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Heat flows and energetic behavior of a telecommunication radio base station

机译:电信无线电基站的热流和能量行为

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This paper shows a study on energetic consumption of BTSs (Base Transceiver Stations) for mobile communication, related to conditioning functions. An energetic "thermal model" of a telecommunication station is proposed and studied. The results have been validated with a BTS in central Italy, showing good agreement. Findings show a substantial high internal-external temperature difference in the containing shelter, particularly during daytime and warm months, due to sources of heat (equipment, external temperature and sun radiation) and to the difficulty in spread the warmth out. The necessity to keep the operating temperatures within a given range for the correct functioning of the electronic equipment requires the use of conditioning setups, and this significantly increases the energetic demand of the whole system. The analysis of thermal flows across the shelter can help to gather further data on its temperature behavior and to devise practical measures to lower the power demand, while keeping the operating parameters in the suggested ranges. The investigation of some operating parameters of the equipment and of the shelter, such as threshold set-points, air vent area, external wall transmittance and reflectivity, suggests annual energy savings between 10% and 30%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文显示了对与调节功能有关的BTS(基站收发站)在移动通信中的能量消耗的研究。提出并研究了电信站的能量“热模型”。结果已在意大利中部的BTS进行了验证,显示出良好的一致性。调查结果表明,由于热源(设备,外部温度和太阳辐射)以及难以散发温暖的热量,在封闭的住房中,尤其是在白天和温暖的月份,内部和外部的温差很大。为了使电子设备正常工作,必须将工作温度保持在给定范围内,这需要使用调节装置,这大大增加了整个系统的能量需求。对穿过避难所的热流进行分析可以帮助收集有关其温度行为的更多数据,并设计出切实可行的措施来降低电力需求,同时将运行参数保持在建议的范围内。对设备和掩体的某些操作参数(例如阈值设定点,通风口面积,外墙透射率和反射率)的研究表明,每年可节省10%至30%的能源。 (C)2015 Elsevier Ltd.保留所有权利。

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