Journal Article10.1109/TSMCB.2002.804370
Evolutionary algorithm based offline/online path planner for UAV navigation
Ioannis K. Nikolos,Kimon P. Valavanis,Nikos C. Tsourveloudis,A.N. Kostaras +3 more
- 01 Dec 2003
- Vol. 33, Iss: 6, pp 898-912
TL;DR: An evolutionary algorithm based framework, a combination of modified breeder genetic algorithms incorporating characteristics of classic genetic algorithms, is utilized to design an offline/online path planner for unmanned aerial vehicles (UAVs) autonomous navigation, providing near-optimal curved paths quickly and efficiently.
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Abstract: An evolutionary algorithm based framework, a combination of modified breeder genetic algorithms incorporating characteristics of classic genetic algorithms, is utilized to design an offline/online path planner for unmanned aerial vehicles (UAVs) autonomous navigation. The path planner calculates a curved path line with desired characteristics in a three-dimensional (3-D) rough terrain environment, represented using B-spline curves, with the coordinates of its control points being the evolutionary algorithm artificial chromosome genes. Given a 3-D rough environment and assuming flight envelope restrictions, two problems are solved: i) UAV navigation using an offline planner in a known environment, and, ii) UAV navigation using an online planner in a completely unknown environment. The offline planner produces a single B-Spline curve that connects the starting and target points with a predefined initial direction. The online planner, based on the offline one, is given on-board radar readings which gradually produces a smooth 3-D trajectory aiming at reaching a predetermined target in an unknown environment; the produced trajectory consists of smaller B-spline curves smoothly connected with each other. Both planners have been tested under different scenarios, and they have been proven effective in guiding an UAV to its final destination, providing near-optimal curved paths quickly and efficiently.
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Citations
Design and Simulation of a Novel UAV Combined Fixed Wing and Quadrotor
TL;DR: In this article , a vertical takeoff and landing fixed-wing UAV is designed according to the flight system of the quadrotor, including the overall design and structure design, for the simulation test carried out to simulate the vertical take-off and landing process of the UAV and the related functions of path tracking.
Strategy of Defending UAVs by Interfering Path Planning
Jiaqi Li,Zhuanghua Liu,Lipeng Wang,Yang Liu +3 more
- 01 Aug 2018
TL;DR: Two kinds of trapping schemes for RRT algorithms are proposed and the experiments show the effectiveness of these schemes, and some factors that affect the results of the path planning are summarized.
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Gradient-Based Mixed Planning with Discrete and Continuous Actions.
TL;DR: In this paper, a gradient-based framework is proposed to solve the numeric planning problems mixed with discrete and continuous actions based on gradient descent, and the framework is combined with a heuristic module to estimate the best plan candidate to transit initial state to the goal based on relaxation.
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UAV Path Planning for Optimal Coverage of Areas with Nonuniform Importance
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