论文标题
考虑到氨合成的有限灵活性,可再生能力的最佳尺寸和定价
Optimal Sizing and Pricing of Renewable Power to Ammonia Systems Considering the Limited Flexibility of Ammonia Synthesis
论文作者
论文摘要
将可再生能源转化为氨已被公认为是实现化学工业中``'绿色氢取代''的一种有希望的方法。但是,可再生能力(REPTA)需要对设施的必不可少的投资,以提供缓冲,以防止可再生能源的强大波动和氨合成的有限的氨气含量,并涉及三分之二的动力。 REPTA的尺寸和定价在平衡投资者的兴趣需求方面起着核心作用。然后,提出了一种两阶段分解的尺寸和定价方法,以解决计划,操作和交易的强大耦合以及信息差距决策理论(IGDT)方法,以处理可再生系统的实际数据,以处理实际的数据。 8.15%。
Converting renewable energy into ammonia has been recognized as a promising way to realize ``green hydrogen substitution" in the chemical industry. However, renewable power to ammonia (RePtA) requires an essential investment in facilities to provide a buffer against the strong volatility of renewable energy and the limited flexibility of ammonia synthesis, which involves the three main stakeholders, namely, power, hydrogen, and ammonia. Therefore, the sizing and pricing of RePtA play a core role in balancing the interest demands of investors. This paper proposes an optimal sizing and pricing method for RePtA system planning. First, power to ammonia (P2A) is modeled as a flexible load, especially considering the limited flexibility of ammonia synthesis, which has been verified using real dynamic regulation data. Second, the multi-investor economic (MIE) model is established considering both external and internal trading modes. Then, a two-stage decomposed sizing and pricing method is proposed to solve the problem caused by the strong coupling of planning, operation, and trading, and information gap decision theory (IGDT) method is utilized to handle the uncertainty of renewable generation. Finally, real data from a real-life system in Inner Mongolia are utilized to verify the proposed approach. The results show that the system proposed has a yield of 8.15%.