2014IEEE Transactions on Instrumentation and MeasurementRequires access

Measurement and Characterization of Channel Delays for Broadband Power Line Communications

Grant Huang, David Akopian, C. L. Philip Chen

Open publisher page 28 citations

Abstract

Power Line Communications (PLC) emerged as a competitive technology for indoor broadband communications. It exploits the existing power line infrastructure for data transmissions. Transmission delays may essentially degrade the performance of applications relying on two-way communications such as videoconferencing, remote control systems, online games, and so on. Reported PLC channel models indirectly characterize signal propagation delays through channel transfer functions or impulse responses, but they do not address more important delays occurring because of multiple retransmissions of lost data packets in noisy PLC channels. This paper proposes a cost-efficient data delay measurement and a high-level statistical modeling approach for applications that are sensitive to data delays. Hybrid statistical distributions are explored for accurate delay characterization.

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What this paper is about

Power Line Communications (PLC) emerged as a competitive technology for indoor broadband communications. It exploits the existing power line infrastructure for data transmissions. Transmission delays may essentially degrade the performance of applications relying on two-way communications such as videoconferencing, remote control systems, online games, and so on. Reported PLC channel models indirectly characterize signal propagation delays through channel transfer functions or impulse responses, but they do not address more important delays occurring because of multiple retransmissions of lost data packets in noisy PLC channels. This paper proposes a cost-efficient data delay measurement and a high-level statistical modeling approach for applications that are sensitive to data delays. Hybrid statistical distributions are explored for accurate delay characterization.

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OpenAlex reports 28 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Power Line Communications (PLC) emerged as a competitive technology for indoor broadband communications. It exploits the existing power line infrastructure for data transmissions. Transmission delays may essentially degrade the performance of applications relying on two-way communications such as videoconferencing, remote control systems, online games, and so on. Reported PLC channel models indirectly characterize signal propagation delays through channel transfer functions or impulse responses, but they do not address more important delays occurring because of multiple retransmissions of lost data packets in noisy PLC channels. This paper proposes a cost-efficient data delay measurement and a high-level statistical modeling approach for applications that are sensitive to data delays. Hybrid statistical distributions are explored for accurate delay characterization.

Key concepts: Broadband, Power-line communication, Channel (broadcasting), Computer science, Data transmission, Delay spread, Electronic engineering, Power delay profile

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