Back to the future: A need for multi-drop Ethernet for cost-effective power distribution

Kenneth J. Christensen, B. Nordman
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引用次数: 5

Abstract

Local renewable DC electricity sources, such as solar, have become cost competitive. In this position paper, we argue that an Ethernet LAN with Power-over-Ethernet (PoE) is a nanogrid where the physical layer infrastructure is used for DC electricity distribution and the link-layer capabilities can be used to match electricity supply and demand. To be cost effective with respect to wiring, many of these nanogrids must be multi-drop where each drop may be a power socket. Open challenges to employing PoE as a multi-drop managed nanogrid include 1) extending LLDP for multi-drop, 2) adapting LLDP to support the use of price signals for modulating power demand, 3) achieving efficient PoE power flow in a multi-drop circuit, and 4) implementing low-cost and fair scheduling for packet transmission. We explore how multi-drop Ethernet can be implemented with fair access to all devices by employing at each drop a mini-switch with packet scheduling.
回到未来:需要多点以太网来实现经济高效的配电
当地的可再生直流电,如太阳能,已经变得具有成本竞争力。在本文中,我们认为具有以太网供电(PoE)的以太网局域网是一种纳米网格,其中物理层基础设施用于直流配电,链路层功能可用于匹配电力供应和需求。为了在布线方面节省成本,许多纳米电网必须是多滴的,每个滴可能是一个电源插座。采用PoE作为多滴管理纳米电网的公开挑战包括1)扩展LLDP用于多滴,2)调整LLDP以支持使用价格信号来调制电力需求,3)在多滴电路中实现高效的PoE功率流,以及4)实现低成本和公平的分组传输调度。我们探讨了多点以太网如何通过在每个点使用具有分组调度的迷你交换机来实现对所有设备的公平访问。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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