研究目的
To present the principles behind the transmitter and dispersion eye closure quaternary (TDECQ) test and propose a novel method to decompose TDECQ values into penalties from signal impairments that are either equalizable or non-equalizable by the reference receiver.
研究成果
The paper concludes that TDECQ can be effectively decomposed into penalties from equalizable and non-equalizable impairments, providing a comprehensive understanding of signal quality. Low-pass filtering mainly increases the equalizable penalty, while noise, compression, and eye skew affect the non-equalizable part. The results offer guidelines for designing links using TDECQ.
研究不足
The study focuses on isolated impairments and their impact on TDECQ values, but does not address the combined effects of multiple impairments or the practical challenges of implementing the proposed methods in real-world systems.