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Traction batteries made up of dissimilar cells

机译:由不同细胞组成的牵引电池

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In this paper, the feasibility of a 2-part battery with separate 'energy' and 'power' modules is investigated. The battery is constructed of two parallel modules, each using a unique cell type. This type of battery has often been proposed as a solution to the absence of a cell optimised for both energy density and power density. In the energy-optimised module, the cell type is chosen for its specific energy, but will have limited power delivery ratings. In the power-optimised module, the cell type is chosen for its high power rating, but will have limited energy storage ability. A study has been made of the practicality of using such a twopart battery, initially with an intelligent charge management scheme between the two 'halves' of the pack, then without. The charge management brings better usage of the cells, but at a cost and weight disadvantage, hence the interest in an 'unmanaged' option, where dissimilar cells are directly connected. The evaluation is made theoretically, on the basis of weight and volume savings of the pack in meeting vehicle energy and maximum power targets and then the overall efficiency when exercised over typical drivecycles.
机译:在本文中,研究了用单独的“能量”和“电源”模块的2件电池的可行性。电池由两个并联模块构成,每个模块都使用独特的单元格类型。这种类型的电池通常被提出为没有针对能量密度和功率密度优化的电池的解决方案。在能量优化模块中,为其特定能量选择细胞类型,但电力输送额定值有限。在功率优化的模块中,选择电池类型的高功率额定值,但能量存储能力有限。一项研究已经采用了使用这种双头电池的实用性,最初在包装的两个“半部”之间的智能充电管理方案,然后没有。充电管理带来了更好的使用细胞,而是以成本和重量缺点,因此对“非托管”选项的兴趣,不同的细胞直接连接。在理论上,根据包装的重量和体积节省在满足车辆能量和最大功率目标方面,在典型的驱动器上行使时的整体效率的基础上进行评估。

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