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Probabilistic Operation of Electric Power Systems Considering Environmental Constraint (Part 7)* -A Consideratioin for Line Security-

机译:考虑环境约束的电力系统的概率运行(第7部分)*-线路安全性的考虑-

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摘要

A scheduling method is reported to satisfy the reliability limit and the environmental constraint when a line fault is regarded as probabilistic. The reliability limit is satisfied by changing the thermal output power to probabilistically achieve every line’s capacity. NO_x emission from thermal stations is limited as a typical environmental constraint. These constraints are economically achieved. The LaGrange’s method and the Kuhn-Tucker conditions are used to satisfy both the line capacity and the emission constraint. The LaGrange’s multipliers are decided by solving the simultaneous equations. An economical method of achieving the reliability limit is described using the probability of the line fault and the increase of the operating cost.  Simulating the proposed method by a model system, the results are variously investigated. The proposed method is concretely confirmed to estimate the optimum operation which can economically satisfy the reliability limits and the emission constraints at various values. It is also shown that the proposed method can improve reliability by more than 16%.
机译:据报道,当线路故障被认为是概率性的时,一种调度方法可以满足可靠性极限和环境约束。通过更改热输出功率来概率性地达到每条线的容量,可以满足可靠性限制。来自热力站的NO_x排放被限制为典型的环境限制。这些限制是经济上实现的。使用LaGrange方法和Kuhn-Tucker条件来满足线路容量和发射约束。拉格朗日的乘数是通过求解联立方程来确定的。使用线路故障的可能性和运行成本的增加来描述一种实现可靠性极限的经济方法。通过模型系统对提出的方法进行仿真,对结果进行了各种研究。具体地证实了所提出的方法以估计可以经济地满足各种值下的可靠性极限和排放约束的最佳操作。结果表明,所提方法可以将可靠性提高16%以上。

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