Agriculture Drone With Frame Design

Agriculture Drone With Frame Design
Details:
* Innovation Product A10 by AGR independent R&D Team.
* Special shaped structure,stable and durable.
* Fold able arms, rapid transfer.
* Pluggable tank 10L, convenient to recharge.
* Applicable crops species including rice, cotton, maize, wheat, grape, cherry, orange, eggplant, peanut, sunflower, etc.
  * AGR A10 uav agricultural spraying drone has certificates like ISO9001, FCC,RoHS and CE etc.
  * Reduce working labor costs effectively and improve the working efficiency.
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Description
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Product Application

* Innovation Product A10 Agriculture drone with frame design by AGR independent R&D Team.

* Special shaped structure,stable and durable.

* Fold able arms, rapid transfer.

* Pluggable tank 10L, convenient to recharge.

* Compact Size with wheel, easy to change place to work

* Agriculture drone with frame design have Waterproof IP56, convenient to maintenance for farmers 

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Model

A10

Motor Type

Brushless Motor X 4

Hourly Operating Area

2-5.3 Hectare

Feature

Wheel design, Pluggable tank

Capacity

10L

Hovering Time (without payload)

25 mins

Hovering Time (full payload)

15 mins

Battery Type

Lithium-ion

Battery Volume

16000 mAh

Cover Finshing

Light Blue /Blue/Red/Grey/White/Customized

N.W

12.3kg

Product Size

1650mm×1650mm×574mm

Packing Size

1200mm×475mm×574mm

Maximum Take-off

Weight

26.7kg

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Like other autonomous motion systems, the motion planning of drones has always been the focus of research. Unmanned aerial vehicles can track smooth and some non-smooth 3D trajectories due to its vertical take-off and landing and hovering capabilities. It is an ideal universal 3D motion planning algorithm verification platform. Plan the movement of the Agriculture drone with frame design UAV by horizontal scanning and surrounding so that it can completely scan all the surfaces; research on the progressive optimization algorithm of the linear system with bounded uncertainties; obtain the probabilistic feasible path in the nonlinear system that meets the Gaussian distribution assumption Solution, for the study of algorithms with strong uncertainties without boundaries. A series of path points with time delay are used to describe the path, the control input between each path point is calculated according to the flight parameters, and the coordinated turning is achieved by planning the three actions of the Agriculture drone with frame design UAV to form an action sequence.

 

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