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Minimum emissions optimal power flow in wind-thermal power system using Opposition based Bacterial Dynamics algorithm

机译:基于对立的细菌动力学算法的风火电系统最小排放最优潮流

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This paper solves an optimal power flow problem to minimize the emission due to carbon oxides, nitrogen oxides and sulfur oxides with cost as a constraint for a wind-thermal power system. Wind energy can reach significant penetration in modern power system and the wind power will introduce additional uncertainties. Market price is mainly influenced by the generating fuel cost, as the wind power being environmental friendly need to be utilized in optimum. But, the intermittency of wind power affects the system operation. In such uncertain environment, the decision to be taken should be reasonable, economical and not risky. Under this regime the System Operator should be aware of wind uncertainty and schedule wind power accordingly. This paper shows the trade-off between cost and emission minimization objectives for the wind-thermal power system using the Opposition based Bacterial Dynamics algorithm. The proposed approach is implemented on IEEE 30 bus system with wind farms located at different buses.
机译:本文解决了一个最优的潮流问题,以最大限度地减少由于碳氧化物,氮氧化物和硫氧化物引起的排放,而成本则限制了风力发电系统的运行。风能可以在现代电力系统中达到很大的渗透率,并且风能将带来更多的不确定性。市场价格主要受发电燃料成本的影响,因为需要最优化地利用对环境友好的风能。但是,风力的间歇性会影响系统的运行。在这种不确定的环境中,要做出的决定应该是合理,经济且无风险的。在这种情况下,系统操作员应意识到风的不确定性,并据此安排风能。本文使用基于对立的细菌动力学算法显示了风火电系统成本与排放最小化目标之间的权衡。所提出的方法在风电场位于不同总线上的IEEE 30总线系统上实现。

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