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Energy Minimization Based Fan Configuration for Double Walled Telecommunication Cabinet with Solar Load

机译:具有太阳能荷载的双壁电信柜的能量最小化风扇配置

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Access networks provide the last mile of connectivity to telecommunication customers throughout the world. Voice, data, and video services through fiber, copper and wireless media are all delivered to the end user by the access portion of the network. In an access network, thermal management of active electronics and optical devices are critical to network reliability and performance. The outside plant telecom enclosures provide environmental protection for both active electronics and optical devices. These enclosures must incorporate cooling systems that support thermal requirements of the electronic and optical components. In addition to the heat load from the electronics there is also solar loading on the cabinet, which needs to be taken into account when designing a cooling system. In order to reduce the solar loading, a double walled cabinet was shown to be an effective method. In this method, air is forced between the telecommunication cabinet and the outside wall. Although the air gap is effective in reducing the solar load, its thickness was found to be insignificant [1]. Thus to reduce the cabinet dimensions, double walled cabinets with smaller air gap are recommended. However, this may impact the energy consumption of the fan and may pose acoustic problems. Hence, a study was carried out for different fan configurations and the effect it had on cabinet temperature and energy consumed by the fans were studied. From the study it was found out that there was significant change in energy consumed by fans when their location is changed.
机译:访问网络提供全球电信客户的最后一英里。通过光纤,铜缆和无线介质的语音,数据和视频服务都是通过网络的访问部分传送到最终用户。在接入网络中,主动电子和光学设备的热管理对于网络可靠性和性能至关重要。外部植物电信机箱为主动电子和光学器件提供环保。这些外壳必须包含支持电子和光学元件的热要求的冷却系统。除了来自电子设备的热量负载之外,还有在机柜上的太阳能负载,在设计冷却系统时需要考虑到这一点。为了降低太阳能负载,显示双壁柜是一种有效的方法。在这种方法中,在电信柜和外壁之间强制空气。虽然气隙有效地降低了太阳能载荷,但发现其厚度是微不足道的[1]。因此,为了减少机壳尺寸,建议使用具有较小气隙的双壁橱柜。然而,这可能会影响风扇的能量消耗,并且可能造成声学问题。因此,研究了一项研究,针对不同的风扇配置进行,研究了它对橱柜温度和风扇消耗的能量的影响。从研究来看,发现当他们的位置发生变化时,粉丝消耗的能量发生了显着变化。

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