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Overlapping decentralized approach to automation generation control of multi-area power systems

机译:重叠分散式多区域电力系统自动化发电控制方法

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摘要

An overlapping decentralized control scheme is presented and applied to automatic generation control (AGC) for multi-area power systems. Based on the inclusion principle, the system is first decomposed in the expanded space as a group of pair-wise subsystems ( areas). Then, the decentralized controllers designed, by standard linear quadratic (LQ) control laws are implemented in each pair-wise subsystem. Finally, the overlapping decentralized controller is obtained by coordinating and contracting the pair-wise decentralized controllers from the expanded space to the original space, preserving the inclusion conditions. When applied to AGC of a four-area power system, the proposed methodology not only guarantees AGC qualities, but also increases the system reliability with respect to a wide variety of structured perturbations. Simulation results illustrate the effectiveness of the presented approach both in the general case of information structure constraints and in the cases when some pairs of subsystems are disconnected by unpredicted faults.
机译:提出了一种重叠的分散控制方案,并将其应用于多区域电力系统的自动发电控制(AGC)。基于包含原理,系统首先在扩展空间中分解为一组成对的子系统(区域)。然后,在每个成对子系统中实现通过标准线性二次(LQ)控制律设计的分散控制器。最后,通过将成对的分散控制器从扩展空间协调到原始空间并进行收缩,可以得到重叠的分散控制器,并保留了包含条件。当将其应用于四区域电力系统的AGC时,所提出的方法不仅可以保证AGC的质量,而且还可以提高针对各种结构性扰动的系统可靠性。仿真结果说明了该方法在信息结构约束的一般情况下以及某些对子系统由于不可预测的故障而断开连接的情况下的有效性。

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