利用可再生分布式发电的微电力系统(微电网)增强电力系统的弹性

G. Kostenko, A. Zaporozhets
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摘要

电力部门在一个国家的经济运行和安全中起着至关重要的作用,与其他重要的基础设施密切相关,如天然气供应、供水、交通和电信。确保稳定的电力供应对于这些系统的不间断运行至关重要。增强电力系统弹性的一种方法是将本地网络与分布式可再生能源发电整合到整体能源基础设施中。微电网的灵活性、稳定性、可控性和自愈性使其成为提高电力系统弹性的有效解决方案。电网容易受到干扰和中断,可能导致消费者大规模停电。统计数据表明,大约90%的停电是由于配电系统的问题造成的,因此研究的重点是具有分布式可再生能源发电的局部微电网。本研究分析了具有可再生能源发电的微电网在提高电力系统弹性方面的作用。此外,总结了微电网在增强电力系统弹性方面的功能,如服务恢复、成网策略、控制与稳定以及预防措施。研究发现,通过实施各种战略,从应急响应规划到为快速响应军事、环境和人为危机提供可靠的能源供应,地方微电网具有增强电力系统弹性的巨大潜力。本地分布式发电、存储和控制的概念可以减少对远距离输电线路的依赖,减少网络的脆弱性,同时提高网络的弹性,缩短恢复时间。已经确定,增强电力系统弹性的最必要和最有希望的方法包括制定适当的监管框架,实施自动频率和功率控制系统,确保资源充足性(包括技术组件的保留),促进分布式发电,将储能系统集成到电网中,以及加强网络安全。关键词:弹性,局部电力系统,微电网,分布式发电,可再生能源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing of the power system resilience through the application of micro power systems (microgrid) with renewable distributed generation
The power sector plays a critical role in the functioning of the economy and the security of a country, being closely interconnected with other vital infrastructures, such as gas supply, water supply, transportation, and telecommunications. Ensuring a stable power supply is crucial for the uninterrupted operation of these systems. One way to enhance the resilience of the power system is by integrating local networks with distributed renewable generation into the overall energy infrastructure. The flexibility, stability, controllability, and self-healing capabilities of microgrids make them an effective solution for improving the resilience of the power system. The power grid is susceptible to disturbances and disruptions that can cause large-scale power outages for consumers. Statistical data indicates that approximately 90% of outages occur due to issues in the distribution system, thus research focuses on local microgrids with distributed renewable generation. This study analyzed the role of microgrids with renewable generation in enhancing the resilience of power systems. Additionally, functions of microgrids that contribute to enhancing power system resilience, such as service restoration, network formation strategies, control and stability, as well as preventive measures, were summarized. It was found that local microgrids have significant potential to enhance power system resilience through the implementation of various strategies, from emergency response planning to providing reliable energy supply for quick responses to military, environmental, and human-induced crises. The concept of local distributed energy generation, storage, and control can reduce reliance on long-distance power transmission lines, reduce network vulnerabilities, and simultaneously improve its resilience and reduce recovery time. It has been determined that the most necessary and promising approaches to enhance the resilience of the power system include developing appropriate regulatory frameworks, implementing automatic frequency and power control systems, ensuring resource adequacy (including the reservation of technical components), promoting distributed generation, integrating energy storage systems into the energy grid, and strengthening cyber security. Keywords: resilience, local power systems, MicroGrid, distributed generation, renewable energy sources.
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