Optimum Soft-Output of Autoregressive Detector for Offtrack Interference in LDPC-Coded Perpendicular Magnetic Recording
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概要
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In this paper, we consider the behavior of an autoregressive (AR) detector for partial-response (PR) signaling against offtrack interference (OTI) environment in perpendicular magnetic recording. Based on the behavior, we derive the optimum branch metric to construct the detector by the Viterbi algorithm. We propose an optimum AR detector for OTI that considers an optimum branch metric calculation and an estimation of noise power due to OTI in order to calculate an accurate branch metric. To evaluate the reliability of soft-output likelihood values calculated by our proposed AR detector, we demonstrate a bit error rate performance (BER) of low-density parity-check (LDPC) codes under OTI existing channel by computer simulation. Our simulation results show the proposed AR detector can achieve a better LDPC-coded BER performance than the conventional AR detector. We also show the BER performance of our proposal can keep within 0.5dB of the case that perfect channel state information regarding OTI is used in the detector. In addition, we show that the partial-response maximum-likelihood (PRML) detector is robust against OTI even if OTI is not handled by the detector.
- (社)電子情報通信学会の論文
- 2010-11-01
著者
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Harada Kohsuke
Corporate R&d Center Toshiba Corp.
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Uchikawa Hironori
Corporate R&d Center Toshiba Corp.
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Uchikawa Hironori
Corporate R&d Center Toshiba Corporation
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Harada Kohsuke
Corporate R&d Center Toshiba Corporation
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OBATA Haruka
Corporate R&D Center, Toshiba Corporation
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YOSHIDA Kenji
Toshiba Corporation Digital Media Network Company
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SAKAI Yuji
Toshiba Corporation Digital Media Network Company
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Obata Haruka
Corporate R&d Center Toshiba Corporation
関連論文
- Complexity-Reducing Algorithm for Serial Scheduled Min-Sum Decoding of LDPC Codes
- Optimum Soft-Output of Autoregressive Detector for Offtrack Interference in LDPC-Coded Perpendicular Magnetic Recording
- Design and Performance of Rate-Compatible Non-binary LDPC Convolutional Codes
- Spatially Coupled Protograph-Based LDPC Codes for Decode-and-Forward in Erasure Relay Channel