Francesca Ratti

Orcid: 0000-0002-8108-9064

According to our database1, Francesca Ratti authored at least 13 papers between 2020 and 2022.

Collaborative distances:
  • Dijkstra number2 of four.
  • Erdős number3 of four.

Timeline

Legend:

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PhD thesis 
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Bibliography

2022
Low complexity receiver design for time-varying Poisson molecular communication channels with memory.
Digit. Signal Process., 2022

Hybrid deep learning-based feature-augmented detection for molecular communication systems.
Proceedings of the NANOCOM '22: The Ninth Annual ACM International Conference on Nanoscale Computing and Communication, Barcelona, Catalunya, Spain, October 5, 2022

2021
Engineering Information Transfer in Living Systems via Molecular Communication.
PhD thesis, 2021

Bounds on the Constrained Capacity for the Diffusive Poisson Molecular Channel With Memory.
IEEE Trans. Mol. Biol. Multi Scale Commun., 2021

What Is the Trait d'Union between Retroactivity and Molecular Communication Performance Limits?
CoRR, 2021

Mitigating the Retroactivity Impact on Molecular Communications.
Proceedings of the SenSys '21: The 19th ACM Conference on Embedded Networked Sensor Systems, Coimbra, Portugal, November 15, 2021

Optimizing Information Transfer Through Chemical Channels in Molecular Communication.
Proceedings of the IEEE Global Communications Conference, 2021

About the Quality of Data and Services in Natural Sciences.
Proceedings of the Next-Gen Digital Services. A Retrospective and Roadmap for Service Computing of the Future, 2021

2020
Linear Receiver Design for Time-Varying Poisson Molecular Communication Channels with Memory.
Proceedings of the 21st IEEE International Workshop on Signal Processing Advances in Wireless Communications, 2020

Upper and Lower Bounds of Constrained Capacity in Diffusion-based Molecular Communication.
Proceedings of the 21st IEEE International Workshop on Signal Processing Advances in Wireless Communications, 2020

The impact of retroactivity on information exchange in molecular communications.
Proceedings of the NANOCOM '20: The Seventh Annual ACM International Conference on Nanoscale Computing and Communication, 2020

A molecular communications framework for understanding the floral transition.
Proceedings of the NANOCOM '20: The Seventh Annual ACM International Conference on Nanoscale Computing and Communication, 2020

A Data-driven Approach to Optimize Bounds on the Capacity of the Molecular Channel.
Proceedings of the IEEE Global Communications Conference, 2020


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