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A VLSI Design for High-speed Data Processing of Differential Phase Detectors with Decision Feedback  

Kim, Chang-Gon (Dept. of Electronic Electrical Computer Engineering, Hanyang University)
Jeong, Jeong-Hwa (Dept. of Electronic Electrical Computer Engineering, Hanyang University)
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Abstract
This paper proposes a VLSI architecture for high-speed data processing of the differential phase detectors with the decision feedback. To improve the BER performance of the conventional differential phase detection, DF-DPD, DPD-RGPR and DFDPD-SA have been proposed. These detection methods have the architecture feedbacking the detected phase to reduce the noise of the previous symbol as phase reference. However, the feedback of the detected phase results in lower data processing speed than that of the conventional differential phase detection. In this paper, the VLSI architecture was proposed for high-speed data processing of the differential phase detectors with decision feedback. The Proposed architecture has the pre-calculation method to previously calculate the results on 'N'th step at 'M-1'th step and the pre-decision feedback method to previously feedback the predicted phases at 'M-1'th step. The architecture proposed in this paper was implemented to RTL using VHDL. The simulation results show that the Proposed architecture obtains the high-speed data processing.
Keywords
Differential Phase Detection; Desion Feedback; VLSI Design; High-speed Data Processing;
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