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Title: The design of vertical RS-CRC and lDPC code for ship-based satellite communications on-the-move
Authors: Wang, BR
Chen, PP
Fang, Y
Lau, FCM 
Keywords: LDPC
Ship-based satellite communications
Burst error
Issue Date: 2019
Publisher: Institute of Electrical and Electronics Engineers
Source: IEEE access, 2019, v. 7, p. 44977-44986 How to cite?
Journal: IEEE access 
Abstract: This paper investigates the decoding performance of channel-coded ship-based satellite communications on-the-move (SSCOTM) between ships and satellites. In practical communications, ship antennas deviated from satellites by wind waves suffer rapid channel degradation with serious burst errors and even losing all the data. To address this issue, we first establish a mathematical model to study the influence of wind waves and derive the effective signal-to-noise ratio (SNR) in SSCOTM. Second, we propose a vertical Reed-Solomon (RS) with cyclic redundancy check (CRC) and low-density parity check (VRC-LDPC) code, where the RS code and LDPC code are treated as the inner code and outer code to correct both burst and random errors, respectively. Moreover, both the encoder and the decoder of the proposed VRC-LDPC can be carried out in parallel implementations. Finally, simulation results show that the proposed VRC-LDPC performs much better than the conventional codes of the Consultative Committee for Space Data Systems (CCSDS) standard. Thus, this paper provides an excellent alternative channel code for reliable error-correction systems of SSCOTM.
ISSN: 2169-3536
DOI: 10.1109/ACCESS.2019.2895746
Rights: © 2019 IEEE. Translations and content mining are permitted for academic research only. Personal use is also permitted, but republication/redistribution requires IEEE permission. See for more information.
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The following publication B. Wang, P. Chen, Y. Fang and F. C. M. Lau, "The Design of Vertical RS-CRC and LDPC Code for Ship-Based Satellite Communications On-the-Move," in IEEE Access, vol. 7, pp. 44977-44986, 2019 is available at
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