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Reliability assessment of a standalone wind-conventional/energy storage system using probabilistic production simulation method

机译:基于概率生产模拟方法的独立风能/储能系统的可靠性评估

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This paper presents a reliability evaluation technique for a small standalone system including wind and conventional resources integrated with an energy storage system. A battery bank is considered as the energy storage system. The focus in this analysis is on the effect of battery modeling and its performance on system reliability. In this way, this paper presents an accurate model for the electrochemical batteries, which takes into account all the influential characteristics of the battery related to reliability studies, such as depth of charge, efficiency of charge, and rate of discharge. The proposed reliability evaluation method is based on the combination of a probabilistic production simulation technique as an analytical method and time series technique, in the domain of adequacy studies. By using the probabilistic production simulation technique, not only can the reliability of wind-conventional resources be assessed, but the fuel consumption can also be analyzed. On the other hand, by using the time series approach, the time variation of wind speed and operating constraints of the battery bank can be considered in evaluating the reliability indices. In this paper, a typical lead--acid battery bank is used. It is shown how the accurate modeling of the battery bank can affect the reliability indices. Beneficial results are obtained for different operating strategies and wind penetrations and are then compared.
机译:本文提出了一种小型的独立系统的可靠性评估技术,该系统包括风能和与储能系统集成的常规资源。电池组被视为能量存储系统。该分析的重点是电池建模及其性能对系统可靠性的影响。通过这种方式,本文提出了一种精确的电化学电池模型,该模型考虑了与可靠性研究相关的所有电池影响特性,例如充电深度,充电效率和放电速率。在充分性研究领域,所提出的可靠性评估方法是基于概率生产模拟技术(作为一种分析方法)和时间序列技术的结合。通过使用概率生产模拟技术,不仅可以评估风能常规资源的可靠性,还可以分析燃料消耗。另一方面,通过使用时间序列方法,可以在评估可靠性指标时考虑风速的时间变化和电池组的运行约束。在本文中,使用了典型的铅酸电池组。它显示了电池组的精确建模如何影响可靠性指标。获得了针对不同运行策略和风速的有益结果,然后进行了比较。

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