@inproceedings{aca678dfea00449bb932bcd4ad7308d0,
title = "Performance of a robust inner receiver with frequency domain LMS equalizer for DSRC systems",
abstract = "OFDM PHY has been selected as North American DSRC standard (IEEE 802.11p). In this paper, we present a robust inner receiver suitable for DSRC communications, whose core is composed by a synchronizer, a one-tap frequency domain equalizer (FDE) and a pilot-based phase estimator. The equalizer uses least-mean-square (LMS) algorithm to track not only the variation of the DSRC channel in 5.9GHz band but also the residual frequency/phase errors that are not yet being corrected by the synchronizer device. In order to keep the LMS equalizer working well, we utilize a pilot-based phase estimator to help estimate the variation and the errors. The simulation results indicate that our proposed inner receiver works fairly well for two DSRC channel models.",
keywords = "DSRC, FDE, LMS",
author = "Lee, \{Shih Kai\} and Kao, \{Yung An\} and Chen, \{Han Wei\}",
year = "2006",
doi = "10.1145/1143549.1143746",
language = "英语",
isbn = "1595933069",
series = "IWCMC 2006 - Proceedings of the 2006 International Wireless Communications and Mobile Computing Conference",
pages = "985--990",
booktitle = "IWCMC 2006 - Proceedings of the 2006 International Wireless Communications and Mobile Computing Conference",
note = "IWCMC 2006 - 2006 International Wireless Communications and Mobile Computing Conference ; Conference date: 03-07-2006 Through 06-07-2006",
}