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首页> 外文期刊>Smart Grid, IEEE Transactions on >Tertiary Controller-Based Optimal Voltage and Frequency Management Technique for Multi-Microgrid Systems of Large Remote Towns
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Tertiary Controller-Based Optimal Voltage and Frequency Management Technique for Multi-Microgrid Systems of Large Remote Towns

机译:大型偏远城镇多微电网系统中基于第三级控制器的最佳电压和频率管理技术

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摘要

A voltage-frequency management technique is proposed in this paper to retain these quantities within acceptable limits in remote islanded microgrids (MGs). The proposed technique gets activated when existing techniques that control the energy storages or adjust the set-points of generators are not successful. This technique aims to provide external support to an overloaded MG or the one with excessive renewable generation by coupling it to one or more suitable neighboring islanded MGs at the lowest cost. The selected neighboring MGs should have enough unused generation capacity or available loading capacity to support the overloaded or over-generating ones. The technique finds an optimal mixture of demand response (load decrease or increase), energy storage charging and discharging, and renewable curtailment as the other auxiliary options. It is based on a modified version of particle swarm optimization with a suitable convergence for near real-time applications. An objective function which considers different technical, operational, and environmental aspects is formulated, and the required constraints are highlighted. Several simulation studies are also presented to validate its performance.
机译:本文提出了一种电压-频率管理技术,以将这些数量保持在远程孤岛微电网(MGs)的可接受范围内。当控制能量存储或调节发电机设定点的现有技术不成功时,所提出的技术就会被激活。该技术旨在通过以最低的成本将过载的MG耦合到一个或多个合适的相邻孤岛MG上,为过载的MG或具有过多可再生能源的MG提供外部支持。所选的相邻MG应该具有足够的未使用发电容量或可用负载容量,以支持过载或过发电的MG。该技术找到了需求响应(负载减少或增加),储能充放电和可再生能源缩减的最佳组合,作为其他辅助选择。它基于粒子群优化的修改版本,具有适合近实时应用的合适收敛性。制定了考虑不同技术,运营和环境方面的目标功能,并突出了所需的约束条件。还提出了一些仿真研究来验证其性能。

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