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Generation Dispatch under Large Penetration of Wind Power Considering Emission and Economy

机译:考虑排放和经济的大风电渗透下的发电调度

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With increasing concern of environmental protection, renewable energy sources especially wind power are widely applied as a mean to reach emission reduction. Although wind generation does not produce harmful emissions, its effect on the generation dispatch of conventional plants can actually cause an increase of emission especially during low and middle power demand period. A multi-objective generation dispatch that considering environment and fuel cost under large penetration of wind power was proposed. An efficient encoding/decoding scheme is applied that could effectively prevent obtaining infeasible solutions through the application of stochastic search methods, thereby dramatically improving search efficiency and solution quality. The nonlinear characteristics of power generators, and their operational constraints, such as generation limitations, ramp rate limits, prohibited operating zones, and transmission loss could be considered for practical operation. The effectiveness and feasibility of the proposed approach were demonstrated by IEEE 30-bus test system study. The experiment showed encouraging results, suggesting that the proposed approach was capable of providing higher quality and wilder range of pareto-optimal solutions such that the decision makers can have a more flexible and reasonable choice.
机译:随着环境保护的日益关注,可再生能源,特别是风能被广泛地应用以达到减少排放的目的。尽管风力发电不会产生有害排放物,但它对常规电厂的发电调度的影响实际上会导致排放物增加,尤其是在中低功率需求时期。提出了一种多目标发电调度,其中考虑了大风能渗透下的环境和燃料成本。应用一种有效的编码/解码方案,该方案可以有效地防止通过应用随机搜索方法获得不可行的解决方案,从而显着提高搜索效率和解决方案质量。发电机的非线性特性及其运行限制,例如发电限制,斜坡率限制,禁止的运行区域和传输损耗,可以在实际运行中考虑。 IEEE 30总线测试系统研究证明了该方法的有效性和可行性。实验显示出令人鼓舞的结果,表明所提出的方法能够提供更高质量和更广泛的pareto-optimum解决方案,从而使决策者可以有一个更加灵活和合理的选择。

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