Abstract: Currently, the unlicensed ISM band (Industrial Scientific and Medical) 2.4 GHz is become saturated due many standards used at once. In agricultural production has ZigBee a lot of applications, from wireless sensors networks to complicated automation applications. This paper deals with improving the coexistence properties ZigBee (IEEE 802.15.4), while keeping compatibility with the basic standard. This paper describes principles and application of forward error correction above the physical layer, consisting of block data interleaver and Hamming code, and also the effect of improvements in coexistence with variously loaded WiFi 802.11g.
DOI: *As the DOI is a unique identifier, it is already available in the pdf version. **The DOI link will be activated in the first midst of January 2026.
Bohuslavek Zdenek, Masik Ilja, "Error Characteristics and their Prediction in ZigBee Transmission at Coexistence Conditions," WSEAS Transactions on Communications, vol. 16, pp. 404-411, 2017, DOI:
Bohuslavek Zdenek, Masik Ilja. Error Characteristics and their Prediction in ZigBee Transmission at Coexistence Conditions.
WSEAS Transactions on Communications. 2017;16:404-411.