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A Study on Minimum Transmit Power and Interference in ZigBee Transceivers at 2.4GHz in Multiple Integrated Laser Engagement System  

Kwak, Hyun-Sang (Dept. of Wireless Communications Engineering, Graduate School of Kwangwoon University)
Yoo, Ho-Joon (Dept. of Wireless Communications Engineering, Graduate School of Kwangwoon University)
Kim, Young-Ho (Dept. of Wireless Communications Engineering, Graduate School of Kwangwoon University)
Chun, Sang-Hyun (Dept. of Wireless Communications Engineering, Graduate School of Kwangwoon University)
Kim, Jong-Heon (Dept. of Wireless Communications Engineering, Graduate School of Kwangwoon University)
Lee, Chan-Joo (Dept. of Electronic Communication, Shinheung College)
Lim, Seung-Chan (Korea Elecom)
Publication Information
Journal of the Korea Institute of Military Science and Technology / v.11, no.6, 2008 , pp. 47-54 More about this Journal
Abstract
In this paper, interference analysis has been performed between RF receiver and transmitters on each soldier for Multiple Integrated Laser Engagement System(MILES) which are following ZigBee standard. In order to obtain minimum transmit power without interference, 1% Packet Error Rates(PER) from 14 transmitters attached on a soldier to a receiver are measured with the scenarios for simple transmitting and receiving network configuration and for repeating network configuration. Based on this transmit power, the available distance for interference free among soldiers is simulated using Spectrum Engineering Advanced Monte Carlo Analysis Tool(SEAMCAT). Later scenario gives the benefit of 10dB lower transmit power, smaller and lighter power source, and better activity of trainee.
Keywords
MILES; SEAMCAT; ZigBee; Inteference; RF Transceiver;
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  • Reference
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