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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Achieving Self-Balancing by Design in Photovoltaic Energy Storage Systems
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Achieving Self-Balancing by Design in Photovoltaic Energy Storage Systems

机译:通过光伏能量存储系统设计实现自平衡

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摘要

This paper examines the problem of designing integrated systems of photovoltaic (PV) arrays and battery cells in a manner that achieves self-balancing by design. This paper focuses on two topologies for integrating PV and battery cells, both of which connect PV generation to each battery cell directly, either with or without dc-dc conversion. This paper proves, using Lyapunov stability methods, that both the topologies are globally, asymptotically self-balancing. This means that initial differences among battery cells in either the state of charge or other internal state variables are guaranteed to diminish asymptotically with time. This self-balancing behavior reduces the amount and hence the cost of the power electronics needed for energy storage integration into PV farms significantly compared to conventional integration topologies-an argument substantiated using a financial assessment in this paper. This paper extends previous work by the authors on self-balancing PV energy storage systems in four significant ways. First, the proof of self-balancing is provided using equivalent-circuit battery models of arbitrary order, as opposed to first-order models. Second, this proof is provided for multiple integration topologies, instead of just one. Third, we demonstrate this self-balancing behavior experimentally, using a hardware-in-the-loop setup, for the first time. Finally, we perform a cost benefit analysis of our hybrid topologies in comparison to a benchmark system in order to quantify the integration cost reduction due to self-balancing.
机译:本文以一种通过设计实现自平衡的方式设计光伏(PV)阵列和电池单元集成系统的问题。本文侧重于整合光伏电池和电池单元的两个拓扑,两者都直接连接到每个电池单元的PV生成,无论是在还是没有DC-DC转换。本文证明了利用Lyapunov稳定方法,拓扑在全球范围内,渐近自平衡。这意味着在充电状态或其他内部状态变量中的电池单元之间的初始差异被保证随时间渐近渐近。这种自平衡行为减少了金额,从而降低了能量存储集成到光伏电池中的功率电子设备的成本与传统的集成拓扑相比 - 在本文中使用财务评估证实的论证。本文以四种显着的方式在自平衡光伏能量存储系统上扩展了以前的工作。首先,使用双重顺序的等效电路电池模型提供自平衡的证明,而不是一阶模型。其次,为多个集成拓扑提供此证明,而不是仅提供一个。第三,我们首次使用硬件循环设置实验地示出了这种自平衡行为。最后,我们与基准系统相比,对混合动力拓扑的成本效益分析,以量化由于自平衡而量化的集成成本降低。

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