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非对称人工势场作为非线性PID回路框架用于控制非完整无人机的位置跟踪

Asymmetrical Artificial Potential Field as Framework of Nonlinear PID Loop to Control Position Tracking by Nonholonomic UAVs.

作者信息

Kownacki Cezary, Ambroziak Leszek

机构信息

Department of Robotics and Mechatronics, Faculty of Mechanical Engineering, Bialystok University of Technology, Wiejska St. 45C, 15-351 Bialystok, Poland.

出版信息

Sensors (Basel). 2022 Jul 22;22(15):5474. doi: 10.3390/s22155474.

Abstract

Precise position tracking plays a key role in formation flights of UAVs (unmanned aerial vehicles) or other applications based on the idea of the leader-following scheme. It decides on the integrity of a formation or increasing the position error when a UAV follows the desired flight path. This is especially difficult in the case of nonholonomic vehicles having limited possibilities of making turns, causing a lack of stability. An asymmetrical artificial potential field (AAPF) is the way to achieve the stability of position tracking by nonholonomic UAVs, but it is only a nonlinear proportional relation to feedback given by a tracking error. Therefore, there can still be a steady-state error or error overshoots. Combining an AAPF with integral and derivative terms can improve the response of control by damping overshoots and minimizing the steady-state error. Such a combination results in a regulator whose properties allow defining it as nonlinear PID. Numerical simulation confirms that integral and derivative terms together with an AAPF create a control loop that can minimize overshoots of the tracking error and the steady-state error and satisfy conditions of asymptotical stability.

摘要

精确的位置跟踪在无人机(无人驾驶飞行器)的编队飞行或基于跟随领导者方案的其他应用中起着关键作用。它决定了编队的完整性,或者在无人机沿着期望的飞行路径飞行时增加位置误差。对于转弯可能性有限的非完整车辆来说,这尤其困难,会导致缺乏稳定性。非对称人工势场(AAPF)是实现非完整无人机位置跟踪稳定性的一种方法,但它与跟踪误差给出的反馈只是非线性比例关系。因此,仍然可能存在稳态误差或误差超调。将AAPF与积分项和微分项相结合,可以通过抑制超调并最小化稳态误差来改善控制响应。这样的组合产生了一种调节器,其特性允许将其定义为非线性PID。数值模拟证实,积分项、微分项与AAPF一起创建了一个控制回路,该回路可以最小化跟踪误差的超调量和稳态误差,并满足渐近稳定性条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7fa/9332544/281057f10f66/sensors-22-05474-g001.jpg

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