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Optimal Siting of Phasor Measurement Units in National Transmission Network of Pakistan to Ensure Complete System Observability

机译:巴基斯坦国家传输网络中相量测量单位的最佳选址,以确保完整的系统可观察性

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As Electrical power system is moving very rapidly toward greener and more sustainable through the usage of Distributed Energy Resources (DERs), complexity and dynamic nature of power system is increasing at a same pace also, Thus to avoid any instability or faults that might occur, quick and real time monitoring of electrical power system is the need of the day. This can be achieved by the usage of Phasor Measurement Units (PMUs). PMU is a time-synchronized metering device that gives very fast and precise data of current and voltage phasors. However, due to their high infrastructure costs of placing, adequate planning for PMU placement is crucial so that the whole system can be observable and the cost of installation of PMUs can be reduced also. In this paper we present optimal PMU placement through Binary Integer Linear Programming (BILP). The simulations are carried out for normal conditions as well as N-1 contingencies. Furthermore, to solve Multiphase PMUs placement problem Multi Criteria Decision Making (MCDM) has been employed. The presented technique is applied on Pakistani Transmission Network as well as on IEEE 14 bus system. The results show that with less number of PMUs better observability of critical buses and lines can be achieved in Pakistani Transmission system as well as in IEEE test systems.
机译:由于电力系统通过使用分布式能源(DER)的使用非常迅速而更可持续,因此电力系统的复杂性和动态性质也以相同的速度增加,因此避免可能发生的任何不稳定性或故障,快速实时监控电力系统是当天的需求。这可以通过使用量相测量单元(PMU)来实现。 PMU是一个时间同步的计量装置,其提供了非常快速和精确的电流和电压相位的数据。然而,由于它们的基础设施高,适当规划PMU放置至关重要,因此可以观察到整个系统,并且也可以减少PMU的安装成本。在本文中,我们通过二进制整数线性编程(BILP)显示最佳的PMU放置。模拟用于正常条件以及N-1次次次次牙。此外,为了解决多相PMU PMU放置问题,采用多标准决策(MCDM)。呈现的技术应用于巴基斯坦传输网络以及IEEE 14总线系统。结果表明,在巴基斯坦传输系统以及IEEE测试系统中,可以实现少量PMU的临界公共汽车和线路的更好可观察性。

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