高渗透率可再生能源电力系统的双区自动发电控制

L. H. Lam, Le Khoa Nam, Nguyen Khac Tien Dung, Nguyen Huu Hieu
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摘要

目前,可再生能源(RES)正在逐步取代使用化石燃料的传统能源。在一些国家,如越南,可再生能源得到了大规模开发,并集中在一些关键地区。如果输电系统不能同步部署以释放这些新的可再生能源发电厂的发电能力,就会对电力系统造成负面影响。当今的一个重要挑战是如何在可再生能源输出功率具有高度不确定性的情况下确保电力系统的频率稳定。此外,在可再生能源为发电能力做出巨大贡献的时期,系统需要解决方案来防止输电线路过载。因此,本文为一个可再生能源渗透率较高的两区电力系统建立了一个自动发电控制(AGC)系统。该 AGC 系统模型旨在在可再生能源不可预测的变化中保持系统频率稳定,同时确保连接线路传输预定功率水平,以缓解频繁的拥塞。通过持续监测和调整系统频率,可有效缓解可再生能源固有变化带来的挑战。AGC 模型在 DIgSILENT PowerFactory 软件上进行了仿真,并通过 106 个总线系统进行了测试。模拟结果表明,AGC 系统运行有效,可确保频率恢复到额定值,并在发生可再生能源功率下降事件后保持连接线路的交换容量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Area Automatic Generation Control for Power Systems with Highly Penetrating Renewable Energy Sources
Currently, renewable energy sources (RESs) are gradually replacing traditional power sources that use fossil fuels. In some countries, such as Vietnam, RESs are developed on a massive scale and are concentrated in some key areas. This causes negative impacts on a power system when its transmission system is not deployed synchronously to release their capacity from these new renewable energy plants. An important challenge today is to ensure frequency stability in power systems with high uncertainty in RES output power. Additionally, the system requires solutions to prevent transmission line overloads during periods when RESs make a substantial contribution to the electricity generation capacity. Therefore, this paper builds an automatic generation control (AGC) system for a two-area power system with high penetration of RESs. This AGC system model aims to maintain system frequency stability amid unpredictable changes in RESs while also ensuring that tie-lines transmit the predetermined power levels to mitigate frequent congestion. By continuously monitoring and adjusting the system’s frequency, the challenges posed by the inherent variability of RESs can be effectively mitigated. The AGC model is simulated on DIgSILENT PowerFactory software and tested with a 106-bus system. The simulation results of this study show that the AGC system operates effectively, ensuring that the frequency returns to the rated value and maintaining the exchange capacity on the tie-lines after occurrences of RES power decrease events.
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