BUILDING AN ANALYTICAL MODEL OF LINE STABILITY DUYEN HAI 1 THERMAL POWER FACTORY CONNECTED TO THE 220 KV GRID IN THE MEKONG RIVER DELTA, VIETNAM

Tung Thanh Le, Hieu D. T. Phan, Tien Ngoc Nguyen
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Abstract

The stability assessment of the power system is one of the most important tasks in the design and operation of the power system. Stability is the ability of the system to recover to the initial state or close to the initial state after large disturbances to the initial state Duyen Hai 1 Thermal Power Plant belonging to Duyen Hai Power Center, consisting of two generating units, totaling two units, with a capacity of 1,245 MW, the output of electricity produced is about 7.8 billion kWh per year. The participation of Duyen Hai 1 Thermal Power Plant in the system has specific impacts on the stability of the system. Incidents that destabilize Duyen Hai 1 Thermal Power Plant can cause widespread power outages, leading to great economic losses. Therefore, the research team analyzes and evaluates the stability of Duyen Hai 1 Thermal Power Plant by using the standard theories of stability regarding rotor deflection angle, critical shear time, transient curves of mechanical quantities and power when agitation occurs, comparing the critical mode with the operating mode to conclude the possibility of stability.
建立与越南湄公河三角洲 220 千伏电网相连的 duyen hai 1 热电厂线路稳定性分析模型
电力系统的稳定性评估是电力系统设计和运行中最重要的任务之一。稳定性是指在初始状态受到较大扰动后,系统恢复到初始状态或接近初始状态的能力 杜延海电力中心下属的杜延海 1 热电厂由两台发电机组组成,共两台机组,发电能力为 1,245 兆瓦,每年发电量约为 78 亿千瓦时。Duyen Hai 1 号热电厂参与系统对系统的稳定性有具体影响。破坏 Duyen Hai 1 号热电厂稳定的事故会导致大面积停电,造成巨大的经济损失。因此,研究小组利用有关转子偏转角、临界剪切时间、搅拌时机械量和功率的瞬态曲线的标准稳定性理论,对杜彦海 1 号热电厂的稳定性进行分析和评估,并将临界模式与运行模式进行比较,以得出稳定性的可能性结论。
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