Presentation 2002/2/27
A HIGH-THROUGHPUT BLIND ADAPTIVE EQUALIZATION ARCHITECHTUTE FOR WIRELESS COMMUNICATION SYSTEMS
Masashi MIZUNO, Kenji UEDA, James Okello, Hiroshi OCHI,
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Abstract(in English) In the current high-speed mobile communication, it is essential to have a technology for high-speed equalization of signals which have been distorted by multipath fading. However, in the traditional equalizer, adaptive direct form FIR filter, which has been used widely. Due to the low throughput associated with an FIR having a large number of coefficients, several pipelined architecture, and their corresponding correction factor have been investigated for the LMS algorithm. In this paper, we propose a pipelining architecture for the FIR portion of the Multilevel Modified Constant Modulus Algorithm (MMCMA). We also provide the correction factor associated with this architecture. The proposed pipeline method uses modules with 6 filter coefficients, resulting in an overall latency of a single sampling period, along the main transmission line.
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Keyword(in English) Blind Equalization / CMA / Pipeline / FIR
Paper # RCS2001-272
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Committee RCS
Conference Date 2002/2/27(1days)
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Registration To Radio Communication Systems (RCS)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) A HIGH-THROUGHPUT BLIND ADAPTIVE EQUALIZATION ARCHITECHTUTE FOR WIRELESS COMMUNICATION SYSTEMS
Sub Title (in English)
Keyword(1) Blind Equalization
Keyword(2) CMA
Keyword(3) Pipeline
Keyword(4) FIR
1st Author's Name Masashi MIZUNO
1st Author's Affiliation Dept. Computer Science and Systems Engineering Kyushu Institute of Technology()
2nd Author's Name Kenji UEDA
2nd Author's Affiliation Dept. Computer Science and Systems Engineering Kyushu Institute of Technology
3rd Author's Name James Okello
3rd Author's Affiliation Dept. Computer Science and Systems Engineering Kyushu Institute of Technology
4th Author's Name Hiroshi OCHI
4th Author's Affiliation Dept. Computer Science and Systems Engineering Kyushu Institute of Technology
Date 2002/2/27
Paper # RCS2001-272
Volume (vol) vol.101
Number (no) 682
Page pp.pp.-
#Pages 8
Date of Issue