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Beyond Power over Ethernet : the development of Digital Energy Networks for buildings

机译:超越以太网供电:建筑数字能源网络的发展

摘要

Alternating current power distribution using analogue control and safety devices has been the dominant process of power distribution within our buildings since the electricity industry began in the late 19th century. However, with advances in digital technology, the seeds of change have been growing over the last decade. Now, with the simultaneous dramatic fall in power requirements of digital devices and corresponding rise in capability of Power over Ethernet, an entire desktop environment can be powered by a single direct current (dc) Ethernet cable. Going beyond this, it will soon be possible to power entire office buildings using dc networks. This means the logic of “one-size fits all” from the existing ac system is no longer relevant and instead there is an opportunity to redesign the power topology to be appropriate for different applications, devices and end-users throughout the building. This paper proposes a 3-tier classification system for the topology of direct current microgrids in commercial buildings – called a Digital Energy Network or DEN. The first tier is power distribution at a full building level (otherwise known as the microgrid); the second tier is power distribution at a room level (the nanogrid); and the third tier is power distribution at a desktop or appliance level (the picogrid). An important aspect of this classification system is how the design focus changes for each grid. For example; a key driver of the picogrid is the usability of the network – high data rates, and low power requirements; however, in the microgrid, the main driver is high power and efficiency at low cost.
机译:自19世纪末电力行业开始以来,使用模拟控制和安全设备进行交流配电一直是我们建筑物内配电的主要过程。但是,随着数字技术的发展,过去十年来变化的种子不断增长。现在,随着数字设备对电源的需求急剧下降,同时以太网供电的能力也相应提高,整个台式机环境可以通过单根直流(dc)以太网电缆供电。除此之外,不久将可以使用直流网络为整个办公楼供电。这意味着现有交流系统的“一刀切”的逻辑不再重要,而是有机会重新设计电源拓扑,以适合整个建筑物的不同应用,设备和最终用户。本文针对商业建筑中的直流微电网拓扑提出了一种三层分类系统,称为数字能源网络或DEN。第一层是整个建筑物级别的功率分配(也称为微电网)。第二层是房间级别的功率分配(纳米电网);第三层是台式机或设备级别(微微网格)的配电。该分类系统的一个重要方面是每个网格的设计重点如何变化。例如; Picogrid的关键驱动因素是网络的可用性–高数据速率和低功耗要求;然而,在微电网中,主要驱动因素是低成本的高功率和高效率。

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