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ŠULC, V. KUCHTA, R. KADLEC, J. KUCHTOVÁ, Z.
Originální název
A Time Quanta Bit coding method
Typ
článek v časopise ve Web of Science, Jimp
Jazyk
angličtina
Originální abstrakt
This paper discusses a new method of coding and/or decoding data for wireless transmission, particularly for radio transmitted data, and examines the equipment needed for the actual implementation of the technique. The authors describe in detail the principle of the proposed approach, including possible benefits of its implementation in wireless sensor networks, and compare the given concept with the most widely used Manchester coding method. When implemented, the Time Quanta Bit coding method increases the communication range and shortens the necessary transmission time, which, in the case of battery-operated devices as a typical representative of the wireless sensor node, allows for longer operation time. The described technique can significantly improve the quality of wireless communication in small wireless sensor networks where the communication is based on infrequent small packet transfers; such target applications then include, for example, home and office automation wireless sensor networks, safety systems, street lighting, industrial manufacturing and management, and telemetry.
Klíčová slova
Wireless communication;Bit-coding;Wireless network coding;RF transmission channel;RF physical layer
Autoři
ŠULC, V.; KUCHTA, R.; KADLEC, J.; KUCHTOVÁ, Z.
Vydáno
21. 8. 2018
Nakladatel
Springer US
Místo
Wireless Networks
ISSN
1572-8196
Periodikum
Ročník
2018
Číslo
11276
Stát
Nizozemsko
Strany od
325
Strany do
332
Strany počet
8
URL
https://link.springer.com/article/10.1007/s11276-018-1814-0
BibTex
@article{BUT149398, author="Vladimír {Šulc} and Radek {Kuchta} and Jaroslav {Kadlec} and Zdeňka {Kuchtová}", title="A Time Quanta Bit coding method", journal="Wireless Networks", year="2018", volume="2018", number="11276", pages="325--332", doi="10.1007/s11276-018-1814-0", issn="1572-8196", url="https://link.springer.com/article/10.1007/s11276-018-1814-0" }