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A Sustainability-Oriented Multiobjective Optimization Model for Siting and Sizing Distributed Generation Plants in Distribution Systems

机译:面向分布式系统选址和规模化的面向可持续发展的多目标优化模型

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摘要

This paper proposes a sustainability-oriented multiobjective optimization model for siting and sizing DG plants in distribution systems. Life cycle exergy (LCE) is used as a unified indicator of the entire system's environmental sustainability, and it is optimized as an objective function in the model. Other two objective functions include economic cost and expected power loss. Chance constraints are used to control the operation risks caused by the uncertain power loads and renewable energies. A semilinearized simulation method is proposed and combined with the Latin hypercube sampling (LHS) method to improve the efficiency of probabilistic load flow (PLF) analysis which is repeatedly performed to verify the chance constraints. A numerical study based on the modified IEEE 33-node system is performed to verify the proposed method. Numerical results show that the proposed semilinearized simulation method reduces about 93.3% of the calculation time of PLF analysis and guarantees satisfying accuracy. The results also indicate that benefits for environmental sustainability of using DG plants can be effectively reflected by the proposed model which helps the planner to make rational decision towards sustainable development of the distribution system.
机译:本文提出了一种面向可持续发展的多目标优化模型,用于分配系统中DG工厂的选址和规模确定。生命周期能用(LCE)用作整个系统环境可持续性的统一指标,并且已作为模型中的目标函数进行了优化。其他两个目标函数包括经济成本和预期功率损耗。机会约束用于控制不确定的电力负荷和可再生能源所带来的操作风险。提出了一种半线性仿真方法,并将其与拉丁超立方体抽样(LHS)方法结合使用,以提高概率潮流(PLF)分析的效率,该方法可反复执行以验证机会约束。进行了基于改进的IEEE 33节点系统的数值研究,以验证所提出的方法。数值结果表明,所提出的半线性仿真方法减少了PLF分析的计算时间约93.3%,并保证了令人满意的精度。结果还表明,建议的模型可以有效地反映使用DG工厂对环境可持续性的好处,该模型有助于计划者为分配系统的可持续发展做出合理的决策。

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  • 来源
    《Mathematical Problems in Engineering》 |2013年第6期|291930.1-291930.11|共11页
  • 作者单位

    College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China;

    School of Environment, Beijing Normal University, Beijing 100875, China;

    College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China;

    College of Electrical Engineering, Zhejiang University, Hangzhou 310027, China;

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