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GenStar: a generic construction method for scalable and efficient wavelength-routed optical networks-on-chip
Optics Express
|August 14, 2026
Summary
GenStar offers a new method for scalable wavelength-routed optical networks-on-chip (WRONoCs). This approach reduces microring resonator count and improves performance for many-core processors.
Area of Science:
- Computer Engineering
- Optical Communications
- Integrated Circuits
Background:
- Many-core processors demand high-performance interconnects.
- Optical Networks-on-Chip (ONoCs) offer solutions but face scalability challenges.
- Wavelength-Routed Optical Networks-on-Chip (WRONoCs) provide high bandwidth and low latency but struggle with hardware overhead and insertion loss due to increasing microring resonator (MRR) and wavelength requirements.
Purpose of the Study:
- To propose a generalized construction method for scalable WRONoCs.
- To address the limitations of existing WRONoC architectures regarding hardware overhead and performance degradation with increasing network scale.
- To introduce a unified topology construction and wavelength reuse strategy for efficient WRONoC design.
Main Methods:
- Developed GenStar, a generalized construction method for WRONoCs.
- Employed a unified topology construction approach.
- Utilized a heuristic wavelength reuse strategy to optimize resource allocation.
Main Results:
- GenStar significantly reduces the number of microring resonators (MRRs) compared to existing schemes.
- Maintained comparable wavelength counts while improving signal-to-noise ratio.
- Achieved lower insertion loss, bit error rate, and laser power consumption.
- Demonstrated improved overall performance and scalability for WRONoCs.
Conclusions:
- GenStar provides an efficient and scalable solution for WRONoC design.
- The proposed method effectively mitigates hardware overhead and performance issues in large-scale optical interconnects.
- GenStar shows significant potential for future optical interconnect design in many-core processors.

