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Modeling and Formulation of Delayed Cyber-Physical Power System for Small-Signal Stability Analysis and Control

机译:小信号稳定性分析和控制延迟网络物理电力系统的建模与制定

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Modeling and formulation of a delayed cyber-physical power system (DCPPS) are the basis of small-signal stability analysis and control synthesis of the system. First, a logic describing the interconnections between various systems of delayed differential algebraic equations (DDAEs) and delayed differential equations (DDEs) is established. It clearly shows the transformation of the most general DDAEs of the non-index-1 Hessenberg form to the widely used DDEs with finite terms of actual delays. Second, the DDAE model of the index-1 Hessenberg form is formulated in detail for DCPPS, which features in preserving the inherent sparsity in system's augmented state matrix. Exploiting the sparsity guarantees the scalability in stability analysis and controller design of a large DCPPS. Third, three delay merge properties are presented with complete proofs, which indicate that the feedback and control delays in one control loop can be treated as one single time delay. The properties facilitate modeling and formulating DCPPS. Last, numerical studies are carried out on a real-life large DCPPS with wide-area damping controllers embedded. Test results validate the correctness of the presented theoretical backgrounds.
机译:延迟网络物理电力系统(DCPP)的建模和配方是小信号稳定性分析和系统控制合成的基础。首先,建立描述延迟差分代数方程(DDAE)和延迟微分方程(DDES)的各种系统之间的互连之间的逻辑。它清楚地显示了非索引-1 Hessenberg形式最常见DDAE的转换,以具有有限的实际延迟的可采用DDE。其次,对DCPP的详细制定了​​Index-1 Hessenberg形式的DDAE模型,其特征在于保留系统增强状态矩阵中的固有稀疏性。利用稀疏性保证了大型DCPP的稳定性分析和控制器设计中的可扩展性。第三,三个延迟合并属性呈现完整的证明,表明一个控制回路中的反馈和控制延迟可以被视为单个时间延迟。该特性有助于建模和配制DCPP。最后,在具有嵌入的广域阻尼控制器的现实大型DCPP上进行数值研究。测试结果验证了所呈现的理论背景的正确性。

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