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Discrete-time IDA-passivity based control of coupled tank processes subject to actuator saturation

机译:基于离散IDA无源性的耦合罐过程基于执行器饱和的控制

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Interconnection damping assignment passivity based control (IDA-PBC) is an emerging control design method which allows an engineer to systematically design an advanced controller for complex non-linear systems. As a result specific gain ranges can be determined which can prevent an operator (adversary) from accidentally (maliciously) setting control gains which could potentially destabilize the system. However in order to generate the controller the engineer will have to resort to using symbolic numerical solvers in order to complete the design. This can be both a cumbersome and error-prone task which can be automated. We present initial results of a tool which simplifies IDA-PBC. In addition many fluid control problems posses tight operating regions in which pumps degrade over time. As a result actuator saturation may occur for given set-point profiles which will lead to integrator wind-up and more oscillatory behavior. We provide a non-linear anti-windup control-law which greatly improves system resilience to such degradation. Finally we demonstrate that IDA-PBC works reasonably well for moderately large sampling times by simply applying the bilinear transform to approximate any additional (non-linear) integral control terms.
机译:互连阻尼分配基于无源的控制(IDA-PBC)是一种新兴的控制设计方法,允许工程师为复杂的非线性系统系统地设计高级控制器。结果,可以确定特定的增益范围,该范围可以防止操作员(对手)意外地(恶意地)设置可能会破坏系统稳定性的控制增益。但是,为了生成控制器,工程师将不得不使用符号数值求解器来完成设计。这既是繁琐又容易出错的任务,可以自动执行。我们介绍了简化IDA-PBC的工具的初步结果。另外,许多流体控制问题带来了狭窄的工作区域,在这些区域中泵随时间推移而退化。结果,对于给定的设定值曲线,执行器可能发生饱和,这将导致积分器加速并产生更多的振荡行为。我们提供了一个非线性的抗饱和控制律,可以大大提高系统对这种退化的适应能力。最终,我们证明了IDA-PBC通过简单地应用双线性变换来近似任何附加的(非线性)积分控制项,对于适度的大采样时间就可以很好地工作。

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