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Related Experiment Video

Updated: Jan 13, 2026

Microfluidic Platform with Multiplexed Electronic Detection for Spatial Tracking of Particles
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Security, Privacy, and Linear Function Retrieval in Combinatorial Multi-Access Coded Caching with Private Caches.

Mallikharjuna Chinnapadamala1, B Sundar Rajan1

  • 1Department of Electrical Communication Engineering, IISc, Bengaluru 560012, India.

Entropy (Basel, Switzerland)
|October 28, 2025
PubMed
Summary
This summary is machine-generated.

This study introduces a coded caching scheme with private caches, enhancing data security and user privacy. The new approach uses less memory than existing methods while ensuring linear function retrieval.

Keywords:
coded cachinglinear function retrievalmulti-accessprivacysecurity

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Area of Science:

  • Information theory
  • Computer engineering
  • Network security

Background:

  • Coded caching systems aim to reduce data retrieval costs by caching content at user nodes.
  • Existing multi-access combinatorial caching lacks robust privacy and security features.
  • The integration of private caches alongside multi-access caches presents a novel architectural approach.

Purpose of the Study:

  • To develop a coded caching scheme that simultaneously ensures Linear Function Retrieval (LFR), content security, and demand privacy.
  • To leverage private caches to enhance user privacy against colluding users.
  • To improve memory efficiency compared to existing multi-access combinatorial caching schemes.

Main Methods:

  • A novel coded caching scheme integrating private and multi-access caches is proposed.
  • Security and privacy guarantees are formally analyzed.
  • A cut-set lower bound is derived to evaluate the scheme's performance.
  • The scheme is extended to a generalized user-cache connectivity model.

Main Results:

  • The proposed scheme achieves Linear Function Retrieval (LFR), content security, and demand privacy.
  • Private caches are demonstrated to be effective in providing privacy against colluding users.
  • The scheme offers reduced total user memory access and system memory compared to prior art for the same data rate.
  • Optimality is proven for r≥C-1, with a constant gap of 5 shown for r

Conclusions:

  • The novel coded caching scheme effectively balances performance, security, and privacy.
  • The inclusion of private caches significantly enhances demand privacy in multi-access systems.
  • The scheme presents a more memory-efficient solution for coded caching in combinatorial topologies.