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Scenario-based multi-objective optimisation with loadability in islanded microgrids considering load and renewable generation uncertainties

机译:基于场景的多目标优化,岛屿微电网中的可加载性考虑负载和可再生生成不确定性

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Operation of microgrids in islanded mode either by intention or by involuntary action is of increasing concern nowadays. Optimal operation and control of such islanded microgrids considering various objectives are crucial for effective planning problem. This work proposes a new methodology for optimal operation of islanded microgrids considering economic and emission objectives together with loadability in droop-regulated islanded microgrid. Loadability being one of dominant aspects to be considered for effective microgrid planning and operation to ensure increased voltage-stability margin in the entire due course of operation. In conjunction with that islanded microgrid operational constraints and uncertainty in various system parameters need to be considered to interpret real-time operation of the microgrid. In the light of above, a multi-objective optimisation problem in droop-regulated islanded microgrid is formulated with economic-emission-loadability objectives by considering uncertainties in load demand and renewable generation along with system constraints. The formulated problem is solved using multi-objective antlion optimiser algorithm and validated on the test system. The performance of the proposed approach is compared with other optimisation algorithms to show its effectiveness. The importance of considering loadability along with economic-emission objectives to achieve compromised solution resulted in ensuring better operational planning of droop-regulated islanded microgrids.
机译:通过意图或非自愿行动的岛屿模式在岛屿模式中的操作是越来越多的。考虑各种目标的这种孤岛微电网的最佳运行和控制对于有效的规划问题至关重要。这项工作提出了一种新的方法,用于考虑经济和排放目标的孤岛微电网的最佳运作,以及下垂监管岛状微电网的可加载性。可负载性是用于有效微电网规划和操作的主导方面之一,以确保整个适当的操作过程中增加电压稳定性余量。结合该岛状的微电网运行约束和各种系统参数的不确定性,需要考虑解释微电网的实时操作。鉴于上述,通过考虑负载需求和可再生生成的不确定性以及系统限制,通过经济排放的岛状微电网中的多目标优化问题。使用多目标抗线优化器算法解决了配制的问题并在测试系统上验证。将所提出的方法的性能与其他优化算法进行比较,以显示其有效性。考虑可加载性以及经济排放目标以实现受损的解决方案的重要性导致确保了下垂监管岛微电网的更好运营规划。

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