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Power consumption controllable unmanned aerial vehicle flight control system and method

A UAV, power consumption technology, applied in 3D position/channel control, climate sustainability, resource allocation, etc., can solve problems such as high power consumption, reduced performance and reliability, etc.

Active Publication Date: 2015-01-14
NO 27 RES INST CHINA ELECTRONICS TECH GRP
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the problem brought by this system is the high power consumption of the whole system
[0004] For another flight control system, the cost of the aircraft is low and generally does not need to operate cumbersome flight movements, so the flight control system it needs goes to another extreme, using cost-effective hardware and single-threaded software to control the aircraft to do General flight maneuvers, its power consumption is very low, but it reduces performance and reliability at the same time

Method used

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  • Power consumption controllable unmanned aerial vehicle flight control system and method
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  • Power consumption controllable unmanned aerial vehicle flight control system and method

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Embodiment Construction

[0019] Such as figure 1 , 2 As shown in and 3, the present invention includes a system module, a hardware driver module, a driver module, a manual remote control module, a communication module, a sensor module, an attitude calculation module, an attitude stabilization module, a waypoint module, a guidance module, a controller module, and a load module and the power supply module, the start control end of the system module is connected to the control receiving end of the hardware driver module, the driving end of the hardware driver module is connected to the signal receiving end of the driver module, and the control end of the driver module is respectively connected to the attitude calculation module and the attitude stability The starting end of the module, the signal input terminals of the attitude calculation module and the attitude stabilization module are all connected to the acquisition signal output terminal of the sensor module, and the signal output terminals of the a...

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Abstract

The invention discloses a power consumption controllable unmanned aerial vehicle flight control system. The power consumption controllable unmanned aerial vehicle flight control system comprises a system module. The starting control end of the system module is connected with a control receiving end of a hardware drive module. The driving end of the hardware drive module is connected with the signal receiving end of a driver module. The control end of the driver module is connected with the starting end of a posture resolving module and a posture stabilizing module. The signal input end of the posture resolving module and the signal input end of the posture stabilizing module are connected with the collecting signal output end of a sensor module. The signal output end of the posture resolving module and the signal output end of the posture stabilizing module are connected with the signal input end of a controller module. The signal output end of the controller module is connected with the signal input end of a flight point module and the signal input end of a guidance module. The signal output end of the controller module is further connected with a load module, and a power module is used for supplying power to the whole system.

Description

technical field [0001] The invention relates to the technical field of unmanned aerial vehicle flight control, in particular to an unmanned aerial vehicle flight control system and method with controllable power consumption. Background technique [0002] A drone is an aircraft capable of autonomous flight. As an important part of the UAV, the flight control system's performance has a great impact on the overall technical and tactical indicators of the UAV system. In a certain sense, the flight control system has a narrow sense flight control system and a general sense flight control system. The so-called narrow sense flight control system refers to the inner loop stabilization loop and the outer loop position loop, including sensor modules, control algorithm modules and execution modules. , the system that completes the airframe control task is a pure control system; while the generalized flight control system also includes functions such as onboard electrical, load control...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G05D1/10G06F9/50
CPCY02D10/00
Inventor 赵鑫宇洪森涛樊世伟吉海明焦永磊李晨伟
Owner NO 27 RES INST CHINA ELECTRONICS TECH GRP
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