Thermal baffling of batteries in a simulated optical network unit: thermal design and analysis

R. C. Estes, R. Kimsey, T. H. Kimsey, T. Taylor
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引用次数: 4

Abstract

A local powering method for the optical network unit (ONU) is considered in which commercial AC is used to power the ONU normally and batteries located in the ONU provide back-up power during power outages. Because batteries are such an integral part of this scheme, its success depends critically on the cost, reliability, and life expectancies of the batteries. The authors describe a 'thermal baffling' technique, in which a barrier is used to buffer the batteries from the heat of the ONU electronics. This technique is currently being used in 10 simulated ONUs that are part of a Bellcore field demonstration. A technique for quantifying the benefits of temperature control on battery life is presented and used to develop a temperature design criterion for the simulated ONUs. A thermal model for a generic ONU enclosure with a thermal baffle is presented, and results from the model are compared with experimental data from a simulated ONU. Finally, initial data from the field demonstration are presented and discussed.<>
模拟光网络单元中电池的热阻:热设计与分析
本文提出了一种基于本地供电的ONU (optical network unit)供电方式,即用商业交流电为ONU (optical network unit)正常供电,在ONU (optical network unit)断电时,由ONU内的电池提供备用电源。由于电池是该计划不可或缺的一部分,因此其成功与否关键取决于电池的成本、可靠性和预期寿命。作者描述了一种“热挡板”技术,其中使用屏障来缓冲电池免受ONU电子设备的热量。该技术目前正在Bellcore现场演示的10个模拟onu中使用。提出了一种量化温度控制对电池寿命的好处的技术,并用于开发模拟onu的温度设计准则。提出了一种带有热挡板的通用ONU机壳的热模型,并将模型结果与仿真ONU的实验数据进行了比较。最后,给出了现场演示的初步数据并进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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