考虑 P2G-CCS 多集成能源微电网的分层低碳优化调度

Energies Pub Date : 2024-07-11 DOI:10.3390/en17143414
Zixuan Liu, Yao Gao, Tingyu Li, Ruijin Zhu, Dewen Kong, Hao Guo
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引用次数: 0

摘要

本文论述了在当前多园区综合能源微电网(IEMGs)的背景下,电转气(P2G)设备与碳捕集与封存(CCS)设备之间被忽视的相互作用,以及分步碳交易机制。此外,它还涉及碳交易系统下多园区综合能源微电网的经济和协调低碳运行问题。它提出了一种基于同步交替乘法(ADMM)算法的多园区 IEMG 低碳运行策略。该算法首先能够在多园区 IEMG 之间分配成本关系。然后,根据分级碳交易方案,采用将 CCS 装置与 P2G 装置相结合的方法,扩展了单一 IEMG 管理热能、电能和制冷能的模型。最后,模拟案例的比较证明,在用户总成本不变的情况下,所提出的策略大大降低了对外部能源的依赖,加入阶梯碳交易机制后,与外部电网的交互成本降低了 56.64%,燃气成本降低了 27.78%,碳排放成本降低了 29.54%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Considering the Tiered Low-Carbon Optimal Dispatching of Multi-Integrated Energy Microgrid with P2G-CCS
The paper addresses the overlooked interaction between power-to-gas (P2G) devices and carbon capture and storage (CCS) equipment, along with the stepwise carbon trading mechanism in the context of current multi-park integrated energy microgrids (IEMGs). Additionally, it covers the economic and coordinated low-carbon operation issues in multi-park IEMGs under the carbon trading system. It proposes a multi-park IEMG low-carbon operation strategy based on the synchronous Alternating Direction Method of Multipliers (ADMM) algorithm. The algorithm first enables the distribution of cost relationships among multi-park IEMGs. Then, using a method that combines a CCS device with a P2G unit in line with the tiered carbon trading scheme, it expands on the model of single IEMGs managing thermal, electrical, and refrigeration energy. Finally, the comparison of simulation cases proves that the proposed strategy significantly reduces the external energy dependence while keeping the total cost of the users unchanged, and the cost of interaction with the external grid is reduced by 56.64%, the gas cost is reduced by 27.78%, and the carbon emission cost is reduced by 29.54% by joining the stepped carbon trading mechanism.
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