Abstract
The signal in channels with high-speed designs is attenuated by channel loss, inter-symbol interference, jitter, noise and crosstalk. The main way to recover the signal is by using equalizations, such as Feed-Forward Equalizer, Continuous Time-Linear Equalizer and Decision Feedback Equalizer (DFE). One of the important problems with high-speed design and channel simulations is developing fast optimization algorithms for each equalizer, as each additional tap increases the cost of the chip. The paper proposes a new efficient optimization of DFE for high-speed links. Mathematical formulation of the optimization is discussed. Different test results are given for comparison purposes.
| Original language | American English |
|---|---|
| Journal | Proceedings of the IEEE International Symposium on Electromagnetic Compatibility, Signal and Power Integrity (2017, Washington, D.C.) |
| DOIs | |
| State | Published - Aug 1 2017 |
Keywords
- Channel Simulation
- Continuous Time Systems
- DFE
- Decision Feedback Equalizers
- Electromagnetic Compatibility
- Fast Optimizations
- Feed Forward Equalizers
- High Speed Designs
- High-Speed Links
- Linear Equalizer
- Mathematical Formulation
- Multi-Level Signal
- Multilevels
- Optical Communication
- Optimization
Disciplines
- Electrical and Computer Engineering
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