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RATIONAL IMPLEMENTATION OF DISTRIBUTED DELAY USING EXTENDED BILINEAR TRANSFORMATIONS

机译:利用扩展的双线性变换合理实现分布式延迟

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Based on an extension of the bilinear transformation, a rational implementation for distributed delay in linear control laws is proposed. This implementation converges much faster than the rational implementation inspired from the δ-operator. The implementation has an elegant structure of chained bi-proper nodes cascaded with a strictly proper node. The stability of each node is determined by the choice of the total number N of the nodes. The H∞-norm of the implementation error approaches 0 when N goes to ∞ and hence the stability of the closed-loop system can be guaranteed. In addition, the steady-state performance of the system is retained. Simulation examples are given to verify the results and to show comparative study with other implementations.
机译:基于双线性变换的扩展,提出了线性控制律中分布式时延的合理实现。该实现的收敛速度比δ运算符启发的合理实现快得多。该实现具有链式双正确节点的优雅结构,该双级正确节点级联有严格正确的节点。每个节点的稳定性取决于节点总数N的选择。当N达到∞时,实现误差的H∞范数接近0,因此可以保证闭环系统的稳定性。另外,保留了系统的稳态性能。给出了仿真示例,以验证结果并显示与其他实现的对比研究。

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