Title :
A power line communication network infrastructure for the smart home
Author :
Lin, Yu-Ju ; Latchman, Hanipa A. ; Lee, Minkyu ; Katar, Srinivas
Author_Institution :
Dept. of Electr. & Comput. Eng., Florida Univ., FL, USA
Abstract :
Low voltage electrical wiring has largely been dismissed as too noisy and unpredictable to support high-speed communication signals. Advances in communication and modulation methodologies as well as in adaptive digital signal processing and error detection and correction have spawned novel protocols capable of supporting power line communication networks at speeds comparable to wired LANs. We motivate the use of power line LANs as a basic infrastructure for building integrated smart homes, wherein information appliances ranging from simple control or monitoring devices to multimedia entertainment systems are seamlessly interconnected by the very wires that provide them electricity. By simulation and actual measurements using "reference design" prototype commercial powerline products, we show that the HomePlug MAC and PHY layers can guarantee QoS for real-time communications, supporting delay-sensitive data streams for smart home applications.
Keywords :
Internet; access protocols; carrier transmission on power lines; delays; home automation; home computing; local area networks; modulation; multimedia communication; quality of service; HomePlug MAC; Internet bridging; LV electrical wiring; QoS; adaptive digital signal processing; control devices; delay-sensitive data streams; error correction; error detection; high-speed communication signals; information appliances; integrated smart homes; low voltage electrical wiring; media access control protocol; modulation; monitoring devices; multimedia entertainment systems; physical layer protocols; power line LAN; power line communication network infrastructure; real-time communications; simulation; Adaptive signal detection; Digital modulation; Digital signal processing; Error correction; Low voltage; Power line communications; Protocols; Smart homes; Streaming media; Wiring;
Journal_Title :
Wireless Communications, IEEE
DOI :
10.1109/MWC.2002.1160088