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首页> 外文期刊>Renewable Power Generation, IET >Risk-constrained scheduling of solar-based three state compressed air energy storage with waste thermal recovery unit in the thermal energy market environment
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Risk-constrained scheduling of solar-based three state compressed air energy storage with waste thermal recovery unit in the thermal energy market environment

机译:在热能市场环境中带有废热回收单元的太阳能三态压缩空气储能的风险受限调度

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摘要

This paper evaluates the self-scheduling problem for solar-based compressed air energy storage (CAES) plant with capability of compression waste thermal energy recovery via information gap decision theory (IGDT) approach. This feature gives the plant the ability to make income through participation in the thermal energy market. Moreover, the proposed plant uses natural gas as input fuel, which makes the system flexible to operate as a simple cycle gas generator when the stored air is drained. The utilisation of renewable energies in spite of many benefits has some challenges to self-scheduling of the solar-based three state CAES plant such as volatility and unpredictability. In addition, the uncertain solar farm generation is modelled by IGDT method. By the proposed IGDT model, the plant can pursue risk-taker and risk-averse strategies to face with different situations related to uncertain parameter. Finally, the numerical results obtained from case studies validate the appropriateness of the proposed approach.
机译:本文通过信息间隙决策理论(IGDT)方法对具有压缩余热能回收能力的太阳能压缩空气储能(CAES)装置的自调度问题进行了评估。该功能使工厂能够通过参与热能市场赚钱。此外,拟议中的工厂使用天然气作为输入燃料,这使得该系统在排放存储的空气时可以灵活地用作简单的循环气体发生器。尽管有很多好处,但利用可再生能源对太阳能三州CAES电厂的自调度存在一些挑战,例如波动性和不可预测性。此外,不确定的太阳能发电场的发电采用IGDT方法进行建模。通过提出的IGDT模型,工厂可以采用风险承担和规避风险的策略来面对与不确定参数有关的不同情况。最后,从案例研究中获得的数值结果验证了所提出方法的适当性。

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