8. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,还包括信号屏蔽装置,所述信号屏蔽装置设置于所述无线发射装置、无线接收装置和移动设备本体设置于所述信号屏蔽装置内部。
  9. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,所述无线接收装置与所述发射装置之间具有对应关系,该对应关系包括一对一的对应关系、或者一对多的对应关系、或者多对多的对应关系。
  10. 根据权利要求1所述的用于移动设备的无线连接装置,其特征在于,还包括控制装置,所述控制装置连接所述无线发射装置,以对所述无线发射装置输出的电源功率和/或网络状态进行管理。
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