WO2017206036A1 - 可移动设备及其控制方法和装置、控制终端及拍摄设备 - Google Patents

可移动设备及其控制方法和装置、控制终端及拍摄设备 Download PDF

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Publication number
WO2017206036A1
WO2017206036A1 PCT/CN2016/083983 CN2016083983W WO2017206036A1 WO 2017206036 A1 WO2017206036 A1 WO 2017206036A1 CN 2016083983 W CN2016083983 W CN 2016083983W WO 2017206036 A1 WO2017206036 A1 WO 2017206036A1
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WO
WIPO (PCT)
Prior art keywords
photographing
light source
instruction
shooting
control
Prior art date
Application number
PCT/CN2016/083983
Other languages
English (en)
French (fr)
Inventor
霍达君
刘磊
邓雨眠
彭昭亮
Original Assignee
深圳市大疆创新科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市大疆创新科技有限公司 filed Critical 深圳市大疆创新科技有限公司
Priority to PCT/CN2016/083983 priority Critical patent/WO2017206036A1/zh
Priority to CN201680002482.1A priority patent/CN107005656B/zh
Publication of WO2017206036A1 publication Critical patent/WO2017206036A1/zh
Priority to US16/206,405 priority patent/US10884414B2/en

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Classifications

    • GPHYSICS
    • G05CONTROLLING; REGULATING
    • G05DSYSTEMS FOR CONTROLLING OR REGULATING NON-ELECTRIC VARIABLES
    • G05D1/00Control of position, course, altitude or attitude of land, water, air or space vehicles, e.g. using automatic pilots
    • G05D1/0094Control of position, course, altitude or attitude of land, water, air or space vehicles, e.g. using automatic pilots involving pointing a payload, e.g. camera, weapon, sensor, towards a fixed or moving target
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/66Remote control of cameras or camera parts, e.g. by remote control devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64CAEROPLANES; HELICOPTERS
    • B64C39/00Aircraft not otherwise provided for
    • B64C39/02Aircraft not otherwise provided for characterised by special use
    • B64C39/024Aircraft not otherwise provided for characterised by special use of the remote controlled vehicle type, i.e. RPV
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64DEQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENT OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
    • B64D47/00Equipment not otherwise provided for
    • B64D47/02Arrangements or adaptations of signal or lighting devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64DEQUIPMENT FOR FITTING IN OR TO AIRCRAFT; FLIGHT SUITS; PARACHUTES; ARRANGEMENT OR MOUNTING OF POWER PLANTS OR PROPULSION TRANSMISSIONS IN AIRCRAFT
    • B64D47/00Equipment not otherwise provided for
    • B64D47/08Arrangements of cameras
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U10/00Type of UAV
    • B64U10/10Rotorcrafts
    • B64U10/13Flying platforms
    • B64U10/14Flying platforms with four distinct rotor axes, e.g. quadcopters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U20/00Constructional aspects of UAVs
    • B64U20/80Arrangement of on-board electronics, e.g. avionics systems or wiring
    • B64U20/87Mounting of imaging devices, e.g. mounting of gimbals
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules
    • H04N23/66Remote control of cameras or camera parts, e.g. by remote control devices
    • H04N23/661Transmitting camera control signals through networks, e.g. control via the Internet
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/70Circuitry for compensating brightness variation in the scene
    • H04N23/74Circuitry for compensating brightness variation in the scene by influencing the scene brightness using illuminating means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B64AIRCRAFT; AVIATION; COSMONAUTICS
    • B64UUNMANNED AERIAL VEHICLES [UAV]; EQUIPMENT THEREFOR
    • B64U2101/00UAVs specially adapted for particular uses or applications
    • B64U2101/30UAVs specially adapted for particular uses or applications for imaging, photography or videography

Definitions

  • the present application relates to the field of photography, and in particular to a mobile device such as an unmanned aerial vehicle, and a control method and apparatus therefor, and a corresponding controller, memory, control terminal and photographing apparatus.
  • An indicator light is generally provided on the body of the drone to indicate the status of the drone and/or to distinguish the orientation of the drone.
  • the indicator light is easily projected into the lens of the camera mounted by the drone, causing the lens to glare and interfering with the camera exposure, which seriously affects the shooting effect.
  • a scheme using a hood has been proposed in the prior art.
  • the use of the hood can not completely solve the lens glare problem, can only alleviate, increase the material cost, and different lenses use different hoods, increase the maintenance cost of the manufacturer, and the user experience is poor.
  • the present invention provides a mobile device control method, the method comprising:
  • the step of performing the photographing step according to the photographing instruction further includes: turning on the light source after the photographing is completed.
  • the step of turning on the light source after the shooting is completed specifically includes: acquiring feedback information of the completed shooting, and turning on the light source.
  • the step of acquiring the feedback information of the completed shooting and the step of turning on the light source specifically includes: after the shooting is completed, sending a feedback instruction for re-turning on the light source, and turning on the light source.
  • the step of turning on the light source after the photographing is completed specifically includes: if the photographing instruction is photographing, turning on the light source after performing a first preset time of the photographing action.
  • the step of turning on the light source after the shooting is completed specifically includes: if the shooting instruction is recording, periodically sending a light-off instruction during the recording, if the instruction is not received within the second preset time, Then turn on the light source.
  • the method further includes: receiving a stop shooting instruction; stopping the recording and stopping sending the light-off instruction.
  • the method includes: receiving a shooting instruction; transmitting an instruction to turn off the light source to turn off at least the light source that affects the shooting; and performing shooting according to the shooting instruction.
  • the method includes: receiving the shooting instruction; at least turning off a light source that affects the shooting and transmitting the shooting instruction to instruct shooting; and capturing according to the shooting instruction.
  • the step of performing the photographing according to the photographing instruction specifically includes: confirming that the photographing is started after the light source is turned off or after a third preset time delay.
  • the confirming that the light source is turned off comprises: receiving, by the control device, at least the feedback message sent after the light source that affects the photographing is turned off.
  • the method further includes: receiving a light source default state setting instruction; and setting a default state of the light source according to the light source default state setting instruction.
  • the method further includes: if the photographing instruction is photographing, returning the light source to the default state after a preset time when the photographing device performs the photographing action.
  • the method further includes: if the shooting instruction is recording, the shooting device periodically sends a light-off instruction to the control device during the recording process, and if the control device does not receive the command within a preset time, The light source is restored to the default state.
  • the step of receiving the photographing instruction further includes: if the light source control mode is the automatic mode, turning off the light source in response to the photographing instruction; otherwise, directly starting photographing.
  • the present invention provides a mobile device control device, the device comprising:
  • a receiving module configured to receive a shooting instruction
  • control module configured to, in response to the photographing instruction, turn off at least a light source that affects the photographing
  • a shooting module for taking a picture according to the shooting instruction.
  • the control module is further configured to: turn on the light source after the shooting of the shooting module is completed.
  • the control module is specifically configured to: obtain feedback information that the shooting module has completed shooting, and turn on the light source.
  • the shooting module is configured to send a feedback instruction to the control module to restart the light source after the shooting is completed, and the control module is configured to turn on the light source according to the feedback instruction.
  • the control module turns on the light source after the first preset time of the photographing operation by the photographing module, if the photographing instruction received by the receiving module is photographing.
  • the photographing module periodically sends a light-off instruction to the control module during the recording process, if the photographing instruction received by the receiving module is a video recording, if the control module does not receive the second preset time The instruction, the control module controls to turn on the light source.
  • the photographing module is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control module.
  • the receiving module is configured to receive a shooting instruction according to the shooting instruction received by the receiving module, and send an instruction to turn off the light source to the control module according to the shooting instruction received by the receiving module;
  • the command at least turns off the light source that affects the shooting;
  • the shooting module is configured to perform shooting according to the shooting instruction.
  • the receiving module is configured to receive a shooting instruction
  • the control module is configured to close at least the light source that affects the shooting according to the shooting instruction received by the receiving module, and send the shooting instruction to the shooting module to indicate Shooting; the shooting module is configured to perform shooting according to the shooting instruction.
  • the shooting module is further configured to start shooting after confirming that the light source is turned off or after a delay of a third preset time.
  • the photographing module is configured to receive the control module to at least close the effect of the photographing A feedback message sent after the light source to confirm that the light source is turned off.
  • the receiving module is further configured to receive a light source default state setting instruction; the control module is configured to set a default state of the light source according to the light source default state setting instruction.
  • the control module restores the light source to the default state after the preset time of the photographing module performs the photographing action, if the photographing instruction received by the receiving module is photographing.
  • the shooting module periodically sends a light-off instruction to the control module during the recording process, if the control module does not receive the preset time within the preset time And the control module restores the light source to the default state.
  • the receiving module is configured to receive the light source control mode, and if the light source control mode is an automatic mode, the control module turns off the light source or the shooting module responds to the shooting instruction in response to the shooting instruction. And the control module is notified to turn off the light source, otherwise the shooting module directly starts shooting.
  • the present invention provides a mobile device, comprising: a light source, a photographing device, a control device communicably connected to the photographing device, and a signal receiving device.
  • the signal receiving device is configured to receive a shooting instruction
  • the control device is configured to close at least a light source that affects the photographing in response to the photographing instruction;
  • the photographing device is configured to perform photographing according to the photographing instruction.
  • control device is configured to turn on the light source after the shooting of the camera is completed.
  • the control device is configured to acquire feedback information that the photographing device has completed photographing, and turn on the light source.
  • the photographing device is configured to send a feedback instruction to the control device to restart the light source after the photographing is completed, and the control device is configured to turn on the light source according to the feedback instruction.
  • the control device turns on the light source after the first preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device is in the second preset The control device controls to turn on the light source if the command is not received.
  • the photographing device is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control device.
  • the signal receiving device is configured to receive a shooting instruction; the capturing device is configured to send an instruction to turn off a light source to the control device according to a shooting instruction received by the signal receiving device; the control device is configured to close according to the The command of the light source turns off at least the light source that affects the photographing; the photographing device performs photographing according to the photographing instruction.
  • the signal receiving device is configured to receive a shooting instruction
  • the control device is configured to close at least the light source that affects the shooting according to the shooting instruction received by the signal receiving device, and send the shooting instruction to the shooting device.
  • the shooting is instructed; the photographing device performs shooting according to the shooting instruction.
  • the photographing device is further configured to start photographing after confirming that the light source is turned off or after a delay of a third preset time.
  • the photographing device is configured to receive a feedback message sent by the control device after the at least the light source that affects the photographing is turned off.
  • the signal receiving device is further configured to receive a light source default state setting instruction; the control device sets a default state of the light source according to the light source default state setting instruction.
  • the control device restores the light source to the default state after the preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the preset time within the preset time Said instruction, said control means restoring said light source to said default state.
  • the signal receiving device is configured to receive the light source control mode, and if the light source control mode is an automatic mode, the control device turns off the light source or the photographing device responds to the photographing in response to the photographing instruction The instruction is notified to the control device to turn off the light source, otherwise the photographing device directly starts shooting.
  • control device is a controller, an ESC or a micro control unit of the mobile device.
  • the signal receiving device is integrated with the control device or the photographing device.
  • the movable device is an unmanned aerial vehicle.
  • an unmanned aerial vehicle comprising: a light source, a photographing device, a control device communicably connected to the photographing device, and a signal receiving device.
  • a setting position or a light irradiation range of the at least one light source is located within a shooting field of view of the photographing device, the signal receiving device is configured to receive a shooting instruction, and the control device is configured to at least close the influence in response to the shooting instruction
  • the photographing light source, the photographing device performs photographing according to the photographing instruction.
  • control device turns on the light source after the photographing device is photographed.
  • the UAV further includes a robot arm, and the photographing device and the at least one light source are located below the arm.
  • the UAV further includes a housing, and the control device is disposed in the housing.
  • control device is a flight controller, an ESC or a micro control unit of the UAV.
  • the signal receiving device is integrated with the control device or the photographing device.
  • the present invention proposes a controller for performing the following steps:
  • the photographing instruction is sent to the photographing device to control the photographing device to perform photographing.
  • controller is further configured to turn on the light source or restore the light source to a default state after the shooting is completed.
  • the present invention proposes a memory for storing program instructions that can be acquired by a controller to perform the following steps:
  • the photographing instruction is sent to the photographing device to control the photographing device to perform photographing.
  • the program instructions stored in the memory further include: turning on the light source or returning the light source to a default state after the shooting is completed.
  • the present invention provides a mobile device control method, the method comprising:
  • the method further includes: turning on the light source after the photographing is completed.
  • the step of turning on the light source after the shooting is completed specifically includes: acquiring feedback information of the completed shooting, and turning on the light source.
  • the step of acquiring the feedback information of the completed shooting and turning on the light source specifically includes: after the shooting is completed, sending a feedback instruction for re-enabling the light source, and turning on the light source according to the feedback instruction.
  • the step of turning on the light source after the photographing is completed specifically includes: if the photographing instruction is photographing, turning on the light source after performing a first preset time of the photographing action.
  • the step of turning on the light source after the shooting is completed specifically includes:
  • the light-off instruction is sent periodically during the recording, and if the instruction is not received within the second preset time, the light source is turned on.
  • the method further includes: receiving a stop shooting instruction; stopping the recording and stopping sending the light-off instruction.
  • the method includes: receiving a shooting instruction; transmitting an instruction to turn off the light source to turn off at least the light source that affects the shooting; and performing shooting according to the shooting instruction.
  • the method includes: receiving the shooting instruction; at least turning off a light source that affects the shooting and transmitting the shooting instruction to instruct shooting; and capturing according to the shooting instruction.
  • the step of performing the photographing according to the photographing instruction specifically includes: confirming that the photographing is started after the light source is turned off or after a third preset time delay.
  • the confirming that the light source is turned off comprises: receiving, by the control device, at least the feedback message sent after the light source that affects the photographing is turned off.
  • the method further includes: receiving a light source default state setting instruction; and setting a default state of the light source according to the light source default state setting instruction.
  • the method further includes: if the photographing instruction is photographing, returning the light source to the default state after a preset time when the photographing device performs the photographing action.
  • the method further includes: if the shooting instruction is recording, the shooting device periodically sends a light-off instruction to the control device during the recording process, and if the control device does not receive the command within a preset time, The light source is restored to the default state.
  • the step of receiving the shooting instruction further includes: if the light source control mode is the automatic mode, turning off the light source in response to the shooting instruction, otherwise starting shooting directly.
  • the present invention provides a mobile device, comprising: a light source, a photographing device, a control device communicably connected to the photographing device, and a signal receiving device.
  • the signal receiving device is configured to establish a communication connection with the control terminal, and receive a shooting instruction sent by the control terminal;
  • the control device is configured to close at least a light source that affects the photographing in response to the photographing instruction;
  • the photographing device performs photographing in accordance with the photographing instruction.
  • control device turns on the light source after the photographing device is photographed.
  • the control device is configured to obtain feedback information that the photographing device has completed photographing, and turn on the light source.
  • the photographing device is configured to send a feedback instruction to the control device to restart the light source after the photographing is completed, and the control device is configured to turn on the light source according to the feedback instruction.
  • the control device turns on the light source after the first preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the second preset time Upon the instruction, the control device controls to turn on the light source.
  • the photographing device is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control device.
  • the signal receiving device is configured to receive a shooting instruction; the capturing device is configured to send an instruction to turn off a light source to the control device according to a shooting instruction received by the signal receiving device; the control device is configured to close according to the The command of the light source turns off at least the light source that affects the photographing; the photographing device performs photographing according to the photographing instruction.
  • the receiving device is configured to receive a shooting instruction; the control device is configured to turn off at least the light source that affects the shooting according to the shooting instruction received by the signal receiving device, and send the shooting instruction to the shooting device to indicate Shooting is performed; the photographing device performs photographing according to the photographing instruction.
  • the photographing device is further configured to start photographing after confirming that the light source is turned off or after a delay of a third preset time.
  • the photographing device is configured to receive a feedback message sent by the control device after the at least the light source that affects the photographing is turned off.
  • the signal receiving device is further configured to receive a light source default state setting instruction; the control device sets a default state of the light source according to the light source default state setting instruction.
  • the control device restores the light source to the default state after the preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the preset time within the preset time Said instruction, said control means restoring said light source to said default state.
  • the signal receiving device is configured to receive the light source control mode, if the light source control mode In the automatic mode, the control device turns off the light source in response to the photographing instruction or the photographing device notifies the control device to turn off the light source in response to the photographing instruction, otherwise the photographing device directly starts photographing.
  • control device is a controller, an ESC or a micro control unit of the mobile device.
  • the signal receiving device is integrated with the control device or the photographing device.
  • the movable device is an unmanned aerial vehicle.
  • the present invention provides a mobile device control method, the method comprising:
  • a shutdown light source command that turns off at least a light source that affects shooting
  • the sending start shooting instruction further includes: after the shooting is completed, transmitting, to the mobile device, a resume instruction for restoring the operation of the light source.
  • the step of transmitting the closed light source command to the movable device to at least turn off the light source that affects the shooting further comprises: confirming that the light source is turned off.
  • the confirming that the light source is turned off comprises: receiving a feedback message sent by the movable device in response to the turning off the light source instruction to at least turn off the light source that affects the photographing.
  • the timing of the light source is sent to the mobile device periodically during the shooting, and the movable device restores the operation of the light source if the instruction is not received within a preset time.
  • the step of receiving the shooting instruction further includes: if the light source control mode is the automatic mode, transmitting the light-off command to the movable device, otherwise directly transmitting the start shooting instruction to the photographing device.
  • the present invention provides a control terminal, and the control terminal includes:
  • processor a communication circuit, and an input device, wherein the processor is coupled to the communication circuit and the input device respectively;
  • the processor is configured to receive a shooting instruction through the input device or the communication circuit; send, by the communication circuit, a closed light source instruction that turns off at least a light source that affects shooting to the movable device; and sends the shooting to the shooting device through the communication circuit Shooting instructions.
  • the processor is further configured to send, by the communication circuit, a recovery instruction for restoring operation of the light source by the communication circuit after the photographing is completed.
  • the processor is configured to send the start shooting instruction to the photographing device through the communication circuit after confirming that the light source is turned off.
  • the processor is configured to receive, by the communication circuit, the feedback message sent by the mobile device in response to the turning off the light source to at least turn off the light source that affects the photographing to confirm that the light source is turned off.
  • the processor is further configured to periodically send a shutdown light source instruction to the mobile device through the communication circuit during a shooting process, and the removable device does not receive the instruction within a preset time, and then restores the location.
  • the work of the light source is further configured to periodically send a shutdown light source instruction to the mobile device through the communication circuit during a shooting process, and the removable device does not receive the instruction within a preset time, and then restores the location. The work of the light source.
  • the processor sends the light-off command to the mobile device through the communication circuit, otherwise the direct shooting is directly sent to the shooting device through the communication circuit. instruction.
  • the processor is further configured to receive a stop shooting instruction through the input device or the communication circuit; send a stop shooting instruction to the photographing device through the communication circuit and to the movable device through the communication circuit A resume command to resume the operation of the light source is sent.
  • the present invention provides a photographing apparatus, which includes:
  • a communication circuit electrically connected to the device body for receiving a photographing instruction, and transmitting, to the movable device on which the photographing device is mounted, a turn-off light source command for turning off at least a light source of the movable device that affects the photographing;
  • the device body is notified to start shooting after the light source is turned off or after a delay of the first predetermined time.
  • the communication circuit confirms that the light source is turned off by receiving the feedback message sent by the movable device in response to the turning off the light source command to at least turn off the light source that affects the photographing.
  • the communication circuit is further configured to periodically send a shutdown light source instruction to the movable device during a shooting process, and the movable device restores the working of the light source if the instruction is not received within a second predetermined time.
  • the communication circuit is further configured to receive a stop shooting instruction, notify the device body to stop capturing, and send a resume instruction to the movable device to resume the operation of the light source.
  • the recovering the light source comprises: turning on the light source or placing the light source in a default state.
  • the communication circuit is further configured to determine whether the light source control mode is an automatic mode after receiving the shooting instruction, and if yes, send the light source off command to the mobile device, otherwise directly notify the device body to start shooting. .
  • the present invention provides a mobile device control method, the method comprising:
  • the shooting is performed according to the shooting instruction after the preset time.
  • the step of performing the photographing step according to the photographing instruction further includes: turning on the light source after the photographing is completed.
  • the step of turning on the light source after the shooting is completed specifically includes: acquiring feedback information of the completed shooting, and turning on the light source.
  • the step of acquiring the feedback information of the completed shooting and turning on the light source specifically includes: after the shooting is completed, sending a feedback instruction for re-enabling the light source, and turning on the light source according to the feedback instruction.
  • the step of turning on the light source after the photographing is completed specifically includes: if the photographing instruction is photographing, turning on the light source after performing a first preset time of the photographing action.
  • the step of turning on the light source after the shooting is completed specifically includes: if the shooting instruction is recording, periodically sending a light-off instruction during the recording, if the instruction is not received within the second preset time, Then turn on the light source.
  • the method further includes: receiving a stop shooting instruction; stopping the recording and stopping sending the light-off instruction.
  • the method further includes: receiving a light source default state setting instruction; and setting a default state of the light source according to the light source default state setting instruction.
  • the method further includes: if the photographing instruction is photographing, returning the light source to the default state after a preset time when the photographing device performs the photographing action.
  • the method further includes: if the shooting instruction is recording, the shooting device periodically sends a light-off instruction to the control device during the recording process, and if the control device does not receive the command within a preset time, The light source is restored to the default state.
  • the step of receiving the photographing instruction further includes: if the light source control mode is the automatic mode, turning off the light source in response to the photographing instruction; otherwise, directly starting photographing.
  • the present invention provides a mobile device control device, the device comprising:
  • a receiving module configured to receive a shooting instruction and turn off a light source instruction
  • control module configured to at least turn off a light source that affects the photographing in response to the turning off the light source instruction
  • a shooting module configured to perform shooting according to the shooting instruction after a preset time.
  • the control module is further configured to: turn on the light source after the shooting of the shooting module is completed.
  • the control module is specifically configured to: obtain feedback information that the shooting module has completed shooting, and turn on the light source.
  • the shooting module is configured to send a feedback instruction to the control module to restart the light source after the shooting is completed, and the control module is configured to turn on the light source according to the feedback instruction.
  • the control module turns on the light source after the first preset time of the photographing operation by the photographing module, if the photographing instruction received by the receiving module is photographing.
  • the photographing module periodically sends a light-off instruction to the control module during the recording process, if the photographing instruction received by the receiving module is a video recording, if the control module does not receive the second preset time The instruction, the control module controls to turn on the light source.
  • the photographing module is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control module.
  • the receiving module is further configured to receive a light source default state setting instruction; the control module sets a default state of the light source according to the light source default state setting instruction.
  • the control module restores the light source to the default state after the preset time of the photographing module performs the photographing action, if the photographing instruction received by the receiving module is photographing.
  • the shooting module periodically sends a light-off instruction to the control module during the recording process, if the control module does not receive the preset time within the preset time And the control module restores the light source to the default state.
  • the receiving module is configured to receive the light source control mode, and if the light source control mode is an automatic mode, the control module turns off the light source or the shooting module responds to the shooting instruction in response to the shooting instruction. And the control module is notified to turn off the light source, otherwise the shooting module directly starts shooting.
  • the present invention provides a mobile device, comprising: a light source, a photographing device, and a control device communicably connected to the photographing device,
  • the photographing device receives a photographing instruction and the control device receives a light source off command;
  • the control device is configured to close at least a light source that affects the photographing in response to the turning off the light source instruction;
  • the photographing device is configured to perform photographing according to the photographing instruction after a preset time.
  • control device is configured to turn on the light source after the shooting of the camera is completed.
  • the control device is configured to obtain feedback information that the photographing device has completed photographing, and turn on the light source.
  • the photographing device is configured to send a re-opening to the control device after the photographing is completed a feedback command of the light source
  • the control device is configured to turn on the light source according to the feedback instruction.
  • the control device turns on the light source after the first preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the second preset time The instruction, the control device controls to turn on the light source.
  • the photographing device is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control device.
  • the control device is further configured to receive a light source default state setting instruction; the control device sets a default state of the light source according to the light source default state setting instruction.
  • the control device restores the light source to the default state after the preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the preset time within the preset time Instructing, the control device restores the light source to the default state.
  • control device is configured to receive the light source control mode, and if the light source control mode is an automatic mode, the control device turns off the light source in response to the turning off the light source command, otherwise the photographing device receives the photographing Start shooting directly after the command.
  • control device is a controller, an ESC or a micro control unit of the mobile device.
  • the movable device is an unmanned aerial vehicle.
  • an unmanned aerial vehicle comprising: a light source, a photographing device, and a control device communicably connected to the photographing device,
  • the setting position or the light irradiation range of the at least one light source is located within a shooting field of view of the photographing device, the photographing device is configured to receive a shooting instruction, and the control device is configured to receive and correspondingly turn off the light source command to at least close the influence
  • the photographing light source, the photographing device performs photographing according to the photographing instruction after a preset time.
  • control device is further configured to turn on the light source after the photographing device is photographed.
  • the UAV further includes a robot arm, and the photographing device and the at least one light source are located below the arm.
  • the UAV further includes a housing, and the control device is disposed in the housing.
  • control device is a flight controller, an ESC or a micro control unit of the UAV.
  • the present invention proposes a controller for performing the following steps:
  • the shooting is performed according to the shooting instruction after the preset time.
  • controller is further configured to turn on the light source or restore the light source to a default state after the shooting is completed.
  • the present invention proposes a memory for storing program instructions that can be acquired by a controller to perform the following steps:
  • the shooting is performed according to the shooting instruction after the preset time.
  • the program instructions stored in the memory further include: turning on the light source or returning the light source to a default state after the shooting is completed.
  • the present invention provides a mobile device control method, the method comprising:
  • the shooting is performed according to the shooting instruction after the preset time.
  • the step of performing the photographing step according to the photographing instruction further includes: turning on the light source or restoring the light source to a default state after the photographing is completed.
  • the step of turning on the light source after the shooting is completed specifically includes: acquiring feedback information of the completed shooting, and turning on the light source.
  • the step of acquiring the feedback information of the completed shooting and turning on the light source specifically includes: after the shooting is completed, sending a feedback instruction for re-enabling the light source, and turning on the light source according to the feedback instruction.
  • the step of turning on the light source after the photographing is completed specifically includes: if the photographing instruction is photographing, turning on the light source after performing a first preset time of the photographing action.
  • the step of turning on the light source after the shooting is completed specifically includes: if the shooting instruction is recording, periodically sending a light-off instruction during the recording, if the instruction is not received within the second preset time, Then turn on the light source.
  • the method further includes: receiving a stop shooting instruction; stopping the recording and stopping sending the light-off instruction.
  • the method further includes: receiving a light source default state setting instruction; and setting a default state of the light source according to the light source default state setting instruction.
  • the method further includes: if the photographing instruction is photographing, returning the light source to the default state after the preset time of the photographing device performing the photographing action.
  • the method further includes: if the shooting instruction is recording, the shooting device periodically sends a light-off instruction to the control device during the recording process, and if the control device does not receive the instruction within a preset time, Then the light source is restored to the default state.
  • the step of receiving the photographing instruction further includes: if the light source control mode is the automatic mode, turning off the light source in response to the turning off the light source command, otherwise directly starting shooting according to the photographing instruction.
  • the present invention provides a mobile device, comprising: a light source, a photographing device, a control device communicably connected to the photographing device, and a signal receiving device.
  • the photographing device is configured to establish a communication connection with the control terminal, and receive a photographing instruction sent by the control terminal;
  • the control device is configured to establish a communication connection with the control terminal, and receive a shutdown light source command sent by the control terminal;
  • the control device is configured to close at least a light source that affects the photographing in response to the photographing instruction;
  • the photographing device performs photographing in accordance with the photographing instruction.
  • control device is configured to turn on the light source after the shooting of the camera is completed.
  • the control device is configured to obtain feedback information that the photographing device has completed photographing, and turn on the light source.
  • the photographing device is configured to send a feedback instruction to the control device to restart the light source after the photographing is completed, and the control device is configured to turn on the light source according to the feedback instruction.
  • the control device turns on the light source after the first preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the second preset time The instruction, the control device controls to turn on the light source.
  • the photographing device is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control device.
  • control device is further configured to receive and set a default state of the light source according to a light source default state setting instruction.
  • the control device restores the light source to the default state after the preset time of the photographing device performing the photographing action.
  • the photographing device periodically sends a light-off command to the control device during the recording process, if the control device does not receive the preset time within the preset time Instructing, the control device restores the light source to the default state.
  • control device is configured to receive the light source control mode, if the light source control mode is In the automatic mode, the control device turns off the light source in response to the turning off the light source command, otherwise the photographing device directly starts shooting after receiving the shooting instruction.
  • control device is a controller, an ESC or a micro control unit of the mobile device.
  • the movable device is an unmanned aerial vehicle.
  • the present invention provides a mobile device control method, the method comprising:
  • the sending, after the closing of the light source command for the light source that affects the shooting, and the starting of the shooting instruction to the mobile device further comprise: sending a resume instruction to resume operation of the light source to the mobile device after the shooting is completed.
  • the method further includes: periodically sending a shutdown light source instruction to the movable device during the photographing process, and the movable device fails to receive the instruction within the second predetermined time to resume the operation of the light source.
  • the receiving the shooting instruction further includes: if the light source control mode is the automatic mode, transmitting the light-off command to the movable device, otherwise directly sending the start shooting instruction to the shooting device.
  • the present invention provides a control terminal, the control terminal includes: a processor, a communication circuit, and an input device, where the processor is coupled to the communication circuit and the input device respectively;
  • the processor is configured to receive a shooting instruction through the input device or the communication circuit; and send, by the communication circuit, a shutdown light source instruction and a start shooting instruction to turn off at least a light source that affects shooting, so that the The mobile device performs shooting according to the start of the shooting instruction after the predetermined time of the light source that affects the shooting is turned off in response to the turning off the light source command.
  • the processor is further configured to move to the mobile through the communication circuit after the shooting is completed
  • the device sends a resume command to resume operation of the light source.
  • the processor is further configured to periodically send a shutdown light source instruction to the mobile device through the communication circuit during a shooting process, and the removable device does not receive the instruction within a preset time, and then restores the location.
  • the work of the light source is further configured to periodically send a shutdown light source instruction to the mobile device through the communication circuit during a shooting process, and the removable device does not receive the instruction within a preset time, and then restores the location. The work of the light source.
  • control mode is an automatic mode
  • the processor sends the shutdown light source instruction and the start shooting instruction to the mobile device through the communication circuit, otherwise directly through the communication circuit
  • the mobile device transmits the start shooting instruction.
  • the processor is further configured to receive a stop shooting instruction through the input device or the communication circuit; and send, by the communication circuit, a resume instruction to stop a shooting instruction and resume the operation of the light source to the movable device.
  • the invention has the beneficial effects that at least the light source affecting the shooting is turned off before the shooting, and the lens glare problem caused by the body flashing light is solved from the source, and the hood is not needed, which is cost-saving and versatile. Linking off the light source and shooting, providing fool-like functions to the user, without the need for the user to manually switch the light source, to solve the lens glare problem without affecting the user experience and flight safety.
  • FIG. 1 is a flow chart of a first embodiment of a method for controlling a mobile device according to the present invention
  • FIG. 2 is a flow chart of an embodiment of the first embodiment of the mobile device control method of the present invention
  • FIG. 3 is a flow chart of an embodiment of the first embodiment of the mobile device control method of the present invention as a control device and a photographing device;
  • FIG. 4 is a flow chart of a second embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 5 is a flow chart of a third embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 6 is a flow chart of a fourth embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 7 is a flow chart of a fifth embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 8 is a flow chart of a sixth embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 9 is a flow chart of a seventh embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 10 is a flowchart of an eighth embodiment of a method for controlling a mobile device according to the present invention.
  • FIG. 11 is a flowchart of a ninth embodiment of a method for controlling a mobile device according to the present invention.
  • Figure 12 is a flow chart showing a tenth embodiment of the mobile device control method of the present invention.
  • FIG. 13 is a schematic structural diagram of a first embodiment of a mobile device control device according to the present invention.
  • FIG. 14 is a schematic structural diagram of a second embodiment of a mobile device control device according to the present invention.
  • FIG. 15 is a schematic structural view of a first embodiment of a mobile device according to the present invention.
  • Figure 16 is a schematic structural view of a second embodiment of the mobile device of the present invention.
  • Figure 17 is a schematic structural view of a first embodiment of the unmanned aerial vehicle of the present invention.
  • Figure 18 is a schematic structural view of a second embodiment of the unmanned aerial vehicle of the present invention.
  • FIG. 19 is a schematic structural diagram of a first embodiment of a control terminal according to the present invention.
  • FIG. 20 is a schematic structural diagram of a second embodiment of a control terminal according to the present invention.
  • Figure 21 is a schematic view showing the structure of a first embodiment of the photographing apparatus of the present invention.
  • the first embodiment of the mobile device control method of the present invention includes:
  • the shooting instruction input by the user through the input device may be received, or the shooting instruction sent by the control terminal may be received through a wired or wireless communication connection.
  • the control terminal may be a remote controller for controlling the mobile device, or may be another terminal device such as a computer, a mobile phone, a tablet, or the like in which the mobile device control program is installed.
  • S12 Turn off at least the light source that affects shooting in response to the shooting instruction.
  • the light source that affects the shooting refers to a light source whose setting position or light irradiation range is within the shooting field of the photographing device, and the light emitted by the light source may cause lens flare of the photographing device.
  • the indicators below the two or one arm of the handpiece are turned off because the lens and the head are oriented substantially the same.
  • Shooting can be for taking pictures or taking pictures.
  • the executive body of the embodiment may be a mobile device including a camera device, and the mobile device may be a drone, an unmanned boat, an unmanned vehicle, etc.; or may be one or more of the mobile devices. Multiple devices/modules.
  • the execution body of the embodiment may be a photographing device, or may be a photographing device and a movable device. At this time, the movable device performs steps S11 and S12, and the photographing device performs step S13.
  • the embodiment specifically includes:
  • the photographing instructions may be received from other devices/modules in the mobile device, such as an input device, a signal receiving device, a control device, etc.; the photographing instructions may also be received directly from the control terminal of the communication connection.
  • the photographing device can directly receive the photographing instruction from the remote controller, and can also receive the photographing command from the control device such as the flight controller.
  • the photographing device may also receive a photographing instruction from the signal receiving device.
  • S112 Send an instruction to turn off the light source to turn off the light source in response to the shooting instruction.
  • an instruction to turn off the light source is sent to the control device that controls the light source to turn off the light source.
  • the camera can directly control the light source, it is also possible to directly send a close command to the light source to turn off the light source.
  • the device that has received the photographing instruction by the photographing device or the signal receiving device or the like transmits a signal to the control device, and the control device turns off the light source according to the received signal to transmit an instruction to turn off the light source. It is also possible to generate a light-off command by directly receiving the shooting command by the control device, and send an instruction to turn off the light source to turn off the light source.
  • the embodiment specifically includes:
  • the execution body of this step is a control device, which can receive a shooting instruction from other devices/modules in the mobile device, such as an input device, a signal receiving device, etc., or can directly receive a shooting instruction from a control terminal of the communication connection.
  • S122 Turn off at least the light source that affects shooting and send a shooting instruction to instruct shooting.
  • the main body of this step is the control device.
  • the control device sends a shooting instruction to the camera after the light source is turned off.
  • the control device may be a control component such as a flight control.
  • the execution subject of this step is a photographing device.
  • the control device may be a controller of the mobile device, ESC or Micro Control Unit (MCU).
  • the light source herein refers to a light source that is turned off in response to a shooting instruction, at least partially affecting the shooting, and the definition of the light source is the same as that not described in the following description. Shooting after confirming that the light source is turned off ensures that the lens of the shooting device will not be affected by the light source and glare during shooting.
  • the light source may be a signal indicator or other indicator light on the aircraft.
  • the shooting may be started after the third preset time is delayed after the step S12 is performed, or may be directly started after the step S12 is performed.
  • At least the light source that affects the shooting is turned off before the shooting, and the lens glare problem caused by the body flashing light is solved from the source, and the hood is not needed, which is cost-effective and versatile. Linking off the light source and shooting, providing a fool-like function to the user, without the need for the user to manually switch the light source, to solve the lens glare problem without affecting the user experience.
  • the second embodiment of the mobile device control method of the present invention is based on the first embodiment of the mobile device control method of the present invention.
  • the method further includes:
  • the execution body of this step may be a mobile device or a device/module in the mobile device.
  • the execution body of this step may be a photographing device.
  • the execution subject of this step is a photographing device, a photographing device in the movable device, or a control device capable of controlling the photographing process
  • the photographing state can be directly obtained, and the light source is turned on directly after the photographing is completed or by a control device that controls the light source.
  • the execution subject of the present step is another device/module other than the photographing device or the control device controlling the photographing process in the movable device, for example, the control device for controlling the light source
  • the feedback information of the completed shooting can be obtained from the photographing device, the photographing device, or the control device that controls the photographing process to determine whether the photographing is completed, and the light source is turned on.
  • the method includes: receiving a feedback instruction of the photographing device, the photographing device, or the control device that controls the photographing process to restart the light source after the photographing is completed, and turning on the light source according to the feedback instruction.
  • the execution subject of this step is a photographing device, a photographing device in the movable device, or a control device that controls the photographing process, it is also possible to determine whether the photographing is completed by acquiring feedback information of the photographing process.
  • the execution subject of the present step is another device/module other than the photographing device or the control device controlling the photographing process in the movable device, for example, the control device for controlling the light source , according to the delay time to judge whether the shooting is completed. If the shooting instruction is taking a photo, after the first preset time of performing the taking action, it is determined that the photographing has been completed, and the light source is turned on. If the shooting instruction is recording, the shooting device, the shooting device, or the control device that controls the shooting process periodically sends a light-off instruction to the execution body of the step during the recording process, and if the instruction is not received within the second preset time, the determination is made.
  • the camera is over and the light source is turned on. It can prevent the loss of state caused by fault or restart, etc.
  • the state of the light source may be turned off and cannot be recovered.
  • the photographing device, the photographing device, or the control device that controls the photographing process stops the recording and stops the transmission of the light-off command after receiving the stop shooting instruction.
  • the execution subject of this step is a photographing device, a photographing device in the movable device, or a control device that controls the photographing process, whether the photographing is completed or not may be determined according to the delay time.
  • the light source is turned on after the shooting is completed, so that the light source can continue to work without the manual operation of the user.
  • the third embodiment of the mobile device control method of the present invention is a further extension of the first embodiment of the mobile device control method of the present invention, and thus is the same as the first embodiment of the mobile device control method of the present invention.
  • the steps are not repeated here.
  • the execution body of this embodiment may be a mobile device or a device/module in the mobile device.
  • the execution body of this step may be a photographing device.
  • This embodiment can be combined with any of the above embodiments of the mobile device control method of the present invention. This embodiment includes:
  • the light source default state setting instruction input by the user through the input device may be received, or the control terminal may be received through a wired or wireless communication connection, such as a remote controller or an APP (application program) control terminal, and the light source default state setting command is sent.
  • the default state of the light source includes at least two kinds of normally open and normally closed, and may also include states of different colors, brightness, and the like of the light source.
  • S134 Turn off at least the light source that affects shooting in response to the shooting instruction.
  • the photographing state can be directly obtained, and the light source can be restored directly or after the photographing is completed by the control device that controls the light source.
  • the default state is a photographing device, a photographing device in the movable device, or a control device capable of controlling the photographing process.
  • the execution subject of the present step is another device/module other than the photographing device or the control device controlling the photographing process in the movable device, for example, the control device for controlling the light source
  • the feedback information of the completed shooting can be obtained from the photographing device, the photographing device, or the control device that controls the photographing process to determine whether the photographing is completed, and the light source is restored to the default state.
  • the method includes: receiving a feedback instruction sent by the photographing device, the photographing device, or the control device controlling the photographing process after the photographing is completed, indicating that the photographing has ended, and returning the light source to a default state according to the feedback instruction.
  • the execution subject of this step is a photographing device, a photographing device in a movable device, or a control photographing process
  • the device is controlled, it is also possible to determine whether the shooting is completed by acquiring feedback information of the completed shooting.
  • the execution subject of the present step is another device/module other than the photographing device or the control device controlling the photographing process in the movable device, for example, the control device for controlling the light source , according to the delay time to judge whether the shooting is completed. If the shooting instruction is photographing, it is determined that the photographing has been completed after the preset time of the photographing action is performed, and the light source is restored to the default state. If the shooting instruction is recording, the shooting device, the shooting device, or the control device that controls the shooting process periodically sends a light-off command to the execution body of the step during the recording process.
  • the photographing device, the photographing device, or the control device that controls the photographing process stops the recording and stops the transmission of the light-off command after receiving the stop shooting instruction.
  • the execution subject of this step is a photographing device, a photographing device in the movable device, or a control device that controls the photographing process, whether the photographing is completed or not may be determined according to the delay time.
  • the light source is restored to the default state after the shooting is completed, so that the light source can continue to operate according to the preset default state, thereby eliminating manual operation by the user.
  • the fourth embodiment of the mobile device control method of the present invention is a further extension of the first embodiment of the mobile device control method of the present invention, and thus is the same as the first embodiment of the mobile device control method of the present invention. The steps are not repeated here.
  • This embodiment can be combined with any of the above embodiments of the mobile device control method of the present invention. This embodiment includes:
  • the light source control mode is determined. If the light source control mode is the automatic mode, the process goes to step S143, and if the light source control mode is the manual mode, the process goes to step S144.
  • the execution body of this step may be a mobile device or a device/module in the mobile device.
  • the execution subject of the embodiment may be a photographing device.
  • the fifth embodiment of the mobile device control method of the present invention is based on the first embodiment of the mobile device control method of the present invention.
  • the method further includes:
  • S10 Establish a communication connection between the mobile device and the control terminal.
  • the execution body of this step may be a mobile device or a device/module in the mobile device.
  • the control terminal may be a remote controller for controlling the mobile device, or may be another terminal device such as a computer, a mobile phone, a tablet, or the like in which the mobile device control program is installed.
  • the received shooting instruction is from the control terminal.
  • This embodiment can be combined with any of the above embodiments of the mobile device control method of the present invention.
  • the execution body of the sixth embodiment of the mobile device control method of the present invention is a control terminal, and the control terminal may be a remote controller for controlling the mobile device, or a computer or a mobile phone with a mobile device control program installed thereon. , other devices such as tablets.
  • This embodiment includes:
  • the photographing command transmitted by another device of the communication connection may also be received by receiving an image input instruction input by the user through an input device such as a touch screen, a button, or the like.
  • the start shooting instruction is transmitted to the mobile device, in particular, the signal receiving module/device, the control module/device, the shooting module/in the movable device/ The device or the like transmits a start shooting instruction.
  • the photographing device that starts the photographing instruction is relatively independent from the movable device, the start photographing instruction is transmitted to the photographing device.
  • At least the light source that affects the shooting is turned off before the shooting, and the lens glare problem caused by the body flashing light is solved from the source, and the hood is not needed, which is cost-effective and versatile. Linking off the light source and shooting, providing a fool-like function to the user, without the need for the user to manually switch the light source, to solve the lens glare problem without affecting the user experience.
  • the seventh embodiment of the mobile device control method of the present invention is a further extension of the sixth embodiment of the mobile device control method of the present invention, and thus is the same as the sixth embodiment of the mobile device control method of the present invention. The steps are not repeated here.
  • S212 Send a shutdown indicator light source instruction to the movable device to turn off at least the indicator light source that affects the shooting.
  • the light source can be confirmed to be turned off by receiving a feedback message sent by the mobile device in response to turning off the light source command and at least turning off the light source that affects the shooting.
  • Restoring the light source can refer to turning on the light source, or it can be to restore the light source to a preset default state.
  • the eighth embodiment of the mobile device control method of the present invention includes:
  • the execution body of this step may be a mobile device including a photographing device, which may be a drone, an unmanned ship, an unmanned vehicle, etc.; or may be one or more devices/modules in the movable device.
  • the execution body of the step may be a photographing device and a movable device, and the photographing device receives the photographing instruction, and the movable device receives the light source off command.
  • S32 Turn off at least the light source that affects shooting in response to turning off the light source instruction
  • the execution body of this step may be a removable device including a photographing device, or may be one or more devices/modules in the movable device.
  • the light source that affects shooting refers to setting the position or light.
  • the line illumination range is located within a range of the field of view of the camera, and the light emitted by the source may cause lens flare of the camera.
  • the execution body of this step may be a removable device including a photographing device, or may be one or more devices/modules in the movable device.
  • the execution body of this step may be a photographing device.
  • the action of receiving the shooting instruction and receiving the command to turn off the light source may be completed at the same time, or may be in a sequential order, by setting a reasonable preset time value, so that the light source is turned off during shooting.
  • At least the light source that affects the shooting is turned off before the shooting, and the lens glare problem caused by the body flashing light is solved from the source, and the hood is not needed, which is cost-effective and versatile. Linking off the light source and shooting, providing a fool-like function to the user, without the need for the user to manually switch the light source, to solve the lens glare problem without affecting the user experience.
  • the main difference is that the command received in S31 is changed from the shooting command to the shooting command and the light source command is turned off, and S33 is limited to the shooting command after the preset time. Shooting, so there is no need to interact with other devices/devices/modules to confirm that the light source is off before shooting.
  • This embodiment can be combined with any one of the second to fifth embodiments of the mobile device control method of the present invention and possible combinations by the replacement or deletion of the corresponding steps.
  • the executor of the ninth embodiment of the mobile device control method of the present invention is a control terminal, and the control terminal may be a remote controller for controlling the mobile device, or a computer or a mobile phone with a mobile device control program installed thereon. , other devices such as tablets.
  • This embodiment includes:
  • the photographing command transmitted by another device of the communication connection may also be received by receiving an image input instruction input by the user through an input device such as a touch screen, a button, or the like.
  • the step further includes: determining whether the light source control mode is an automatic mode, and if the light source control mode is the automatic mode, jumping to step S42, otherwise directly to the mobile device, Or send a start shooting command to the shooting device.
  • S42 Send a shutdown light source instruction and a start shooting instruction to turn off at least the light source that affects the shooting to the movable device, so that the movable device performs shooting according to the start shooting instruction after the preset time of the light source affecting the shooting is turned off in response to the light source turning off command.
  • the light source off command may also be sent to the mobile device to cause the mobile device to turn off at least the light source that affects the shooting in response to the light source off command; send a start shooting command to the photographing device to cause the photographing device to perform the shooting instruction according to the start shooting instruction after the preset time Shooting.
  • the tenth embodiment of the mobile device control method of the present invention is based on the ninth embodiment of the mobile device control method of the present invention, and further includes:
  • S43 Sending a light-off command to the mobile device periodically during the shooting process, and the mobile device recovers the light source by not receiving the command within the second predetermined time.
  • the state of the light source may be turned off and cannot be recovered.
  • the second predetermined time refers to the delay of restoring the operation of the light source, which is different from the delay of starting the shooting as described above.
  • Restoring the light source can refer to turning on the light source, or it can be to restore the light source to a preset default state.
  • Restoring the light source can refer to turning on the light source, or it can be to restore the light source to a preset default state.
  • the first embodiment of the mobile device control device of the present invention includes:
  • the receiving module 11 is configured to receive a shooting instruction.
  • the control module 12 is configured to close at least the light source that affects the shooting in response to the shooting instruction.
  • the photographing module 13 is configured to perform photographing according to a photographing instruction.
  • the modules included in the mobile device control device in this embodiment are used to perform the steps in the first embodiment of the mobile device control method of the present invention. For details, refer to the description in the first embodiment of the mobile device control method of the present invention. , will not repeat them here.
  • the control module 12 is further configured to: turn on the light source after the shooting of the shooting module 13 is completed.
  • the control module 12 is specifically configured to: obtain feedback information that the shooting module has completed shooting, and open Start the light source.
  • the shooting module 13 is configured to send a feedback instruction to the control module 12 to restart the light source after the shooting is completed, and the control module 12 is configured to turn on the light source according to the feedback instruction.
  • the control module 12 turns on the light source after the first preset time of the photographing action performed by the photographing module 13.
  • the shooting module 13 periodically sends a light-off command to the control module 12 during the recording process, and if the control module 12 does not receive the command within the second preset time, then the control module 12 controls Module 12 controls the light source to be turned on.
  • the shooting module 13 is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending the light-off instruction to the control module 12.
  • the receiving module 11 is further configured to receive a light source default state setting instruction; the control module 12 sets a default state of the light source according to the light source default state setting instruction.
  • the control module 12 restores the light source to a default state after the photographing module 13 performs the preset time of the photographing action.
  • the shooting module 13 periodically sends a light-off command to the control module 12 during the recording process. If the control module 12 does not receive the command within the preset time, the control module 12 Restore the light source to its default state.
  • the receiving module 11 is configured to receive the light source control mode. If the light source control mode is the automatic mode, the control module 12 turns off the light source in response to the shooting instruction or the shooting module 13 notifies the control module 12 to turn off the light source in response to the shooting instruction, otherwise the shooting module 13 directly Start shooting.
  • the modules included in the mobile device control device of the present invention may be further used to perform the steps in the second to fourth embodiments and possible combinations of the mobile device control method of the present invention.
  • the descriptions in the second to fourth embodiments will not be repeated here.
  • the second embodiment of the mobile device control device of the present invention includes:
  • the receiving module 14 is configured to receive a shooting instruction and a light source turning off command.
  • the control module 15 is configured to close at least the light source that affects the shooting in response to the turning off the light source command.
  • the shooting module 16 is configured to perform shooting according to the shooting instruction after the preset time.
  • the modules included in the mobile device control device in this embodiment are used to perform the steps in the eighth embodiment of the mobile device control method of the present invention. For details, refer to the description in the eighth embodiment of the mobile device control method of the present invention. , will not repeat them here.
  • the control module 15 is further configured to: turn on the light source after the shooting of the shooting module 16 is completed.
  • the control module 15 is specifically configured to: obtain feedback information that the shooting module has completed shooting, and turn on the light source.
  • the shooting module 16 is configured to send a feedback instruction to the control module 15 to restart the light source after the shooting is completed, and the control module 15 is configured to turn on the light source according to the feedback instruction.
  • the control module 15 turns on the light source after the first preset time of the photographing operation performed by the photographing module 16 .
  • the shooting module 16 periodically sends a light-off command to the control module 15 during the recording process, and if the control module 15 does not receive the command within the second preset time, then the control module 15 controls Module 15 controls the light source to be turned on.
  • the shooting module 16 is further configured to receive a stop shooting instruction, and stop recording according to the instruction and stop sending a light-off instruction to the control module 15.
  • the receiving module 14 is further configured to receive a light source default state setting instruction; the control module 15 sets a default state of the light source according to the light source default state setting instruction.
  • the control module 15 restores the light source to the default state after the preset time of the photographing operation performed by the photographing module 16 .
  • the shooting module 16 periodically sends a light-off command to the control module 15 during the recording process. If the control module 15 does not receive the command within the preset time, the control module 15 Restore the light source to its default state.
  • the receiving module 14 is configured to receive the light source control mode. If the light source control mode is the automatic mode, the control module 15 turns off the light source in response to the shooting instruction or the shooting module 16 notifies the control module 15 to turn off the light source in response to the shooting instruction, otherwise the shooting module 16 directly Start shooting.
  • the modules included in the mobile device control device of the present invention may be further used to perform the replacement or deletion of the corresponding steps in the eighth embodiment of the mobile device control method of the present invention, and in the second to fourth embodiments of the mobile device control method of the present invention.
  • the steps in the second to fourth and eighth embodiments of the mobile device control method of the present invention are described in detail, and the details are not described herein.
  • the first embodiment of the mobile device of the present invention comprises: a light source 21, a photographing device 22, a control device 23, and a signal receiving device 24, and two communication between the photographing device 22, the control device 23 and the signal receiving device 24 connection.
  • the signal receiving device 24 is for receiving a shooting instruction.
  • the control device 23 is responsive to the shooting command to turn off at least the light source 21 that affects the shooting.
  • the photographing device 22 is for photographing in accordance with a photographing instruction.
  • the light source 21 is controlled by the control device 23, and the light source 21 may be controlled by the imaging device 22, and the imaging device 22 is communicably connected to the light source 21.
  • the photographing device 22 may receive the photographing instruction directly from the signal receiving device 24, or may receive the photographing command from the signal receiving device 24 through the control device 23.
  • the mobile device can be an unmanned aerial vehicle, an unmanned vehicle, an unmanned ship, or the like.
  • the imaging device 22, the control device 23 and the signal receiving device 24 shown in the figure are connected in communication, and when no information interaction is required between any two of them, the connection may not be made.
  • the control device 23 is used to turn on the light source after the shooting of the camera 22 is completed.
  • the control device 23 is configured to obtain feedback information that the photographing device 22 has completed photographing, and turn on the light source.
  • the photographing device 22 is configured to send a feedback command to the control device 23 to restart the light source after the photographing is completed, and the control device 23 is configured to turn on the light source according to the feedback instruction.
  • the control device 23 turns on the light source after the first preset time of the photographing operation by the photographing device 22.
  • the photographing device 22 periodically sends a light-off command to the control device 23 during the recording process, if the control device 23 is within the second preset time.
  • the control device 23 controls the light source to be turned on.
  • the photographing device 22 is further configured to receive the stop shooting instruction, and stop the recording according to the instruction and stop sending the light-off instruction to the control device 23.
  • the signal receiving device 24 is configured to receive a shooting instruction; the capturing device 22 is configured to send an instruction to turn off the light source to the control device 23 according to the shooting instruction received by the signal receiving device 24; and the control device 23 is configured to close at least the affected shooting according to the instruction to turn off the light source.
  • the light source; the photographing device 22 performs photographing according to the photographing instruction.
  • the signal receiving device 24 is configured to receive a shooting instruction; the control device 23 is configured to turn off at least the light source that affects shooting according to the shooting instruction received by the signal receiving device 24, and send a shooting instruction to the shooting device 22 to instruct shooting; the capturing device 22 is configured according to Shoot the command to shoot.
  • the photographing device 22 is further configured to start photographing after confirming that the light source is turned off or after delaying for a third preset time.
  • the photographing device 22 is configured to receive a feedback message sent by the control device 23 after at least turning off the light source that affects the photographing.
  • the signal receiving device 24 is further configured to receive a light source default state setting command; the control device 23 sets a default state of the light source according to the light source default state setting command.
  • the control device 23 restores the light source to the default state after the preset time for the photographing device 22 to perform the photographing action.
  • the photographing device 22 periodically sends a light-off command to the control device 23 during the recording process, and if the control device 23 does not receive the command within the preset time, the control device 23 Restore the light source to its default state.
  • the signal receiving device 24 is configured to receive the light source control mode. If the light source control mode is the automatic mode, the control device 23 turns off the light source in response to the shooting instruction or the imaging device 22 notifies the control device 23 to turn off the light source in response to the shooting instruction, otherwise the imaging device 22 Start shooting directly.
  • the control device 23 is a controller, an ESC or a micro control unit of the mobile device.
  • the signal receiving device 24 is integrated with the control device 23 or the imaging device 22.
  • the mobile device is an unmanned aerial vehicle.
  • the signal receiving device is configured to establish a communication connection with the control terminal and receive a shooting instruction transmitted by the control terminal.
  • a second embodiment of the mobile device of the present invention includes a light source 25, a photographing device 26, and a control device 27 communicably coupled to the photographing device 26.
  • the photographing device 26 receives the photographing instruction and the control device 27 receives the light source off command;
  • the control device 27 is configured to close at least the light source 25 affecting the shooting in response to the light source command being turned off;
  • the photographing device 26 is configured to perform photographing according to a photographing instruction after a preset time.
  • the photographing device 26 can receive the photographing instruction by itself or can receive the photographing command through the control device 27.
  • the mobile device can be an unmanned aerial vehicle, an unmanned vehicle, an unmanned ship, or the like.
  • the control device 27 is used to turn on the light source after the shooting of the camera 26 is completed.
  • the control device 27 is configured to acquire feedback information that the photographing device has completed photographing, and turn on the light source.
  • the photographing device 26 is configured to send a feedback command to the control device 27 to restart the light source after the photographing is completed, and the control device 27 is configured to turn on the light source according to the feedback instruction.
  • the control device 27 turns on the light source after the first preset time of the photographing operation by the photographing device 26.
  • the photographing device 26 periodically sends a light-off command to the control device 27 during the recording process, and if the control device 27 does not receive the command within the second preset time, the control device 27 controls Device 27 controls the light source to be turned on.
  • the photographing device 26 is further configured to receive the stop shooting instruction, and stop the recording according to the instruction and stop sending the light-off instruction to the control device 27.
  • control device 27 is further configured to receive a light source default state setting command; the control device 27 sets a default state of the light source according to the light source default state setting command.
  • the control device 27 is in the photographing device. Set 26 to return the light source to the default state after performing the preset time of the camera action.
  • the photographing device 26 periodically sends a light-off command to the control device 27 during the recording process. If the control device 27 does not receive the command within the preset time, the control device 27 Restore the light source to its default state.
  • the control device 27 is configured to receive the light source control mode. If the light source control mode is the automatic mode, the control device 27 turns off the light source in response to turning off the light source command, otherwise the imaging device 26 directly starts shooting after receiving the shooting command.
  • the control device 27 is a controller, an ESC or a micro control unit of the mobile device.
  • the mobile device is an unmanned aerial vehicle.
  • the photographing device is configured to establish a communication connection with the control terminal and receive a photographing instruction transmitted by the control terminal.
  • the first embodiment of the unmanned aerial vehicle of the present invention comprises: a light source 31, a photographing device 32, a control device 33, and a signal receiving device 34, and two communication between the photographing device 32, the control device 33 and the signal receiving device 34 connection.
  • the setting position or the light irradiation range of the at least one light source 31 is located within the shooting visual field range of the photographing device 32, the signal receiving device 34 is configured to receive a shooting instruction, and the control device 33 is configured to close at least the light source 31 affecting the shooting in response to the shooting instruction, and shoot The device 32 performs shooting in accordance with the shooting instruction.
  • the light source 31 is controlled by the control device 33, and the light source 31 may be controlled by the imaging device 32.
  • the photographing device 32 can receive the photographing instruction directly from the signal receiving device 34, or can receive the photographing command from the signal receiving device 34 through the control device 33.
  • the photographing device 32, the control device 33 and the signal receiving device 34 shown in the figure are connected in communication, and when no information interaction is required between any two of them, the connection may not be made.
  • control device turns on the light source after the shooting of the camera is completed.
  • the unmanned aerial vehicle further includes an arm (not shown), a photographing device and at least one light The source is located below the arm.
  • the unmanned aerial vehicle further includes a casing (not shown), and the control device is disposed in the casing.
  • control device is a flight controller, an ESC or a micro control unit of the UAV.
  • the signal receiving device is integrated with the control device or the photographing device.
  • the second embodiment of the unmanned aerial vehicle of the present invention includes a light source 35, a photographing device 36, and a control device 37 communicably coupled to the photographing device 36.
  • the setting position or the light irradiation range of the at least one light source 35 is located within the shooting visual field range of the photographing device 36, the photographing device 36 is configured to receive the photographing instruction, and the control device 37 is configured to receive and correspondingly turn off the light source command to turn off at least the light source that affects the photographing,
  • the photographing device 36 performs photographing according to the photographing instruction after the preset time.
  • control device is further configured to turn on the light source after the photographing device is photographed.
  • the UAV further includes an arm (not shown), and the photographing device and the at least one light source are located below the arm.
  • the unmanned aerial vehicle further includes a casing (not shown), and the control device is disposed in the casing.
  • control device is a flight controller, an ESC or a micro control unit of the UAV.
  • the controller is further configured to turn on or restore the light source to a default state after the shooting is completed.
  • the controller is further configured to turn on or restore the light source to a default state after the shooting is completed.
  • the first embodiment of the memory of the present invention is for storing program instructions, which can be acquired by the controller to perform the following steps:
  • the program instructions stored by the memory further include: turning on the light source or restoring the light source to a default state after the shooting is completed.
  • the second embodiment of the memory of the present invention is for storing program instructions, which can be acquired by the controller to perform the following steps:
  • the program instructions stored by the memory further include: turning on the light source or restoring the light source to a default state after the shooting is completed.
  • the program instructions stored in the above memory may be specifically referred to in the corresponding embodiments of the mobile device operating method of the present invention, and are not repeated here.
  • the first embodiment of the control terminal of the present invention includes a processor 41, a communication circuit 42, and an input device 43, respectively, and the processor 41 is coupled to the communication circuit 42 and the input device 43, respectively.
  • the processor 41 is configured to receive a photographing instruction through the input device 43 or the communication circuit 42; transmit to the movable device through the communication circuit 42 at least the off-light source command that turns off the light source that affects the photographing; and the communication circuit 42 to transmit the start photographing instruction to the photographing device.
  • the processor is further configured to send a recovery instruction for recovering the light source operation to the mobile device through the communication circuit after the shooting is completed.
  • the processor is configured to send a start shooting instruction to the photographing device through the communication circuit after confirming that the light source is turned off.
  • the processor is configured to receive, by the communication circuit, the feedback message sent by the mobile device in response to the turning off the light source command to at least turn off the light source that affects the shooting to confirm that the light source is turned off.
  • the processor is further configured to periodically send a light source off command to the mobile device through the communication circuit during the shooting process, and the mobile device restores the work of the light source by not receiving the command within the preset time.
  • the processor sends a light source off command to the mobile device through the communication circuit, otherwise the start shooting instruction is directly sent to the photographing device through the communication circuit.
  • the processor is further configured to receive a stop shooting instruction through the input device or the communication circuit; send a stop shooting instruction to the photographing device through the communication circuit and send a resume instruction for restoring the operation of the light source to the movable device through the communication circuit.
  • the second embodiment of the control terminal of the present invention includes a processor 44, a communication circuit 45, and an input device 46.
  • the processor 44 is coupled to the communication circuit 45 and the input device 46, respectively.
  • the processor 44 is configured to receive a shooting instruction through the input device 46 or the communication circuit 45; and send, by the communication circuit 45, a closed light source instruction that turns off at least the light source that affects the shooting and a start shooting instruction to the movable device, so that the movable device is turned off in response
  • the light source commands to close at least the light source that affects the shooting, and then shoot according to the start shooting instruction.
  • the processor is further configured to send a recovery instruction for recovering the light source operation to the mobile device through the communication circuit after the shooting is completed.
  • the processor is further configured to periodically send a light source off command to the mobile device through the communication circuit during the shooting process, and the mobile device restores the work of the light source by not receiving the command within the preset time.
  • the processor sends a shutdown light source command and a start shooting instruction to the mobile device through the communication circuit, otherwise the start shooting instruction is directly sent to the mobile device through the communication circuit.
  • the processor is further configured to receive a stop shooting instruction through the input device or the communication circuit; and send, by the communication circuit, a resume instruction to stop the shooting instruction and resume the operation of the light source to the movable device.
  • the first embodiment of the photographing apparatus of the present invention includes:
  • the communication circuit 52 is electrically connected to the device body for receiving a shooting instruction, and sends a shutdown light source command to the movable device on which the imaging device is mounted to at least turn off the light source of the movable device that affects the shooting; confirming that the light source is turned off or delays first The device body is notified to start shooting after the predetermined time.
  • the communication circuit confirms that the light source is turned off by receiving a feedback message sent by the movable device in response to turning off the light source command to at least turn off the light source that affects the shooting.
  • the communication circuit is further configured to periodically send a command to turn off the light source to the mobile device during the shooting process, and the mobile device restores the operation of the light source by not receiving the command within the second predetermined time.
  • the communication circuit is further configured to receive a stop shooting instruction, notify the device body to stop capturing, and send a resume instruction to the mobile device to resume the operation of the light source.
  • the work of restoring the light source includes: turning on the light source or placing the light source in a default state.
  • the communication circuit is further configured to determine whether the light source control mode is an automatic mode after receiving the shooting instruction, and if yes, send a light source off command to the mobile device, otherwise directly notify the device body to start shooting.
  • the disclosed mobile device control device, the mobile device, the UAV, the controller, the memory, the control terminal, and the photographing device may be implemented by other means. .
  • the mobile device control device, the mobile device, the unmanned aerial vehicle, the controller, the memory, the control terminal and the camera device are merely illustrative, for example, the division of the module or resource unit is only one logic function Division, there may be additional divisions in actual implementation, for example, multiple resource units or components may be combined or may be integrated into another system, or some features may be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or resource unit, and may be in an electrical, mechanical or other form.
  • the resource units described as separate components may or may not be physically separated.
  • the components displayed as resource units may or may not be physical resource units, that is, may be located in one place, or may be distributed to multiple networks. On the resource unit. Some or all of the resource units may be selected according to actual needs to achieve the purpose of the solution of the present embodiment.
  • each functional resource unit in each embodiment of the present invention may be integrated into one processing resource unit, or each resource unit may exist physically separately, or two or more resource units may be integrated into one resource unit.
  • the above integrated resource unit can be implemented in the form of hardware or in the form of a software function resource unit.
  • the integrated resource unit if implemented in the form of a software functional resource unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
  • the technical solution of the present invention which is essential or contributes to the prior art, or all or part of the technical solution, may be embodied in the form of a software product stored in a storage medium.
  • a number of instructions are included to cause a computer device (which may be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the methods of the various embodiments of the present invention.
  • the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .

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Abstract

一种可移动设备控制方法,包括:接收拍摄指令(S11);响应拍摄指令而至少关闭影响拍摄的光源(S12);根据拍摄指令进行拍摄(S13)。一种可移动设备控制装置、可移动设备、无人飞行器、控制器、存储器、控制终端和拍摄设备。

Description

可移动设备及其控制方法和装置、控制终端及拍摄设备 【技术领域】
本申请涉及拍摄领域,特别是涉及一种可移动设备,如无人飞行器,及其控制方法和装置,以及相应的控制器、存储器、控制终端和拍摄设备。
【背景技术】
无人机机体上一般会设有指示灯,用于指示无人机状态和/或区分无人机朝向。指示灯容易投射到无人机挂载的相机的镜头内,造成镜头眩光,干扰相机曝光,严重影响拍摄效果。
为解决镜头眩光问题,现有技术中提出了使用遮光罩的方案。使用遮光罩无法做到完全解决镜头眩光问题,只能缓解,增加物料成本,并且不同的镜头要使用不同的遮光罩,增加厂家维护成本,用户体验差。
【发明内容】
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
接收拍摄指令;
响应所述拍摄指令而至少关闭影响所述拍摄的光源;
根据所述拍摄指令进行拍摄。
其中,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:在拍摄完成之后开启所述光源。
其中,所述在拍摄完成之后开启所述光源的步骤具体包括:获取已完成拍摄的反馈信息,并开启所述光源。
其中,所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述 光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
其中,进一步包括:接收停止拍摄指令;停止录制并停止发送关灯指令。
其中,具体包括:接收拍摄指令;发送关闭光源的指令以至少关闭影响所述拍摄的光源;根据所述拍摄指令进行拍摄。
其中,具体包括:接收所述拍摄指令;至少关闭影响所述拍摄的光源并发送所述拍摄指令以指示进行拍摄;根据所述拍摄指令拍摄。
其中,所述根据所述拍摄指令进行拍摄的步骤具体包括:确认关闭所述光源后或延时第三预设时间后开始拍摄。
其中,所述确认关闭所述光源包括:接收控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
其中,在所述接收拍摄指令步骤之前进一步包括:接收光源默认状态设置指令;根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,进一步包括:若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,进一步包括:若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
其中,所述接收拍摄指令步骤之后进一步包括:若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制装置,该装置包括:
接收模块,用于接收拍摄指令;
控制模块,用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
拍摄模块,用于根据所述拍摄指令进行拍摄。
其中,所述控制模块进一步用于:在所述拍摄模块拍摄完成之后开启所述光源。
其中,所述控制模块具体用于:获取拍摄模块已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄模块用于在拍摄完成后,向所述控制模块发送重新开启所述光源的反馈指令,所述控制模块用于根据所述反馈指令开启所述光源。
其中,若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行拍照动作的第一预设时间后开启所述光源。
其中,若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在第二预设时间内未收到所述指令,则所述控制模块控制开启所述光源。
其中,所述拍摄模块进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制模块发送关灯指令。
其中,所述接收模块用于接收拍摄指令;所述拍摄模块用于根据所述接收模块接收的拍摄指令向所述控制模块发送关闭光源的指令;所述控制模块用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;所述拍摄模块用于根据所述拍摄指令进行拍摄。
其中,所述接收模块用于接收拍摄指令;所述控制模块用于根据所述接收模块接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄模块发送所述拍摄指令以指示进行拍摄;所述拍摄模块用于根据所述拍摄指令进行拍摄。
其中,所述拍摄模块进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
其中,所述拍摄模块用于接收所述控制模块至少关闭所述影响所述拍摄的 光源后发送的反馈消息以确认关闭所述光源。
其中,所述接收模块进一步用于接收光源默认状态设置指令;所述控制模块用于根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在预设时间内未收到所述指令,则所述控制模块将所述光源恢复为所述默认状态。
其中,所述接收模块用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制模块响应所述拍摄指令而关闭所述光源或所述拍摄模块响应所述拍摄指令而通知所述控制模块关闭所述光源,否则所述拍摄模块直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备,该设备包括:光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,
所述信号接收装置用于接收拍摄指令;
所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
所述拍摄装置用于根据所述拍摄指令进行拍摄。
其中,所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述控制装置用于获取所述拍摄装置已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
其中,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
其中,若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时 间内未收到所述指令,则所述控制装置控制开启所述光源。
其中,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
其中,所述信号接收装置用于接收拍摄指令;所述拍摄装置用于根据所述信号接收装置接收的拍摄指令向所述控制装置发送关闭光源的指令;所述控制装置用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述信号接收装置用于接收拍摄指令;所述控制装置用于根据所述信号接收装置接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄装置发送所述拍摄指令以指示进行拍摄;所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述拍摄装置进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
其中,所述拍摄装置用于接收所述控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
其中,所述信号接收装置进一步用于接收光源默认状态设置指令;所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
其中,所述信号接收装置用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述拍摄指令而关闭所述光源或所述拍摄装置响应所述拍摄指令而通知所述控制装置关闭所述光源,否则所述拍摄装置直接开始拍摄。
其中,所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
其中,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
其中,所述可移动设备为无人飞行器。
为了至少部分解决以上问题,本发明提出了一种无人飞行器,该无人飞行器包括:光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,
所述至少一个光源的设置位置或光线照射范围位于所述拍摄装置的拍摄视野范围之内,所述信号接收装置用于接收拍摄指令,所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源,所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述控制装置在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述无人飞行器进一步包括机臂,所述拍摄装置和至少一个光源位于所述机臂下方。
其中,所述无人飞行器进一步包括壳体,所述控制装置设置于所述壳体内。
其中,所述控制装置为所述无人飞行器的飞行控制器、电调或者微控制单元。
其中,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
为了至少部分解决以上问题,本发明提出了一种控制器,该控制器用于执行以下步骤:
接收拍摄指令;
响应所述拍摄指令而至少关闭影响所述拍摄的光源;
发送所述拍摄指令给拍摄装置以控制所述拍摄装置进行拍摄。
其中,所述控制器进一步用于在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
为了至少部分解决以上问题,本发明提出了一种存储器,该存储器用于存储程序指令,所述程序指令可以被控制器获取以执行以下步骤:
接收拍摄指令;
响应所述拍摄指令而至少关闭影响所述拍摄的光源;
发送所述拍摄指令给拍摄装置以控制所述拍摄装置进行拍摄。
其中,所述存储器存储的程序指令进一步包括:在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
建立可移动设备与控制终端的通信连接;
接收所述控制终端所发送的拍摄指令;
响应所述拍摄指令而至少关闭影响所述拍摄的光源;
根据所述拍摄指令进行拍摄。
其中,所述根据所述拍摄指令进行拍摄步骤之后,进一步包括:在拍摄完成之后开启所述光源。
其中,所述在拍摄完成之后开启所述光源的步骤具体包括:获取已完成拍摄的反馈信息,并开启所述光源。
其中,所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:
若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
其中,进一步包括:接收停止拍摄指令;停止录制并停止发送关灯指令。
其中,具体包括:接收拍摄指令;发送关闭光源的指令以至少关闭影响所述拍摄的光源;根据所述拍摄指令进行拍摄。
其中,具体包括:接收所述拍摄指令;至少关闭影响所述拍摄的光源并发送所述拍摄指令以指示进行拍摄;根据所述拍摄指令拍摄。
其中,所述根据所述拍摄指令进行拍摄的步骤具体包括:确认关闭所述光源后或延时第三预设时间后开始拍摄。
其中,所述确认关闭所述光源包括:接收控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
其中,在所述接收拍摄指令步骤之前,进一步包括:接收光源默认状态设置指令;根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,进一步包括:若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,进一步包括:若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
其中,接收拍摄指令步骤之后进一步包括:若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备,该设备包括:光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,
所述信号接收装置用于建立与控制终端的通信连接,并接收所述控制终端发送的拍摄指令;
所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述控制装置在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
其中,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
其中,若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
其中,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
其中,所述信号接收装置用于接收拍摄指令;所述拍摄装置用于根据所述信号接收装置接收的拍摄指令向所述控制装置发送关闭光源的指令;所述控制装置用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述接收装置用于接收拍摄指令;所述控制装置用于根据所述信号接收装置接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄装置发送所述拍摄指令以指示进行拍摄;所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述拍摄装置进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
其中,所述拍摄装置用于接收所述控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
其中,所述信号接收装置进一步用于接收光源默认状态设置指令;所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
其中,所述信号接收装置用于接收所述光源控制模式,若所述光源控制模 式为自动模式,则所述控制装置响应所述拍摄指令而关闭所述光源或所述拍摄装置响应所述拍摄指令而通知所述控制装置关闭所述光源,否则所述拍摄装置直接开始拍摄。
其中,所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
其中,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
其中,所述可移动设备为无人飞行器。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
接收拍摄指令;
向所述可移动设备发送至少关闭影响拍摄的光源的关闭光源指令;
发送开始拍摄指令。
其中,所述发送开始拍摄指令之后进一步包括:拍摄完成后向所述可移动设备发送恢复所述光源工作的恢复指令。
其中,所述向所述可移动设备发送至少关闭影响拍摄的光源的关闭光源指令步骤之后进一步包括:确认关闭所述光源。
其中,所述确认关闭所述光源包括:接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息。
其中,在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指令,则恢复所述光源的工作。
其中,所述接收拍摄指令步骤之后进一步包括:若光源控制模式为自动模式,则向所述可移动设备发送所述关闭光源指令,否则直接向所述拍摄设备发送所述开始拍摄指令。
为了至少部分解决以上问题,本发明提出了一种控制终端,该控制终端包括:
处理器、通信电路、输入设备,所述处理器分别耦接所述通信电路和所述输入设备;
所述处理器用于通过所述输入设备或所述通信电路接收拍摄指令;通过所述通信电路向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令;通过所述通信电路向拍摄设备发送开始拍摄指令。
其中,所述处理器进一步用于拍摄完成后通过所述通信电路向所述可移动设备发送恢复所述光源工作的恢复指令。
其中,所述处理器用于在确认关闭所述光源后通过所述通信电路向拍摄设备发送所述开始拍摄指令。
其中,所述处理器用于通过所述通信电路接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息以确认关闭所述光源。
其中,所述处理器进一步用于在拍摄过程中定时通过所述通信电路向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指令,则恢复所述光源的工作。
其中,若光源控制模式为自动模式,则所述处理器通过所述通信电路向所述可移动设备发送所述关闭光源指令,否则直接通过所述通信电路向所述拍摄设备发送所述开始拍摄指令。
其中,所述处理器进一步用于通过所述输入设备或所述通信电路接收停止拍摄指令;通过所述通信电路向所述拍摄设备发送停止拍摄指令并通过所述通信电路向所述可移动设备发送恢复所述光源的工作的恢复指令。
为了至少部分解决以上问题,本发明提出了一种拍摄设备,该拍摄设备包括:
设备主体;
通信电路,与所述设备主体电连接,用于接收拍摄指令,向所述拍摄设备搭载在的可移动设备发送至少关闭影响所述拍摄的所述可移动设备的光源的关闭光源指令;
确认关闭所述光源后或延时第一预定时间后通知所述设备主体开始拍摄。
其中,所述通信电路通过接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息,以确认关闭所述光源。
其中,所述通信电路进一步用于在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在第二预定时间内未收到所述指令,则恢复所述光源的工作。
其中,所述通信电路进一步用于接收停止拍摄指令,通知所述设备主体停止拍摄并向所述可移动设备发送恢复所述光源的工作的恢复指令。
其中,所述恢复所述光源的工作包括:开启所述光源或将所述光源置于默认状态。
其中,所述通信电路进一步用于在接收所述拍摄指令后判断光源控制模式是否为自动模式,若是,则向所述可移动设备发送所述关闭光源指令,否则直接通知所述设备主体开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
接收拍摄指令和关闭光源指令;
响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
在预设时间后根据所述拍摄指令进行拍摄。
其中,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:在拍摄完成之后开启所述光源。
其中,所述在拍摄完成之后开启所述光源的步骤具体包括:获取已完成拍摄的反馈信息,并开启所述光源。
其中,所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
其中,进一步包括:接收停止拍摄指令;停止录制并停止发送关灯指令。
其中,在接收拍摄指令步骤之前进一步包括:接收光源默认状态设置指令;根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,进一步包括:若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,进一步包括:若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
其中,所述接收拍摄指令步骤之后进一步包括:若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制装置,该装置包括:
接收模块,用于接收拍摄指令和关闭光源指令;
控制模块,用于响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
拍摄模块,用于在预设时间后根据所述拍摄指令进行拍摄。
其中,所述控制模块进一步用于:在所述拍摄模块拍摄完成之后开启所述光源。
其中,所述控制模块具体用于:获取拍摄模块已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄模块用于在拍摄完成后,向所述控制模块发送重新开启所述光源的反馈指令,所述控制模块用于根据所述反馈指令开启所述光源。
其中,若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行拍照动作的第一预设时间后开启所述光源。
其中,若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在第二预设时间内未收到所述指令,则所述控制模块控制开启所述光源。
其中,所述拍摄模块进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制模块发送关灯指令。
其中,所述接收模块进一步用于接收光源默认状态设置指令;所述控制模块根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在预设时间内未收到所述指令,则所述控制模块将所述光源恢复为所述默认状态。
其中,所述接收模块用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制模块响应所述拍摄指令而关闭所述光源或所述拍摄模块响应所述拍摄指令而通知所述控制模块关闭所述光源,否则所述拍摄模块直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备,该设备包括:光源、拍摄装置以及与所述拍摄装置可通信连接的控制装置,
所述拍摄装置接收拍摄指令且所述控制装置接收关闭光源指令;
所述控制装置用于响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
所述拍摄装置用于在预设时间后根据所述拍摄指令进行拍摄。
其中,所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所 述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
其中,若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
其中,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
其中,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
其中,所述控制装置进一步用于接收光源默认状态设置指令;所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
其中,所述控制装置用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述关闭光源指令而关闭所述光源,否则所述拍摄装置接收到拍摄指令后直接开始拍摄。
其中,所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
其中,所述可移动设备为无人飞行器。
为了至少部分解决以上问题,本发明提出了一种无人飞行器,该无人飞行器包括:光源、拍摄装置、与所述拍摄装置可通信连接的控制装置,
所述至少一个光源的设置位置或光线照射范围位于所述拍摄装置的拍摄视野范围之内,所述拍摄装置用于接收拍摄指令,所述控制装置用于接收并相应关闭光源指令而至少关闭影响所述拍摄的光源,所述拍摄装置在预设时间后根据所述拍摄指令进行拍摄。
其中,所述控制装置进一步用于在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述无人飞行器进一步包括机臂,所述拍摄装置和至少一个光源位于所述机臂下方。
其中,所述无人飞行器进一步包括壳体,所述控制装置设置于所述壳体内。
其中,所述控制装置为所述无人飞行器的飞行控制器、电调或者微控制单元。
为了至少部分解决以上问题,本发明提出了一种控制器,该控制器用于执行以下步骤:
接收拍摄指令和关闭光源指令;
响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
在预设时间后根据所述拍摄指令进行拍摄。
其中,所述控制器进一步用于在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
为了至少部分解决以上问题,本发明提出了一种存储器,该存储器用于存储程序指令,所述程序指令可以被控制器获取以执行以下步骤:
接收拍摄指令和关闭光源指令;
响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
在预设时间后根据所述拍摄指令进行拍摄。
其中,所述存储器存储的程序指令进一步包括:在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
建立可移动设备与控制终端的通信连接;
接收所述控制终端所发送的拍摄指令和关闭光源指令;
响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
在预设时间后根据所述拍摄指令进行拍摄。
其中,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
其中,所述在拍摄完成之后开启所述光源的步骤具体包括:获取已完成拍摄的反馈信息,并开启所述光源。
其中,所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
其中,所述拍摄完成之后开启所述光源的步骤具体包括:若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
其中,进一步包括:接收停止拍摄指令;停止录制并停止发送关灯指令。
其中,在所述接收拍摄指令步骤之前进一步包括:接收光源默认状态设置指令;根据所述光源默认状态设置指令设置所述光源的默认状态。
其中,进一步包括:若所述拍摄指令为拍照,则在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,进一步包括:若所述拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述光源恢复为所述默认状态。
其中,所述接收拍摄指令步骤之后进一步包括:若光源控制模式为自动模式,则响应所述关闭光源指令而关闭所述光源,否则根据所述拍摄指令直接开始拍摄。
为了至少部分解决以上问题,本发明提出了一种可移动设备,该设备包括:光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,
所述拍摄装置用于建立与控制终端的通信连接,并接收所述控制终端发送的拍摄指令;
所述控制装置用于建立与控制终端的通信连接,并接收所述控制终端发送的关闭光源指令;
所述控制装置响应所述拍摄指令而至少关闭影响所述拍摄的光源;
所述拍摄装置根据所述拍摄指令进行拍摄。
其中,所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
其中,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
其中,所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
其中,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
其中,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
其中,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
其中,所述控制装置进一步用于接收并根据光源默认状态设置指令设置所述光源的默认状态。
其中,若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
其中,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
其中,所述控制装置用于接收所述光源控制模式,若所述光源控制模式为 自动模式,则所述控制装置响应所述关闭光源指令而关闭所述光源,否则所述拍摄装置接收到拍摄指令后直接开始拍摄。
其中,所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
其中,所述可移动设备为无人飞行器。
为了至少部分解决以上问题,本发明提出了一种可移动设备控制方法,该方法包括:
接收拍摄指令;
向所述可移动设备发送至少关闭影响所述拍摄的光源的关闭光源指令和开始拍摄指令,以使得所述可移动设备在响应所述关闭光源指令而至少关闭影响所述拍摄的光源预设时间后根据所述开始拍摄指令进行拍摄。
其中,所述向所述可移动设备发送至少关闭影响所述拍摄的光源的关闭光源指令和开始拍摄指令之后进一步包括:拍摄完成后向所述可移动设备发送恢复所述光源工作的恢复指令。
其中,进一步包括:在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在第二预定时间内未收到所述指令,则恢复所述光源工作。
其中,所述接收拍摄指令之后进一步包括:若光源控制模式为自动模式,则向所述可移动设备发送所述关闭光源指令,否则直接向所述拍摄设备发送所述开始拍摄指令。
为了至少部分解决以上问题,本发明提出了一种控制终端,该控制终端包括:处理器、通信电路、输入设备,所述处理器分别耦接所述通信电路和所述输入设备;
所述处理器用于通过所述输入设备或所述通信电路接收拍摄指令;并通过所述通信电路向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令和开始拍摄指令,以使得所述可移动设备在响应所述关闭光源指令而至少关闭影响所述拍摄的光源预设时间后根据所述开始拍摄指令进行拍摄。
其中,所述处理器进一步用于拍摄完成后通过所述通信电路向所述可移动 设备发送恢复所述光源工作的恢复指令。
其中,所述处理器进一步用于在拍摄过程中定时通过所述通信电路向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指令,则恢复所述光源的工作。
其中,若所述控制模式是否为自动模式,则所述处理器通过所述通信电路向所述可移动设备发送所述关闭光源指令和所述开始拍摄指令,否则直接通过所述通信电路向所述可移动设备发送所述开始拍摄指令。
其中,所述处理器进一步用于通过所述输入设备或所述通信电路接收停止拍摄指令;通过所述通信电路向所述可移动设备发送停止拍摄指令和恢复所述光源的工作的恢复指令。
本发明的有益效果是:在拍摄前至少关闭影响拍摄的光源,从源头上解决了机体闪灯导致的镜头眩光问题,无需使用遮光罩,节省成本且通用性好。将关闭光源和拍摄联系起来,提供傻瓜式功能给用户,无需用户手动开关光源,解决镜头眩光问题的同时不影响用户体验和飞行安全。
【附图说明】
图1是本发明可移动设备控制方法第一实施例的流程图;
图2是本发明可移动设备控制方法第一实施例的执行主体为拍摄装置的流程图;
图3是本发明可移动设备控制方法第一实施例的执行主体为控制装置和拍摄装置的流程图;
图4是本发明可移动设备控制方法第二实施例的流程图;
图5是本发明可移动设备控制方法第三实施例的流程图;
图6是本发明可移动设备控制方法第四实施例的流程图;
图7是本发明可移动设备控制方法第五实施例的流程图;
图8是本发明可移动设备控制方法第六实施例的流程图;
图9是本发明可移动设备控制方法第七实施例的流程图;
图10是本发明可移动设备控制方法第八实施例的流程图;
图11是本发明可移动设备控制方法第九实施例的流程图;
图12是本发明可移动设备控制方法第十实施例的流程图;
图13是本发明可移动设备控制装置第一实施例的结构示意图;
图14是本发明可移动设备控制装置第二实施例的结构示意图;
图15是本发明可移动设备第一实施例的结构示意图;
图16是本发明可移动设备第二实施例的结构示意图;
图17是本发明无人飞行器第一实施例的结构示意图;
图18是本发明无人飞行器第二实施例的结构示意图;
图19是本发明控制终端第一实施例的结构示意图;
图20是本发明控制终端第二实施例的结构示意图;
图21是本发明拍摄设备第一实施例的结构示意图。
【具体实施方式】
下面结合附图和实施例对本发明进行详细说明。
如图1所示,本发明可移动设备控制方法第一实施例包括:
S11:接收拍摄指令。
可以接收用户通过输入装置输入的拍摄指令,也可以通过有线或无线通信连接接收控制终端发送的拍摄指令。控制终端可以为控制可移动设备的遥控器,也可以为安装有可移动设备控制程序的计算机、手机、平板等其他终端设备。
S12:响应拍摄指令而至少关闭影响拍摄的光源。
一般而言,影响拍摄的光源是指设置位置或光线照射范围位于拍摄装置的拍摄视野范围之内的光源,该光源发出的光线可能造成拍摄装置的镜头眩光。如在四轴无人飞行器中,因镜头和机头朝向基本一致,故关闭机头的两个或一个机臂下方的指示灯。
S13:根据拍摄指令进行拍摄。
拍摄可以为拍照或摄像。
值得注意的是,本实施例的执行主体可以为包括拍摄装置的可移动设备,可移动设备可以为无人机、无人船、无人车等;也可以为可移动设备中的一个或者更多装置/模块。当拍摄设备与可移动设备相对独立时,本实施例的执行主体可以为拍摄设备,也可以为拍摄设备和可移动设备,此时可移动设备执行步骤S11和S12,拍摄设备执行步骤S13。
下面举例说明,如图2所示,执行主体为可移动设备中的拍摄装置时,本实施例具体包括:
S111:接收拍摄指令。
可以从可移动设备中的其他装置/模块,例如输入装置、信号接收装置、控制装置等,接收拍摄指令;也可以直接从通信连接的控制终端接收拍摄指令。具体地,以无人飞行器中的应用为例,拍摄装置可以直接接受来自遥控器的拍摄指令,也可从飞控等控制装置接收拍摄指令。或者,拍摄装置还可以从信号接收装置接收拍摄指令。
S112:响应拍摄指令而发送关闭光源的指令以关闭光源。
一般而言,向控制光源的控制装置发送关闭光源的指令以关闭光源。当然,如果拍摄装置能够直接控制光源,也可以直接向光源发送关闭指令以关闭光源。具体地,可以由拍摄装置或信号接收装置等接收了拍摄指令的装置发送信号给控制装置,控制装置根据接收到的信号发送关闭光源的指令将光源关闭。也可以由控制装置直接接收拍摄指令后生成关闭光源指令,并发送关闭光源的指令将光源关闭。
S113:根据拍摄指令进行拍摄。
拍摄包括拍照和录像。
如图3所示,执行主体为可移动设备中的控制装置和拍摄装置时,本实施例具体包括:
S121:接收拍摄指令。
本步骤的执行主体为控制装置,可以从可移动设备中的其他装置/模块,例如输入装置、信号接收装置等,接收拍摄指令;也可以直接从通信连接的控制终端接收拍摄指令。
S122:至少关闭影响拍摄的光源并发送拍摄指令以指示进行拍摄。
本步骤的执行主体为控制装置。控制装置关闭光源后向拍摄装置发送拍摄指令。具体地,对无人飞行器而言,控制装置可为飞控等控制元件。
S123:根据拍摄指令进行拍摄。
本步骤的执行主体为拍摄装置。
在本发明可移动设备控制方法一实施例中,确认关闭光源后,即接收用于控制光源的控制装置关闭光源后发送的反馈消息后再开始拍摄,控制装置可以为可移动设备的控制器、电调或者微控制单元(Micro Control Unit,MCU)。此处的光源是指响应拍摄指令而关闭的光源,其中至少部分影响拍摄,后续描述中如非特意指出,光源的定义与此相同。在确认关闭光源之后再开始拍摄,可以确保在拍摄过程中拍摄设备的镜头不会受到光源影响而出现眩光。
具体地,对于无人飞行器而言,光源可以是飞机上的信号指示灯或其他指示灯等。
在本发明可移动设备控制方法其他实施例中,也可在执行完步骤S12之后延时第三预设时间后再开始拍摄,也可以执行完步骤S12之后直接开始拍摄。
通过上述实施例的实施,在拍摄前至少关闭影响拍摄的光源,从源头上解决了机体闪灯导致的镜头眩光问题,无需使用遮光罩,节省成本且通用性好。将关闭光源和拍摄联系起来,提供傻瓜式功能给用户,无需用户手动开关光源,解决镜头眩光问题的同时不影响用户体验。
如图4所示,本发明可移动设备控制方法第二实施例,是在本发明可移动设备控制方法第一实施例的基础上,步骤S13之后进一步包括:
S14:在拍摄完成之后开启光源。
本步骤的执行主体可以为可移动设备,也可以为可移动设备中的装置/模块。当拍摄设备与可移动设备相对独立时,本步骤的执行主体可以为拍摄设备。
当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置、或者能够控制拍摄过程的控制装置时,可以直接获取拍摄状态,在拍摄完成之后直接或者通过控制光源的控制装置开启光源。
在本发明可移动设备控制方法一实施例中,当本步骤的执行主体为可移动设备中的除拍摄装置或控制拍摄过程的控制装置之外的其他装置/模块,例如控制光源的控制装置时,可以从拍摄设备、拍摄装置或控制拍摄过程的控制装置获取已完成拍摄的反馈信息以判断拍摄是否完成,并开启光源。具体包括:接收拍摄完成后拍摄设备、拍摄装置或控制拍摄过程的控制装置发送的重新开启光源的反馈指令,根据反馈指令开启光源。当然,当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置或控制拍摄过程的控制装置时,也可以通过获取完成拍摄的反馈信息以判断拍摄是否完成。
在本发明可移动设备控制方法一实施例中,当本步骤的执行主体为可移动设备中的除拍摄装置或控制拍摄过程的控制装置之外的其他装置/模块,例如控制光源的控制装置时,可以根据延时时长来判断拍摄是否完成。若拍摄指令为拍照,则执行拍照动作的第一预设时间后判定拍照已完成,开启光源。若拍摄指令为录像,则拍摄设备、拍摄装置或控制拍摄过程的控制装置在录制过程中定时向本步骤的执行主体发送关灯指令,若在第二预设时间内未收到指令,则判定摄像已结束,开启光源。可以防止故障或重启等引起的状态丢失可能导致的光源状态一直为关闭而无法恢复。此时拍摄设备、拍摄装置或控制拍摄过程的控制装置接收停止拍摄指令后停止录制并停止发送关灯指令。当然,当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置或控制拍摄过程的控制装置时,也可以根据延时时长来判断拍摄是否完成。
通过上述实施例的实施,在拍摄完成后开启光源,使得光源能够继续工作,免去用户手动操作。
如图5所示,本发明可移动设备控制方法第三实施例,是对本发明可移动设备控制方法第一实施例的进一步扩展,故对与本发明可移动设备控制方法第一实施例中相同的步骤,在此不再赘述。本实施例的执行主体可以为可移动设备,也可以为可移动设备中的装置/模块。当拍摄设备与可移动设备相对独立时,本步骤的执行主体可以为拍摄设备。本实施例可以与以上本发明可移动设备控制方法的任一实施例相结合。本实施例包括:
S131:接收光源默认状态设置指令。
可以接收用户通过输入装置输入的光源默认状态设置指令,也可以通过有线或无线通信连接接收控制终端,如遥控器或APP(application program,应用程序)控制终端,发送的光源默认状态设置指令。光源的默认状态中至少包括常开和常闭两种,此外还可以包括光源不同颜色、亮度等状态。
S132:根据光源默认状态设置指令设置光源的默认状态。
S133:接收拍摄指令。
S134:响应拍摄指令而至少关闭影响拍摄的光源。
S135:根据拍摄指令进行拍摄。
S136:在拍摄完成之后将光源恢复为默认状态。
当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置,或者能够控制拍摄过程的控制装置时,可以直接获取拍摄状态,在拍摄完成之后直接或者通过控制光源的控制装置将光源恢复为默认状态。
在本发明可移动设备控制方法一实施例中,当本步骤的执行主体为可移动设备中的除拍摄装置或控制拍摄过程的控制装置之外的其他装置/模块,例如控制光源的控制装置时,可以从拍摄设备、拍摄装置或控制拍摄过程的控制装置获取已完成拍摄的反馈信息以判断拍摄是否完成,并将光源恢复为默认状态。具体包括:接收拍摄完成后拍摄设备、拍摄装置或控制拍摄过程的控制装置发送的表示拍摄已结束的反馈指令,根据反馈指令将光源恢复为默认状态。当然,当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置或控制拍摄过程的 控制装置时,也可以通过获取完成拍摄的反馈信息以判断拍摄是否完成。
在本发明可移动设备控制方法一实施例中,当本步骤的执行主体为可移动设备中的除拍摄装置或控制拍摄过程的控制装置之外的其他装置/模块,例如控制光源的控制装置时,可以根据延时时长来判断拍摄是否完成。若拍摄指令为拍照,则执行拍照动作的预设时间后判定拍照已完成,将光源恢复为默认状态。若拍摄指令为录像,则拍摄设备、拍摄装置或控制拍摄过程的控制装置在录制过程中定时向本步骤的执行主体发送关灯指令,若在预设时间内未收到指令,则判定摄像已结束,将光源恢复为默认状态。可以防止故障或重启等引起的状态丢失可能导致的光源状态一直为关闭而无法恢复。此时拍摄设备、拍摄装置或控制拍摄过程的控制装置接收停止拍摄指令后停止录制并停止发送关灯指令。当然,当本步骤的执行主体为拍摄设备、可移动设备中的拍摄装置或控制拍摄过程的控制装置时,也可以根据延时时长来判断拍摄是否完成。
通过上述实施例的实施,在拍摄完成后将光源恢复为默认状态,使得光源能够按照预设的默认状态继续工作,免去用户手动操作。
如图6所示,本发明可移动设备控制方法第四实施例,是对本发明可移动设备控制方法第一实施例的进一步扩展,故对与本发明可移动设备控制方法第一实施例中相同的步骤,在此不再赘述。本实施例可以与以上本发明可移动设备控制方法的任一实施例相结合。本实施例包括:
S141:接收拍摄指令。
判断光源控制模式,若光源控制模式为自动模式,则跳转到步骤S143,若光源控制模式为手动模式,则跳转到步骤S144。
S142:若光源控制模式为自动模式,则响应所述拍摄指令而至少关闭影响拍摄的光源。
本步骤的执行主体可以为可移动设备,也可以为可移动设备中的装置/模块。当拍摄设备与可移动设备相对独立时,本实施例的执行主体可以为拍摄设备。
S143:根据拍摄指令进行拍摄。
结束流程。
S144:若光源控制模式为手动模式,则直接开始拍摄。
结束流程。
如图7所示,本发明可移动设备控制方法第五实施例,是在本发明可移动设备控制方法第一实施例的基础上,在步骤S11之前进一步包括:
S10:建立可移动设备与控制终端的通信连接。
本步骤的执行主体可以为可移动设备,也可以为可移动设备中的装置/模块。
控制终端可以为控制可移动设备的遥控器,也可以为安装有可移动设备控制程序的计算机、手机、平板等其他终端设备。
在接下来的步骤S11中,接收的拍摄指令来自于控制终端。
本实施例可以本发明可移动设备控制方法的以上任一实施例相结合。
如图8所示,本发明可移动设备控制方法第六实施例的执行主体为控制终端,控制终端可以为控制可移动设备的遥控器,也可以为安装有可移动设备控制程序的计算机、手机、平板等其他终端设备。本实施例包括:
S21:接收拍摄指令。
通过输入装置例如触摸屏、按键等接收用户输入的拍摄指令,也可以接收通信连接的其他设备发送的拍摄指令。
S22:若光源控制模式为自动模式,则向可移动设备发送至少关闭影响拍摄的指示灯光源的关闭指示灯光源指令。
S23:发送开始拍摄指令。
当接收开始拍摄指令的为可移动设备中的拍摄装置时,向可移动设备发送开始拍摄指令,具体而言,可以向可移动设备中的信号接收模块/装置、控制模块/装置、拍摄模块/装置等发送开始拍摄指令。当接收开始拍摄指令的为与可移动设备相对独立的拍摄设备时,向拍摄设备发送开始拍摄指令。
S24:若光源控制模式为手动模式,则直接向所述可移动设备,或者向拍摄设备发送所述开始拍摄指令。
通过上述实施例的实施,在拍摄前至少关闭影响拍摄的光源,从源头上解决了机体闪灯导致的镜头眩光问题,无需使用遮光罩,节省成本且通用性好。将关闭光源和拍摄联系起来,提供傻瓜式功能给用户,无需用户手动开关光源,解决镜头眩光问题的同时不影响用户体验。
如图9所示,本发明可移动设备控制方法第七实施例,是对本发明可移动设备控制方法第六实施例的进一步扩展,故对与本发明可移动设备控制方法第六实施例中相同的步骤,在此不再赘述。
S211:接收拍摄指令。
S212:向可移动设备发送至少关闭影响拍摄的指示灯光源的关闭指示灯光源指令。
S213:确认关闭光源。
可以通过接收可移动设备响应关闭光源指令而至少关闭影响拍摄的光源后发送的反馈消息以确认关闭光源。
S214:发送开始拍摄指令。
S215:拍摄完成后向可移动设备发送恢复光源工作的恢复指令。
恢复光源工作可以是指开启光源,也可以是指将光源恢复为预设的默认状态。
如图10所示,本发明可移动设备控制方法第八实施例包括:
S31:接收拍摄指令和关闭光源指令;
本步骤的执行主体可以为包括拍摄装置的可移动设备,可移动设备可以为无人机、无人船、无人车等;也可以为可移动设备中的一个或者更多装置/模块。当拍摄设备与可移动设备相对独立时,本步骤的执行主体可以为拍摄设备和可移动设备,此时拍摄设备接收拍摄指令,可移动设备接收关闭光源指令。
S32:响应关闭光源指令而至少关闭影响拍摄的光源;
本步骤的执行主体可以为包括拍摄装置的可移动设备,也可以为可移动设备中的一个或者更多装置/模块。一般而言,影响拍摄的光源是指设置位置或光 线照射范围位于拍摄装置的拍摄视野范围之内的光源,该光源发出的光线可能造成拍摄装置的镜头眩光。
S33:在预设时间后根据拍摄指令进行拍摄。
本步骤的执行主体可以为包括拍摄装置的可移动设备,也可以为可移动设备中的一个或者更多装置/模块。当拍摄设备与可移动设备相对独立时,本步骤的执行主体可以为拍摄设备。接收拍摄指令和接收关闭光源指令的动作可以是同时完成,也可以有先后顺序,通过设置合理的预设时间值,使得在拍摄时光源已关闭。
通过上述实施例的实施,在拍摄前至少关闭影响拍摄的光源,从源头上解决了机体闪灯导致的镜头眩光问题,无需使用遮光罩,节省成本且通用性好。将关闭光源和拍摄联系起来,提供傻瓜式功能给用户,无需用户手动开关光源,解决镜头眩光问题的同时不影响用户体验。
本实施例与本发明可移动设备控制方法第一实施例相比,主要区别在于S31中接收的指令从拍摄指令变成了拍摄指令和关闭光源指令,S33中限定在预设时间后根据拍摄指令进行拍摄,因此进行拍摄之前无需与其他设备/装置/模块交互以确认光源是否关闭。通过相应步骤的替换或删除,本实施例可以与本发明可移动设备控制方法第二至第五实施例中的任意一个及可能的组合相结合。
如图11所示,本发明可移动设备控制方法第九实施例的执行主体为控制终端,控制终端可以为控制可移动设备的遥控器,也可以为安装有可移动设备控制程序的计算机、手机、平板等其他终端设备。本实施例包括:
S41:接收拍摄指令;
通过输入装置例如触摸屏、按键等接收用户输入的拍摄指令,也可以接收通信连接的其他设备发送的拍摄指令。
在本发明可移动设备控制方法一实施例中,本步骤之后进一步包括:判断光源控制模式是否为自动模式,若光源控制模式为自动模式,则跳转到步骤S42,否则直接向可移动设备,或者向拍摄设备发送开始拍摄指令。
S42:向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令和开始拍摄指令,以使得可移动设备在响应关闭光源指令而至少关闭影响拍摄的光源预设时间后根据开始拍摄指令进行拍摄。
也可以向可移动设备发送关闭光源指令,以使得可移动设备在响应关闭光源指令而至少关闭影响拍摄的光源;向拍摄设备发送开始拍摄指令以使得拍摄设备在预设时间后根据开始拍摄指令进行拍摄。
如图12所示,本发明可移动设备控制方法第十实施例,是在本发明可移动设备控制方法第九实施例的基础上,进一步包括:
S43:在拍摄过程中定时向可移动设备发送关闭光源指令,可移动设备在第二预定时间内未收到指令,则恢复光源工作。
可以防止故障或重启等引起的状态丢失可能导致的光源状态一直为关闭而无法恢复。
此处第二预定时间是指恢复光源工作的延时,区别于前述开始拍摄的延时。恢复光源工作可以是指开启光源,也可以是指将光源恢复为预设的默认状态。
S44:拍摄完成后向可移动设备发送恢复光源工作的恢复指令。
恢复光源工作可以是指开启光源,也可以是指将光源恢复为预设的默认状态。
如图13所示,本发明可移动设备控制装置第一实施例包括:
接收模块11,用于接收拍摄指令。
控制模块12,用于响应拍摄指令而至少关闭影响拍摄的光源。
拍摄模块13,用于根据拍摄指令进行拍摄。
本实施例中可移动设备控制装置包括的各模块用于执行本发明可移动设备控制方法第一实施例中的各步骤,具体内容可参阅本发明可移动设备控制方法第一实施例中的描述,在此不再赘述。
其中,控制模块12进一步用于:在拍摄模块13拍摄完成之后开启光源。
其中,控制模块12具体用于:获取拍摄模块已完成拍摄的反馈信息,并开 启光源。
其中,拍摄模块13用于在拍摄完成后,向控制模块12发送重新开启光源的反馈指令,控制模块12用于根据反馈指令开启光源。
其中,若接收模块11接收到的拍摄指令为拍照,则控制模块12在拍摄模块13执行拍照动作的第一预设时间后开启光源。
其中,若接收模块11接收到的拍摄指令为录像,则拍摄模块13在录制过程中定时向控制模块12发送关灯指令,若控制模块12在第二预设时间内未收到指令,则控制模块12控制开启光源。
其中,拍摄模块13进一步用于接收停止拍摄指令,并根据指令停止录制并停止向控制模块12发送关灯指令。
其中,接收模块11进一步用于接收光源默认状态设置指令;控制模块12根据光源默认状态设置指令设置光源的默认状态。
其中,若接收模块11接收到的拍摄指令为拍照,则控制模块12在拍摄模块13执行完拍照动作的预设时间后将光源恢复为默认状态。
其中,若接收模块11接收到的拍摄指令为录像,则拍摄模块13在录制过程中定时向控制模块12发送关灯指令,若控制模块12在预设时间内未收到指令,则控制模块12将光源恢复为默认状态。
其中,接收模块11用于接收光源控制模式,若光源控制模式为自动模式,则控制模块12响应拍摄指令而关闭光源或拍摄模块13响应拍摄指令而通知控制模块12关闭光源,否则拍摄模块13直接开始拍摄。
本发明可移动设备控制装置包括的各模块可进一步用于执行本发明可移动设备控制方法第二至第四实施例以及可能的组合中的各步骤,具体内容可参阅本发明可移动设备控制方法第二至第四实施例中的描述,在此不再赘述。
如图14所示,本发明可移动设备控制装置第二实施例包括:
接收模块14,用于接收拍摄指令和关闭光源指令。
控制模块15,用于响应关闭光源指令而至少关闭影响拍摄的光源。
拍摄模块16,用于在预设时间后根据拍摄指令进行拍摄。
本实施例中可移动设备控制装置包括的各模块用于执行本发明可移动设备控制方法第八实施例中的各步骤,具体内容可参阅本发明可移动设备控制方法第八实施例中的描述,在此不再赘述。
其中,控制模块15进一步用于:在拍摄模块16拍摄完成之后开启光源。
其中,控制模块15具体用于:获取拍摄模块已完成拍摄的反馈信息,并开启光源。
其中,拍摄模块16用于在拍摄完成后,向控制模块15发送重新开启光源的反馈指令,控制模块15用于根据反馈指令开启光源。
其中,若接收模块14接收到的拍摄指令为拍照,则控制模块15在拍摄模块16执行拍照动作的第一预设时间后开启光源。
其中,若接收模块14接收到的拍摄指令为录像,则拍摄模块16在录制过程中定时向控制模块15发送关灯指令,若控制模块15在第二预设时间内未收到指令,则控制模块15控制开启光源。
其中,拍摄模块16进一步用于接收停止拍摄指令,并根据指令停止录制并停止向控制模块15发送关灯指令。
其中,接收模块14进一步用于接收光源默认状态设置指令;控制模块15根据光源默认状态设置指令设置光源的默认状态。
其中,若接收模块14接收到的拍摄指令为拍照,则控制模块15在拍摄模块16执行完拍照动作的预设时间后将光源恢复为默认状态。
其中,若接收模块14接收到的拍摄指令为录像,则拍摄模块16在录制过程中定时向控制模块15发送关灯指令,若控制模块15在预设时间内未收到指令,则控制模块15将光源恢复为默认状态。
其中,接收模块14用于接收光源控制模式,若光源控制模式为自动模式,则控制模块15响应拍摄指令而关闭光源或拍摄模块16响应拍摄指令而通知控制模块15关闭光源,否则拍摄模块16直接开始拍摄。
本发明可移动设备控制装置包括的各模块可进一步用于执行本发明可移动设备控制方法八实施例通过相应步骤的替换或删除,与本发明可移动设备控制方法第二至第四实施例中的任意一个及可能的组合相结合形成的实施例中的各步骤,具体内容可参阅本发明可移动设备控制方法第二至第四和第八实施例中的描述,在此不再赘述。
如图15所示,本发明可移动设备第一实施例包括:光源21、拍摄装置22、控制装置23以及信号接收装置24,拍摄装置22、控制装置23与信号接收装置24之间两两通信连接。
信号接收装置24用于接收拍摄指令。
控制装置23用于响应拍摄指令而至少关闭影响拍摄的光源21。
拍摄装置22用于根据拍摄指令进行拍摄。
本实施例中由控制装置23控制光源21,也可以由拍摄装置22控制光源21,此时拍摄装置22通信连接光源21。拍摄装置22可以直接从信号接收装置24接收拍摄指令,也可以通过控制装置23从信号接收装置24接收拍摄指令。可移动设备可以为无人飞行器、无人车、无人船等。图中所示的拍摄装置22、控制装置23与信号接收装置24之间两两通信连接,当其中任意两者之间不需要直接发生信息交互时,可以不连接。
其中,控制装置23用于在拍摄装置22拍摄完成之后开启光源。
其中,控制装置23用于获取拍摄装置22已完成拍摄的反馈信息,并开启光源。
其中,拍摄装置22用于在拍摄完成后,向控制装置23发送重新开启光源的反馈指令,控制装置23用于根据反馈指令开启光源。
其中,若信号接收装置24接收到的拍摄指令为拍照,则控制装置23在拍摄装置22执行拍照动作的第一预设时间后开启光源。
其中,若信号接收装置24接收到的拍摄指令为录像,则拍摄装置22在录制过程中定时向控制装置23发送关灯指令,若控制装置23在第二预设时间内 未收到指令,则控制装置23控制开启光源。
其中,拍摄装置22进一步用于接收停止拍摄指令,并根据指令停止录制并停止向控制装置23发送关灯指令。
其中,信号接收装置24用于接收拍摄指令;拍摄装置22用于根据信号接收装置24接收的拍摄指令向控制装置23发送关闭光源的指令;控制装置23用于根据关闭光源的指令至少关闭影响拍摄的光源;拍摄装置22根据拍摄指令进行拍摄。
其中,信号接收装置24用于接收拍摄指令;控制装置23用于根据信号接收装置24接收的拍摄指令至少关闭影响拍摄的光源,并向拍摄装置22发送拍摄指令以指示进行拍摄;拍摄装置22根据拍摄指令进行拍摄。
其中,拍摄装置22进一步用于在确认关闭光源后或延时第三预设时间后开始拍摄。
其中,拍摄装置22用于接收控制装置23至少关闭影响拍摄的光源后发送的反馈消息。
其中,信号接收装置24进一步用于接收光源默认状态设置指令;控制装置23根据光源默认状态设置指令设置光源的默认状态。
其中,若信号接收装置24接收到的拍摄指令为拍照,则控制装置23在拍摄装置22执行完拍照动作的预设时间后将光源恢复为默认状态。
其中,若信号接收装置24接收到的拍摄指令为录像,则拍摄装置22在录制过程中定时向控制装置23发送关灯指令,若控制装置23在预设时间内未收到指令,则控制装置23将光源恢复为默认状态。
其中,信号接收装置24用于接收光源控制模式,若光源控制模式为自动模式,则控制装置23响应拍摄指令而关闭光源或拍摄装置22响应拍摄指令而通知控制装置23关闭光源,否则拍摄装置22直接开始拍摄。
其中,控制装置23为可移动设备的控制器、电调或者微控制单元。
其中,信号接收装置24和控制装置23或拍摄装置22集成为一体。
其中,可移动设备为无人飞行器。
在本发明可移动设备的一个实施例中,信号接收装置用于建立与控制终端的通信连接,并接收控制终端发送的拍摄指令。
可移动设备中包括的各装置的具体功能可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
如图16所示,本发明可移动设备第二实施例包括:光源25、拍摄装置26以及与拍摄装置26可通信连接的控制装置27。
拍摄装置26接收拍摄指令且控制装置27接收关闭光源指令;
控制装置27用于响应关闭光源指令而至少关闭影响拍摄的光源25;
拍摄装置26用于在预设时间后根据拍摄指令进行拍摄。
拍摄装置26可以自行接收拍摄指令,也可以通过控制装置27接收拍摄指令。可移动设备可以为无人飞行器、无人车、无人船等。
其中,控制装置27用于在拍摄装置26拍摄完成之后开启光源。
其中,控制装置27用于获取拍摄装置已完成拍摄的反馈信息,并开启光源。
其中,拍摄装置26用于在拍摄完成后,向控制装置27发送重新开启光源的反馈指令,控制装置27用于根据反馈指令开启光源。
其中,若拍摄装置26接收到的拍摄指令为拍照,则控制装置27在拍摄装置26执行拍照动作的第一预设时间后开启光源。
其中,若拍摄装置26接收到的拍摄指令为录像,则拍摄装置26在录制过程中定时向控制装置27发送关灯指令,若控制装置27在第二预设时间内未收到指令,则控制装置27控制开启光源。
其中,拍摄装置26进一步用于接收停止拍摄指令,并根据指令停止录制并停止向控制装置27发送关灯指令。
其中,控制装置27进一步用于接收光源默认状态设置指令;控制装置27根据光源默认状态设置指令设置光源的默认状态。
其中,若拍摄装置26接收到的拍摄指令为拍照,则控制装置27在拍摄装 置26执行完拍照动作的预设时间后将光源恢复为默认状态。
其中,若拍摄装置26接收到的拍摄指令为录像,则拍摄装置26在录制过程中定时向控制装置27发送关灯指令,若控制装置27在预设时间内未收到指令,则控制装置27将光源恢复为默认状态。
其中,控制装置27用于接收光源控制模式,若光源控制模式为自动模式,则控制装置27响应关闭光源指令而关闭光源,否则拍摄装置26接收到拍摄指令后直接开始拍摄。
其中,控制装置27为可移动设备的控制器、电调或者微控制单元。
其中,可移动设备为无人飞行器。
在本发明可移动设备的一个实施例中,拍摄装置用于建立与控制终端的通信连接,并接收控制终端发送的拍摄指令。
可移动设备中包括的各装置的具体功能可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
如图17所示,本发明无人飞行器第一实施例包括:光源31、拍摄装置32、控制装置33以及信号接收装置34,拍摄装置32、控制装置33与信号接收装置34之间两两通信连接。
至少一个光源31的设置位置或光线照射范围位于拍摄装置32的拍摄视野范围之内,信号接收装置34用于接收拍摄指令,控制装置33用于响应拍摄指令而至少关闭影响拍摄的光源31,拍摄装置32根据拍摄指令进行拍摄。
本实施例中由控制装置33控制光源31,也可以由拍摄装置32控制光源31。拍摄装置32可以直接从信号接收装置34接收拍摄指令,也可以通过控制装置33从信号接收装置34接收拍摄指令。图中所示的拍摄装置32、控制装置33与信号接收装置34之间两两通信连接,当其中任意两者之间不需要直接发生信息交互时,可以不连接。
其中,控制装置在拍摄装置拍摄完成之后开启光源。
其中,无人飞行器进一步包括机臂(图中未画出),拍摄装置和至少一个光 源位于机臂下方。
其中,无人飞行器进一步包括壳体(图中未画出),控制装置设置于壳体内。
其中,控制装置为无人飞行器的飞行控制器、电调或者微控制单元。
其中,信号接收装置和控制装置或拍摄装置集成为一体。
无人飞行器中包括的各部分的具体功能可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
如图18所示,本发明无人飞行器第二实施例包括:光源35、拍摄装置36、与拍摄装置36可通信连接的控制装置37。
至少一个光源35的设置位置或光线照射范围位于拍摄装置36的拍摄视野范围之内,拍摄装置36用于接收拍摄指令,控制装置37用于接收并相应关闭光源指令而至少关闭影响拍摄的光源,拍摄装置36在预设时间后根据拍摄指令进行拍摄。
其中,控制装置进一步用于在拍摄装置拍摄完成之后开启光源。
其中,无人飞行器进一步包括机臂(图中未画出),拍摄装置和至少一个光源位于机臂下方。
其中,无人飞行器进一步包括壳体(图中未画出),控制装置设置于壳体内。
其中,控制装置为无人飞行器的飞行控制器、电调或者微控制单元。
无人飞行器中包括的各部分的具体功能可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
本发明控制器第一实施例用于执行以下步骤:
接收拍摄指令;
响应拍摄指令而至少关闭影响拍摄的光源;
发送拍摄指令给拍摄装置以控制拍摄装置进行拍摄。
在本发明控制器一个实施例中,控制器进一步用于在拍摄完成之后开启光源或将光源恢复为默认状态。
本发明控制器第二实施例用于执行以下步骤:
接收拍摄指令和关闭光源指令;
响应关闭光源指令而至少关闭影响拍摄的光源;
在预设时间后根据拍摄指令进行拍摄。
在本发明控制器一个实施例中,控制器进一步用于在拍摄完成之后开启光源或将光源恢复为默认状态。
以上控制器执行的各步骤具体可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
本发明存储器第一实施例用于存储程序指令,程序指令可以被控制器获取以执行以下步骤:
接收拍摄指令;
响应拍摄指令而至少关闭影响拍摄的光源;
发送拍摄指令给拍摄装置以控制拍摄装置进行拍摄。
在本发明存储器的一个实施例中,该存储器存储的程序指令进一步包括:在拍摄完成之后开启光源或将光源恢复为默认状态。
本发明存储器第二实施例用于存储程序指令,程序指令可以被控制器获取以执行以下步骤:
建立可移动设备与控制终端的通信连接;
接收控制终端所发送的拍摄指令和关闭光源指令;
响应关闭光源指令而至少关闭影响拍摄的光源;
在预设时间后根据拍摄指令进行拍摄。
在本发明存储器的一个实施例中,该存储器存储的程序指令进一步包括:在拍摄完成之后开启光源或将光源恢复为默认状态。
以上存储器存储的程序指令具体可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
如图19所示,本发明控制终端第一实施例包括:处理器41、通信电路42、输入设备43,处理器41分别耦接通信电路42和输入设备43。
处理器41用于通过输入设备43或通信电路42接收拍摄指令;通过通信电路42向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令;通过通信电路42向拍摄设备发送开始拍摄指令。
其中,处理器进一步用于拍摄完成后通过通信电路向可移动设备发送恢复光源工作的恢复指令。
其中,处理器用于在确认关闭光源后通过通信电路向拍摄设备发送开始拍摄指令。
其中,处理器用于通过通信电路接收可移动设备响应关闭光源指令而至少关闭影响拍摄的光源后发送的反馈消息以确认关闭光源。
其中,处理器进一步用于在拍摄过程中定时通过通信电路向可移动设备发送关闭光源指令,可移动设备在预设时间内未收到指令,则恢复光源的工作。
其中,若光源控制模式为自动模式,则处理器通过通信电路向可移动设备发送关闭光源指令,否则直接通过通信电路向拍摄设备发送开始拍摄指令。
其中,处理器进一步用于通过输入设备或通信电路接收停止拍摄指令;通过通信电路向拍摄设备发送停止拍摄指令并通过通信电路向可移动设备发送恢复光源的工作的恢复指令。
如图20所示,本发明控制终端第二实施例包括:处理器44、通信电路45、输入设备46,处理器44分别耦接通信电路45和输入设备46。
处理器44用于通过输入设备46或通信电路45接收拍摄指令;并通过通信电路45向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令和开始拍摄指令,以使得可移动设备在响应关闭光源指令而至少关闭影响拍摄的光源预设时间后根据开始拍摄指令进行拍摄。
其中,处理器进一步用于拍摄完成后通过通信电路向可移动设备发送恢复光源工作的恢复指令。
其中,处理器进一步用于在拍摄过程中定时通过通信电路向可移动设备发送关闭光源指令,可移动设备在预设时间内未收到指令,则恢复光源的工作。
其中,若控制模式是否为自动模式,则处理器通过通信电路向可移动设备发送关闭光源指令和开始拍摄指令,否则直接通过通信电路向可移动设备发送开始拍摄指令。
其中,处理器进一步用于通过输入设备或通信电路接收停止拍摄指令;通过通信电路向可移动设备发送停止拍摄指令和恢复光源的工作的恢复指令。
本发明控制终端各实施例中各个部分的功能具体可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。
如图21所示,本发明拍摄设备第一实施例包括:
设备主体51;
通信电路52,与设备主体电连接,用于接收拍摄指令,向拍摄设备搭载在的可移动设备发送至少关闭影响拍摄的可移动设备的光源的关闭光源指令;确认关闭光源后或延时第一预定时间后通知设备主体开始拍摄。
其中,通信电路通过接收可移动设备响应关闭光源指令而至少关闭影响拍摄的光源后发送的反馈消息,以确认关闭光源。
其中,通信电路进一步用于在拍摄过程中定时向可移动设备发送关闭光源指令,可移动设备在第二预定时间内未收到指令,则恢复光源的工作。
其中,通信电路进一步用于接收停止拍摄指令,通知设备主体停止拍摄并向可移动设备发送恢复光源的工作的恢复指令。
其中,恢复光源的工作包括:开启光源或将光源置于默认状态。
其中,通信电路进一步用于在接收拍摄指令后判断光源控制模式是否为自动模式,若是,则向可移动设备发送关闭光源指令,否则直接通知设备主体开始拍摄。
本实施例拍摄设备中各部分的功能具体可参考本发明可移动设备操作方法对应实施例中的描述,在此不再重复。在本发明所提供的几个实施例中,应该理解到,所揭露的可移动设备控制装置、可移动设备、无人飞行器、控制器、存储器、控制终端和拍摄设备,可以通过其它的方式实现。例如,以上所描述 的可移动设备控制装置、可移动设备、无人飞行器、控制器、存储器、控制终端和拍摄设备实施方式仅仅是示意性的,例如,所述模块或资源单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个资源单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。另一点,所显示或讨论的相互之间的耦合或直接耦合或通信连接可以是通过一些接口,装置或资源单元的间接耦合或通信连接,可以是电性,机械或其它的形式。
所述作为分离部件说明的资源单元可以是或者也可以不是物理上分开的,作为资源单元显示的部件可以是或者也可以不是物理资源单元,即可以位于一个地方,或者也可以分布到多个网络资源单元上。可以根据实际的需要选择其中的部分或者全部资源单元来实现本实施方式方案的目的。
另外,在本发明各个实施例中的各功能资源单元可以集成在一个处理资源单元中,也可以是各个资源单元单独物理存在,也可以两个或两个以上资源单元集成在一个资源单元中。上述集成的资源单元既可以采用硬件的形式实现,也可以采用软件功能资源单元的形式实现。
所述集成的资源单元如果以软件功能资源单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算机可读取存储介质中。基于这样的理解,本发明的技术方案本质上或者说对现有技术做出贡献的部分或者该技术方案的全部或部分可以以软件产品的形式体现出来,该计算机软件产品存储在一个存储介质中,包括若干指令用以使得一台计算机设备(可以是个人计算机,服务器,或者网络设备等)或处理器(processor)执行本发明各个实施方式所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
以上所述仅为本发明的实施方式,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接 运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (187)

  1. 一种可移动设备控制方法,其特征在于,所述方法包括:
    接收拍摄指令;
    响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    根据所述拍摄指令进行拍摄。
  2. 根据权利要求1所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:
    在拍摄完成之后开启所述光源。
  3. 根据权利要求2所述的方法,其特征在于,
    所述在拍摄完成之后开启所述光源的步骤具体包括:
    获取已完成拍摄的反馈信息,并开启所述光源。
  4. 根据权利要求3所述的方法,其特征在于,
    所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:
    拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
  5. 根据权利要求2所述的方法,其特征在于,
    所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
  6. 根据权利要求2所述的方法,其特征在于,
    所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
  7. 根据权利要求6所述的方法,其特征在于,进一步包括:
    接收停止拍摄指令;
    停止录制并停止发送关灯指令。
  8. 根据权利要求1或2所述的方法,其特征在于,具体包括:
    接收拍摄指令;
    发送关闭光源的指令以至少关闭影响所述拍摄的光源;
    根据所述拍摄指令进行拍摄。
  9. 根据权利要求1或2所述的方法,其特征在于,具体包括:
    接收所述拍摄指令;
    至少关闭影响所述拍摄的光源并发送所述拍摄指令以指示进行拍摄;
    根据所述拍摄指令拍摄。
  10. 根据权利要求1或2所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄的步骤具体包括:
    确认关闭所述光源后或延时第三预设时间后开始拍摄。
  11. 根据权利要求10所述的方法,其特征在于,所述确认关闭所述光源包括:
    接收控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
  12. 根据权利要求1所述的方法,其特征在于,在所述接收拍摄指令步骤之前进一步包括:
    接收光源默认状态设置指令;
    根据所述光源默认状态设置指令设置所述光源的默认状态。
  13. 根据权利要求12所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  14. 根据权利要求12所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
  15. 根据权利要求1所述的方法,其特征在于,所述接收拍摄指令步骤之后进一步包括:
    若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
  16. 一种可移动设备控制装置,其特征在于,包括:
    接收模块,用于接收拍摄指令;
    控制模块,用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    拍摄模块,用于根据所述拍摄指令进行拍摄。
  17. 根据权利要求16所述的装置,其特征在于,所述控制模块进一步用于:
    在所述拍摄模块拍摄完成之后开启所述光源。
  18. 根据权利要求17所述的装置,其特征在于,所述控制模块具体用于:
    获取拍摄模块已完成拍摄的反馈信息,并开启所述光源。
  19. 根据权利要求18所述的装置,其特征在于,
    所述拍摄模块用于在拍摄完成后,向所述控制模块发送重新开启所述光源的反馈指令,所述控制模块用于根据所述反馈指令开启所述光源。
  20. 根据权利要求17所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行拍照动作的第一预设时间后开启所述光源。
  21. 根据权利要求17所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在第二预设时间内未收到所述指令,则所述控制模块控制开启所述光源。
  22. 根据权利要求21所述的装置,其特征在于,所述拍摄模块进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制模块 发送关灯指令。
  23. 根据权利要求16或17所述的装置,其特征在于,
    所述接收模块用于接收拍摄指令;
    所述拍摄模块用于根据所述接收模块接收的拍摄指令向所述控制模块发送关闭光源的指令;
    所述控制模块用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;
    所述拍摄模块用于根据所述拍摄指令进行拍摄。
  24. 根据权利要求16或17所述的装置,其特征在于,
    所述接收模块用于接收拍摄指令;
    所述控制模块用于根据所述接收模块接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄模块发送所述拍摄指令以指示进行拍摄;
    所述拍摄模块用于根据所述拍摄指令进行拍摄。
  25. 根据权利要求16或17所述的装置,其特征在于,所述拍摄模块进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
  26. 根据权利要求25所述的装置,其特征在于,所述拍摄模块用于接收所述控制模块至少关闭所述影响所述拍摄的光源后发送的反馈消息以确认关闭所述光源。
  27. 根据权利要求16所述的装置,其特征在于,
    所述接收模块进一步用于接收光源默认状态设置指令;
    所述控制模块用于根据所述光源默认状态设置指令设置所述光源的默认状态。
  28. 根据权利要求27所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  29. 根据权利要求27所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在预设时间内未收到所述指令,则所述控制模块将所述光源恢复为所述默认状态。
  30. 根据权利要求16所述的装置,其特征在于,
    所述接收模块用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制模块响应所述拍摄指令而关闭所述光源或所述拍摄模块响应所述拍摄指令而通知所述控制模块关闭所述光源,否则所述拍摄模块直接开始拍摄。
  31. 一种可移动设备,包括光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,其特征在于,
    所述信号接收装置用于接收拍摄指令;
    所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    所述拍摄装置用于根据所述拍摄指令进行拍摄。
  32. 根据权利要求31所述的设备,其特征在于,
    所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
  33. 根据权利要求32所述的设备,其特征在于,
    所述控制装置用于获取所述拍摄装置已完成拍摄的反馈信息,并开启所述光源。
  34. 根据权利要求33所述的设备,其特征在于,
    所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
  35. 根据权利要求32所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
  36. 根据权利要求32所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
  37. 根据权利要求36所述的设备,其特征在于,
    所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
  38. 根据权利要求31或32所述的设备,其特征在于,
    所述信号接收装置用于接收拍摄指令;
    所述拍摄装置用于根据所述信号接收装置接收的拍摄指令向所述控制装置发送关闭光源的指令;
    所述控制装置用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  39. 根据权利要求31或32所述的设备,其特征在于,
    所述信号接收装置用于接收拍摄指令;
    所述控制装置用于根据所述信号接收装置接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄装置发送所述拍摄指令以指示进行拍摄;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  40. 根据权利要求31或32所述的设备,其特征在于,
    所述拍摄装置进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
  41. 根据权利要求40所述的设备,其特征在于,所述拍摄装置用于接收所述控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
  42. 根据权利要求31所述的设备,其特征在于,
    所述信号接收装置进一步用于接收光源默认状态设置指令;
    所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状 态。
  43. 根据权利要求42所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  44. 根据权利要求42所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
  45. 根据权利要求31所述的设备,其特征在于,
    所述信号接收装置用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述拍摄指令而关闭所述光源或所述拍摄装置响应所述拍摄指令而通知所述控制装置关闭所述光源,否则所述拍摄装置直接开始拍摄。
  46. 根据权利要求31所述的设备,其特征在于,
    所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
  47. 根据权利要求31所述的设备,其特征在于,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
  48. 根据权利要求31所述的设备,其特征在于,所述可移动设备为无人飞行器。
  49. 一种无人飞行器,包括光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,其特征在于,
    所述至少一个光源的设置位置或光线照射范围位于所述拍摄装置的拍摄视野范围之内,所述信号接收装置用于接收拍摄指令,所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源,所述拍摄装置根据所述拍摄指令进行拍摄。
  50. 根据权利要求49所述的无人飞行器,其特征在于,所述控制装置在所述拍摄装置拍摄完成之后开启所述光源。
  51. 根据权利要求49所述的无人飞行器,其特征在于,所述无人飞行器进一步包括机臂,所述拍摄装置和至少一个光源位于所述机臂下方。
  52. 根据权利要求50或51所述的无人飞行器,其特征在于,所述无人飞行器进一步包括壳体,所述控制装置设置于所述壳体内。
  53. 根据权利要求49所述的无人飞行器,其特征在于,所述控制装置为所述无人飞行器的飞行控制器、电调或者微控制单元。
  54. 根据权利要求49所述的无人飞行器,其特征在于,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
  55. 一种控制器,其特征在于,用于执行以下步骤:
    接收拍摄指令;
    响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    发送所述拍摄指令给拍摄装置以控制所述拍摄装置进行拍摄。
  56. 根据权利要求55所述的控制器,其特征在于,
    所述控制器进一步用于在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
  57. 一种存储器,其特征在于,用于存储程序指令,所述程序指令可以被控制器获取以执行以下步骤:
    接收拍摄指令;
    响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    发送所述拍摄指令给拍摄装置以控制所述拍摄装置进行拍摄。
  58. 根据权利要求57所述的存储器,其特征在于,所述存储器存储的程序指令进一步包括:
    在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
  59. 一种可移动设备控制方法,其特征在于,包括:
    建立可移动设备与控制终端的通信连接;
    接收所述控制终端所发送的拍摄指令;
    响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    根据所述拍摄指令进行拍摄。
  60. 根据权利要求59所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄步骤之后,进一步包括:
    在拍摄完成之后开启所述光源。
  61. 根据权利要求60所述的方法,其特征在于,所述在拍摄完成之后开启所述光源的步骤具体包括:
    获取已完成拍摄的反馈信息,并开启所述光源。
  62. 根据权利要求61所述的方法,其特征在于,
    所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:
    拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
  63. 根据权利要求60所述的方法,其特征在于,所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
  64. 根据权利要求60所述的方法,其特征在于,所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
  65. 根据权利要求64所述的方法,其特征在于,进一步包括:
    接收停止拍摄指令;
    停止录制并停止发送关灯指令。
  66. 根据权利要求59或60所述的方法,其特征在于,具体包括:
    接收拍摄指令;
    发送关闭光源的指令以至少关闭影响所述拍摄的光源;
    根据所述拍摄指令进行拍摄。
  67. 根据权利要求59或60所述的方法,其特征在于,具体包括:
    接收所述拍摄指令;
    至少关闭影响所述拍摄的光源并发送所述拍摄指令以指示进行拍摄;
    根据所述拍摄指令拍摄。
  68. 根据权利要求59或60所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄的步骤具体包括:
    确认关闭所述光源后或延时第三预设时间后开始拍摄。
  69. 根据权利要求68所述的方法,其特征在于,所述确认关闭所述光源包括:
    接收控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
  70. 根据权利要求59所述的方法,其特征在于,在所述接收拍摄指令步骤之前,进一步包括:
    接收光源默认状态设置指令;
    根据所述光源默认状态设置指令设置所述光源的默认状态。
  71. 根据权利要求70所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  72. 根据权利要求70所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
  73. 根据权利要求59所述的方法,其特征在于,所述接收拍摄指令步骤之后进一步包括:
    若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
  74. 一种可移动设备,包括光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,其特征在于,
    所述信号接收装置用于建立与控制终端的通信连接,并接收所述控制终端发送的拍摄指令;
    所述控制装置用于响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  75. 根据权利要求74所述的设备,其特征在于,所述控制装置在所述拍摄装置拍摄完成之后开启所述光源。
  76. 根据权利要求75所述的设备,其特征在于,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
  77. 根据权利要求76所述的设备,其特征在于,
    所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
  78. 根据权利要求75所述的设备,其特征在于,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
  79. 根据权利要求75所述的设备,其特征在于,若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
  80. 根据权利要求79所述的设备,其特征在于,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
  81. 根据权利要求74或75所述的设备,其特征在于,
    所述信号接收装置用于接收拍摄指令;
    所述拍摄装置用于根据所述信号接收装置接收的拍摄指令向所述控制装置发送关闭光源的指令;
    所述控制装置用于根据所述关闭光源的指令至少关闭影响所述拍摄的光源;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  82. 根据权利要求74或75所述的设备,其特征在于,
    所述接收装置用于接收拍摄指令;
    所述控制装置用于根据所述信号接收装置接收的拍摄指令至少关闭影响所述拍摄的光源,并向所述拍摄装置发送所述拍摄指令以指示进行拍摄;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  83. 根据权利要求74或75所述的设备,其特征在于,所述拍摄装置进一步用于在确认关闭所述光源后或延时第三预设时间后开始拍摄。
  84. 根据权利要求83所述的设备,其特征在于,所述拍摄装置用于接收所述控制装置至少关闭所述影响所述拍摄的光源后发送的反馈消息。
  85. 根据权利要求74所述的设备,其特征在于,
    所述信号接收装置进一步用于接收光源默认状态设置指令;
    所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状态。
  86. 根据权利要求85所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  87. 根据权利要求85所述的设备,其特征在于,
    若所述信号接收装置接收到的拍摄指令为录像,则所述拍摄装置在录 制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
  88. 根据权利要求74所述的设备,其特征在于,所述信号接收装置用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述拍摄指令而关闭所述光源或所述拍摄装置响应所述拍摄指令而通知所述控制装置关闭所述光源,否则所述拍摄装置直接开始拍摄。
  89. 根据权利要求74所述的设备,其特征在于,
    所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
  90. 根据权利要求74所述的设备,其特征在于,所述信号接收装置和所述控制装置或所述拍摄装置集成为一体。
  91. 根据权利要求74所述的设备,其特征在于,所述可移动设备为无人飞行器。
  92. 一种可移动设备控制方法,其特征在于,包括:
    接收拍摄指令;
    向所述可移动设备发送至少关闭影响拍摄的光源的关闭光源指令;
    发送开始拍摄指令。
  93. 根据权利要求92所述的方法,其特征在于,所述发送开始拍摄指令之后进一步包括:
    拍摄完成后向所述可移动设备发送恢复所述光源工作的恢复指令。
  94. 根据权利要求92所述的方法,其特征在于,所述向所述可移动设备发送至少关闭影响拍摄的光源的关闭光源指令步骤之后进一步包括:
    确认关闭所述光源。
  95. 根据权利要求94所述的方法,其特征在于,
    所述确认关闭所述光源包括:
    接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息。
  96. 根据权利要求92所述的方法,其特征在于,
    在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指令,则恢复所述光源的工作。
  97. 根据权利要求92所述的方法,其特征在于,
    所述接收拍摄指令步骤之后进一步包括:
    若光源控制模式为自动模式,则向所述可移动设备发送所述关闭光源指令,否则直接向所述拍摄设备发送所述开始拍摄指令。
  98. 一种控制终端,其特征在于,包括:
    处理器、通信电路、输入设备,所述处理器分别耦接所述通信电路和所述输入设备;
    所述处理器用于通过所述输入设备或所述通信电路接收拍摄指令;通过所述通信电路向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令;通过所述通信电路向拍摄设备发送开始拍摄指令。
  99. 根据权利要求98所述的控制终端,其特征在于,所述处理器进一步用于拍摄完成后通过所述通信电路向所述可移动设备发送恢复所述光源工作的恢复指令。
  100. 根据权利要求99所述的控制终端,其特征在于,所述处理器用于在确认关闭所述光源后通过所述通信电路向拍摄设备发送所述开始拍摄指令。
  101. 根据权利要求100所述的控制终端,其特征在于,
    所述处理器用于通过所述通信电路接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息以确认关闭所述光源。
  102. 根据权利要求98所述的控制终端,其特征在于,
    所述处理器进一步用于在拍摄过程中定时通过所述通信电路向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指 令,则恢复所述光源的工作。
  103. 根据权利要求98所述的控制终端,其特征在于,
    若光源控制模式为自动模式,则所述处理器通过所述通信电路向所述可移动设备发送所述关闭光源指令,否则直接通过所述通信电路向所述拍摄设备发送所述开始拍摄指令。
  104. 根据权利要求98所述的控制终端,其特征在于,
    所述处理器进一步用于通过所述输入设备或所述通信电路接收停止拍摄指令;通过所述通信电路向所述拍摄设备发送停止拍摄指令并通过所述通信电路向所述可移动设备发送恢复所述光源的工作的恢复指令。
  105. 一种拍摄设备,其特征在于,包括:
    设备主体;
    通信电路,与所述设备主体电连接,用于接收拍摄指令,向所述拍摄设备搭载在的可移动设备发送至少关闭影响所述拍摄的所述可移动设备的光源的关闭光源指令;
    确认关闭所述光源后或延时第一预定时间后通知所述设备主体开始拍摄。
  106. 根据权利要求105所述的拍摄设备,其特征在于,
    所述通信电路通过接收所述可移动设备响应所述关闭光源指令而至少关闭所述影响所述拍摄的光源后发送的反馈消息,以确认关闭所述光源。
  107. 根据权利要求105所述的拍摄设备,其特征在于,
    所述通信电路进一步用于在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在第二预定时间内未收到所述指令,则恢复所述光源的工作。
  108. 根据权利要求107所述的拍摄设备,其特征在于,
    所述通信电路进一步用于接收停止拍摄指令,通知所述设备主体停止拍摄并向所述可移动设备发送恢复所述光源的工作的恢复指令。
  109. 根据权利要求107或108所述的拍摄设备,其特征在于,
    所述恢复所述光源的工作包括:
    开启所述光源或将所述光源置于默认状态。
  110. 根据权利要求105所述的拍摄设备,其特征在于,
    所述通信电路进一步用于在接收所述拍摄指令后判断光源控制模式是否为自动模式,若是,则向所述可移动设备发送所述关闭光源指令,否则直接通知所述设备主体开始拍摄。
  111. 一种可移动设备控制方法,其特征在于,所述方法包括:
    接收拍摄指令和关闭光源指令;
    响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    在预设时间后根据所述拍摄指令进行拍摄。
  112. 根据权利要求111所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:
    在拍摄完成之后开启所述光源。
  113. 根据权利要求112所述的方法,其特征在于,所述在拍摄完成之后开启所述光源的步骤具体包括:
    获取已完成拍摄的反馈信息,并开启所述光源。
  114. 根据权利要求113所述的方法,其特征在于,
    所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:
    拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
  115. 根据权利要求112所述的方法,其特征在于,所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
  116. 根据权利要求112所述的方法,其特征在于,所述拍摄完成之后 开启所述光源的步骤具体包括:
    若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
  117. 根据权利要求116所述的方法,其特征在于,进一步包括:
    接收停止拍摄指令;
    停止录制并停止发送关灯指令。
  118. 根据权利要求111所述的方法,其特征在于,在接收拍摄指令步骤之前进一步包括:
    接收光源默认状态设置指令;
    根据所述光源默认状态设置指令设置所述光源的默认状态。
  119. 根据权利要求118所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为拍照,则在拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  120. 根据权利要求118所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为录像,则拍摄装置在录制过程中定时向控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则将所述光源恢复为所述默认状态。
  121. 根据权利要求111所述的方法,其特征在于,所述接收拍摄指令步骤之后进一步包括:
    若光源控制模式为自动模式,则响应所述拍摄指令而关闭所述光源,否则直接开始拍摄。
  122. 一种可移动设备控制装置,其特征在于,包括:
    接收模块,用于接收拍摄指令和关闭光源指令;
    控制模块,用于响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    拍摄模块,用于在预设时间后根据所述拍摄指令进行拍摄。
  123. 根据权利要求122所述的装置,其特征在于,所述控制模块进一步用于:
    在所述拍摄模块拍摄完成之后开启所述光源。
  124. 根据权利要求123所述的装置,其特征在于,所述控制模块具体用于:
    获取拍摄模块已完成拍摄的反馈信息,并开启所述光源。
  125. 根据权利要求124所述的装置,其特征在于,
    所述拍摄模块用于在拍摄完成后,向所述控制模块发送重新开启所述光源的反馈指令,所述控制模块用于根据所述反馈指令开启所述光源。
  126. 根据权利要求123所述的装置,其特征在于,若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行拍照动作的第一预设时间后开启所述光源。
  127. 根据权利要求123所述的装置,其特征在于,若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在第二预设时间内未收到所述指令,则所述控制模块控制开启所述光源。
  128. 根据权利要求127所述的装置,其特征在于,所述拍摄模块进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制模块发送关灯指令。
  129. 根据权利要求122所述的装置,其特征在于,
    所述接收模块进一步用于接收光源默认状态设置指令;
    所述控制模块根据所述光源默认状态设置指令设置所述光源的默认状态。
  130. 根据权利要求129所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为拍照,则所述控制模块在所述拍摄模块执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  131. 根据权利要求129所述的装置,其特征在于,
    若所述接收模块接收到的拍摄指令为录像,则所述拍摄模块在录制过程中定时向所述控制模块发送关灯指令,若所述控制模块在预设时间内未收到所述指令,则所述控制模块将所述光源恢复为所述默认状态。
  132. 根据权利要求122所述的装置,其特征在于,所述接收模块用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制模块响应所述拍摄指令而关闭所述光源或所述拍摄模块响应所述拍摄指令而通知所述控制模块关闭所述光源,否则所述拍摄模块直接开始拍摄。
  133. 一种可移动设备,包括光源、拍摄装置以及与所述拍摄装置可通信连接的控制装置,其特征在于,
    所述拍摄装置接收拍摄指令且所述控制装置接收关闭光源指令;
    所述控制装置用于响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    所述拍摄装置用于在预设时间后根据所述拍摄指令进行拍摄。
  134. 根据权利要求133所述的设备,其特征在于,所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
  135. 根据权利要求134所述的设备,其特征在于,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
  136. 根据权利要求135所述的设备,其特征在于,
    所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
  137. 根据权利要求134所述的设备,其特征在于,若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
  138. 根据权利要求134所述的设备,其特征在于,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装 置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
  139. 根据权利要求138所述的设备,其特征在于,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
  140. 根据权利要求133所述的设备,其特征在于,
    所述控制装置进一步用于接收光源默认状态设置指令;
    所述控制装置根据所述光源默认状态设置指令设置所述光源的默认状态。
  141. 根据权利要求140所述的设备,其特征在于,
    若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  142. 根据权利要求140所述的设备,其特征在于,
    若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
  143. 根据权利要求133所述的设备,其特征在于,所述控制装置用于接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述关闭光源指令而关闭所述光源,否则所述拍摄装置接收到拍摄指令后直接开始拍摄。
  144. 根据权利要求133所述的设备,其特征在于,
    所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
  145. 根据权利要求133所述的设备,其特征在于,所述可移动设备为无人飞行器。
  146. 一种无人飞行器,包括光源、拍摄装置、与所述拍摄装置可通信连接的控制装置,其特征在于,
    所述至少一个光源的设置位置或光线照射范围位于所述拍摄装置的拍摄视野范围之内,所述拍摄装置用于接收拍摄指令,所述控制装置用于接收并相应关闭光源指令而至少关闭影响所述拍摄的光源,所述拍摄装置在预设时间后根据所述拍摄指令进行拍摄。
  147. 根据权利要求146所述的无人飞行器,其特征在于,所述控制装置进一步用于在所述拍摄装置拍摄完成之后开启所述光源。
  148. 根据权利要求147所述的无人飞行器,其特征在于,所述无人飞行器进一步包括机臂,所述拍摄装置和至少一个光源位于所述机臂下方。
  149. 根据权利要求147或148所述的无人飞行器,其特征在于,所述无人飞行器进一步包括壳体,所述控制装置设置于所述壳体内。
  150. 根据权利要求146所述的无人飞行器,其特征在于,所述控制装置为所述无人飞行器的飞行控制器、电调或者微控制单元。
  151. 一种控制器,其特征在于,用于执行以下步骤:
    接收拍摄指令和关闭光源指令;
    响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    在预设时间后根据所述拍摄指令进行拍摄。
  152. 根据权利要求151所述的控制器,其特征在于,
    所述控制器进一步用于在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
  153. 一种存储器,其特征在于,用于存储程序指令,所述程序指令可以被控制器获取以执行以下步骤:
    接收拍摄指令和关闭光源指令;
    响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    在预设时间后根据所述拍摄指令进行拍摄。
  154. 根据权利要求153所述的存储器,其特征在于,所述存储器存储的程序指令进一步包括:
    在拍摄完成之后开启所述光源或将所述光源恢复为默认状态。
  155. 一种可移动设备控制方法,其特征在于,
    建立可移动设备与控制终端的通信连接;
    接收所述控制终端所发送的拍摄指令和关闭光源指令;
    响应所述关闭光源指令而至少关闭影响所述拍摄的光源;
    在预设时间后根据所述拍摄指令进行拍摄。
  156. 根据权利要求155所述的方法,其特征在于,所述根据所述拍摄指令进行拍摄步骤之后进一步包括:
    在拍摄完成之后开启所述光源。
  157. 根据权利要求156所述的方法,其特征在于,所述在拍摄完成之后开启所述光源的步骤具体包括:
    获取已完成拍摄的反馈信息,并开启所述光源。
  158. 根据权利要求157所述的方法,其特征在于,所述获取已完成拍摄的反馈信息,并开启所述光源的步骤具体包括:
    拍摄完成后,发送重新开启所述光源的反馈指令,根据所述反馈指令开启所述光源。
  159. 根据权利要求156所述的方法,其特征在于,所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为拍照,则在执行拍照动作的第一预设时间后开启所述光源。
  160. 根据权利要求156所述的方法,其特征在于,所述拍摄完成之后开启所述光源的步骤具体包括:
    若所述拍摄指令为录像,则在录制过程中定时发送关灯指令,若在第二预设时间内未收到所述指令,则开启所述光源。
  161. 根据权利要求160所述的方法,其特征在于,进一步包括:
    接收停止拍摄指令;
    停止录制并停止发送关灯指令。
  162. 根据权利要求155所述的方法,其特征在于,在所述接收拍摄指令步骤之前进一步包括:
    接收光源默认状态设置指令;
    根据所述光源默认状态设置指令设置所述光源的默认状态。
  163. 根据权利要求162所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为拍照,则在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  164. 根据权利要求162所述的方法,其特征在于,进一步包括:
    若所述拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述光源恢复为所述默认状态。
  165. 根据权利要求155所述的方法,其特征在于,所述接收拍摄指令步骤之后进一步包括:
    若光源控制模式为自动模式,则响应所述关闭光源指令而关闭所述光源,否则根据所述拍摄指令直接开始拍摄。
  166. 一种可移动设备,包括光源、拍摄装置、与所述拍摄装置可通信连接的控制装置以及信号接收装置,其特征在于,
    所述拍摄装置用于建立与控制终端的通信连接,并接收所述控制终端发送的拍摄指令;
    所述控制装置用于建立与控制终端的通信连接,并接收所述控制终端发送的关闭光源指令;
    所述控制装置响应所述拍摄指令而至少关闭影响所述拍摄的光源;
    所述拍摄装置根据所述拍摄指令进行拍摄。
  167. 根据权利要求166所述的设备,其特征在于,所述控制装置用于在所述拍摄装置拍摄完成之后开启所述光源。
  168. 根据权利要求167所述的设备,其特征在于,所述控制装置用于获取拍摄装置已完成拍摄的反馈信息,并开启所述光源。
  169. 根据权利要求168所述的设备,其特征在于,
    所述拍摄装置用于在拍摄完成后,向所述控制装置发送重新开启所述光源的反馈指令,所述控制装置用于根据所述反馈指令开启所述光源。
  170. 根据权利要求167所述的设备,其特征在于,若所述信号接收装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行拍照动作的第一预设时间后开启所述光源。
  171. 根据权利要求167所述的设备,其特征在于,若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在第二预设时间内未收到所述指令,则所述控制装置控制开启所述光源。
  172. 根据权利要求171所述的设备,其特征在于,所述拍摄装置进一步用于接收停止拍摄指令,并根据所述指令停止录制并停止向所述控制装置发送关灯指令。
  173. 根据权利要求166所述的设备,其特征在于,
    所述控制装置进一步用于接收并根据光源默认状态设置指令设置所述光源的默认状态。
  174. 根据权利要求173所述的设备,其特征在于,
    若所述拍摄装置接收到的拍摄指令为拍照,则所述控制装置在所述拍摄装置执行完拍照动作的预设时间后将所述光源恢复为所述默认状态。
  175. 根据权利要求173所述的设备,其特征在于,
    若所述拍摄装置接收到的拍摄指令为录像,则所述拍摄装置在录制过程中定时向所述控制装置发送关灯指令,若所述控制装置在预设时间内未收到所述指令,则所述控制装置将所述光源恢复为所述默认状态。
  176. 根据权利要求166所述的设备,其特征在于,所述控制装置用于 接收所述光源控制模式,若所述光源控制模式为自动模式,则所述控制装置响应所述关闭光源指令而关闭所述光源,否则所述拍摄装置接收到拍摄指令后直接开始拍摄。
  177. 根据权利要求166所述的设备,其特征在于,
    所述控制装置为所述可移动设备的控制器、电调或者微控制单元。
  178. 根据权利要求166述的设备,其特征在于,所述可移动设备为无人飞行器。
  179. 一种可移动设备控制方法,其特征在于,包括:
    接收拍摄指令;
    向所述可移动设备发送至少关闭影响所述拍摄的光源的关闭光源指令和开始拍摄指令,以使得所述可移动设备在响应所述关闭光源指令而至少关闭影响所述拍摄的光源预设时间后根据所述开始拍摄指令进行拍摄。
  180. 根据权利要求179所述的方法,其特征在于,
    所述向所述可移动设备发送至少关闭影响所述拍摄的光源的关闭光源指令和开始拍摄指令之后进一步包括:
    拍摄完成后向所述可移动设备发送恢复所述光源工作的恢复指令。
  181. 根据权利要求179所述的方法,其特征在于,进一步包括:
    在拍摄过程中定时向所述可移动设备发送关闭光源指令,所述可移动设备在第二预定时间内未收到所述指令,则恢复所述光源的工作。
  182. 根据权利要求179所述的方法,其特征在于,
    所述接收拍摄指令之后进一步包括:
    若光源控制模式为自动模式,则向所述可移动设备发送所述关闭光源指令,否则直接向所述拍摄设备发送所述开始拍摄指令。
  183. 一种控制终端,其特征在于,包括:
    处理器、通信电路、输入设备,所述处理器分别耦接所述通信电路和所述输入设备;
    所述处理器用于通过所述输入设备或所述通信电路接收拍摄指令;并通过所述通信电路向可移动设备发送至少关闭影响拍摄的光源的关闭光源指令和开始拍摄指令,以使得所述可移动设备在响应所述关闭光源指令而至少关闭影响所述拍摄的光源预设时间后根据所述开始拍摄指令进行拍摄。
  184. 根据权利要求183所述的控制终端,其特征在于,所述处理器进一步用于拍摄完成后通过所述通信电路向所述可移动设备发送恢复所述光源工作的恢复指令。
  185. 根据权利要求183所述的控制终端,其特征在于,
    所述处理器进一步用于在拍摄过程中定时通过所述通信电路向所述可移动设备发送关闭光源指令,所述可移动设备在预设时间内未收到所述指令,则恢复所述光源的工作。
  186. 根据权利要求183所述的控制终端,其特征在于,
    若所述控制模式是否为自动模式,则所述处理器通过所述通信电路向所述可移动设备发送所述关闭光源指令和所述开始拍摄指令,否则直接通过所述通信电路向所述可移动设备发送所述开始拍摄指令。
  187. 根据权利要求183所述的控制终端,其特征在于,
    所述处理器进一步用于通过所述输入设备或所述通信电路接收停止拍摄指令;通过所述通信电路向所述可移动设备发送停止拍摄指令和恢复所述光源工作的恢复指令。
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