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Non-linear generalised minimum variance control using unstable state-dependent multivariable models

机译:使用与状态有关的不稳定状态的非线性广义最小方差控制

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摘要

A non-linear generalised minimum variance (NGMV) control law is derived for systems represented by an input-output state dependent non-linear (NL) subsystem that may be open-loop unstable. The solution is obtained using a model for the multivariable discrete-time process that includes a state-dependent (NL and possibly unstable) model that links the output and any `unstructured' NL input subsystem. The input subsystem can involve an operator of a very general NL form, but this has to be assumed to be stable. This is the first NGMV control solution that is suitable for systems containing an unstable NL sub-system which is contained in the state-dependent model. The process is also assumed to include explicit common delays in input or output channels. The generalised minimum variance cost index to be minimised involves both dynamically weighted error and control signal costing terms. It may also include weighted values of the system states for greater generality. The controller derived is simple to implement considering the complexity of the system represented. If the plant is stable the controller structure can be manipulated into an internal model control form. This form of the controller is like an NL version of the Smith Predictor which is valuable for providing confidence in the solution.
机译:对于由可能是开环不稳定的输入-输出状态相关的非线性(NL)子系统表示的系统,推导了非线性广义最小方差(NGMV)控制律。该解决方案是使用多变量离散时间过程的模型获得的,该模型包括将输出与任何“非结构化” NL输入子系统联系在一起的状态相关(NL和可能不稳定)的模型。输入子系统可能涉及非常普通的NL形式的运算符,但是必须假定这是稳定的。这是第一个适用于包含状态依赖模型中包含不稳定NL子系统的系统的NGMV控制解决方案。还假定该过程在输入或输出通道中包括明确的公共延迟。要最小化的广义最小方差成本指数涉及动态加权误差和控制信号成本计算项。它还可以包括系统状态的加权值,以提高通用性。考虑到所代表系统的复杂性,派生的控制器易于实现。如果工厂稳定,则可以将控制器结构操纵为内部模型控制形式。控制器的这种形式类似于Smith Predictor的NL版本,对于提供对解决方案的信心非常有价值。

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