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Long-term economic planning of combined cooling heating and power systems considering energy storage and demand response

机译:考虑能量储存和需求响应的长期经济规划组合冷却加热和电力系统

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摘要

Combined cooling, heating, and power (CCHP) systems have become a promising solution for energy conservation and emission reduction. The role of energy storage and demand response has recently received an increasing interest in CCHP systems. This paper addresses the long-term economic planning of a renewable CCHP system considering energy storage and demand response. A case study of a small town in Tianjin, China is used for demonstration. Four scenarios are analyzed to showcase the impact of energy storage and demand response on CCHP long-term planning. The results show that either energy storage or demand response can improve CCHP economic performance. However, since energy storage requires more intensive capital investment, it is considered inferior to demand response. Moreover, in comparison with no energy storage and demand response, introducing energy storage and implementing demand response can reduce system total cost by 6.45% and 11.73%, respectively. Furthermore, combining both of them has a synergistic effect and can reduce system total cost by 14.66%. Hence, we conclude that energy storage and demand response should be considered in CCHP long-term planning for better performance.
机译:组合冷却,加热和功率(CCHP)系统已成为能源保育和减排的有希望的解决方案。能量存储和需求响应的作用最近收到了对CCHP系统的兴趣越来越令人兴趣。本文涉及考虑能源储存和需求响应的可再生CCHP系统的长期经济规划。中国天津一个小镇的案例研究,用于示范。分析了四种情景以展示能量存储和需求响应对CCHP长期规划的影响。结果表明,能量储存或需求响应可以提高CCHP经济性能。然而,由于储存需要更加密集的资本投资,因此它被认为不如要求响应。此外,与没有能量存储和需求响应的比较,引入能量存储和实施需求响应可以分别将系统总成本降低6.45%和11.73%。此外,组合它们的两者都具有协同效应,可以将系统总成本降低14.66%。因此,我们得出结论,在CCHP长期规划中应考虑能量存储和需求响应以获得更好的性能。

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