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A sensitivity based simplified model for security constrained optimal power flow

机译:基于安全性约束的最优潮流的基于灵敏度的简化模型

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摘要

With the grid scale expansion and the network structure becoming more complex, how to keep the large power system reliable and secure is a great challenge. The security constrained optimal power flow (SCOPF) model is an effective way to consider economy and security coordinately. But due to the characteristic of SCOPF model itself, the model is very hard to solve when consider the security under a large number of contingencies. This paper proposes a simplified model based on partly linearized sensitivity to solve the SCOPF problem. The sensitivities between the variables under pre-contingency configuration and post-contingency configurations are used to establish the mew model. Some numerical results of IEEE 9-bus system show that the optimal solutions obtained from the new model can meet the demand in terms of economy and security, and solving with the new model is much faster than the traditional SCOPF model.
机译:随着电网规模的扩大和网络结构的日益复杂,如何保持大型电力系统的可靠性和安全性是一个巨大的挑战。安全约束的最优潮流(SCOPF)模型是协调考虑经济性和安全性的有效方法。但是由于SCOPF模型本身的特性,在考虑大量突发情况下的安全性时,很难解决该模型。本文提出了一种基于部分线性灵敏度的简化模型来解决SCOPF问题。权变前配置和权变后配置下的变量之间的敏感性用于建立喵模型。 IEEE 9总线系统的一些数值结果表明,从新模型中获得的最佳解决方案可以满足经济性和安全性的要求,并且使用新模型进行求解比传统的SCOPF模型要快得多。

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