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Short-term Combined Economic Emission Scheduling Of Hydrothermal Power Systems With Cascaded Reservoirs Using Differential Evolution

机译:基于差分进化的梯级水库水火发电系统短期联合经济排放调度

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A reliable algorithm based on differential evolution (DE) for solving short-term combined economic emission scheduling of hydrothermal systems with several equality and non-equality constraints is presented in this paper. The water transport delay between connected reservoirs is also considered. The problem is formulated considering both cost and emission as competing objectives. Combined economic emission scheduling (CEES) is a bi-objective problem. A price penalty factor approach is utilized here to convert this bi-objective CEES problem into a single objective one. The effect of valve point loading is also taken into account in the present problem formulation. The effectiveness of the proposed method is tested on a sample test system consisting of four cascaded hydro units and three thermal units. The results of the proposed technique based on DE are compared with other population based method. It is found that the results obtained by the proposed technique are superior in terms of fuel cost, emission output. It is also observed that the computation time is considerably reduced by the application of the proposed technique based on differential evolution.
机译:提出了一种基于差分演化(DE)的可靠算法,用于求解具有多个相等和非相等约束的热液系统的短期组合经济排放调度。还考虑了相连水库之间的水运延迟。提出问题时将成本和排放都作为竞争目标。组合经济排放调度(CEES)是一个双目标问题。这里使用价格惩罚因子方法将这个双目标CEES问题转换为一个单一目标问题。在当前的问题公式中也考虑了阀点负载的影响。该方法的有效性在由四个级联水力单元和三个热力单元组成的样本测试系统上进行了测试。将所提出的基于DE的技术的结果与其他基于人口的方法进行比较。发现通过所提出的技术获得的结果在燃料成本,排放输出方面是优异的。还观察到,通过应用基于差分进化的所提出的技术,计算时间显着减少。

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