The Effects of PRF and Slot Interval on the PPM-Based Ultra Wide-Band Systems 


Vol. 28,  No. 12, pp. 1192-1199, Dec.  2003


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  Abstract

In this paper, we investigate the effect of pulse repetition frequency (PRF) and slot interval on the throughput performance of the ultra wide band (UWB) wireless communication system in multi-path channels, and based on these obsevations, a data throughput control using PRF and slot interval is proposed for maximizing the effective throughput. Recently, due to many desurable features of the UWB system, it has drawn much attention especially for short-range high-speed data transmission. The UWB system has two parameters to determine its data throughput; pulse repetition frequency and slot interval. In the multi-path channel with additive white Gaussian noise, the UWB system suffers form the inter-pulse interference (IPI) and noise, which result in degradation of system performance. the UWB system can vary the two parameters to maintain and/or improve the system performance. In this paper, we demonstrate the effects of the two parameters on the data throughput of the UWB system in various multi-path indoor channels through computer simulation, and show that the variable data rate approach designed based on the observations is superior to the fixed data rate one in terms of effective throughput performance.

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  Cite this article

[IEEE Style]

S. Kim and S. Im, "The Effects of PRF and Slot Interval on the PPM-Based Ultra Wide-Band Systems," The Journal of Korean Institute of Communications and Information Sciences, vol. 28, no. 12, pp. 1192-1199, 2003. DOI: .

[ACM Style]

Sugn-Jun Kim and Sung-Bin Im. 2003. The Effects of PRF and Slot Interval on the PPM-Based Ultra Wide-Band Systems. The Journal of Korean Institute of Communications and Information Sciences, 28, 12, (2003), 1192-1199. DOI: .

[KICS Style]

Sugn-Jun Kim and Sung-Bin Im, "The Effects of PRF and Slot Interval on the PPM-Based Ultra Wide-Band Systems," The Journal of Korean Institute of Communications and Information Sciences, vol. 28, no. 12, pp. 1192-1199, 12. 2003.