PI-D controller with optimized parameters of a scaled-model helicopter

M. Khaldi, Tammam M. Obeid
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Abstract

Scaled-model helicopters are highly nonlinear, coupled, and unstable machines. They have fast response and controlling them is very complicated and need high degree of precision. In this paper, a detailed nonlinear model is derived. The derived nonlinear model is linearized around a nominal point in the hovering state and a linear classical controller is designed. Then, an optimization algorithm is applied where the linear controller's parameters are adjusted offline so that the Integral Time-multiplied Square Error (ITSE), the error between the output response of the nonlinear system and the reference signal, is minimal. Both the linear and the optimized controllers are augmented with the nonlinear model and the simulation results are compared.
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直升机比例模型参数优化的PI-D控制器
比例模型直升机是高度非线性、耦合和不稳定的机器。其响应速度快,控制复杂,精度要求高。本文推导了一个详细的非线性模型。将导出的非线性模型围绕悬停状态的标称点进行线性化,并设计线性经典控制器。然后,采用离线调整线性控制器参数的优化算法,使非线性系统输出响应与参考信号之间的误差(ITSE)最小。对线性控制器和优化后的控制器进行了非线性扩充,并对仿真结果进行了比较。
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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