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Operationally Constrained Optimal Dispatch of Multiple Pulsed Loads in an Isolated Microgrid

机译:隔离微电网中多个脉冲负载的运行约束最优分配

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Some isolated microgrids supply electricity for multiple pulsed loads, which consume tremendous energy in a short period. Usually, it is hard for an isolated microgrid to maintain stable when serving many pulsed loads directly and randomly. This paper proposes a novel energy supply strategy under some operational constraints in a single-bus microgrid from load perspective. Firstly, the charging circuit with supercapacitors before pulsed loads is presented. Then, an optimization model is introduced, which maximizes the power supply utility in a specified period by adjusting the charging process of energy storage system. Furthermore, three kinds of operational constraints are considered: the upper and lower bounds of times for pulsed loads supply, the non-constant upper bound of total charging power, and the completeness of charging process. Particle swarm optimization algorithm is used to find an optimal strategy. A case with 8 pulsed loads shows the efficacy of the proposed model and algorithm.
机译:一些隔离的微电网为多个脉冲负载供电,这些负载在短时间内消耗大量能量。通常,当直接和随机地服务许多脉冲负载时,隔离的微电网很难保持稳定。从负载的角度出发,本文提出了一种在单总线微电网中某些运行约束下的新型能源供应策略。首先,介绍了在脉冲负载之前具有超级电容器的充电电路。然后,引入了一个优化模型,该模型通过调整储能系统的充电过程,在指定时期内最大化了供电效用。此外,考虑了三种操作约束:脉冲负载供电时间的上限和下限,总充电功率的上限不恒定以及充电过程的完整性。粒子群优化算法用于寻找最优策略。脉冲负载为8的情况表明了所提出的模型和算法的有效性。

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