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A New Optimal Algorithm for Multi-objective Short-Term Fixed Head Hydrothermal Scheduling with Emission Control Consideration

机译:一种新的发射控制考虑多目标短期固定头水热调度的新优化算法

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With the purpose of environment protection, polluted emissions should be considered as an additional criteria, besides the fuel cost objective, to implement the optimal operation of hydrothermal power systems which are included thermal and hydro power plants. This paper proposes a novel cuckoo search algorithm (NCSA), developed from cuckoo-inspired optimization algorithm, to solve the multi-objective short-term fixed-head hydrothermal scheduling (HTS) problem which considers both fuel cost objective and emission cost objectives. In the proposed approach, there are two modifications, merging the exploration and exploitation phases and setting one rank parameter to handle the inequality constraints, to improve the convergence rate and the performance of NCSA. To verify its performance, some test systems with the quadratic fuel cost function of thermal units accompanied with emission objective functions have been implemented. The results have revealed that the NCSA method is a very promising method for solving the multi-objective short-term fixed-head HTS problem.
机译:除了环境保护的目的,除了燃料成本目标之外,应将污染排放视为额外的标准,实现包括热和水力发电厂的热热动力系统的最佳运行。本文提出了一种新颖的杜鹃搜索算法(NCSA),从Cuckoo启发的优化算法开发,解决了燃料成本目标和发射成本目标的多目标短期固定头水热调度(HTS)问题。在所提出的方法中,有两个修改,合并探索和开发阶段并设置一个等级参数来处理不等式约束,以提高收敛速度和NCSA的性能。为了验证其性能,已经实施了一些具有二次燃料成本函数的热单元伴随发射目标函数的测试系统。结果表明,NCSA方法是解决多目标短期固定头HTS问题的非常有希望的方法。

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