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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Suboptimal Regulation of a Class of Bilinear Interconnected Systems with Finite-Time Sliding Planning Horizons
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Suboptimal Regulation of a Class of Bilinear Interconnected Systems with Finite-Time Sliding Planning Horizons

机译:一类具有有限时间滑动规划范围的双线性互联系统的次优调节

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This paper focuses on the suboptimization of a class of multivariable discrete-time bilinear systems consisting of interconnected bilinear subsystems with respect to a linear quadratic optimal regulation criterion which involves the use of state weighting terms only. Conditions which ensure the controllability of the overall system are given as a previous requirement for optimization. Three transformations of variables are made on the system equations in order to implement the scheme on an equivalent linear system. This leads to an equivalent representation of the used quadratic performance index that involves the appearance of quadratic weighting terms related to both transformed input and state variables. In this way, a Riccati-matrix sequence, allowing the synthesis of a standard feedback control law, is obtained. Finally, the proposed control scheme is tested on realistic examples.
机译:本文针对一类仅由状态加权项使用的线性二次最优调节准则,着重研究由互连双线性子系统组成的一类多变量离散时间双线性系统的次优化。确保整个系统可控性的条件是优化的先前要求。为了在等效线性系统上实现该方案,对系统方程式进行了三种变量转换。这导致所使用的二次性能指标的等效表示,其中涉及与转换后的输入变量和状态变量均相关的二次加权项的出现。这样,获得了Riccati矩阵序列,可以合成标准的反馈控制律。最后,在实际例子中对提出的控制方案进行了测试。

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