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可再生能源系统短期平衡对水电站的负担。

Burden on hydropower units for short-term balancing of renewable power systems.

机构信息

The State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan, 430072, China.

Division of Electricity, Department of Engineering Sciences, Uppsala University, SE-751 21, Uppsala, Sweden.

出版信息

Nat Commun. 2018 Jul 6;9(1):2633. doi: 10.1038/s41467-018-05060-4.

Abstract

There is a general need to change hydropower operational regimes to balance the growing contribution of variable renewable energy sources in power systems. Quantifying the burden on generation equipment is increasingly uncertain and difficult. Here, we propose a framework combining technical and economic indicators to analyze primary frequency control (PFC) on a timescale of seconds. We develop a model integrating hydraulic, mechanical, and electrical subsystems to characterize efficiency loss, wear and fatigue, regulation mileage, and frequency quality. We evaluate burden relief strategies under three idealized remuneration schemes for PFC, inspired by those used in Sweden, the USA, and China, respectively. We show how burden and compensation vary under future scenarios of renewable power systems. Our framework can be used by producers to develop favorable operation strategies that reduce burden and increase economic value, and by transmission system operators to provide insights on the relation between incentive structures and regulating performance.

摘要

需要改变水电运行方式,以平衡电力系统中不断增长的可变可再生能源的贡献。量化对发电设备的负担越来越不确定和困难。在这里,我们提出了一个结合技术和经济指标的框架,在几秒钟的时间尺度上分析一次频率控制(PFC)。我们开发了一个模型,集成了水力、机械和电气子系统,以描述效率损失、磨损和疲劳、调节里程和频率质量。我们根据瑞典、美国和中国分别使用的三种理想的 PFC 报酬方案,评估了 PFC 的缓解策略。我们展示了在可再生能源系统的未来场景下,负担和补偿是如何变化的。我们的框架可以供生产者用来制定有利的运行策略,以减少负担和增加经济价值,也可以供输电系统运营商提供关于激励结构和调节性能之间关系的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68ed/6035178/f1186bd4a245/41467_2018_5060_Fig1_HTML.jpg

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