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Lead Batteries for Dash-Cam Applications: Experiences and Lab Test Development

机译:用于Dash-CAM应用的铅电池:经验和实验室测试开发

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摘要

In modern road vehicles, one of the major energy consuming devices is the dash-cam, which is becoming more popular in many markets for several reasons. This dash-cam device is also operated during vehicle stand-still, therefore the energy demand usually is covered by the car's lead starter battery. In this paper, the influence of dash-cams on vehicle electrical systems in two different vehicles was investigated on the road and on the roller dynamometer. In both vehicles, similar strategies for battery operation and SoC maintenance were observed, but significant differences were found in Start/Stop characteristics and low-temperature operation. Vehicle A allowed for a higher DoD range during discharge, while vehicle B allowed for Start/Stop operation also at lower temperature conditions. In particular, the Start-Stop system was investigated in terms of average SoC, but also missed engine stop opportunities and premature engine restart events. Based on this knowledge, battery laboratory tests were developed that represent the operating mode of a vehicle with an activated dash-cam under controlled conditions. One test was an accelerated life test that was focused on the maximum charge throughput of the test batteries, and another test was focused on the reaction mechanism, which was found to be sulfation. These tests were validated with lead batteries of different technologies: AGM batteries (absorbent glass mat) turned out to be superior over flooded batteries in this vehicle application.
机译:在现代公路车辆中,其中一个主要的能耗装置是仪表凸轮,由于几个原因,许多市场变得更加流行。该仪表凸轮装置也在车辆静止期间运行,因此,汽车的引线启动器电池通常覆盖能量需求。本文在道路和滚轮测力计上研究了在两种不同车辆中的车辆电气系统对车辆电气系统的影响。在这两种车辆中,观察到类似的电池操作和SOC维护的策略,但在开始/停止特性和低温操作中发现了显着的差异。车辆A在放电期间允许更高的国防部范围,而车辆B也允许开始/停止操作,但在较低的温度条件下。特别是,在平均SOC方面调查了起始停止系统,但也是错过的发动机停止机会和过早发动机重启事件。基于这种知识,开发了电池实验室测试,其表示在受控条件下具有激活的冲刺式凸轮的车辆的操作模式。一个测试是一种加速寿命试验,其专注于测试电池的最大电荷吞吐量,并且另一个测试重点是反应机制,发现硫化。这些测试用不同技术的铅电池进行了验证:AGM电池(吸收玻璃垫)在该车辆应用中的洪水电池上方优越。

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