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Combined Heat and Power dispatch considering Advanced Adiabatic Compressed Air Energy Storage for wind power accommodation

机译:考虑高级绝热压缩空气储能的风电组合热电联产

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摘要

As an attractive large-scale clean energy storage technique, Advanced Adiabatic Compressed Air Energy Storage (AA-CAES) can store and generate both electricity and heat, which has great application potentials in Integrated Electricity and Heating Systems (IEHSs). However, few studies have been reported on Combined Heat and Power (CHP) dispatch by implementing AA-CAES in IEHS. This paper presents a CHP dispatch model considering the participation of AA-CAES for IEHS and mitigating wind curtailment. The mathematical model of AA-CAES for CHP dispatch is developed based on Mixed Integer Linear Programming (MILP). The off-design characteristic of AA-CAES is considered in the modelling process. The benefits of AA-CAES for mitigating wind curtailment and decreasing operation costs in IEHS has been studied. The scheduling analysis based on the developed model and the existing model without considering off-design characteristics has been carried out. The study shows that the participation of AA-CAES in CHP dispatch can increase the flexibility of IEHS, and it can lead to an apparent reduction of wind curtailment and operation costs. Also, AA-CAES's off-design conditions need to be considered in the dispatch; otherwise it can cause the misjudgment of AA-CAES's state of charge, which in turn results in costly operation.
机译:作为一种有吸引力的大规模清洁能源存储技术,先进的绝热压缩空气能源存储(AA-CAES)可以存储并产生电力和热量,这在集成电力和供热系统(IEHS)中具有巨大的应用潜力。但是,关于通过在IEHS中实施AA-CAES进行热电联产(CHP)调度的研究很少。本文提出了一种热电联产调度模型,该模型考虑了AA-CAES对IEHS的参与并减轻了风的限制。基于混合整数线性规划(MILP),建立了用于CHP调度的AA-CAES数学模型。在建模过程中考虑了AA-CAES的偏离设计特征。已经研究了AA-CAES减轻IEHS中的风向限制和降低运营成本的好处。在不考虑非设计特性的前提下,基于开发模型和现有模型进行了调度分析。研究表明,AA-CAES参与热电联产调度可以提高IEHS的灵活性,并且可以明显减少限风和运营成本。另外,在调度中还需要考虑AA-CAES的非设计条件。否则可能会导致对AA-CAES充电状态的错误判断,从而导致昂贵的运行成本。

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