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IPv6 (Internet Protocol version 6) heterogeneous networking infrastructure for energy efficient building

机译:IPv6(Internet协议版本6)异构网络基础架构,用于节能建筑

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In the context of increasing developments of home, building and city automation, Power Line Communication (PLC) networking is called for unprecedented usage, especially for energy efficiency improvement. Our view of the future building networking infrastructure places PLC as the central point. We point that while Wireless Sensor Network (WSN) is necessary in the sensor and actuator networking infrastructure, PLC is mandatory for the smart-grid metering and command infrastructure. PLC will also serve the sensor/actuator infrastructure when the energy requirement of the probing system itself cannot be fulfilled by autonomous battery and harvesting based nodes. PLC may also provide the numerous bridges necessary to sustain a long lifetime (years) with the battery based WSN part of the infrastructure. This new role of PLC networking will be possible only if the interoperability between all media and technology is made possible. Thanks to the converging design of Internet Protocol version 6 (IPv6) networking layers, we show that such a full inter-interoperability is already possible even in very tiny constrained networking devices. Moreover, the low power PLC technology used in our experiments will be able to provide this smart grid monitoring without impacting noticeably the overall energy balance of the monitored system.
机译:在家庭,建筑和城市自动化的发展日新月异的背景下,电力线通信(PLC)网络被要求实现空前的使用,尤其是在提高能源效率方面。我们对未来构建网络基础架构的看法将PLC作为中心。我们指出,虽然在传感器和执行器网络基础架构中无线传感器网络(WSN)是必需的,但对于智能电网计量和命令基础架构,PLC是必不可少的。当探测系统本身的能量需求无法通过自主电池和基于采集的节点来满足时,PLC也将为传感器/执行器基础设施提供服务。 PLC还可以提供许多桥梁,以维持基础设施中基于电池的WSN部件的长寿命(年)。只有在所有媒体和技术之间都具有互操作性的情况下,PLC网络的这一新角色才有可能实现。由于Internet协议版本6(IPv6)网络层的融合设计,我们证明了即使在非常小的受限网络设备中,也可以实现这种完全的互操作性。此外,我们的实验中使用的低功率PLC技术将能够提供这种智能电网监控,而不会显着影响被监控系统的整体能量平衡。

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