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Risk-constrained optimal scheduling with combining heat and power for concentrating solar power plants

机译:集中太阳能电厂的热量和电力的风险约束最优调度

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摘要

Concentrating Solar Power (CSP), a schedulable renewable energy technology, realizes the conversion of "solar-heat-electric". The benefits from the thermal energy storage (TES) and its potential for heating need to be explored. In desert areas with low population density and relatively concentrated industrial loads, a CSP plant equipped with back-pressure turbines (BT) as generators can use waste heat from power generation to supply heat, which effectively improves the energy production efficiency of CSP plants. Thus, a combined heat and power scheduling model for CSP plants to participate in heating is established in this paper. In order to cope with the uncertain parameters of the model, the information gap decision theory (IGDT) is introduced to describe them. IGDT can draw on the risk-seeker strategy and risk-averse strategy to deal with the uncertainty, and thus provide a reasonable decision basis for the scheduling operation. In addition, we ensure that the storage cycling of CSP plants is energy neutral, which could allow the plant to optimize its output for multiple consecutive days to meet demands. Finally, the model is verified to ensure that the predefined profit level could be achieved and the corresponding scheduling strategy under different operational risk is obtained.
机译:集中太阳能(CSP),可预定的可再生能源技术,实现了“太阳能电热”的转换。热能储存(TES)的益处及其加热潜力需要探索。在具有低人口密度和相对浓度的工业载荷的沙漠地区,配备有后压力涡轮机(BT)的CSP工厂作为发电机可以使用来自发电的废热来供应热量,这有效提高了CSP植物的能量生产效率。因此,本文建立了CSP工厂的组合热量和功率调度模型以参与加热。为了应对模型的不确定参数,引入了信息差距决策理论(IGDT)来描述它们。 IGDT可以借鉴风险导向者战略和风险厌恶战略,以应对不确定性,从而为调度运作提供合理的决策基础。此外,我们确保CSP植物的储存循环是能量中性,这可能使工厂能够优化其连续几天的输出以满足需求。最后,验证了模型,以确保可以实现预定义的利润水平,并且获得了不同操作风险下的相应调度策略。

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