Skip to content
Preprint

Performance Optimization of Short Reach Optical Interconnects based on Direct Detection

Aug 2026 · 0 citations · 36 references
Physics

TL;DR

It is shown, through simulations and experimental validations, that for a 40~Gb/s 10~km link, decision trees can outperform by 0.5--1~dB conventional linear equalization, with negligible hardware requirements, and that an E2E technique based on transformers can provide a gain up to 6~dB, highlighting the potential of joint transceiver optimization to improve the performance of next-generation short-reach optical links.

Abstract

Short-reach optical interconnects are evolving toward data rates beyond 400 Gb/s per lane, driven by the bandwidth and energy-efficiency requirements of AI-enabled datacenter networks. At these operating speeds, channel impairments, device nonlinearities, and hardware constraints limit the effectiveness of conventional transceiver design and digital signal processing (DSP). This paper presents a unified framework for the optimization of direct-detection optical interconnects, encompassing digital surrogate modeling, receiver-side DSP optimization, and end-to-end (E2E) transceiver learning. The proposed formulation provides a common perspective for model-based and machine-learning-based approaches, including linear and nonlinear equalization, lookup tables, decision trees, neural-network receivers, and E2E optimization. Their performance is discussed together with computational complexity and hardware implementation aspects, highlighting the associated trade-offs. We show, through simulations and experimental validations, that for a 40~Gb/s 10~km link, decision trees can outperform by 0.5--1~dB conventional linear equalization, with negligible hardware requirements. Moreover, we show that an E2E technique based on transformers can provide a gain up to 6~dB, highlighting the potential of joint transceiver optimization to improve the performance of next-generation short-reach optical links.

View source

Similar papers

Conference Open access 2026

Unified Performance Evaluation of Optical Fiber Nonlinear Compensation Technologies

Driven by emerging high-bandwidth applications including 5G and cloud computing, the continual explosion of data traffic threatens to push optical fiber transmission systems up against their capacity limits. In addition, coherent optical communication with advanced digital signal processing (DSP) demonstrates almost pe...

Zai-Sheng Wang, Xin-Yue Xia · 0 citations
Open access Sep 2026

Semiconductor optical amplifier for next-generation data center interconnects

Optical data centers have become the technology enablers for numerous emerging bandwidth-hungry applications and services, such as artificial intelligence, 4K/8K video streaming, and social networking. This is resulting in an exponential increase in data center traffic. Similar to all the previously released Ethernet s...

A. G. Reza, L. N. Venkatasubramani, S. O'Duill et al. · 0 citations
Conference Sep 2026

Performance Evaluation Of A Hybrid WDM-PON And FSO System For 5G Fronthaul Applications

With the rapid development of 5G and beyond networks, there is a growing need for communication systems that are high-speed, energy-efficient, and cost-effective. This work proposes a simplified hybrid Passive Optical Network (PON) architecture that integrates Wavelength Division Multiplexing (WDM) and Free Space Optic...

Nur Hani Atiqah Binti Zulkiffli, A. Ramli, Nor Aishah Muhammad · 0 citations

Optics and Laser Technology

Hao-Wei Sha, Hang Liu, Yin-Xi Yu et al. · 0 citations
Oct 2026

Performance evaluation of ANN-based dispersion compensation in optical communication systems

Abstract The increasing demand for high-capacity optical communication systems has highlighted the need for intelligent signal processing techniques capable of mitigating dispersion-induced impairments while maintaining low computational complexity. Conventional adaptive equalizers, such as the Least Mean Square (LMS)...

Zahraa F. Mezaal, S. W. Nourildean, Noor J. Jihad · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.