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Integrated resource planning for a meshed distribution network under uncertainty

机译:不确定性下网状配送网络的综合资源规划

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Planning of renewable energy based distributed generators (DG) is to be done with utmost care because of the uncertain nature of their outputs. In this paper, a multi-objective PSO based solution methodology for the DG planning problem is proposed taking into account the concerns of the grid operators, distribution network operators and the end consumers. Load shifting along with time of use pricing is the strategy adopted for performing demand side management, thereby reducing the discomfort level and the electricity bill of the customers. DG planning is done for solar and wind based sources along with demand side management in order to minimize the system real power loss, improve voltage profile, increase reliability and reduce the expenses of the distribution network operator. Reliability is evaluated using encoded Markov cut set algorithm considering the failure rates, adequacy transition rates, mechanical failures, and starting and switching probability of the DG. The test network considered is the 102 node meshed distribution network connected to Bus 4 of the Roy Billinton test system. Results prove that load shifting along with dynamic pricing can be used as a viable option to reduce the operational expenses of the network operator.
机译:由于其输出的不确定性质,可以使用最大的护理来完成可再生能源的分布式发电机(DG)的规划。在本文中,建议考虑到网格运营商,分销网络运营商和最终消费者的关注,提出了一种用于DG计划问题的多目标PSO的解决方法。负载转移以及使用时间定价是用于执行需求侧管理的策略,从而减少了客户的不适水平和电费。 DG规划是针对太阳能和风力的源以及需求侧管理完成的,以便最大限度地减少系统实际功率损耗,提高电压曲线,提高可靠性并降低配电网络运营商的费用。考虑故障率,充足的转换速率,机械故障和DG的启动和切换概率,使用编码的Markov Cut集合算法评估可靠性。考虑的测试网络是连接到Roy Billinton测试系统的总线4的102节点网格分配网络。结果证明了负载转换以及动态定价可以用作可行的选择,以减少网络运营商的操作费用。

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