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首页> 外文期刊>Journal of Energy Resources Technology >Active Phase Change Material Cold Storage in Off-Grid Telecommunication Base Stations: Potential Assessment of Primary Energy Savings
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Active Phase Change Material Cold Storage in Off-Grid Telecommunication Base Stations: Potential Assessment of Primary Energy Savings

机译:在异电网电信基站的主动相变材料冷库:潜在节能的潜在评估

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摘要

The global demand for wireless, mobile communication, and data services has grown significantly in the recent years. Consequently, electrical energy consumption to provide these services has increased. The principal contributors to this electricity demand are approximately 7 million telecommunication base stations (TBS) worldwide. They act as access points for mobile networks and have typical electrical loads of 2-3 kW. Whereas for most of the TBS, the electricity is supplied by the grid, approximately 15% are located in remote areas or regions with poor grid accessibility, where diesel generators (DG) supply the required electricity. Based on a dynamic simulation model the application of a latent heat storage (LHS) using phase change material (PCM) in existing off-grid TBS has been analyzed. The LHS unit has been modeled as an air-based storage with phase change temperatures between 20 degrees C and 30 degrees C with the PCM being macro-encapsulated in slabs. This paper demonstrates the potential to reduce the primary energy consumption in off-grid TBS through the following methods: optimization of the DG operating point, of the air conditioning unit operation schedule and the utilization of photovoltaic (PV) energy.
机译:近年来,全球对无线,移动通信和数据服务的需求显着增加。因此,提供这些服务的电能消耗增加。该电力需求的主要贡献者是全球约700万电信基站(TBS)。它们充当移动网络的接入点,具有2-3 kW的典型电负载。而对于大多数TBS,电网提供电网,大约15%位于具有差电网可接近的偏远地区或地区,其中柴油发电机(DG)提供所需的电力。基于动态仿真模型,分析了在现有的离网TBS中使用相变材料(PCM)的潜热存储(LHS)的应用。 LHS单元已被建模为空气基储存,相变温度在20摄氏度和30摄氏度之间,PCM宏封装在板坯中。本文通过以下方法说明了降低离网TBS的主要能量消耗的可能性:空调单元操作时间表的DG操作点的优化,以及光伏(PV)能量的利用。

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