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Cuckoo search algorithm for combined heat and power economic dispatch

机译:热电联合经济调度的布谷鸟搜索算法

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This paper proposes a cuckoo search algorithm (CSA) for solving for the combined heat and power economic dispatch (CHPED) problem considering valve point loading effects on fuel cost function of pure power generation units and electrical power losses in transmission systems. The main objective of the CHPED problem is to minimize the total fuel cost for producing electricity and heat supplying to a load demand. The proposed CSA method inspired from the reproduction behavior of cuckoo birds has attracted many researchers implementing to engineering optimization problems since it has showed several advantages of few control parameters, high solution quality and fast computational time. The effectiveness and robustness of the proposed CSA have been validated on five different systems including three systems with quadratic fuel cost function of pure power units neglecting transmission losses and two systems with nonconvex fuel cost function of pure power units. The result comparisons between the CSA method and other methods for the test systems have revealed that the CSA method can obtain higher quality solution with faster computational time than many other methods. Therefore, the proposed CSA method can be a very efficient method for solving the CHPED problem. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文提出了一种布谷鸟搜索算法(CSA),该方法考虑了阀点负载对纯发电单元的燃料成本函数和输电系统电力损耗的影响,解决了热电联产经济调度(CHPED)问题。 CHPED问题的主要目的是最大程度地减少用于生产电力和满足负荷需求的热量的总燃料成本。提出的CSA方法受杜鹃鸟的繁殖行为的启发,吸引了许多研究人员来解决工程优化问题,因为它具有控制参数少,求解质量高和计算时间短等优点。已在五种不同的系统上验证了所提出的CSA的有效性和鲁棒性,其中包括三个纯功率单元的燃料成本为二次函数而忽略了传输损失的系统和两个纯功率单元的燃料成本为非凸函数的系统。测试系统的CSA方法与其他方法之间的结果比较表明,与许多其他方法相比,CSA方法可以更快的计算时间获得更高质量的解决方案。因此,提出的CSA方法可能是解决CHPED问题的非常有效的方法。 (C)2016 Elsevier Ltd.保留所有权利。

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