求解电力调度问题的分解/聚合方法

M. Mansor, M. Irving, G. Taylor
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引用次数: 7

摘要

本文提出了一种利用分解/聚合方法求解大量发电机组经济调度问题的新方法。用MATLAB编程语言编写了一个程序来演示该算法。采用5总线测试系统和IEEE 26总线测试系统作为演示系统。每个测试系统都被分解成小区域,并使用进化规划(EP)技术求解每个区域的经济调度(局部)。确保每个区域至少包含一个发电机组和一个供电负荷。EP将最小化每个区域的目标函数,从而最小化本地运行成本,包括每个区域实际功率损耗的影响。每个区域的优化问题可视为分解方案的子问题。随后,来自这些领域的解决方案被组合(聚合)以解决整个系统问题。将使用分解/聚合方法获得的结果与使用集中式EP方法解决ED问题时得到的结果以及通过解决(非最优)负载流得到的基本情况结果进行比较。研究结果表明,应用聚合方法解决发电机组数量较多的电力系统经济调度问题是一种很有前途的方法。
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A decomposition/aggregation method for solving electrical power dispatch problems
This paper presents a new approach to solving the Economic Dispatch (ED) Problem for a large number of generators using a decomposition/aggregation method. A program has been developed to demonstrate the algorithm using the MATLAB programming language. A 5-bus test system and the IEEE 26-bus test system are used as demonstration systems. Each test system is decomposed into small areas and each area has been solved for Economic Dispatch (locally) using an Evolutionary Programming (EP) technique. It was ensured that each area contains at least one generating unit and one supplied load. The EP will minimise the objective funtion for each area, minimising the local operating cost including the effects of real power losses in each area. The optimisation problem for each area can be regarded as a sub-problem of the decomposition scheme. Subsequently, the solutions from the areas are combined (aggregated) to solve the overall system problem. The results obtained using the decomposition/aggregation method are compared with the results found when the ED Problem was solved using a centralised EP approach and the base-case results found from solving a (non-optimal) load flow. It was found that applying the aggregation method is a prospective approach for solving economic dispatch problems with a large numbers of generators in a power system.
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