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SCTP-aware Link Layer Retransmission Mechanism for Smart-grid Communication Network

机译:智能电网通信网络的SCTP感知链路层重传机制

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摘要

The smart grid delivers electricity from suppliers to consumers and uses bidirectional communication to exchange real-time information between supply system and smart meters at the user end. With a combined communication infrastructure, smart grid manages the operation of all associated components to provide reliable and supportable electricity supply. The Neighborhood Area Network (NAN) of smart grid supports bi-directional data transfer between smart meters (installed at customer premises) and control center of the utility company through an aggregator. This communication suffers low throughput and excessive delays due to the Head of Line (HOL) blocking when the Transmission Control Protocol (TCP) is implemented for reliability. In this paper we propose SCTP-aware Link Layer Retransmission mechanism (SCTP-LLR) which augments the Stream Control Transmission Protocol (SCTP) with Link Layer Retransmissions at the aggregator. SCTP-LLR uses the multi-streaming feature offered by SCTP and implements link layer retransmissions at the aggregator to mitigate the effect of HOL blocking. We carried out simulations using Network Simulator and compared the performance of SCTP-LLR against TCP and SCTP. Our results show that SCTP-LLR outperforms both TCP and SCTP in terms of throughput and packet delays and is a promising protocol to be implemented in smart grid NAN for reliable and efficient communication.
机译:智能电网将供应商提供给消费者的电力,并使用双向通信在用户端的供应系统和智能仪表之间交换实时信息。通过组合通信基础设施,智能电网可以管理所有相关组件的操作,以提供可靠和可靠的电力供应。智能电网的邻域网(NAN)支持通过聚合器的智能电表(在客户驻地)和实用公司的控制中心之间的双向数据传输。当实现传输控制协议(TCP)以获得可靠性时,该通信由于线路(HOL)阻塞而受到低吞吐量和过度延迟。在本文中,我们提出了SCTP感知链路层重传机制(SCTP-LLR),其在聚合器处用链路层重传增强流控制传输协议(SCTP)。 SCTP-LLR使用SCTP提供的多流传输功能,并在聚合器中实现链路层重传,以减轻HOL阻塞的影响。我们使用网络模拟器进行了模拟,并将SCTP-LLR与TCP和SCTP的性能进行了比较。我们的研究结果表明,SCTP-LLR在吞吐量和数据包延迟方面占TCP和SCTP,是在智能电网NAN中实现的有希望的协议,以获得可靠和高效的沟通。

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