Output regulation for redundant plants via orthogonal moments

S. Galeani, M. Sassano
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引用次数: 3

Abstract

In this paper we address the output regulation problem for redundant plants, namely systems possessing more control inputs than regulated outputs, with focus on the specific opportunity and difficulty deriving from the additional inputs. The former consists in the fact that, having a wealth of input configurations achieving the same steady-state behavior, it is possible to optimize additional performance criteria while preserving the primary task of output regulation. The latter stems from the fact that the naive approach of replicating the required internal model of the exosystem on each input channel leads to loss of observability/detectability of the cascaded interconnection of the internal model and the plant, thus preventing the achievement of overall closed-loop stability: The main result of this paper consists in the design of an inner auxiliary control loop that allows to break the above conflict between advantages and drawbacks of redundant plants. The result is then revisited by exploiting the orthogonal moments of the plant at the exosystem’s frequencies. Differently from classic moments, which, for an asymptotically stable plant, describe the relation between inputs and steady-state output response, orthogonal moments characterize the input directions that yield zero steady-state output response at given frequencies.
通过正交矩对冗余装置的输出进行调节
在本文中,我们解决了冗余工厂的输出调节问题,即拥有比调节输出更多的控制输入的系统,重点关注额外输入的特定机会和难度。前者包含这样一个事实,即拥有实现相同稳态行为的丰富输入配置,可以在保留输出调节的主要任务的同时优化其他性能标准。后者源于天真的方法复制所需的内部模型的每个输入通道上的exosystem导致损失的可观测性/级联互连的内部模型的检测能力和植物,从而防止整体闭环稳定的成就:本文的主要成果在于内部辅助控制回路的设计,允许打破上述优缺点多余的植物之间的冲突。然后通过利用植物在外部系统频率上的正交矩来重新审视结果。与经典矩不同的是,对于一个渐近稳定的对象,经典矩描述的是输入和稳态输出响应之间的关系,而正交矩描述的是在给定频率下产生零稳态输出响应的输入方向。
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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