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Multi-objective based Adaptive Immune Algorithm for Solving the Economic and Environmental Dispatch Problem

机译:基于多目标的自适应免疫算法,用于解决经济和环境派出问题

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This paper proposes a new multi-objective based adaptive immune algorithm for solving the combined economic and environmental dispatch problem. Economic dispatch problem deals with the minimization of fuel cost while satisfying a set of equality and inequality constraints. The fossil fuel plants pollute the environment by emitting some toxic gases. Therefore, the traditional minimization of cost objective cannot be the only basis for the generation dispatch, but the emission minimization must also be taken be taken into the account. The objective of combined economic and emission dispatch problem is to optimize simultaneously the generation cost and emission level while satisfying system load and operational constraints. The inequality constraints due to ramp rate limits are included by combining with generation limits constraints and hence converted in to single inequality constraint. For a prohibited operating zone, the unit is made only to operate above or below the zone. In this paper, a heuristic algorithm is developed to adjust the generation output of a unit to avoid unit operation in the prohibited zones. Finally, the proposed multi-objective based adaptive immune algorithm has been applied on a standard IEEE 30 bus system. The simulation results demonstrate the effectiveness of the proposed algorithm in solving the economic and emission dispatch problem.
机译:本文提出了一种新的基于多目标的自适应免疫算法,用于解决综合经济和环境派出问题。经济派遣问题处理燃料成本的最小化,同时满足一系列平等和不平等约束。化石燃料厂通过发出一些有毒气体来污染环境。因此,传统的成本目标最小化不能是发电派遣的唯一依据,但也必须将发射最小化纳入账户。合并经济和排放派遣问题的目的是同时优化生成成本和排放水平,同时满足系统负载和操作约束。通过与生成限制约束组合来包括由于斜坡率限制而导致的不等式约束,从而转换为单个不等式约束。对于禁止的操作区,该装置仅在区域以上或下方操作。在本文中,开发了一种启发式算法来调整单位的发电输出,以避免禁止区域中的单元操作。最后,已经在标准IEEE 30总线系统上应用了所提出的多目标的自适应免疫算法。仿真结果证明了所提出的算法解决经济和排放派遣问题的有效性。

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