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Techno-economic analysis and optimal control of battery storage for frequency control services, applied to the German market

机译:技术经济分析和频率控制服务电池存储的最佳控制,应用于德国市场

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Optimal investment in battery energy storage systems, taking into account degradation, sizing and control, is crucial for the deployment of battery storage, of which providing frequency control is one of the major applications. In this paper, we present a holistic, data-driven framework to determine the optimal investment, size and controller of a battery storage system providing frequency control. We optimised the controller towards minimum degradation and electricity costs over its lifetime, while ensuring the delivery of frequency control services compliant with regulatory requirements. We adopted a detailed battery model, considering the dynamics and degradation when exposed to actual frequency data. Further, we used a stochastic optimisation objective while constraining the probability on unavailability to deliver the frequency control service. Through a thorough analysis, we were able to decrease the amount of data needed and thereby decrease the execution time while keeping the approximation error within limits. Using the proposed framework, we performed a techno-economic analysis of a battery providing 1 MW capacity in the German primary frequency control market. Results showed that a battery rated at 1.6 MW, 1.6 MWh has the highest net present value, yet this configuration is only profitable if costs are low enough or in case future frequency control prices do not decline too much. It transpires that calendar ageing drives battery degradation, whereas cycle ageing has less impact.
机译:考虑到退化,尺寸调整和控制,对电池储能系统的最佳投资对于电池储能的部署至关重要,其中提供频率控制是主要应用之一。在本文中,我们提出了一个整体的,数据驱动的框架,以确定提供频率控制的电池存储系统的最佳投资,尺寸和控制器。我们对控制器进行了优化,以使其使用寿命内的降级和电力成本降至最低,同时确保提供符合法规要求的频率控制服务。我们采用了详细的电池模型,考虑了暴露于实际频率数据时的动态和劣化。此外,我们使用了随机优化目标,同时限制了无法提供频率控制服务的可能性。通过彻底的分析,我们能够减少所需的数据量,从而减少了执行时间,同时将近似误差保持在限制范围内。使用提出的框架,我们对德国一次频率控制市场中容量为1 MW的电池进行了技术经济分析。结果表明,额定值为1.6 MW,1.6 MWh的电池具有最高的净现值,但是,只有在成本足够低或将来的频率控制价格不会下降太多的情况下,这种配置才有利可图。可以看出日历老化会导致电池性能下降,而循环老化的影响较小。

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