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A Multi-objective Optimal Dispatch Microgrid Based on AHP and QPSO Algorithms

机译:基于AHP和QPSO算法的多目标最优调度微电网

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摘要

Due to the development of microgrids (MGs) and growing application of renewable energy resources, multi-objective optimal dispatch of MGs deserves more studies. Aiming at a standalone MG which is composed of wind turbines (WTs), photovoltaics (PVs), units of diesel engines (DEs), load and battery energy storage system (BESS), a multi-objective optimal dispatch model is developed. The economic cost, environmental concerns and power supply consistency are expressed by providing sub-objectives with varying priorities. Then, analytic hierarchy process (AHP) algorithm is employed to reasonably specify the weight coefficients of sub-objectives. Quantum particle swarm optimization (QPSO) algorithm is thereafter employed as a solution methodology to conduct the optimization for optimal dispatch of MG. Finally, the validity of the proposed model and solution methodology are confirmed by case studies.
机译:由于微电网(MGs)的发展和可再生能源资源的日益普及,MGs的多目标最优调度值得进一步研究。针对由风力发电机(WT),光伏发电(PV),柴油发动机(DE),负荷和电池储能系统(BESS)组成的独立MG,建立了多目标最优调度模型。通过提供具有不同优先级的子目标来表示经济成本,环境问题和电源供应的一致性。然后,采用层次分析法(AHP)算法合理地指定子目标的权重系数。此后,采用量子粒子群优化(QPSO)算法作为求解方法来进行MG优化调度的优化。最后,通过案例研究证实了所提出模型和求解方法的有效性。

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