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Density measurement into lead-acid batteries with multipoint optical fiber sensor

机译:用多点光纤传感器测量铅酸电池的密度

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There are numerous applications for the use of leadacid batteries: automotive applications, telecommunications, UPS, remote-area power-supply systems, etc. Modern energy-storage applications require higher reliability than has been demanded in the past; in addition, systems have been developed for monitoring and managing the batteries so as to achieve duty in service. For determination of battery state, it is necessary to know the state of charge (SOC) and the state of health (SOH), one of the physical parameters with information about the SOC is the electrolyte density. An electrolyte density sensor must be able to measure the electrolyte density at different places because the battery-density varies with location. This paper presents a plastic optical fiber sensor developed for measuring in real time the electrolyte density into lead-acid batteries. The sensor measures the density at four different heights. The environment in the batteries that use an electrolyte with Sulfuric Acid (H2SO4) at an elevated temperature during the use process is very hard and the accuracy of the density readout must be maintained through the useful life of the vehicle. We have done an accelerated test to check the reliability sensor. The test duration was over one calendar year (9,552 hours) using a sensor with four optical fibers. For the test, the electrolyte acid density was set to 35%, and the temperature to 70 degrees Celsius. An electronic system for emission and detection of light collected data periodically to assess the transmission loss in the fibers as they aged. In this paper we present the test results.
机译:铅酸电池的使用有很多应用:汽车应用,电信,UPS,偏远地区供电系统等。现代储能应用要求比过去更高的可靠性。另外,已经开发了用于监视和管理电池的系统,以实现服务职责。为了确定电池状态,必须知道充电状态(SOC)和健康状态(SOH),具有关于SOC的信息的物理参数之一是电解质密度。电解质密度传感器必须能够在不同位置测量电解质密度,因为电池密度会随位置而变化。本文提出了一种塑料光纤传感器,用于实时测量铅酸电池中的电解质密度。传感器在四个不同的高度测量密度。在使用过程中,在高温下使用含有硫酸(H 2 SO 4 )的电解质的电池环境非常困难,密度读数的准确性必须在车辆的使用寿命内进行维护。我们已经进行了加速测试,以检查可靠性传感器。使用带有四根光纤的传感器,测试持续时间超过一个日历年(9,552小时)。为了进行测试,将电解质酸密度设定为35%,并将温度设定为70摄氏度。一个电子系统,用于定期发射和检测光收集的数据,以评估光纤老化时的传输损耗。在本文中,我们介绍了测试结果。

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