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Optimal Design of Emergency Load Shedding Control for Enhancement of Transient Voltage Security

机译:增强暂态电压安全的紧急减载控制优化设计。

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The differential and algebraic equations (DAE) of power systems which describe transient voltage security problem is established. Representation of load shedding is deduced in terms of the three order induction motor paralleled with constant impedance load model. The optimization model of emergency load shedding control of transient voltage security (ELSCTVS) is presented in which transient voltage security constraints include the constraint avoiding transient voltage instability and avoiding transient delayed voltage recovery, the objective is to minimize load shedding cost. Based on trajectory sensitivities, the approximate linear relationship between transient voltage security constraint functions and control variables is found, and hence this optimization model is transformed into a static linear integer programming model. A heuristic optimal algorithm is used to obtain its solution. Computational results on IEEE 39 bus system demonstrate correctness and effectiveness of the proposed method.
机译:建立了描述瞬态电压安全性问题的电力系统的微分和代数方程(DAE)。根据与恒定阻抗负载模型并联的三阶感应电动机推导了减载的表示。提出了暂态电压安全性紧急减载控制的优化模型,其中暂态电压安全性约束包括避免暂态电压不稳定和避免暂态延迟电压恢复的约束,目的是最大程度地降低减载成本。基于轨迹灵敏度,找到了暂态电压安全约束函数与控制变量之间的近似线性关系,并将此优化模型转换为静态线性整数规划模型。使用启发式最优算法来获得其解。 IEEE 39总线系统的计算结果证明了该方法的正确性和有效性。

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