Power Allocation Algorithms of PoE for On-Demand Power Supply

M. Yokohata, Tomotaka Maeda, Y. Okabe
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引用次数: 7

Abstract

An on-demand power supply network is proposed in i-Energy project as a method to achieve the goal of powersaving in home. In the on-demand power supply network, power requests of devices are classified by priority of Quality of Life. When each device requires power, the device sends a power request message which contains required power and the priority to the network. When the network accepts a request message, the network supplies power to the device. In this paper, we focus on Power over Ethernet(PoE), in which power requests are sent from PD(Power Device) to the PSE(Power Supply Equipment) by Link Layer Discovery Protocol and Physical Layer. However PSE cannot allocate power for several PDs according to priority. We propose fair power allocation algorithms in terms of the priority from PSE to PD for minimizing decrease of QoL. We measured power requests and allocations time of PDs by using real PoE equipment. We show allocation time to complete the process within a certain period of time even in the worst case, that is, many devices send power request messages at the same time.
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按需供电的PoE功率分配算法
在i-Energy项目中提出了一种按需供电网络,作为实现家庭节能目标的一种方法。在按需供电网络中,设备的电力需求按照生活质量的优先级进行分类。当每台设备需要供电时,设备向网络发送一个包含所需功率和优先级的供电请求消息。当网络接受请求消息时,网络向设备供电。在本文中,我们重点研究以太网供电(PoE),其中电源请求通过链路层发现协议和物理层从PD(电源设备)发送到PSE(电源设备)。但是,PSE不能根据优先级为多个pd分配功率。为了最大限度地减少QoL的下降,我们提出了从PSE到PD的优先级公平的功率分配算法。我们使用真实的PoE设备来测量pdu的功率请求和分配时间。即使在最坏的情况下,即许多设备同时发送电源请求消息,我们也显示了在一定时间内完成该过程的分配时间。
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