WO2014198189A1 - 智能显示遥控器和飞行控制系统 - Google Patents
智能显示遥控器和飞行控制系统 Download PDFInfo
- Publication number
- WO2014198189A1 WO2014198189A1 PCT/CN2014/079120 CN2014079120W WO2014198189A1 WO 2014198189 A1 WO2014198189 A1 WO 2014198189A1 CN 2014079120 W CN2014079120 W CN 2014079120W WO 2014198189 A1 WO2014198189 A1 WO 2014198189A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- flight
- data
- display
- remote control
- processor
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
Links
Classifications
-
- A—HUMAN NECESSITIES
- A63—SPORTS; GAMES; AMUSEMENTS
- A63H—TOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
- A63H30/00—Remote-control arrangements specially adapted for toys, e.g. for toy vehicles
- A63H30/02—Electrical arrangements
- A63H30/04—Electrical arrangements using wireless transmission
Definitions
- the present invention relates to an intelligent display remote control and flight control system, and more particularly to a smart display remote control and flight control system for a model aircraft. Background technique
- the remote control of the model aircraft on the market the main control method is still focused on the remote control by a mechanical switch combined with a rocker and the like.
- the remote control only contains an operating handle and a control launching board. There is usually no or only a few simple color lights or a small indicator screen to intelligently display the working status of the remote control.
- the remote control transmitter board generally has only a simple single chip machine to support the work. Therefore, the solution of the remote control of the existing model aircraft seriously affects the sense of use of the operator. Summary of the invention
- the technical problem to be solved by the present invention is to overcome the deficiencies of the operability of the remote control mode of the model aircraft of the prior art, and to provide an intelligent display remote controller and a flight control system for improving the sense of use of the operator by adding a display screen or the like.
- the invention provides an intelligent display remote controller, wherein the intelligent display remote controller comprises an input unit, a processor, a touch display screen and a communication unit, and the communication unit comprises an FSK flight control communication module.
- the intelligent display remote controller comprises an input unit, a processor, a touch display screen and a communication unit
- the communication unit comprises an FSK flight control communication module.
- the processor converts the potentiometer signal generated by the input unit and the data input by the touch display screen into a flight control signal, and the communication unit sends the flight control signal to a model aircraft;
- the communication unit also receives flight state data, flight record data, and/or flight video data of the model aircraft;
- the processor converts the flight state data, flight log data, and/or flight video data into display data; the touch display screen displays the display data.
- the smart display remote controller is implemented based on an Android platform. That is to say, the intelligent display remote controller of the present invention implements various functional operations of the above-described intelligent display remote controller based on the Android platform in combination with a hardware structure such as a processor and a storage unit.
- a hardware structure such as a processor and a storage unit.
- the FSK (Frequency Shift Keying) flight control communication module, the WIFI (wireless fidelity) communication module, the Bluetooth communication module group or the public network communication module refer to the FSK communication chip and the WIFI in the prior art.
- the communication chip or the public network communication chip is combined with the complete communication component of the peripheral circuit and the driver, that is, the communication function of the FSK communication chip, the WIFI communication chip or the public network communication chip can be specifically and completely realized. Specifically, it is a component that assembles FSK communication chip, WIFI communication chip, Bluetooth communication chip, and public network communication chip and connector, peripheral circuit such as control and drive, PCB circuit board (printed circuit board), structural member, and the like.
- the flight control signal refers to the flight control command that is conventionally used in the flight control technology of the model aircraft.
- the flight control signal can also be a flight control command that is customized by the user, so the present invention It is not limited that the flight control signal must be the flight control command conventionally used in the flight control technology of the model aircraft, so as long as it is a flight control command capable of controlling the flight of the model aircraft, regardless of the manner in which it is implemented or the form of representation It should be considered as the flight control signal defined by the present invention.
- the flight state data, the flight record data, and the flight video data are respectively the data of the flight state and flight record of the model aircraft that is conventionally used in the model flight control technology of the model, and the photos taken by the monitoring device of the model aircraft or Video and other data.
- the specific expression forms of the flight state data, flight record data and flight video data are not limited in the present invention, as long as the flight state and flight record data of the model aircraft and the photos taken by the monitoring device of the model aircraft can be characterized.
- Data such as video or video are flight state data, flight log data, and flight video data as defined by the present invention.
- the intelligent display remote controller of the invention can not only transmit the flight control signals of the control model aircraft through a plurality of different communication modes, but also can receive the flight state data, flight record data generated or collected by the model aircraft through these different communication modes. Flight video data.
- the flight state data, flight log data, and flight video data are displayed by the display screen in an image or video that can be observed by the naked eye.
- the FSK flight control communication module comprises a 2.4G/5.8G ISM (Industrial Scientific Medical Band) FSK flight control chip;
- the WIFI communication module includes a 2.4G/5.8G WIFI communication.
- the public network communication module includes a 3G (third generation communication technology) communication chip, a 4G (fourth generation communication technology) communication chip or a GPRS/EDGE (general packet radio service technology/enhanced data rate GSM) Evolution technology) a communication chip;
- the Bluetooth communication module includes a Bluetooth communication chip.
- the input unit is a plurality of remote control levers and remote control switches.
- the remote control lever may be a rocker or the like in the prior art to characterize a user's operation through a potentiometer signal
- the remote control switch may be a component such as a button, a knob, or the like that is characterized by a potentiometer signal.
- the remote control lever and the remote control switch refer to any component that can use a potentiometer signal to characterize the user's operation, and is not limited to the above-mentioned rocker, button or knob.
- the processor further outputs display data including a display menu to the touch display screen, the touch display screen displays the display menu, and the display menu includes a plurality of objects;
- the touch display screen feeds back the acquired data to a processor, and the processor converts the content of the object of the display menu corresponding to the data into a flight control signal.
- the user's input is collected by displaying the menu.
- the content of the object in the display menu in the present invention may correspond to the content information required by the flight control signal.
- the processor further obtains the display data including the display menu from an application server, and outputs display data including the display menu to the touch display screen, and the touch display screen displays the display menu.
- the display menu includes a plurality of objects
- the touch display screen feeds back the acquired data to a processor that transmits the data to the application server. That is to say, in the present invention, the application information can be obtained by accessing the application server, thereby expanding the input operation of the user.
- the smart display remote controller further includes a speaker module
- the processor is further configured to convert the flight state data and/or flight record data into audio data
- the speaker module is used for playing a broadcast station. Describe the audio data.
- the speaker module refers to a complete audio playing component of a speaker in the prior art combined with a peripheral circuit and a driving structure, that is, the whole of the playing audio function can be specifically and completely realized. Specifically, components that assemble speakers, audio amplifiers, structural components, and the like.
- the flight state data and/or the flight log data are played by audio, thereby further assisting the operator in understanding and grasping the state of the maneuvered model aircraft.
- the smart display remote controller further includes a headphone interface for outputting audio data converted by the processor.
- the manner of audio output is further expanded by means of a headphone interface.
- the smart display remote controller further includes a GPS module and a storage unit for obtaining current geographic information, and the storage unit is configured to store the current geographic information and the flight state data, flight record data, and / or flight video data.
- the geographic information of the location of the current smart display remote controller is also located by a GPS module, thereby further recording various locations that the user passes through, wherein the GPS module in the present invention refers to any unit or module capable of realizing the positioning function.
- the geographical information of the present invention includes at least capable of representing the current smart display remote Information about the geographic characteristics of the location of the controller.
- the smart display remote controller further includes a USB (Universal Serial Bus) interface for outputting the current geographic information and the flight state data, flight record data and/or flight video data in the storage unit.
- USB Universal Serial Bus
- the processor further includes a flight simulation program
- the flight simulation program acquires a manipulation signal through the input unit and the touch display screen, and configures a flight state preset by the manipulation signal and the flight simulation program Parameter fitting to obtain flight state correction data;
- the flight simulation program corrects simulated flight state data output by the flight simulation program by the flight state correction data
- the processor converts the corrected simulated flight state data into display data and displays the display data by touching the display screen.
- the flight simulation program in the present invention may be any program code for simulating the flight state or action of the aircraft, and the specific implementation of the flight simulation program is not limited in the present invention.
- the flight state configuration parameter, the simulated flight state data, and the like are data or parameters that simulate necessary flight states or actions in the flight of the aircraft in reality, and the present invention does not repeat the flight state configuration parameters, simulated flight state data, and the like. Data form or structure, etc.
- the smart display remote controller further includes an HDMI interface (high-definition multimedia interface), and the HDMI interface is configured to output display data converted by the processor, and then display on a display device such as a high-definition television.
- the display data output by the remote controller further facilitates the user to view data information such as flight video.
- the display data is further output through the HDMI interface, thereby expanding the display of the video.
- the smart display remote controller further includes a microphone module, the microphone module is configured to collect voice information, and the processor converts the voice information into a flight control signal.
- the microphone module refers to a complete voice collection component of a microphone in the prior art combined with a peripheral circuit and a drive, etc., that is, the voice acquisition function can be implemented in a specific and complete manner. Specifically, components that assemble microphones, structural members, and the like.
- the voice command issued by the user is collected by the microphone and converted into a flight control signal, thereby further assisting the operator in manipulating the model aircraft.
- the invention also provides a flight control system, characterized in that the flight control system comprises an intelligent display remote controller and a model aircraft as described above, the model aircraft comprises a communication module, the communication module and the intelligent display Communication link between communication units of the remote control.
- the communication module also includes one or more of a FSK flight control communication module, a WIFI communication module, a Bluetooth communication module, and a public network communication module, so that the communication is performed through the modules.
- Module and smart display A communication link is established between the communication units of the remote controller.
- the FSK flight control communication module, the WIFI communication module, the Bluetooth communication module or the public network communication module is configured to receive a flight control signal sent by the intelligent display remote controller.
- the model aircraft further includes a video image acquisition unit for acquiring image data and/or video data.
- the video image acquisition unit in the present invention may be any unit component or module capable of realizing image data and/or video data.
- the advantages of the intelligent display remote controller and the flight control system of the invention are that the operation handle of the professional remote controller and the related resources such as the touch screen display are utilized, so that the flight control precision and the operability are utilized while utilizing
- the high performance and various implementations of related resources such as touch screens have improved the sense of use of the operator.
- FIG. 1 is a schematic structural view of an intelligent display remote controller according to Embodiment 1 of the present invention.
- FIG. 2 is a block diagram showing the communication structure of the flight control system of Embodiment 1 of the present invention. detailed description
- the intelligent display remote controller of the invention can not only transmit the flight control signals of the control model aircraft through various communication modes, such as WIFI, Bluetooth, 3G or 4G, but also can receive the model through these different communication methods.
- the present invention utilizes a display screen to display these flight state data, flight log data, and flight video data to assist the operator in maneuvering the model aircraft.
- the touch display screen is also utilized in the present invention to further increase the ease of use by the operator.
- the flight simulation program is used to simulate the flight control on the intelligent display remote controller, so that the operator can be simulated to fly before the actual flight test and during the unsuitable flight time.
- the implementation of the present invention will be specifically described below by way of Embodiment 1 below.
- Embodiment 1 by using a 20-channel FSK communication chip, it has powerful data operations and big data transmission and processing capabilities that are not available in a general remote controller. Moreover, by using a touch display screen, using multi-touch, gesture recognition and other input methods, the input data is added on the basis of the joystick, so that the user has a better operation experience and enjoyment, and the intelligent device can make the remote control The device is more intelligent.
- the flight simulation and control are realized through the flight simulation program, and the output interface of the HDMI interface is used to realize the output of audio and video, so that the user has better enjoyment.
- the smart display remote controller of this embodiment includes an input unit 1, a processor 2, a touch display screen 3, and a communication unit 4.
- the communication unit 4 includes a 20-channel 2.4G ISM FSK flight control communication module 41, a 2.4G/5.8G WIFI communication module 42, a Bluetooth communication module 43, and a 3G/4G communication module 44.
- the 3G/4G communication module may be a 3G communication module or a 4G communication module, which is denoted by reference numeral 44 in FIGS.
- the communication unit 4 in the other embodiment may include only a 2.4G/5.8G WIFI communication module or a 3G/4G communication module.
- the communication unit 4 may include a FSK flight control communication module, a WIFI communication module, a Bluetooth communication module, and a One or more of the public network communication modules.
- the model aircraft 11 in the embodiment also includes a 20-channel 2.4G ISM FSK flight control communication module 111, a 2.4G/5.8G WIFI communication module 112, a Bluetooth communication module 113, and A 3G/4G communication module 114.
- the 2.4G ISM FSK flight control communication module 111, the 2.4G/5.8G WIFI communication module 112, the Bluetooth communication module 113, and the 3G/4G communication module 114 are respectively established with the corresponding communication modules in the communication unit 4. Communication link.
- model aircraft 11 further comprises a video image acquisition unit 115 for collecting image data and video data.
- the image data and video data are used to characterize the state of the environment in which the model aircraft 11 is located.
- the processor 2 converts the potentiometer signal generated by the input unit 1 and the data input by the touch display screen 3 into a flight control signal.
- the input unit 1 includes a plurality of remote control levers and remote control switches, and characterizes user operations by a potentiometer signal generated when the user uses the remote control lever and the remote control switch.
- the manner in which the data input by the touch display screen 3 in the embodiment is converted into a flight control signal is as follows: the processor 2 outputs display data including a display menu to the touch display screen 3, and the touch display screen 3 displays The display menu includes a plurality of objects in the display menu. These objects are all displayed on the touch display screen 3.
- the touch display screen 3 feeds back the acquired operation data to the processor 2, and the processor determines the object corresponding to the operation data.
- the content of the object operated by the user is converted into a flight control signal.
- the manner in which the data input by the other touch display screen 3 is converted into a flight control signal can also be used, and is not limited to the conversion mode exemplified in the embodiment.
- the processor 2 further obtains the display data including the display menu from an application server, and outputs display data including the display menu to the touch display screen 3, and the touch display screen 3 displays the display menu.
- the display menu includes a plurality of objects.
- the touch display 3 feeds back the acquired data to the processor 2, which transmits the data to the application server.
- the communication unit 4 transmits the flight control signal to the model aircraft 11.
- the communication unit 4 also receives flight state data, flight log data, and flight video data of the model aircraft 11.
- the processor 2 converts the flight state data, flight log data, and flight video data into display data, and the touch display screen 3 displays the display data.
- the processor 2 in this embodiment further includes a flight simulation program, and the flight simulation program can adopt any existing flight simulation program, and can be developed by a person skilled in the art as needed, but as long as it is capable
- the flight simulation program can be used in the processor 2 of the present embodiment.
- the flight simulation program acquires a manipulation signal through the input unit 1 and the touch display screen 3, and passes the manipulation signal and the flight simulation program.
- the flight state correction data is obtained by fitting the preset flight state configuration parameters.
- the flight simulation program then corrects the simulated flight state data output by the flight simulation program via the flight state correction data. Finally, the processor 2 converts the corrected simulated flight state data into display data and displays the display data by touching the display screen 3.
- the smart display remote controller of this embodiment further includes a speaker module 5, a headphone jack 51, a GPS module 6, a storage unit 7, an HDMI interface 81, a USB interface 82, and a microphone module 9.
- the processor 2 is configured to convert the flight state data and flight record data into audio data
- the speaker module 5 is configured to play the audio data.
- the earphone interface 6 is capable of outputting audio data converted by the processor 2 to an audio playback device such as an externally accessed earphone.
- the GPS module 7 is configured to obtain current geographic information of the smart display remote controller.
- the storage unit 8 is configured to store the current geographic information and the flight state data, flight record data, and flight video data.
- the USB interface 82 is capable of outputting the current geographic information and the flight state data, flight log data, and flight video data in the storage unit 8.
- the HDMI interface 81 is configured to output display data converted by the processor 2. And whether the display data obtained by the flight simulation program or the obtained data of the actual model aircraft can be outputted through the HDMI interface 81.
- the microphone module 9 is configured to collect voice information, and the processor 2 converts the voice information into a flight control letter. number. That is to say, through the microphone module 9, the smart display remote controller of the embodiment can support the input of voice commands.
- the intelligent display remote controller of the present embodiment not only realizes the control of the model aircraft through the above components, but also displays or voices the user based on the feedback information of the model aircraft, and can not only acquire the control information of the user's limb but also realize Voice control, and interaction with external device data through a number of different interfaces.
- a flight simulation program which not only provides the user with a flight simulation function but also provides the user with a leisure time simulation game function.
- the input unit 1 generates potential information representative of a user operation
- the processor 2 converts the potential information into flight control information, and then passes through a 20-channel 2.4G ISM FSK flight control communication module 41 and a model aircraft 11
- the communication link established by the Bluetooth communication module 43 and the Bluetooth communication module 113 of the model aircraft 11 or the communication link established by the 3G/4G communication module 44 and the 3G/4G communication module 114 of the model aircraft 11 is sent to the model aircraft. 11 places.
- the model aircraft 11 is capable of modifying the flight state of the simulated aircraft 11 based on the received flight control information.
- the microphone module 9 collects voice information including a user operation instruction, and the processor 2 converts the voice information into flight control information, and then passes the 20-channel 2.4G ISM FSK flight control as in the first embodiment.
- the communication link established by the communication module 41 and the 20-channel 2.4G ISM FSK flight control communication module 111 of the model aircraft 11, the 2.4G/5.8G WIFI communication module 42 and the 2.4G/5.8G WIFI communication of the model aircraft 11 The communication link established by the module 112, the Bluetooth communication module 43 and the communication link established by the Bluetooth communication module 113 of the model aircraft 11 or the 3G/4G communication module 44 and the 3G/4G communication module 114 of the model aircraft 11 are established. The communication link is sent to the model aircraft 11.
- the model aircraft 11 is capable of modifying the flight state of the simulated aircraft 11 based on the received flight control information.
- the model aircraft 11 collects flight state data and flight record data generated by itself. Then, the communication link established by the 20-channel 2.4G ISM FSK flight control communication module 41 and the 20-channel 2.4G ISM FSK flight control communication module 111 of the model aircraft 11 and the 2.4G/5.8G WIFI communication module 42 and The communication link established by the 2.4G/5.8G WIFI communication module 112 of the model aircraft 11, the communication link established by the Bluetooth communication module 43 and the Bluetooth communication module 113 of the model aircraft 11, or the 3G/4G communication module 44 and model The communication link established by the 3G/4G communication module 114 of the aircraft 11 is sent to the intelligent display remote controller.
- the processor 2 of the smart display remote controller can convert the flight state data and flight record data into sound
- the audio data is used to play the audio data, and at the same time, the earphone interface 6 can output the audio data converted by the processor 2 to an audio playback device such as an externally accessed earphone.
- the smart display remote controller may further store the flight state data and flight record data into the storage unit 8 or the processor 2 converts the flight state data and flight record data into display data, the touch display The screen 3 displays the display data or outputs to an external display device through an HDMI interface.
- the smart display remote controller may also store the flight video data into the storage unit 8 or the processor 2 converts the flight video data into display data, and the touch display screen 3 displays the display data or passes The HDMI interface is output to an external display device.
- different data can be transmitted in one direction or two directions by using connections between different communication modules, but the flow of these transmissions is obtained by a combination of the above processes, so it is no longer here.
- the smart display remote controller is separately divided into various modules according to functions, so that in the implementation of the embodiment, the functions of each module may be in the same software or software and/or Implemented in hardware.
Landscapes
- Engineering & Computer Science (AREA)
- Computer Networks & Wireless Communication (AREA)
- Selective Calling Equipment (AREA)
- Two-Way Televisions, Distribution Of Moving Picture Or The Like (AREA)
Abstract
一种智能显示遥控器和飞行控制系统,所述智能显示遥控器包括一输入单元、一处理器、一触摸显示屏和一通信单元,所述通信单元包括FSK飞控通信模组、WIFI通信模组、蓝牙通信模组和公众网通信模组中的一个或多个;其中所述处理器将所述输入单元和所述触摸显示屏输入的数据转化为飞控信号,所述通信单元发送所述飞控信号至一模型飞行器;所述通信单元还接收所述模型飞行器的飞行状态数据、飞行记录数据和/或飞行视频数据;所述处理器将所述飞行状态数据、飞行记录数据和/或飞行视频数据转化为显示数据;所述触摸显示屏显示所述显示数据。所述飞行控制系统包括上述的智能显示遥控器和模型飞行器。该飞行控制系统提高了操作者的使用感。
Description
智能显示遥控器和飞行控制系统 技术领域
本发明涉及一种智能显示遥控器和飞行控制系统, 特别是涉及一种模型飞行器的智 能显示遥控器和飞行控制系统。 背景技术
目前市面上的模型飞行器的遥控器, 主要的控制方式还是集中于通过摇杆等机械电 学结合的遥控开关来组成遥控器的方案。
其中由于遥控器只含有操作手柄以及控制发射板等。 一般没有或只有几个简单的彩 色灯或很小的指示屏幕来智能显示遥控器的工作状态, 遥控发射板一般也只有简单的单 片机支持工作。 所以现有的模型飞行器的遥控器的方案严重地影响操作者的使用感。 发明内容
本发明要解决的技术问题是为了克服现有技术的模型飞行器的遥控方式的操作性差 的缺陷, 提供一种智能显示遥控器和飞行控制系统, 通过增加显示屏等来提高操作者的 使用感。
本发明是通过下述技术方案来解决上述技术问题的:
本发明提供了一种智能显示遥控器, 其特点是, 所述智能显示遥控器包括一输入单 元、 一处理器、 一触摸显示屏和一通信单元, 所述通信单元包括一 FSK飞控通信模组、 一 WIFI通信模组、 一蓝牙通信模组和一公众网通信模组中的一个或多个;
其中所述处理器将所述输入单元生成的电位器信号和所述触摸显示屏输入的数据转 化为飞控信号, 所述通信单元发送所述飞控信号至一模型飞行器;
所述通信单元还接收所述模型飞行器的飞行状态数据、 飞行记录数据和 /或飞行视频 数据;
所述处理器将所述飞行状态数据、 飞行记录数据和 /或飞行视频数据转化为显示数据; 所述触摸显示屏显示所述显示数据。
其中所述智能显示遥控器基于安卓平台实现。 也就是说, 本发明的智能显示遥控器 基于安卓平台结合处理器、 存储单元等硬件结构来实现上述的智能显示遥控器的各种功 能操作。 当然本领域技术人员应该认识到本发明还不止是限定于安卓平台, 其他不同的 系统平台也能够实现本发明的智能显示遥控器。
其中所述 FSK (频移键控) 飞控通信模组、 WIFI (wireless fidelity无线保真) 通信 模组、蓝牙通信模块组或公众网通信模组是指现有技术中围绕 FSK通信芯片、 WIFI通信 芯片或公众网通信芯片并结合外围电路及驱动等构架的完整的通信组件, 也就是说, 能 够具体地、完整地实现 FSK通信芯片、 WIFI通信芯片或公众网通信芯片的通信功能的整 体。具体地说就是将 FSK通信芯片、 WIFI通信芯片、蓝牙通信芯片和公众网通信芯片及 连接件、 控制与驱动等外围电路和 PCB 电路板 (印刷电路板)、 结构件等装配在一起的 组件。
所述飞控信号是指目前模型飞行器飞行控制技术中惯用的飞行控制指令, 当然, 本 领域技术人员应该明确所述飞控信号还可以是用户自定义设定的飞行控制指令, 所以本 发明并不限定所述飞控信号必须是目前模型飞行器飞行控制技术中惯用的飞行控制指令, 因此只要是能够用户控制模型飞行器飞行的飞行控制指令, 无论其采用何种方式实现或 何种表征的形式都应该认为是本发明所定义的飞控信号。
同样, 所述飞行状态数据、 飞行记录数据和飞行视频数据分别是目前模型飞行器飞 行控制技术中惯用的表征模型飞行器的飞行状态和飞行记录的数据以及模型飞行器所具 有的监控设备所拍摄的照片或视频等数据。 而且本发明中并不限定所述飞行状态数据、 飞行记录数据和飞行视频数据的具体表现形式, 只要能够表征模型飞行器的飞行状态和 飞行记录的数据以及模型飞行器所具有的监控设备所拍摄的照片或视频等数据均是本发 明所定义的飞行状态数据、 飞行记录数据和飞行视频数据。
本发明的智能显示遥控器不但能够通过多种不同的通信方式来传输控制模型飞行器 的飞控信号, 还能够通过这些不同的通信方式来接收模型飞行器生成或采集的飞行状态 数据、 飞行记录数据和飞行视频数据。
此外本发明中通过所述显示屏以肉眼可以观察到的图像或视频的方式显示所述飞行 状态数据、 飞行记录数据和飞行视频数据。
较佳地, 所述 FSK飞控通信模组包括一 2.4G/5.8G ISM (Industrial Scientific Medical Band 工业科研医药频段) FSK飞控芯片; 所述 WIFI通信模组包括一 2.4G/5.8G WIFI 通信芯片; 所述公众网通信模组包括一 3G (第三代通信技术) 通信芯片、 一 4G (第四 代通信技术)通信芯片或一 GPRS/EDGE (通用分组无线服务技术 /增强型数据速率 GSM 演进技术) 通信芯片; 所述蓝牙通信模组包括一蓝牙通信芯片。
较佳地, 所述输入单元为多个遥控杆和遥控开关。
其中所述遥控杆可以是现有技术中的摇杆等通过电位器信号来表征用户操作的部件, 所述遥控开关可以是按键、 旋钮等通过电位器信号来表征用户操作的部件。 而且本发明
中所述遥控杆和遥控开关是指任何可以采用电位器信号来表征用户操作的部件而不仅限 于上述的摇杆、 按键或旋钮等。
优选地, 所述处理器还输出包含一显示菜单的显示数据至所述触摸显示屏, 所述触 摸显示屏显示所述显示菜单, 所述显示菜单中包含多个对象;
所述触摸显示屏将获取的数据反馈至处理器, 所述处理器将所述数据所对应的显示 菜单的对象的内容转化为飞控信号。
本发明中为了简化用户通过触摸显示屏的输入操作, 采用显示菜单的方式采集用户 的输入。 其中本发明中所述显示菜单中的对象的内容可以对应于飞控信号所需要的内容 信息。
优选地, 所述处理器还从一应用服务器获得所述包含显示菜单的显示数据, 并输出 包含所述显示菜单的显示数据至所述触摸显示屏, 所述触摸显示屏显示所述显示菜单, 所述显示菜单中包含多个对象;
所述触摸显示屏将获取的数据反馈至处理器, 所述处理器将所述数据传输至所述应 用服务器。 也就是说, 本发明中还可以采用访问应用服务器的方式来获取应用信息, 进 而拓展了用户的输入操作。
较佳地, 所述智能显示遥控器还包括一扬声器模组, 所述处理器还用于将所述飞行 状态数据和 /或飞行记录数据转化为音频数据, 所述扬声器模组用于播放所述音频数据。
所述扬声器模组是指现有技术中扬声器并结合外围电路及驱动等构架的完整的音频 播放组件, 也就是说, 能够具体地、 完整地实现播放音频功能的整体。 具体地说就是将 扬声器、 音频放大器、 结构件等装配在一起的组件。
而且本发明中通过音频播放飞行状态数据和 /或飞行记录数据, 从而能够进一步地辅 助操作人对操控的模型飞行器的状态的认知和把握。
优选地, 所述智能显示遥控器还包括一耳机接口, 用于输出经所述处理器转化得到 的音频数据。
本发明中还通过耳机接口的方式来进一步地拓展音频输出的方式。
较佳地, 所述智能显示遥控器还包括用于获得当前地理信息的一 GPS模块和一存储 单元, 所述存储单元用于存储所述当前地理信息和所述飞行状态数据、 飞行记录数据和 / 或飞行视频数据。
本发明中还通过一 GPS模块来定位当前智能显示遥控器所在地的地理信息, 从而进 一步地记录用户经过的各个地点, 其中本发明中所述 GPS模块是指任何能够实现定位功 能的单元或模块等等, 而且本发明所述地理信息中包括了至少能够表示当前智能显示遥
控器所在地的地理特征的信息。
优选地, 所述智能显示遥控器还包括一 USB (通用串行总线) 接口, 用于输出存储 单元中的所述当前地理信息和所述飞行状态数据、 飞行记录数据和 /或飞行视频数据。
较佳地, 所述处理器还包括一飞行模拟程序;
当所述处理器运行所述飞行模拟程序时, 所述飞行模拟程序通过所述输入单元和触 摸显示屏采集操控信号, 并通过所述操控信号和所述飞行模拟程序中预设的飞行状态配 置参数拟合得到飞行状态修正数据;
所述飞行模拟程序通过所述飞行状态修正数据修正所述飞行模拟程序输出的模拟飞 行状态数据;
所述处理器将修正后的模拟飞行状态数据转化为显示数据并通过触摸显示屏显示所 述显示数据。
本发明中所述飞行模拟程序可以是任意的模拟飞行器的飞行状态或动作的程序代码 等,本发明中并不限定所述飞行模拟程序的具体实现方式。而且所述飞行状态配置参数、 模拟飞行状态数据等均为模拟现实中飞行器飞行中必要的飞行状态或动作的数据或参数, 本发明就不再赘述所述飞行状态配置参数、 模拟飞行状态数据等的数据形式或结构等。
较佳地, 所述智能显示遥控器还包括一 HDMI接口 (高清晰度多媒体接口), 所述 HDMI接口用于输出所述处理器转化得到的显示数据, 进而在高清电视机等显示设备上 显示所述遥控器输出的显示数据, 从而进一步便于用户观看飞行视频等数据信息。
本发明中还进一步地通过 HDMI接口将显示数据输出, 从而拓展视频的显示。
较佳地, 所述智能显示遥控器还包括一麦克风模组, 所述麦克风模组用于采集语音 信息, 所述处理器将所述语音信息转化为飞控信号。
所述麦克风模组是指现有技术中麦克风并结合外围电路及驱动等构架的完整的语音 采集组件, 也就是说, 能够具体地、 完整地实现语音采集功能的整体。 具体地说就是将 麦克风、 结构件等装配在一起的组件。
本发明中通过麦克风采集用户发出的语音指令并转化为飞控信号, 从而能够进一步 地辅助操作人对模型飞行器的操控。
本发明还提供了一种飞行控制系统, 其特点是, 所述飞行控制系统包括如上所述的 智能显示遥控器和一模型飞行器, 所述模型飞行器包括一通信模块, 所述通信模块与智 能显示遥控器的通信单元之间通信链接。
即所述通信模块中也包括一 FSK飞控通信模组、 一 WIFI通信模组、 一蓝牙通信模 组和一公众网通信模组中的一个或多个, 从而通过这些模组, 所述通信模块和智能显示
遥控器的通信单元之间建立通信链接。其中所述 FSK飞控通信模组、 WIFI通信模组、蓝 牙通信模组或公众网通信模组用于接收所述智能显示遥控器发送的飞控信号。
较佳地, 所述模型飞行器还包括用于采集图像数据和 /或视频数据的一视频图像采集 单元。
本领域技术人员应该能够认识到本发明中所述视频图像采集单元可以是任意的能够 实现集图像数据和 /或视频数据的单元部件或模块等。
在符合本领域常识的基础上, 上述各优选条件, 可任意组合, 即得本发明各较佳实 例。
本发明的积极进步效果在于:
本发明的智能显示遥控器和飞行控制系统的优点是既有专业的遥控器的操作手柄, 又利用了触摸显示屏等相关资源, 所以在实现了飞行控制精度高, 操作性好的同时利用 了触摸显示屏等相关资源的高性能和多种实现, 从而提高了操作者的使用感。 附图说明
图 1为本发明的实施例 1的智能显示遥控器的结构示意图。
图 2为本发明的实施例 1的飞行控制系统的通信结构框图。 具体实施方式
下面通过实施例的方式进一步说明本发明, 但并不因此将本发明限制在所述的实施 例范围之中。
本发明的智能显示遥控器不但能够通过多种不同的通信方式来传输控制模型飞行器 的飞控信号, 例如 WIFI、 蓝牙、 3G或 4G等通信方式, 而且还能够通过这些不同的通信 方式来接收模型飞行器生成或采集的飞行状态数据、 飞行记录数据和飞行视频数据。 而 且本发明中利用显示屏来显示这些飞行状态数据、 飞行记录数据和飞行视频数据, 从而 辅助操作者对模型飞行器的操控。 此外, 本发明中还利用触摸显示屏来进一步提高操作 者使用的便捷度。
而且本发明中还利用飞行模拟程序在智能显示遥控器进行飞行控制的模拟, 从而可 以在真正试飞前以及在不适宜飞行的时间给予操作者模拟飞行的乐趣。 下面通过下述的 实施例 1来具体说明本发明的实现方式。
实施例 1中通过使用 20通道的 FSK通信芯片, 拥有一般遥控器所没有的强大的数 据运算和大数据传输和处理能力。
而且还通过使用触摸显示屏, 利用多点触摸、 手势识别等输入方式, 在操纵杆的基 础上增加了输入数据的方式, 使用户有更好的操作体验和享受, 同时智能化器件可以使 遥控器更为智能化。
此外通过飞行模拟程序实现飞行状态模拟和操控, 而且利用 HDMI接口等输出接口 实现音视频的输出, 使用户有更好的享受。
实施例 1
如图 1所示, 本实施例的智能显示遥控器包括一输入单元 1、 一处理器 2、 一触摸显 示屏 3和一通信单元 4。 所述通信单元 4包括一 20通道的 2.4G ISM FSK飞控通信模组 41、一 2.4G/5.8G WIFI通信模组 42、一蓝牙通信模组 43和一 3G/4G通信模组 44。其中, 应当理解的, 所述 3G/4G通信模组可以是 3G通信模组或者 4G通信模组, 其在附图 1、 2中均以附图标记 44表示。
其中所述另一实施例中所述通信单元 4可以只包括 2.4G/5.8G WIFI通信模组或者 3G/4G通信模组。 本领域技术人员应该明确本实施例中只是对通信单元 4的示意性的举 例说明, 所述通信单元 4可以包括一 FSK飞控通信模组、 一 WIFI通信模组、 一蓝牙通 信模组和一公众网通信模组中的一个或多个。
如图 2所述,本实施例中模型飞行器 11中也包括一 20通道的 2.4G ISM FSK飞控通 信模组 111、一 2.4G/5.8G WIFI通信模组 112、一蓝牙通信模组 113和一 3G/4G通信模组 114。 所述 2.4G ISM FSK飞控通信模组 111、 2.4G/5.8G WIFI通信模组 112、 蓝牙通信模 组 113和 3G/4G通信模组 114分别与通信单元 4中所对应的通信模组建立通信链接。
此外所述模型飞行器 11还包括一视频图像采集单元 115,所述视频图像采集单元 115 用于采集图像数据和视频数据。所述图像数据和视频数据用于表征模型飞行器 11所处环 境的状态。
本实施例中所述处理器 2将所述输入单元 1生成的电位器信号和所述触摸显示屏 3 输入的数据转化为飞控信号。 其中所述输入单元 1包括多个遥控杆和遥控开关, 并通过 用户使用所述遥控杆和遥控开关时所生成的电位器信号来表征用户操作。
本实施例中所述触摸显示屏 3输入的数据转化为飞控信号的方式如下:所述处理器 2 输出包含一显示菜单的显示数据至所述触摸显示屏 3,所述触摸显示屏 3显示所述显示菜 单, 所述显示菜单中包含多个对象。 这些对象都显示于所述触摸显示屏 3上。 当用户按 照所述触摸显示屏 3显示的显示菜单对所述对象进行操作时, 所述触摸显示屏 3将获取 的操作数据反馈至处理器 2,所述处理器判断操作数据所对应的对象,并用户操作的对象 的内容转化为飞控信号。
本领域技术人员应该认识到还可以采用其他所述触摸显示屏 3输入的数据转化为飞 控信号的方式而不仅仅局限于本实施例中例举的转化方式。
例如所述处理器 2还从一应用服务器获得所述包含显示菜单的显示数据, 并输出包 含所述显示菜单的显示数据至所述触摸显示屏 3, 所述触摸显示屏 3显示所述显示菜单, 所述显示菜单中包含多个对象。所述触摸显示屏 3将获取的数据反馈至处理器 2,所述处 理器 2将所述数据传输至所述应用服务器。
所述通信单元 4发送所述飞控信号至所述模型飞行器 11。 所述通信单元 4还接收所 述模型飞行器 11的飞行状态数据、 飞行记录数据和飞行视频数据。
所述处理器 2将所述飞行状态数据、飞行记录数据和飞行视频数据转化为显示数据, 所述触摸显示屏 3显示所述显示数据。
而且本实施例中所述处理器 2还包括一飞行模拟程序, 所述飞行模拟程序可以采用 现有的任意的飞行模拟程序, 并且本领域技术人员还可以根据需要自行研发, 但是只要 是能够进行飞行模拟的程序都可以使用在本实施例的处理器 2中。
本实施例中当所述处理器 2运行所述飞行模拟程序时, 所述飞行模拟程序通过所述 输入单元 1和触摸显示屏 3采集操控信号, 并通过所述操控信号和所述飞行模拟程序中 预设的飞行状态配置参数拟合得到飞行状态修正数据。
然后所述飞行模拟程序通过所述飞行状态修正数据修正所述飞行模拟程序输出的模 拟飞行状态数据。 最后所述处理器 2将修正后的模拟飞行状态数据转化为显示数据并通 过触摸显示屏 3显示所述显示数据。
本实施例的智能显示遥控器还包括一扬声器模组 5、一耳机接口 51、一 GPS模块 6、 一存储单元 7、 一 HDMI接口 81、 一 USB接口 82和一麦克风模组 9。
所述处理器 2用于将所述飞行状态数据和飞行记录数据转化为音频数据, 所述扬声 器模组 5用于播放所述音频数据。 所述耳机接口 6能够输出经所述处理器 2转化得到的 音频数据至外部接入的耳机等音频播放设备。
所述 GPS模块 7用于获得智能显示遥控器的当前地理信息。 所述存储单元 8用于存 储所述当前地理信息和所述飞行状态数据、 飞行记录数据和飞行视频数据。
所述 USB接口 82能够输出存储单元 8中的所述当前地理信息和所述飞行状态数据、 飞行记录数据和飞行视频数据。所述 HDMI接口 81用于输出所述处理器 2转化得到的显 示数据。 而且无论是否是飞行模拟程序得到的显示数据还是实际的模型飞行器的数据参 数的得到显示数据都能够通过所述 HDMI接口 81输出。
所述麦克风模组 9用于采集语音信息, 所述处理器 2将所述语音信息转化为飞控信
号。也就是说,通过麦克风模组 9,本实施例的智能显示遥控器能够支持语音命令的输入。 如上所述本实施例的智能显示遥控器通过上述部件不但实现了对模型飞行器的控制, 还能够基于模型飞行器的反馈信息, 显示或语音提示用户, 而且不但能够采集用户肢体 的控制信息还能够实现语音控制, 并且通过多个不同的接口实现与外部设备的数据的交 互。
此外还采用飞行模拟程序, 不但为用户飞行仿真模拟功能还为用户提供了闲暇时模 拟游戏功能。
本实施例的飞行控制系统中智能显示遥控器和模拟飞行器的通信流程可以包括下述 的通信流程:
1、 所述输入单元 1生成表征用户操作的电位信息, 所述处理器 2将所述电位信息转 化为飞控信息, 然后通过 20通道的 2.4G ISM FSK飞控通信模组 41和模型飞行器 11的 20通道的 2.4G ISM FSK飞控通信模组 111建立的通信链路、 2.4G/5.8G WIFI通信模组 42和模型飞行器 11的 2.4G/5.8G WIFI通信模组 112建立的通信链路、 蓝牙通信模组 43 和模型飞行器 11的蓝牙通信模组 113建立的通信链路或 3G/4G通信模组 44和模型飞行 器 11的 3G/4G通信模组 114建立的通信链路发送至模型飞行器 11处。
此后模型飞行器 11能够根据接收到的飞控信息修改模拟飞行器 11的飞行状态。
2、 所述麦克风模组 9采集包含了用户操作指令的语音信息, 所述处理器 2将所述语 音信息转化为飞控信息, 然后同 1中一样, 通过 20通道的 2.4G ISM FSK飞控通信模组 41和模型飞行器 11 的 20通道的 2.4G ISM FSK飞控通信模组 111建立的通信链路、 2.4G/5.8G WIFI通信模组 42和模型飞行器 11的 2.4G/5.8G WIFI通信模组 112建立的通 信链路、蓝牙通信模组 43和模型飞行器 11的蓝牙通信模组 113建立的通信链路或 3G/4G 通信模组 44和模型飞行器 11的 3G/4G通信模组 114建立的通信链路发送至模型飞行器 11处。
此后模型飞行器 11能够根据接收到的飞控信息修改模拟飞行器 11的飞行状态。
3、 所述模型飞行器 11收集自身生成的飞行状态数据和飞行记录数据。 然后通过 20 通道的 2.4G ISM FSK飞控通信模组 41和模型飞行器 11的 20通道的 2.4G ISM FSK飞控 通信模组 111建立的通信链路、 2.4G/5.8G WIFI通信模组 42和模型飞行器 11的 2.4G/5.8G WIFI通信模组 112建立的通信链路、 蓝牙通信模组 43和模型飞行器 11的蓝牙通信模组 113建立的通信链路或 3G/4G通信模组 44和模型飞行器 11的 3G/4G通信模组 114建立 的通信链路发送至智能显示遥控器处。
所述智能显示遥控器的处理器 2可以将所述飞行状态数据和飞行记录数据转化为音
频数据, 此后所述扬声器模组 5用于播放所述音频数据, 而且同时所述耳机接口 6能够 输出经所述处理器 2转化得到的音频数据至外部接入的耳机等音频播放设备。
此外所述智能显示遥控器还可以将所述飞行状态数据和飞行记录数据存储至存储单 元 8中或者所述处理器 2将所述飞行状态数据和飞行记录数据转化为显示数据, 所述触 摸显示屏 3显示所述显示数据或通过 HDMI接口输出至外部显示设备。
4、 所述模型飞行器 11 的视频图像采集单元 115 采集的飞行视频数据。 然后通过 2.4G/5.8G WIFI通信模组 42和模型飞行器 11的 2.4G/5.8G WIFI通信模组 112建立的通 信链路、蓝牙通信模组 43和模型飞行器 11的蓝牙通信模组 113建立的通信链路或 3G/4G 通信模组 44和模型飞行器 11的 3G/4G通信模组 114建立的通信链路发送至智能显示遥 控器处。
所述智能显示遥控器还可以将所述飞行视频数据存储至存储单元 8 中或者所述处理 器 2将所述飞行视频数据转化为显示数据, 所述触摸显示屏 3显示所述显示数据或通过 HDMI接口输出至外部显示设备。
此外本实施例中还可以利用不同的通信模组之间的连接分别单向或双向地传输不同 的数据, 但是这些传输的流程都是由上述流程之间的组合得到的, 所以这里就不再一一 赘述。
为了便于描述, 本实施例中将所述智能显示遥控器按照功能划分为各种模块进行分 别描述, 所以在实施本实施例时, 可以把各模块的功能在同一个或多个软件和 /或硬件中 实现。
虽然以上描述了本发明的具体实施方式, 但是本领域的技术人员应当理解, 这些仅 是举例说明, 在不背离本发明的原理和实质的前提下, 可以对这些实施方式做出多种变 更或修改。 因此, 本发明的保护范围由所附权利要求书限定。
Claims
1、 一种智能显示遥控器, 其特征在于, 所述智能显示遥控器基于系统平台实现, 包 括一输入单元、 一处理器、 一触摸显示屏和一通信单元, 所述通信单元包括一 FSK飞控 通信模组、 一 WIFI通信模组、 一蓝牙通信模组和一公众网通信模组中的一个或多个; 其中所述处理器将所述输入单元生成的电位器信号和所述触摸显示屏输入的数据转 化为飞控信号, 所述通信单元发送所述飞控信号至一模型飞行器;
所述通信单元还接收所述模型飞行器的飞行状态数据、 飞行记录数据和 /或飞行视频 数据;
所述处理器将所述飞行状态数据、 飞行记录数据和 /或飞行视频数据转化为显示数据; 所述触摸显示屏显示所述显示数据。
2、 如权利要求 1所述的智能显示遥控器, 其特征在于, 所述系统平台为安卓平台。
3、 如权利要求 1-2中至少一项所述的智能显示遥控器, 其特征在于, 所述 FSK飞控 通信模组包括一 2.4G/5.8G ISM FSK飞控芯片;所述 WIFI通信模组包括一 2.4G/5.8G WIFI 通信芯片; 所述公众网通信模组包括一 3G通信芯片、 一 4G通信芯片或一 GPRS/EDGE 通信芯片; 所述蓝牙通信模组包括一蓝牙通信芯片。
4、 如权利要求 1-3中至少一项所述的智能显示遥控器, 其特征在于, 所述输入单元 为多个遥控杆和遥控开关。
5、 如权利要求 1-4中至少一项所述的智能显示遥控器, 其特征在于, 所述处理器还 输出包含一显示菜单的显示数据至所述触摸显示屏,所述触摸显示屏显示所述显示菜单, 所述显示菜单中包含多个对象;
所述触摸显示屏将获取的数据反馈至处理器, 所述处理器将所述数据所对应的显示 菜单的对象的内容转化为飞控信号。
6、 如权利要求 5所述的智能显示遥控器, 其特征在于, 所述处理器还从一应用服务 器获得所述包含显示菜单的显示数据, 并输出包含所述显示菜单的显示数据至所述触摸 显示屏, 所述触摸显示屏显示所述显示菜单, 所述显示菜单中包含多个对象;
所述触摸显示屏将获取的数据反馈至处理器, 所述处理器将所述数据传输至所述应 用服务器。
7、 如权利要求 1-6中至少一项所述的智能显示遥控器, 其特征在于, 所述智能显示 遥控器还包括一扬声器模组, 所述处理器还用于将所述飞行状态数据和 /或飞行记录数据 转化为音频数据, 所述扬声器模组用于播放所述音频数据。
8、 如权利要求 1-7中至少一项所述的智能显示遥控器, 其特征在于, 所述智能显示
遥控器还包括一耳机接口, 用于输出经所述处理器转化得到的音频数据。
9、 如权利要求 1-8中至少一项所述的智能显示遥控器, 其特征在于, 所述智能显示 遥控器还包括用于获得当前地理信息的一 GPS模块和一存储单元, 所述存储单元用于存 储所述当前地理信息和所述飞行状态数据、 飞行记录数据和 /或飞行视频数据。
10、 如权利要求 1-9 中至少一项所述的智能显示遥控器, 其特征在于, 所述智能显 示遥控器还包括一 USB接口, 用于输出存储单元中的所述当前地理信息和所述飞行状态 数据、 飞行记录数据和 /或飞行视频数据。
11、 如权利要求 1-10中至少一项所述的智能显示遥控器, 其特征在于, 所述处理器 还包括一飞行模拟程序;
当所述处理器运行所述飞行模拟程序时, 所述飞行模拟程序通过所述输入单元和触 摸显示屏采集操控信号, 并通过所述操控信号和所述飞行模拟程序中预设的飞行状态配 置参数拟合得到飞行状态修正数据;
所述飞行模拟程序通过所述飞行状态修正数据修正所述飞行模拟程序输出的模拟飞 行状态数据;
所述处理器将修正后的模拟飞行状态数据转化为显示数据并通过触摸显示屏显示所 述显示数据。
12、 如权利要求 11所述的智能显示遥控器, 其特征在于, 所述智能显示遥控器还包 括一 HDMI接口, 所述 HDMI接口用于输出所述处理器转化得到的显示数据。
13、 如权利要求 1-12中至少一项所述的智能显示遥控器, 其特征在于, 所述智能显 示遥控器还包括一麦克风模组, 所述麦克风模组用于采集语音信息, 所述处理器将所述 语音信息转化为飞控信号。
14、 一种飞行控制系统, 其特征在于, 所述飞行控制系统包括一如权利要求 1-13中 至少一项所述的智能显示遥控器和一模型飞行器, 所述模型飞行器包括一通信模块, 所 述通信模块与所述智能显示遥控器的通信单元之间建立通信链接。
15、 如权利要求 14所述的飞行控制系统, 其特征在于, 所述模型飞行器还包括用于 采集图像数据和 /或视频数据的一视频图像采集单元。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201310233888.9 | 2013-06-13 | ||
| CN201310233888.9A CN104238551A (zh) | 2013-06-13 | 2013-06-13 | 智能显示遥控器和飞行控制系统 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2014198189A1 true WO2014198189A1 (zh) | 2014-12-18 |
Family
ID=52021645
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2014/079120 Ceased WO2014198189A1 (zh) | 2013-06-13 | 2014-06-04 | 智能显示遥控器和飞行控制系统 |
Country Status (3)
| Country | Link |
|---|---|
| CN (1) | CN104238551A (zh) |
| HK (1) | HK1205296A1 (zh) |
| WO (1) | WO2014198189A1 (zh) |
Families Citing this family (13)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN104865856B (zh) * | 2015-03-30 | 2018-02-06 | 广州势必可赢网络科技有限公司 | 一种适用于无人机的语音控制方法 |
| EP3164773B1 (en) | 2015-03-31 | 2022-03-23 | SZ DJI Technology Co., Ltd. | System and method for recording operation data |
| CN104765309A (zh) * | 2015-04-08 | 2015-07-08 | 何春旺 | 遥控器、遥控行驶装置、遥控行驶装置控制系统及其方法 |
| CN104991493B (zh) * | 2015-06-24 | 2018-06-05 | 广州飞米电子科技有限公司 | 数据传输方法、装置及系统 |
| CN105000170B (zh) * | 2015-07-15 | 2017-11-28 | 珠海市磐石电子科技有限公司 | 触摸屏控制器及行驶装置的控制方法 |
| CN105022398B (zh) * | 2015-07-15 | 2018-07-06 | 珠海磐磊智能科技有限公司 | 触摸屏控制器及行驶装置的控制方法 |
| CN105824253B (zh) * | 2016-01-21 | 2018-02-09 | 中国地质大学(北京) | 一种基于蓝牙与微波技术的无线控制电法勘探仪器及其方法 |
| CN106039732A (zh) * | 2016-06-19 | 2016-10-26 | 周冬娟 | 航模调节系统 |
| CN106571022B (zh) * | 2016-10-18 | 2019-03-19 | 武汉大学 | 一种基于μC/OS-III的四轴飞行器控制系统和方法 |
| CN109997088A (zh) * | 2017-03-24 | 2019-07-09 | 深圳市大疆创新科技有限公司 | 无人机及其信息处理方法 |
| CN108734954A (zh) * | 2017-04-14 | 2018-11-02 | 中交遥感载荷(北京)科技有限公司 | 一种基于无人机的交通监测装置 |
| CN107845161B (zh) * | 2017-11-02 | 2020-05-22 | 深圳市道通智能航空技术有限公司 | 一种获取飞行记录的方法和装置 |
| WO2019041872A1 (zh) * | 2017-08-30 | 2019-03-07 | 深圳市道通智能航空技术有限公司 | 获取飞行记录的方法和装置 |
Citations (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102227903A (zh) * | 2008-11-27 | 2011-10-26 | 鹦鹉股份有限公司 | 用于驾驶遥控飞机的设备 |
| CN102520730A (zh) * | 2011-12-16 | 2012-06-27 | 新时代集团国防科技研究中心 | 一种用于无人飞行器操控终端的实现方法 |
| CN102591346A (zh) * | 2011-12-05 | 2012-07-18 | 大连理工大学 | 一种手持式小型无人机地面监控系统 |
| CN102800178A (zh) * | 2012-07-12 | 2012-11-28 | 李凯 | 遥控玩具的控制方法 |
| CN202694151U (zh) * | 2011-12-16 | 2013-01-23 | 新时代集团国防科技研究中心 | 用于无人飞行器操控终端装置 |
| CN202802771U (zh) * | 2012-09-21 | 2013-03-20 | 田瑜 | 模型飞机、遥控设备及模型飞机的遥控系统 |
| CN203350718U (zh) * | 2013-06-13 | 2013-12-18 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203414817U (zh) * | 2013-06-13 | 2014-01-29 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203414782U (zh) * | 2013-06-13 | 2014-01-29 | 昊翔电能运动科技(昆山)有限公司 | 飞行器控制系统 |
| CN203483857U (zh) * | 2013-06-13 | 2014-03-19 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203490821U (zh) * | 2013-06-13 | 2014-03-19 | 昊翔电能运动科技(昆山)有限公司 | 智能显示遥控器和飞行控制系统 |
Family Cites Families (14)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN201421654Y (zh) * | 2009-04-30 | 2010-03-10 | 骏升科技(扬州)有限公司 | 运动遥控器 |
| CN201604796U (zh) * | 2010-03-23 | 2010-10-13 | 贵阳帝三数字技术有限公司 | 智能航拍无人飞行器 |
| CN102205877A (zh) * | 2010-03-29 | 2011-10-05 | 金安迪 | 一种无人驾驶飞机自动驾驶仪性能测试系统 |
| CN102233191A (zh) * | 2010-05-07 | 2011-11-09 | 上海九鹰电子科技有限公司 | 一种兼有语音控制功能的航模 |
| CN102346479B (zh) * | 2010-08-04 | 2014-08-20 | 鸿富锦精密工业(深圳)有限公司 | 手持装置及利用其控制无人飞行载具的方法 |
| CN201754247U (zh) * | 2010-08-18 | 2011-03-02 | 深圳市沈氏彤创航天模型有限公司 | 运动姿态的控制装置 |
| CN201780533U (zh) * | 2010-09-17 | 2011-03-30 | 航天恒星科技有限公司 | 一种用于飞行器的手持控制显示终端 |
| TW201215442A (en) * | 2010-10-06 | 2012-04-16 | Hon Hai Prec Ind Co Ltd | Unmanned Aerial Vehicle control system and method |
| CN201894848U (zh) * | 2010-10-13 | 2011-07-13 | 广州民航职业技术学院 | 航模与电玩多用途控制器 |
| CN202120469U (zh) * | 2011-07-01 | 2012-01-18 | 宁波大学 | 一种航模遥控模拟器系统 |
| CN102621903B (zh) * | 2012-02-24 | 2014-01-08 | 深圳市迪瑞德科技有限公司 | 可遥控飞行器的电子设备及遥控方法 |
| CN102637023A (zh) * | 2012-03-23 | 2012-08-15 | 王效波 | 基于3g、gprs手机通讯的远程无人机集群控制方法及系统 |
| CN202754148U (zh) * | 2012-07-16 | 2013-02-27 | 北京航空航天大学 | 一种通用化可配置无人机地面站 |
| CN202758243U (zh) * | 2012-09-06 | 2013-02-27 | 北京工业大学 | 一种无人机飞行操控系统 |
-
2013
- 2013-06-13 CN CN201310233888.9A patent/CN104238551A/zh active Pending
-
2014
- 2014-06-04 WO PCT/CN2014/079120 patent/WO2014198189A1/zh not_active Ceased
-
2015
- 2015-06-22 HK HK15105916.3A patent/HK1205296A1/zh unknown
Patent Citations (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102227903A (zh) * | 2008-11-27 | 2011-10-26 | 鹦鹉股份有限公司 | 用于驾驶遥控飞机的设备 |
| CN102591346A (zh) * | 2011-12-05 | 2012-07-18 | 大连理工大学 | 一种手持式小型无人机地面监控系统 |
| CN102520730A (zh) * | 2011-12-16 | 2012-06-27 | 新时代集团国防科技研究中心 | 一种用于无人飞行器操控终端的实现方法 |
| CN202694151U (zh) * | 2011-12-16 | 2013-01-23 | 新时代集团国防科技研究中心 | 用于无人飞行器操控终端装置 |
| CN102800178A (zh) * | 2012-07-12 | 2012-11-28 | 李凯 | 遥控玩具的控制方法 |
| CN202802771U (zh) * | 2012-09-21 | 2013-03-20 | 田瑜 | 模型飞机、遥控设备及模型飞机的遥控系统 |
| CN203350718U (zh) * | 2013-06-13 | 2013-12-18 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203414817U (zh) * | 2013-06-13 | 2014-01-29 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203414782U (zh) * | 2013-06-13 | 2014-01-29 | 昊翔电能运动科技(昆山)有限公司 | 飞行器控制系统 |
| CN203483857U (zh) * | 2013-06-13 | 2014-03-19 | 昊翔电能运动科技(昆山)有限公司 | 遥控系统及其飞行器控制系统 |
| CN203490821U (zh) * | 2013-06-13 | 2014-03-19 | 昊翔电能运动科技(昆山)有限公司 | 智能显示遥控器和飞行控制系统 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN104238551A (zh) | 2014-12-24 |
| HK1205296A1 (zh) | 2015-12-11 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| WO2014198189A1 (zh) | 智能显示遥控器和飞行控制系统 | |
| CN203490821U (zh) | 智能显示遥控器和飞行控制系统 | |
| CN106531177B (zh) | 一种音频处理的方法、移动终端以及系统 | |
| CN108888955B (zh) | 一种游戏中的视角控制方法和装置 | |
| US20170195650A1 (en) | Method and system for multi point same screen broadcast of video | |
| CN112202967B (zh) | 基于手机互联的分屏显示方法 | |
| DE102016121564A1 (de) | System und verfahren zum mit einem netzwerk gekoppelten spielen | |
| CN103634683A (zh) | 对智能电视进行截屏的方法及装置 | |
| CN103019569A (zh) | 交互设备及交互设备交互的方法 | |
| CN106534941A (zh) | 实现视频互动的方法和装置 | |
| CN105139877A (zh) | 多媒体播放设备的连接方法、主设备、控制终端及系统 | |
| US10306366B2 (en) | Audio system, audio device, and audio signal playback method | |
| US20140358986A1 (en) | Cloud Database-Based Interactive Control System, Method and Accessory Devices | |
| US11027199B2 (en) | System and method for network coupled gaming | |
| CN103517108A (zh) | 智能电视播放设备、移动终端、体感功能实现方法及系统 | |
| US20200388089A1 (en) | Title method, apparatus and system for processing vehicle diagnosis case and diagnosis device | |
| CN104900111A (zh) | 一种高保真模拟驾驶系统及方法 | |
| CN102724185A (zh) | 基于家庭网关的游戏实现方法、家庭网关及移动终端 | |
| WO2017140153A1 (zh) | 语音控制方法及装置 | |
| CN107464475B (zh) | 一种飞行模拟器的多通路语音通信仿真系统及方法 | |
| WO2015117550A1 (en) | Method and apparatus for acquiring reverberated wet sound | |
| KR20200060074A (ko) | 안무 로봇의 모션 제어 장치, 및 그를 포함하는 모션 생성 및 제어 시스템 | |
| WO2015179466A1 (en) | Remote interactive media | |
| CN109155803B (zh) | 音频数据处理方法、终端设备和存储介质 | |
| CN216721637U (zh) | 氛围灯系统 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 14811307 Country of ref document: EP Kind code of ref document: A1 |
|
| NENP | Non-entry into the national phase |
Ref country code: DE |
|
| 32PN | Ep: public notification in the ep bulletin as address of the adressee cannot be established |
Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205N DATED 24.03.2016) |
|
| 122 | Ep: pct application non-entry in european phase |
Ref document number: 14811307 Country of ref document: EP Kind code of ref document: A1 |