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Coordinated Optimal Design of Inverter Controllers in a Micro-Grid With Multiple Distributed Generation Units

机译:具有多个分布式发电单元的微电网中逆变器控制器的协调优化设计

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For a droop-controlled micro-grid, it is essential to design the droop coefficients for the inverter controllers in a rational way since they have great influences on the operation characteristics of the system. In this paper, a novel approach based on matrix perturbation theory is proposed for the coordinated optimization of the droop coefficients in inverter controllers. Rigorous perturbation analysis is applied to the droop coefficients to identify their influence on the system state matrix. Furthermore, the increments of the eigensolutions are obtained based on the matrix perturbation theory and are then utilized in the iterative parameter-optimization process. An eigenvalue-based objective function is proposed, aimed at ensuring the stability of the system, enhancing the damping characteristics, and maintaining the stability margin for a wide range of operating conditions. Finally, the effectiveness and robustness of the proposed approach are tested via a low-voltage micro-grid prototype.
机译:对于下垂控制的微电网,必须合理设计逆变器控制器的下垂系数,因为它们对系统的运行特性有很大的影响。提出了一种基于矩阵摄动理论的逆变器控制器下垂系数协调优化方法。对下垂系数进行严格的扰动分析,以确定它们对系统状态矩阵的影响。此外,基于矩阵摄动理论获得本征解的增量,然后将其用于迭代参数优化过程。提出了一种基于特征值的目标函数,旨在确保系统的稳定性,增强阻尼特性以及在广泛的工作条件下保持稳定裕度。最后,通过低压微电网原型对所提方法的有效性和鲁棒性进行了测试。

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