对现代电网频率调节的风能集成和储能技术进行全面审查
Farhan Ullah1, Xuexia Zhang1, Mansoor Khan2
1School of Electrical Engineering, Southwest Jiaotong University, Chengdu, 611756, PR China.
Heliyon
|May 17, 2024
概括
将风力发电与储能系统 (ESS) 整合起来,对于电网稳定性和频率调节至关重要. 本研究分析了挑战,控制技术和新兴的ESS,以加强风电整合.
科学领域:
- 电气工程 电气工程
- 可再生能源系统可再生能源系统
- 电力系统分析 分析 分析
背景情况:
- 现代电力系统面临的挑战是由于增加了可再生能源的整合,导致低惯性和不可预测的生成/负载行为.
- 在这些快速转变中,频率调节 (FR) 对于保持电网稳定至关重要.
- 储能系统 (ESS) 提供了可适应的解决方案,以提高电力系统的可控性,特别是在风力发电场.
研究的目的:
- 提供对风力发电透率高的电力系统中关键频率稳定性挑战的最新分析.
- 检查频率调节的最新控制技术.
- 调查风电整合的障碍,并探索新兴ESS的作用.
主要方法:
- 审查和分析有关频率稳定挑战的当前文献.
- 检查ESS在风力发电应用中的先进控制策略.
- 调查阻碍可再生能源整合的障碍.
主要成果:
- 确定了与高风力发电透相关的关键频率稳定性挑战.
- 评估了ESS在频率调节中的各种控制技术的有效性.
- 突出了新兴的ESS技术及其对电网支持的潜在好处.
结论:
- 欧洲风能系统对于提高具有重要风能功率的电力系统的频率调节和电网稳定性至关重要.
- 解决整合障碍和利用新兴ESS技术是未来可再生能源采用的关键.
- 需要进一步的研究来优化ESS在动态动力系统中的频率调节的利用.
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