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Zero-Watt Networked Standby: Development and Evaluation of a Home A/V Network System

机译:零瓦网络待机:HOME A / V网络系统的开发和评估

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Energy conservation is an important global issue. Home is the third largest energy consumer, and 10% of the home energy is standby power of home appliances. The proliferation of home networks increases the standby power. The conventional technologies for low networked standby power such as WoL require continuous AC power, as much as 0.5 watts, to monitor wake-up signals. The large portion of the consumed power is due to the power loss in an AC-DC converter. Moreover, the technologies are applicable only to the specific network types such as Ethernet and IEEE802.11. We propose a solution to reduce the networked standby power down to zero virtually, regardless of the network type. For monitoring wake-up signals, the solution utilizes the precharged power in an ultra capacitor without using AC power supply almost all the time. In order to realize this idea, the solution also utilizes unique and simple protocol dedicated only to the networked standby /wake-up functionality. This protocolenables the monitoring circuit to consume very small power enough for the capacitor to supply. The networked standby/wake-up functionality is easily combined with any conventional network application protocol by protocol address mapping. As one realization example of our solution, we implemented an experimental system which is integrated with an ultra low power wireless signal receiver and extended UPnP protocol. The system evaluation showed that our solution achieves the zero-watt networked standby while keeping network functionalities. Moreover, the analysis of the results shows that the practical networked standby power is one seventeenth of the conventional technologies in usual usage. This corresponds to 1.11 kg-CO2 emission reduction per year per product.
机译:节能是一个重要的全球问题。家是第三大能源消费者,10%的家居能源是家电的待机力量。家庭网络的增殖增加了备用电量。用于低网络待机电源的传统技术,例如Wol需要连续的交流电源,多达0.5瓦,以监视唤醒信号。消耗功率的大部分是由于AC-DC转换器中的功率损耗。此外,该技术仅适用于特定网络类型,如以太网和IEEE802.11。我们提出了一种解决方案,几乎无论网络类型如何,几乎都要将网络待机断电降至零。对于监控唤醒信号,解决方案利用超电容器中的预充电电源而不使用AC电源几乎所有时间。为了实现这个想法,该解决方案还利用了独特而简单的协议,仅用于网络待机/唤醒功能。该协议使监控电路能够消耗非常小的功率,足以使电容器供电。通过协议地址映射,网络待机/唤醒功能容易与任何传统网络应用协议组合。作为我们解决方案的一个实现示例,我们实现了一种实验系统,该实验系统与超低功耗无线信号接收器和扩展UPnP协议集成。系统评估表明,我们的解决方案在保持网络功能的同时实现零瓦网络待机。此外,结果的分析表明,实用的网络待机功率是通常使用中传统技术的第十七。这对应于每种产品每年1.11kg-Co2排放减少。

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