准固定宽带电力线通信网络基于集群的MAC和资源管理

S. Choe, Jeonghwa Yoo, Y. Louét
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引用次数: 5

摘要

在过去的十年中,利用现有的配电线路进行宽带电力线通信(BPLC)已经引起了人们的关注。PLC技术正变得越来越广泛采用,因为它非常适合智能电网和家庭网络应用,没有基础设施成本。然而,PLC不仅具有有限的频谱(<;30mhz)和有限的覆盖范围(<;由于电力线电缆衰减,但也有一些时变的信道损伤,包括多径衰落和射频噪声。我们研究了一种基于准稳态ofdma的BPLC局域网(LAN),用于智能家庭网络或室内电力线上的小型智能电网(也称为微电网)服务,其中每个节点都假设配备了阻抗匹配电路(IMC);然后,由于节点的插入或关闭不再改变网络拓扑结构,因此即使存在一些信道变化(RF噪声等),也可以很容易地估计整个BPLC网络的链路预算,因此它的资源管理具有可靠性和灵活性。本文重点研究了两种基于ofdma的BPLC局域网:集中式(ap)局域网和分布式(ad-hoc)局域网的基于集群的介质访问控制(MAC)层设计和资源管理。
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Cluster-based MAC and resource management for quasi-stationary broadband power line communication networks
In the last decade, there has been an emergent attention in the utilization of existing power distribution lines for broadband power line communications (BPLC). PLC technology is becoming more widely adopted because of its excellent fit with smart grid and in-home network applications, with no infrastructure cost. However, PLC not only has a limited spectrum (<; 30 MHz) and limited coverage (<; 1 mile) due to power line cable attenuation but also has some time-varying channel impairments, including multipath fading and RF noise. We investigate a quasi-stationary OFDMA-based BPLC local area network (LAN) for the smart home network or small-scale smart grid (also termed micro-grid) services over indoor power lines, where every nodes are assumed to be equipped an impedance matching circuit (IMC); then, since plug-in or switchoff of nodes do not change the network topology anymore, link budgets of the overall BPLC network are easily estimated even with some channel variations (RF noise, etc) and so its resource management with reliability and flexibility is possible. In this paper, we focus on the cluster-based medium access control (MAC) layer design and resource management of the two types of OFDMA-based BPLC LANs: centralized (AP-based) LAN and distributed (ad-hoc based) LAN.
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