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Hierarchical Coordinated Control for Power System Voltage Using Linear Temporal Logic

机译:基于线性时序逻辑的电力系统电压分级协调控制

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摘要

The paper proposed an approach to study the power system voltage coordinated control using Linear Temporal Logic (LTL). First, the hybrid Automata model for power system voltage control was given, and a hierarchical coordinated voltage control framework was described in detail. In the hierarchical control structure, the high layer is the coordinated layer for global voltage control, and the low layer is the power system controlled. Then, the paper introduced the LTL language, its specification formula and basic method for control. In the high layer, global voltage coordinated control specification was defined by LTL specification formula. In order to implement system voltage coordinated control, the LTL specification formula was transformed into hybrid Automata model by the proposed algorithms. The hybrid Automata in high layer could coordinate the different distributed voltage controller, and have constituted a closed loop global voltage control system satisfied the LTL specification formula. Finally, a simple example of power system voltage control include the OLTC controller, the switched capacitor controller and the under-voltage shedding load controller was given for simulating analysis and verification by the proposed approach for power system coordinated voltage control. The results of simulation showed that the proposed method in the paper is feasible.
机译:本文提出了一种使用线性时序逻辑(LTL)研究电力系统电压协调控制的方法。首先,给出了用于电力系统电压控制的混合自动机模型,并详细描述了分层协调电压控制框架。在分级控制结构中,高层是用于全局电压控制的协调层,而低层是受电源系统控制的层。然后,介绍了LTL语言,其规格公式和控制的基本方法。在高层,全局电压协调控制规范由LTL规范公式定义。为了实现系统电压协调控制,通过算法将LTL规范公式转换为混合自动机模型。高层的混合自动机可以协调不同的分布式电压控制器,并构成满足LTL规格公式的闭环全局电压控制系统。最后,给出了一个简单的电力系统电压控制示例,包括OLTC控制器,开关电容器控制器和欠压减载控制器,以通过所提出的电力系统协调电压控制方法进行仿真分析和验证。仿真结果表明,该方法是可行的。

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