← 返回
一种基于可调度区域引导的自适应模式切换调控方法用于可再生能源制氨虚拟电厂
A Dispatchable Region-Guided Adaptive Mode-Switching Regulation for Renewable Power to Ammonia Virtual Power Plants
| 作者 | Sirui Wu · Jiarong Li · Jin Lin · Feng Liu · Yiwei Qiu · Yonghua Song |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2024年6月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可再生电力制氨 虚拟电厂 氨合成反应器 调度区域 自适应模式切换调节 |
语言:
中文摘要
可再生能源制氨(RePtA)虚拟电厂(VPP)正受到全球关注。然而,可再生能源的波动性及预测误差的随机性给氢气与电力平衡带来挑战。若仅考虑合成氨反应器(ASR)在30%–100%负荷范围内的常规运行模式,将导致频繁购售电,降低经济性。为此,本文引入ASR的待机与过载两种临时运行模式以提升系统灵活性,并分析RePtA VPP的多阶段可调度区域(DR),提出DR引导的自适应模式切换调控策略。该策略有效降低电价成本并避免模式切换过度响应。基于中国东北实际项目的案例研究表明,相比无模式切换场景,购电量和售电量分别减少59.8%和67.7%,且相较于 bang-bang 控制,ASR进入待机模式的频率降低62.8%。
English Abstract
Renewable Power to Ammonia (RePtA) Virtual Power Plants (VPPs) are garnering global interest. However, the variability of renewable energy and the stochastic nature of forecast errors pose significant challenges in maintaining hydrogen and power balance. If we only consider the load range of 30%–100% for the Ammonia Synthesis Reactor (ASR) in normal mode, it will lead to excessive electricity trading with the power grid, thereby significantly reducing economic efficiency. Hence, we introduce two temporary operating modes for the ASR to improve the RePtA VPP's flexibility: standby and overloading. These modes are beneficial in addressing hydrogen and power imbalances, especially when hydrogen stocks are depleted or oversupplied. Furthermore, we analyze the multi-stage dispatchable regions (DRs) for the RePtA VPP and develop a DR-guided adaptive mode-switching regulation. This DR-guided strategy aids in reducing electricity costs and avoids overreaction in mode-switching. Our case studies based on an actual project in northeast China indicate that this strategy notably reduced electricity purchases and sales by 59.8% and 67.7% compared to scenarios without mode-switching. Moreover, it effectively decreased the frequency of ASR transitions to standby mode by 62.8% compared to the bang-bang control method.
S
SunView 深度解读
该可再生能源制氨VPP的自适应调控技术对阳光电源PowerTitan储能系统和ST系列储能变流器具有重要应用价值。文章提出的多阶段可调度区域分析方法可直接应用于储能系统的能量管理策略,通过引入待机和过载模式提升系统灵活性,与阳光电源储能系统的多模式运行控制理念高度契合。该策略有效减少59.8%购电量和62.8%模式切换频率,可优化储能系统在新型电力系统中的经济调度性能。特别是DR引导的自适应切换算法可融入iSolarCloud云平台的智能调度模块,提升光储氢耦合场景下的预测性控制能力,为阳光电源拓展绿氢制氨等新兴业务提供技术支撑。