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Probabilistic Operation of Electric Power Systems Considering Environmental Constraint (Part l)* -Fundamental Consideration for Instantaneous Operation-

机译:考虑环境约束的电力系统的概率运行(第1部分)*-瞬时运行的基本考虑-

摘要

We report an optimum method in which we regard the system load as probabilistic variable and consider both constraints of emission and probabilistic value which exceed the emission constraint. We show that when the outputs of thermal units are constrained to upper and lower limits, even if the system load is represented by the normal distribution, the stochastic character of the total thermal output differs from it and total thermal cost and emission do not become simple curves. The amount of the calculation of fault state is reduced by simplification in our method. We apply our method to a model power system and the results are concluded as follows. Depending on whether we estimate probabilistically or determinately, different optimum groups of thermal units are obtained and the amount of emission from these groups also differ to some extent. For thermal unit’ faults, our practical method can estimate appropriately the optimum operation for almost all values of emission constraints.
机译:我们报告了一种最佳方法,该方法将系统负载视为概率变量,并考虑排放约束和超出排放约束的概率值。我们表明,当热量单位的输出被限制在上限和下限时,即使系统负载由正态分布表示,总热量输出的随机性也与此不同,并且总热量成本和排放不会变得简单曲线。通过简化方法,减少了故障状态的计算量。我们将我们的方法应用于模型电力系统,结果总结如下。根据我们是概率估计还是确定估计,获得了不同的最佳热单元组,并且这些组的排放量也有所不同。对于热力单元的故障,我们的实用方法可以针对几乎所有排放约束值适当估计最佳运行。

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