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An Appropriate Distributed Generation Sizing Considering Recloser-Fuse Coordination

机译:考虑重熔器-熔丝协调的合适的分布式发电规模

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Among various applications, this paper has applied Distributed Generation (DG) as backup generation when main generation supply is cut due to system equipment failure and protection operation. As backup generation, DG can certainly increase the system reliability, especially in radial distribution system, if the related concerns are deliberately taken into account. The reliability improvement can be obtained in term of the reduction of outage duration. Regarding the influential issues, protection coordination between recloser and fuses has been taken into account. This is a key factor to determine the appropriate DG size. With this consideration, the existing protection scheme of recloser and fuse can be maintained while DG has been installed. In addition, forced outage rate (FOR) of DG is included in the study. The appropriate size of DG is calculated from Optimal Power Flow (OPF) that treats DG as another electric source in addition to utility substation. In this study, the cost function is the total electricity cost from both utility substation and DG including the outage cost from the energy not supplied (ENS). The proposed algorithm has been applied to RBTS-Bus 2, a reliability test system for electric distribution study. Simulation results confirm that the proposed algorithm provides an appropriate DG size that cope with the aforementioned concern of DG - protection coordination.
机译:在各种应用中,当由于系统设备故障和保护操作而切断主电源时,本文将分布式发电(DG)用作备用发电。作为后备发电,DG一定可以提高系统的可靠性,尤其是在放射配电系统中,如果有意考虑相关问题的话。可以通过减少中断时间来提高可靠性。关于影响因素,已经考虑了重合闸和保险丝之间的保护协调。这是确定适当DG大小的关键因素。考虑到这一点,在安装了DG的情况下,可以保持现有的重合闸和保险丝保护方案。此外,DG的强制中断率(FOR)也包括在研究中。 DG的适当大小是根据最佳功率流(OPF)计算得出的,该功率将DG作为公用变电站之外的另一种电源。在这项研究中,成本函数是公用变电站和DG的总电力成本,包括未供应能源(ENS)的停电成本。所提出的算法已应用于RBTS-Bus 2,这是一种用于配电研究的可靠性测试系统。仿真结果证实,该算法提供了合适的DG大小,可以解决上述DG保护协调问题。

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