混合电力系统暂态稳定评估中临界清除时间的确定

Shaikh Rashedur Rahman, Muhammad Ahad Rahman Miah, Zulkar nain Tarif, Mst. Jasmin Akter Jyoty
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引用次数: 1

摘要

电力系统的混合布置由于其对传统强度电网的可持续组合而日益受到人们的关注。使用可再生能源的混合动力系统可以提供效能、可靠性和安全性,同时降低运营成本。即使在执行了详细的解决方案之后,它对分析人员也是有利的。如果预期清除时间的详细稳定情况不稳定,则临界清除时间表示实现稳定所需的改进。本文对混合电力系统进行了综述,并对暂态稳定评估中的临界清除时间进行了综合分析。为了详细分析,本文采用了IEEE 30总线测试电源系统,并对其进行了修订。改进的混合电力系统以风力发电机组、带储能机制的太阳能光伏发电阵列和传统柴油发电机组为主体,研究暂态稳定评估的临界清除时间。在ETAP仿真软件中对风力-太阳能-柴油混合功率电力系统进行了仿真。在各种情况下,考虑了三相故障后电机转子角度的变化,并给出了详细的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Determining Critical Clearing Time in Transient Stability Assessment for Hybrid Power System
The hybrid arrangement of the power system is becoming famous in the latest days on account of its gain of sustainable combination to the classical strength grid. Hybrid power systems with renewable sources can provide potency, reliability, and security while reducing operational costs. It is advantageous to the analyst, even after a detailed solution has been performed. If the detailed stability case at the expected clearing time is unstable, the critical clearing time indicates the improvement necessary to achieve stability. A review of the hybrid power system and a comprehensive analysis of critical clearing time in transient stability assessment are performed and presented here. For elaborated analysis, IEEE 30 bus test power system has been adopted and revised for this distinct study. The modified hybrid power system subsist of the wind turbine, solar PV array with the energy storage mechanism and conventional diesel generators to study the critical clearing time for the transient stability assessment. The hybrid wind-solar-diesel wattage power system was sculptured in ETAP simulation software. The alteration in rotor angle of the machines after a three-phase fault is considered for various cases and the details investigation are presented here.
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