PID controller tuned using Simulated Annealing for assured crew re-entry vehicle with PWPF thruster firing

Divya Vijay, U. Sabura Banu
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引用次数: 1

Abstract

An attitude control system is proposed for an assured crew re-entry vehicle, where the control law is based PID controller tuned using Simulated Annealing. The controller designed ensures robustness properties with respect to parametric uncertainties and environmental disturbances. The system state remains in the neighborhood of a reference attitude and the control signal is close to a well-defined equivalent control. To ensure the effectiveness of the system, the PID controller tuned using Simulated Annealing is compared with conventional PID controller results. The reference attitude is obtained in terms of the command angles and the outputs given by the trajectory controller. A pulse width pulse frequency (PWPF) modulator is designed to modulate the thrust torque commanded by the attitude controller. The simulation results show the effectiveness of the proposed method in meeting the various requirement parameters.
采用模拟退火方法对PWPF推进器点火的机组人员再入飞行器的PID控制器进行了调整
提出了一种基于PID控制器的可靠乘员再入飞行器姿态控制系统。所设计的控制器确保了相对于参数不确定性和环境干扰的鲁棒性。系统状态保持在参考姿态的邻域内,控制信号接近于定义良好的等效控制。为了保证系统的有效性,将模拟退火整定的PID控制器与常规PID控制器的结果进行了比较。根据指令角和轨迹控制器给出的输出得到参考姿态。设计了脉宽脉频调制器对姿态控制器控制的推力转矩进行调制。仿真结果表明,该方法在满足各种参数要求方面是有效的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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