试验结果,性能和经济效益降低细胞浮动电位在工作中心办公环境

W. Brecht, D. Feder, J. McAndrews, A. J. Williamson
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引用次数: 6

摘要

本文讨论了在较低浮子电位下的室温试验结果和电池浮子特性。此外,他们还描述了性能结果,并量化了在实际电池储备时间内取得的改进,这是由于在一个工作电话中心办公室的现有-48 V直流电信电池厂中引入了一个额外的电池。最后,他们讨论了在现有的电话电池组(每组24个电池)中引入额外的电池所带来的显著容量(以及由此带来的经济效益),而不会对整个发电厂的浮动电压产生重大变化。研究表明,使用低浮子技术可以将电池寿命延长25%,并且通过添加第25个电池,24个电池组的容量可以增加25%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trial results, performance and economic benefits of lowered cell float potential in a working central office environment
The authors discuss results of room-temperature tests at lowered float potentials on cell and battery float characteristics. Also, they describe performance results and quantify improvements achieved in actual battery reserve time, resulting from the introduction of an additional cell into an existing -48 V DC telecommunication battery plant in a working telephone central office. Finally, they discuss the significant capacity (and hence economic) benefits resulting from the introduction of an additional cell into existing telephone battery strings (24 cells per string), without significant change in overall power plant float voltages. It is shown that battery life can be enhanced as much as 25% using low-float technology, and the capacity of a 24-cell battery string can be increased up to 25% by the addition of a 25th cell.<>
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