DocumentCode
305014
Title
A multiple-sequence spread spectrum system for powerline communications
Author
Rice, Bart F.
Author_Institution
Lockheed Martin Missiles & Space Co. Inc., USA
Volume
2
fYear
1996
fDate
22-25 Sep 1996
Firstpage
809
Abstract
By using a multiple-sequence spread spectrum technique employing sequences generated by linear feedback shift registers, relatively high data rates over powerlines together with low error rates and robustness can be achieved. The method admits easy incorporation of a threshold decision scheme whereby erasures as well as errors are declared, enabling detection of poor channel conditions. By incorporating an informationless sequence of the same period in quadrature with the information-bearing sequence, carrier recovery, spreading sequence synchronization and block code synchronization can all be achieved jointly. Individual symbols can be detected using Hadamard Transforms, which can be efficiently implemented in either software or hardware. Also, the system is “downward compatible” with “conventional” direct sequence spread spectrum schemes in which a narrowband binary signal is mixed with an informationless linear spreading code
Keywords
Hadamard transforms; block codes; carrier transmission on power lines; data communication; spread spectrum communication; synchronisation; Hadamard Transforms; block code synchronization; carrier recovery; information-bearing sequence; informationless linear spreading code; linear feedback shift registers; low error rates; multiple-sequence spread spectrum system; narrowband binary signal; poor channel conditions detections; powerline communications; robustness; spreading sequence synchronization; threshold decision scheme; Bandwidth; Block codes; Error analysis; Feedback; Frequency synchronization; Hardware; Narrowband; Power generation; Robustness; Spread spectrum communication;
fLanguage
English
Publisher
ieee
Conference_Titel
Spread Spectrum Techniques and Applications Proceedings, 1996., IEEE 4th International Symposium on
Conference_Location
Mainz
Print_ISBN
0-7803-3567-8
Type
conf
DOI
10.1109/ISSSTA.1996.563236
Filename
563236
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