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A Method for Recovering Linear Performance in Feedback Systems With Nonlinear Instrumentation

机译:非线性仪器在反馈系统中恢复线性性能的一种方法

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The problem of controller design in linear systems is well understood. Often, however, when linear controllers are implemented on a physical system, the anticipated performance is not met. In some cases, this can be attributed to nonlinearities in the instrumentation, i.e., sensors and actuators. Intuition suggests that to compensate for this instrumentation, one can boost, i.e., increase, the controller gain. This paper formally pursues this strategy and develops the theory of boosting. It provides conditions under which the controller gain can be modified to offset the effects of instrumentation, thus recovering the performance of the intended linear design. Experimental verification of the technique developed is reported using a magnetic levitation device.
机译:线性系统中控制器设计的问题已广为人知。但是,在物理系统上实现线性控制器时,通常无法达到预期的性能。在某些情况下,这可以归因于仪器(即传感器和执行器)中的非线性。直觉表明,为了补偿这种仪器,可以提高(即增加)控制器增益。本文正式采用这种策略并发展了助推理论。它提供了可以修改控制器增益以抵消仪器影响的条件,从而恢复了预期线性设计的性能。使用磁悬浮装置报告了对所开发技术的实验验证。

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