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From linear to nonlinear control means: A practical progression

机译:从线性控制方式到非线性控制方式:实践进展

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With the rapid advance of digital control hardware, it is time to take the simple but effective proportional-integral-derivative (PID) control technology to the next level of performance and robustness. For this purpose, a nonlinear PID and active disturbance rejection framework are introduced in this paper. It complements the existing theory in that (1) it actively and systematically explores the use of nonlinear control mechanisms for better performance, even for linear plants; (2) it represents a control strategy that is rather independent of mathematical models of the plants, thus achieving inherent robustness and reducing design complexity. Stability analysis, as well as software/hardware test results, are presented. It is evident that the proposed framework lends itself well in seeking innovative solutions to practical problems while maintaining the simplicity and the intuitiveness of the existing technology.
机译:随着数字控制硬件的飞速发展,现在是时候将简单但有效的比例积分微分(PID)控制技术提升到更高的性能和鲁棒性水平了。为此,本文介绍了非线性PID和主动干扰抑制框架。它是对现有理论的补充:(1)积极,系统地探索使用非线性控制机制以提高性能,即使对于线性设备也是如此; (2)它表示一种控制策略,该策略非常独立于工厂的数学模型,从而实现了固有的鲁棒性并降低了设计复杂性。介绍了稳定性分析以及软件/硬件测试结果。显然,所提出的框架非常适合寻求针对实际问题的创新解决方案,同时保持了现有技术的简单性和直观性。

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