DocumentCode
2934725
Title
A Novel Approach to the Design of Memory-Reduced Direct Digital Frequency Synthesizer for OFDM Receiver
Author
Li, Xiaojin ; Lai, Linhui ; Lei, Ao ; Lai, Zongsheng
Author_Institution
Dept. of Electron. Eng., East China Normal Univ., Shanghai
Volume
1
fYear
2009
fDate
6-8 Jan. 2009
Firstpage
298
Lastpage
302
Abstract
Carrier frequency offset (CFO), whose estimation and recovery are essential important in OFDM receiver, can be corrected by tuning the frequency control word of the digital direct frequency synthesizer (DDFS). Traditional DDFS make use of modulus 2N arithmetic and may provide fine frequency tuning capabilities using a sine/cosine look up table. However, straightforward implementation results in enormous amounts of memory and power consumption. In this paper, a novel DDFS has been proposed. Its phase accumulator and ROM are split into three smaller parts based on the trigonometric function transform, and also are compressed and optimized. Performance analysis has been carried out and shows that 96% and 61% memory reduction can be achieved compared with Moran and Memoyo´s method and Kesoulis´s method, respectively. The design will be implemented in OFDM such as DVB-T receiver systems.
Keywords
OFDM modulation; direct digital synthesis; read-only storage; transforms; DVB-T receiver systems; OFDM receiver; ROM; carrier frequency offset; digital direct frequency synthesizer; frequency control word tuning; frequency tuning; memory reduction; memory-reduced direct digital frequency synthesizer; phase accumulator; sine/cosine look up table; trigonometric function transform; Arithmetic; Digital video broadcasting; Energy consumption; Frequency control; Frequency estimation; Frequency synthesizers; OFDM; Performance analysis; Read only memory; Tuning;
fLanguage
English
Publisher
ieee
Conference_Titel
Communications and Mobile Computing, 2009. CMC '09. WRI International Conference on
Conference_Location
Yunnan
Print_ISBN
978-0-7695-3501-2
Type
conf
DOI
10.1109/CMC.2009.185
Filename
4797005
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