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Lithium Iron Phosphate (LiFeP04) Battery Power System for Deepwater Emergency Operation

机译:磷酸铁锂(LiFeP04)电池电力系统,用于深水应急操作

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Unmanned underwater vehicles (UUV) are widely used for survey and mining of natural resources in the region of underwater and seabed in the last two decades. In underwater, vision and depth perception will be poor, thus navigating and maneuvering a remotely operated vehicles (ROVs) will not be an easy task. The umbilical cable might get entangled. In the event that the ROV loses power from its umbilical cord or an autonomous underwater vehicle (AUV) power failure, an emergency power system will be needed to power the critical equipment on the ROV or AUV to facilitate its recovery and to limit the loss of data. In this paper, a large format 2 KWh lithium iron phosphate (LiFePCM) battery stack power system is proposed for the emergency power system of the UUV. The LiFeP04 stacks are chosen due to their high energy density, modularity and ready availability. The proposed LiFePCU battery system includes the design and development of a smart battery management system (BMS) with high efficiency active cell balancing technology and intelligent self-learning battery state of charge (SOC) estimation for the LiFeP04 battery. The proposed BMS will lead to better utilization of battery's potential capacity and maximize the cycle life of the battery. The battery system has a pressure-resistance enclosure to eliminate extra battery pressure chamber and associated risks, therefore increase the reliability of the power system amidst high pressures down to 3km of deep-water.
机译:无人驾驶水下车辆(UUV)广泛用于过去二十年来在水下和海底地区的自然资源进行调查和开采。在水下,愿景和深度感知将是穷人,从而导航和操纵一辆远程操作的车辆(ROVS)不会是一项简单的任务。脐带电缆可能会纠缠在一起。如果ROV从其脐带或自主水下车辆(AUV)电源故障失去电力,则需要一种紧急电力系统,为ROV或AUV上的关键设备供电,以促进其恢复并限制损失数据。本文提出了一种大幅面2千瓦时磷酸铁(LifePCM)电池堆功率系统,用于UUV的应急电力系统。由于其高能量密度,模块化和随机可用性而选择LiFep04堆叠。所提出的Lifepcu电池系统包括具有高效率活性电池平衡技术和LifeP04电池的高效活性电池平衡技术和智能自学习电池(SOC)估计的智能电池管理系统(BMS)的设计和开发。所提出的BMS将导致更好地利用电池的潜在能力,并最大限度地提高电池的循环寿命。电池系统具有耐压外壳,以消除额外的电池压力室和相关的风险,从而提高电力系统的可靠性在高压下至3km的深水中。

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