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An Analytical study on Methods to Detect Degraded Cells in a Multi-Cell Lithium-ion Battery Pack

机译:多电池锂离子电池组中检测降解细胞的方法研究

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In most applications where electricity is utilised, storing energy and using that energy when the demand is high is important. As the most common energy storage, Lithium-Ion batteries are used in many applications. Such batteries are comprised of modules and the modules consist of series connected and parallel connected cells. When the batteries are in frequent operation, the State-of-health of the cells deteriorate. As a result, the cells will lose their storage capacity and cell voltages will deviate from their nominal values. Therefore, there is a possibility of having damaged cells within a battery. Identifying such damaged cells is important to maintain the battery at high state-of-health and thus to make sure the battery can be operated to its full expected life time, while delivering the expected performance. For that, accurate methods must be available in locating the degraded cells within the battery. This paper reviews the state of the art to detect degraded cells, where almost all of them are limited to one dimensional cases; i.e., either parallel connected cell arrays or series connected cell arrays. Since such approaches have limited applications to this two dimensional problem, this paper proposes a new method to identify faulty cells in a two dimensional array of cells in a battery by measuring array voltage, current and the temperatures.
机译:在利用电力的大多数应用中,在需求高时储存能量并使用该能量是重要的。作为最常见的储能,在许多应用中使用锂离子电池。这种电池由模块组成,模块包括串联连接和并联电池。当电池经常运行时,细胞的健康状况恶化。因此,细胞将失去存储容量,电池电压将偏离其标称值。因此,有可能在电池内具有受损的电池。识别这种受损的电池是在高健康状态下维护电池的重要性,从而确保电池可以运行到其完全预期的寿命时间,同时提供预期的性能。为此,必须在将降低电池内的降级的电池定位时可用准确的方法。本文审查了最先进的状态,以检测降级的细胞,其中几乎所有这些都限于一维案例;即,并行连接的单元阵列或串联连接的单元阵列。由于这种方法在这两个维度问题上具有有限的应用,因此通过测量阵列电压,电流和温度,提出了一种新方法来识别电池中的二维单元阵列中的故障细胞。

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