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Exploring the flexibility of CSP for wind power integration using interval optimization

机译:使用区间优化探索CSP在风电集成中的灵活性

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Large scale integration of renewable energy requires extra reserves and ramp flexibilities due to the inherent intermittency and uncertainty, thus brings great challenges for the power system planning and operation. Concentrating solar power (CSP) plant, a rising technique to utilize renewable energy, has the flexibility to shift the production and offer reserves when equipped with thermal energy storage (TES) system. Hence, taking the advantage of the controllability of CSP, the coordination of wind power and CSP will be a competitive choice to accommodate renewable energy. In this paper, we explore the way of utilizing the flexibility of CSP to reduce the intermittencies and uncertainties of both wind power and solar radiation. The steady-state operation model of a CSP plant with TES is introduced. An interval optimization based model is proposed to optimize the operation strategies of wind farms and CSP plants with the target of simultaneously compensating the intermittency and reducing the uncertainty of their joint power outputs. The results of case study verify that the generation intermittency and uncertainty will be remarkably reduced through coordinating wind with CSP.
机译:由于固有的间歇性和不确定性,可再生能源的大规模整合需要额外的储备和灵活性,因此给电力系统的规划和运行带来了巨大挑战。集中式太阳能发电厂(CSP)是一种利用可再生能源的新兴技术,在配备热能存储(TES)系统时,可以灵活地转移生产并提供储备。因此,利用CSP的可控制性,风能和CSP的协调将是容纳可再生能源的竞争选择。在本文中,我们探索了利用CSP的灵活性来减少风能和太阳辐射的间歇性和不确定性的方法。介绍了带有TES的CSP工厂的稳态运行模型。提出了一种基于区间优化的模型来优化风电场和CSP电厂的运行策略,以同时补偿间歇性并减少其联合发电量的不确定性为目标。案例研究的结果证明,通过与CSP协调风能,发电间歇性和不确定性将显着降低。

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