Enhancing free space optical CubeSat (FSOCS) communication links using low-complexity LDPC decoding techniques

In this work, a low-complexity, low-power, LDPC decoding scheme is presented to improve the performance of Free-Space Optical CubeSat (FSOCS) communication links. This hard-decision bit-flipping scheme aims to improve the performance-complexity tradeoff compared to existing LDPC decoding techniques. Our simulations, which span a wide variety of FSOCS channel models including inter-satellite links and atmospheric optical channels, demonstrate that the proposed decoder approaches the performance of the soft-decision Min-Sum decoder while requiring fewer iterations compared to state-of-the-art hard-decoding schemes. The reduced computational complexity and decoding time make it suitable for resource-constrained CubeSat platforms.

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Publication Details

Journal
Scientific Reports
Published
2026-09-09
DOI
https://doi.org/10.1038/s41598-026-68721-1
Primary Topic
Satellite Communication Systems
Type
article
Field-Weighted Citation Impact
0.00

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article

Enhancing free space optical CubeSat (FSOCS) communication links using low-complexity LDPC decoding techniques

Yahya Mohasseb, Albashir A. Youssef
Scientific Reports
Satellite Communication Systems
article

Enhancing free space optical CubeSat (FSOCS) communication links using low-complexity LDPC decoding techniques

Yahya Mohasseb, Albashir A. Youssef
article en

Abstract

In this work, a low-complexity, low-power, LDPC decoding scheme is presented to improve the performance of Free-Space Optical CubeSat (FSOCS) communication links. This hard-decision bit-flipping scheme aims to improve the performance-complexity tradeoff compared to existing LDPC decoding techniques. Our simulations, which span a wide variety of FSOCS channel models including inter-satellite links and atmospheric optical channels, demonstrate that the proposed decoder approaches the performance of the soft-decision Min-Sum decoder while requiring fewer iterations compared to state-of-the-art hard-decoding schemes. The reduced computational complexity and decoding time make it suitable for resource-constrained CubeSat platforms.

Scientific ReportsVol. 16(1)
Arab Academy for Science, Technology, and Maritime Transport (EG)
Arab Academy for Science, Technology and Maritime Transport, Science and Technology Development Fund
Decent work and economic growth
Openalex Percentile: Top 7%
Satellite Communication Systems
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Enhancing free space optical CubeSat (FSOCS) communication links using low-complexity LDPC decoding techniques — Yahya Mohasseb, Albashir A. Youssef · Scientific Reports (2026) | TGRS Research Map | TGRS