Solving Economic Load Dispatch problem with valve loading effect using adaptive real coded quantum-inspired evolutionary algorithm

Deepika Joshi, Anjali Jain, Ashish Mani
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引用次数: 4

Abstract

Economical dispatch of power is a significant real time optimization problem in the operation of power system, which allocates the loads on the committed generating units to reduce the generation cost, while meeting all the inequality and equality constraints. Traditionally, economic load dispatch problems have been formulated as convex optimization problem and various classical methods such as gradient methods, base-point participation factor method, etc. have been used for solving them. The traditional formulation is a quadratic input-output curve or piece wise linear cost curve, which are continuous and convex, however, real generating units have valve loading effects, which make the cost curve discontinuous and non-convex and hence the economic dispatch problem is no longer simple to handle. Thus, the classical methods cannot be employed for non-convex problems. The non-convex, non-linear and discontinuous economic dispatch (ED) problem can be better solved by metaheuristic approaches. Such approaches often require tuning of their respective evolutionary parameters. Although, solution to such type of problem have already been solved by different metaheuristic optimization techniques in previous studies as well, however, the algorithm employed in this paper to solve Power Economic Load Dispatch (PELD) problem is adaptive real coded quantum-inspired evolutionary algorithm, which does not require tuning of evolutionary parameters and performs better than some of the existing techniques on standard 6-bus 3 machine system and IEEE 14 bus 5 unit system.
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用自适应实数编码量子进化算法求解阀负载效应下的经济负荷调度问题
电力经济调度是电力系统运行中的一个重要的实时优化问题,它在满足所有不等式和不等式约束的情况下,将负荷分配到承诺发电机组上,以降低发电成本。传统上,经济负荷调度问题被表述为凸优化问题,并采用梯度法、基点参与因子法等各种经典方法求解。传统的经济调度公式是连续和凸的二次投入产出曲线或分段线性成本曲线,而实际发电机组存在阀负载效应,使得成本曲线不连续和非凸,经济调度问题不再简单处理。因此,经典方法不能用于非凸问题。采用元启发式方法可以较好地解决非凸、非线性和不连续的经济调度问题。这种方法通常需要调整各自的演化参数。虽然在以往的研究中,已有不同的元启发式优化技术解决了这类问题,但本文所采用的解决电力经济负荷调度(PELD)问题的算法是自适应实编码量子启发进化算法,该算法不需要调整进化参数,并且优于标准6总线3机系统和IEEE 14总线5单元系统上现有的一些技术。
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