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Development of sensor and optimal placement for smoke detection in an electric vehicle battery pack

机译:电动汽车电池组中传感器的开发和烟雾探测的最佳位置

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There is currently a trend in the automotive industry to replace combustion engines with electric motors or a combination of an electric motor and a combustion engine, thereby substantially reducing the environmental impact of automobiles by reducing or completely eliminating car emissions. In this paper various strategies for positioning of smoke sensor within the battery pack assembly for smoke detection are deliberated. Proper placement of the smoke sensor results in two important design objectives: to detect smoke as soon as the fire ignition and to achieve full coverage by using a minimum number of sensors. The challenge lied in designing and development of a suitable smoke sensor which meets stringent vehicular dynamic applications such as varying ambient operating temperatures, humidity, vibrations, mechanical shock, dust, etc. As the active fire protection is getting more and more important for electric vehicles in general and more so in battery pack assembly. In a Battery pack, cells can vent out due to overcharge/ over discharge/ internal cell fault / ageing / long period of storage. In case of such an eventuality a Smoke sensor located at a strategic location inside the battery pack assembly is designed to sense the Smoke and give a digital signal to the on board vehicle computers. Based on the state of the vehicle, on board computer can take the necessary actions based on the strategy defined in the control logic. Due to the diversity of applications, requirements, and design goals, there is no single, distinctive approach to the design and deployment of smoke sensor available today. This had led to a detailed study and investigation for deployment of battery pack smoke sensor.
机译:当前,汽车工业中存在一种趋势,即用电动机代替内燃机或电动机与内燃机的组合,从而通过减少或完全消除汽车排放物来实质上减少汽车对环境的影响。在本文中,讨论了将烟雾传感器定位在电池组组件中以进行烟雾检测的各种策略。烟雾传感器的正确放置导致两个重要的设计目标:在着火后立即检测烟雾,并使用最少数量的传感器实现完全覆盖。在设计和开发合适的烟雾传感器时遇到了挑战,该传感器可满足严格的车辆动态应用,例如变化的环境工作温度,湿度,振动,机械冲击,灰尘等。随着电动汽车的主动防火越来越重要通常,在电池组组装中更是如此。在电池组中,由于过度充电/过度放电/内部电池故障/老化/长时间存放,电池可能会排气。在这种情况下,位于电池组内部关键位置的烟雾传感器设计为可感应烟雾并将数字信号提供给车载计算机。基于车辆的状态,车载计算机可以根据控制逻辑中定义的策略采取必要的措施。由于应用程序,要求和设计目标的多样性,因此,目前尚无单一,独特的方法来设计和部署烟雾传感器。这导致对电池烟雾传感器的部署进行了详细的研究和调查。

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