Paper
1 August 2022 Modeling and analysis of high-speed data transmission systems with degraded interconnection channel
Chaoyi Wang, Kaixuan Song, Xiaolong Xu, Jun Xie
Author Affiliations +
Proceedings Volume 12257, 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022); 122570A (2022) https://doi.org/10.1117/12.2640092
Event: 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022), 2022, Guangzhou, China
Abstract
With the continuous advancement of transmission data rate, high-speed electronic interconnections are extensively investigated in electronic and information engineering field. For a high-speed data transmission system, channel degradation may result in deterioration of communication quality of digital signals. In X-band and Ku-band, high-speed interconnected transmission systems using single sideband modulation were proposed in this paper, where Pseudo Random Binary Sequence data with 231-1 pattern was used as the signal source at the rate of theoretical maximum. With regard to the comparison between pristine and degraded channels, different Ball Grid Arrays high-frequency transmission channels were respectively fabricated and measured. Experimental measurements of channels demonstrate that failed solder balls would cause significant decrease of reflection and transmission parameters in Ku-band. Simulations of all system models indicate that excellent eye openings and low bit error rates could be obtained, although the eye height was deteriorated in those systems working in Ku-band. Based on experimental tests and simulations, the results of this investigation provide a better understanding and evaluating for the effects of degraded interconnection channel in high-speed data transmission systems.
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Chaoyi Wang, Kaixuan Song, Xiaolong Xu, and Jun Xie "Modeling and analysis of high-speed data transmission systems with degraded interconnection channel", Proc. SPIE 12257, 4th International Conference on Information Science, Electrical, and Automation Engineering (ISEAE 2022), 122570A (1 August 2022); https://doi.org/10.1117/12.2640092
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KEYWORDS
Ku band

Data transmission

X band

Systems modeling

Eye

Modulation

Single sideband modulation

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