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An online LiFePO4 battery impedance estimation method for grid-tied residential energy storage systems

机译:在线Lifepo 4 电池阻抗估计用于网格捆绑住宅能量存储系统的阻抗估计方法

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There has recently been a significant interest directed towards residential battery storage systems mainly motivated by high penetration of renewables, the low cost and high efficiency of power electronic devices, and the advancements in the safety and energy density of the batteries, especially Lithium-Ion (Li-Ion) batteries. Furthermore, the possibility for the end user to become a utility-independent entity with the capacity to overcome power outages and tariff rises is even further propelling this fast growing industry. Lithium iron phosphate (LiFePO4) battery is one of those technologies chosen to take the lead in residential battery storage due to its intrinsic safe performance, good energy density and price. This paper describes an online method for estimating the impedance of LiFePO4 batteries when they are used in residential single phase energy storage systems. Single phase power systems have the intrinsic characteristics of delivering power at twice the frequency of the grid; by energy conservation principle, this pulsating characteristics is transferred directly to the current in the DC stage of the battery storage system. The proposed method takes advantage of this phenomenon and, without interrupting the energy conversion process or adding any external perturbation to the system, is able to characterize, in situ, the AC impedance behavior of the battery. Experimental results are provided to validate the proposed method and simulations show the potential applicability of this method in the assessment of the actual battery aging state.
机译:最近曾经是针对住宅电池存储系统的重要兴趣,主要是可再生能源的高渗透,功率电子设备的低成本和高效率,以及电池的安全性和能量密度的进步,尤其是锂离子(锂离子)电池。此外,最终用户成为与克服停电和关税的能力的公用事业独立实体的可能性甚至进一步推动了这种快速增长的行业。磷酸铁锂(LifePo 4 )电池是由于其固有的安全性能,良好的能量密度和价格而选定的技术。本文介绍了一种在线方法,用于估计LiFepo 4 电池的阻抗,当它们用于住宅单相能量存储系统时。单相电力系统具有在网格频率频率下输送功率的固有特性;通过节能原理,该脉动特性直接转移到电池存储系统的DC级中的电流。所提出的方法利用这种现象,而不会中断能量转换过程或者向系统添加任何外部扰动,能够以原位为电池的AC阻抗行为表征。提供了实验结果以验证所提出的方法,模拟显示该方法在评估实际电池老化状态时的潜在适用性。

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