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Development of a Markov-Chain-Based Energy Storage Model for Power Supply Availability Assessment of Photovoltaic Generation Plants

机译:基于马尔可夫链的储能模型的开发,用于光伏电站的电源可用性评估

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A new Markov-chain-based energy storage model to evaluate power supply availability of photovoltaic generation is proposed. Since photovoltaic resources have high output variability subject to weather conditions, energy storage can be added in order to increase the availability of photovoltaic generation. Although adding energy storage is a promising strategy to improve the availability of photovoltaic generation, energy storage sizing to meet a certain availability must be taken into account in order to avoid over-sizing or under-sizing capacity, which are two undesirable conditions leading to increased system cost or inadequate availability, respectively. This paper proposes a new Markov-chain-based energy storage model to develop a power supply availability framework for photovoltaic generation. The proposed work models energy states in a photovoltaic-energy storage system in order to understand the nature of charge/discharge rates for energy storage that affect the system's power output. This developed Markov chain model may assist when planning both large and small-scale grid integrated photovoltaic generation because energy state's behavior of the photovoltaic-energy storage model can be used for forecasting expected power output. In addition, an example using lithium–ion batteries is given in order to explore the effects on availability of energy storage capacity degradation.
机译:提出了一种新的基于马尔可夫链的储能模型,用于评估光伏发电的电源可用性。由于光伏资源在天气条件下具有较高的输出可变性,因此可以添加能量存储以增加光伏发电的可用性。尽管增加能量存储是提高光伏发电可用性的一种有前途的策略,但必须考虑满足一定可用性的能量存储大小,以避免容量过大或过小,这是导致容量增加的两个不希望的条件系统成本或可用性不足。本文提出了一种新的基于马尔可夫链的能量存储模型,以开发用于光伏发电的电源可用性框架。拟议的工作对光伏储能系统中的能量状态进行建模,以了解影响系统功率输出的储能充放电速率的性质。这种发达的马尔可夫链模型可以在规划大型和小型电网集成光伏发电时提供帮助,因为光伏储能模型的能量状态行为可以用于预测预期的功率输出。此外,给出了一个使用锂离子电池的示例,以探讨对能量存储容量下降的可用性的影响。

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