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Dual inclusion principle for overlapping interconnected systems

机译:重叠互连系统的双重包含原理

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Restriction and aggregation are two dual inclusion conditions, which are revealed in the research field of inclusion principle for state space descriptions of overlapping interconnected systems. An input-state-output dual inclusion principle is proposed for linear time invariant systems and their dual systems, with the focus on restriction and aggregation in duality for direct contraction of control laws and state observers. In these two special inclusion cases, dual relationships of restriction and aggregation inclusion conditions are formulated between an original system and its dual system. Overlapping decentralized controller design problems are considered within the framework of the dual inclusion principle. It is shown that, if dual inclusion is satisfied, in the same type of expansions (restriction or aggregation) for both original system and its dual system, direct contraction can be applied to designed control laws or state observers from the expansion to the original space, while dual information of designed state observer or control laws can be contracted directly from the dual expansion to the dual original space.
机译:约束和聚合是两个双重包含条件,这在重叠互连系统状态空间描述的包含原理研究领域中得到揭示。针对线性时不变系统及其对偶系统,提出了一种输入状态输出对偶包含原理,重点是控制律和状态观测器直接收缩的对偶约束和聚合。在这两种特殊的包含情况下,限制和聚集包含条件的双重关系在原始系统与其双重系统之间形成。在双重包含原理的框架内考虑了重叠分散式控制器设计问题。结果表明,如果满足双重包含,在原始系统及其双重系统的相同类型的扩展(约束或集合)中,可以将直接收缩应用于从扩展到原始空间的设计控制律或状态观察者。 ,而可以将设计状态观察者或控制律的双重信息从双重扩展直接收缩到双重原始空间。

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