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DC Picogrids as power backups for office buildings

机译:DC Picogrids作为办公楼的备用电源

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Office buildings in developing countries employ battery backups with inverters and/or diesel generators to power essential loads such as lighting, air conditioning and computing loads during power cuts. Since these backup solutions are expensive and inefficient, they form a significant proportion of the operating expenses. To address this problem, we propose using a personal comfort system (an illustrative configuration can comprise a LED light and a DC desk fan) that is powered by batteries in computing devices. With this approach, cost savings are realized through two mechanisms, (i) by reducing the dependence on high-power lighting and air conditioning during times of power outage, and (ii) by charging the batteries at optimal times, taking advantage of the variable cost of power supply. Simulations show that the expected energy savings from this methodology are in the region of 26%, compared with the current system. In this paper, we present various architectures for the load-battery combination, a dynamic programming based framework that generates optimal charging/discharging schedules, and an experimental evaluation of the proposed approach.
机译:发展中国家的办公大楼使用带有备用电池的逆变器和/或柴油发电机为断电期间的照明,空调和计算负载等基本负载供电。由于这些备份解决方案价格昂贵且效率低下,因此它们占了运营费用的很大一部分。为了解决这个问题,我们建议使用由计算设备中的电池供电的个人舒适系统(说明性配置可以包括LED灯和DC台式风扇)。使用这种方法,可以通过两种机制实现成本节省:(i)减少停电时对大功率照明和空调的依赖,以及(ii)通过利用可变变量在最佳时间对电池充电电源成本。仿真表明,与当前系统相比,该方法的预期节能量约为26%。在本文中,我们介绍了用于负载-电池组合的各种体系结构,基于动态编程的框架,该框架生成最佳的充电/放电时间表,以及对所提出方法的实验评估。

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