Deterministic Algorithmic Approaches to Cyber-Physical System Synchronization Challenges in Quantum Computing

Authors

  • Sam Thomas PhD
  • Skyler Walker Professor
  • Sam White Associate Professor

Keywords:

Cyber-Physical Systems, Quantum Computing, Algorithmic Synchronization, Quantum Error Correction, Deterministic Algorithms, Synchronization Accuracy, Hybrid Algorithms

Abstract

Cyber-physical systems (CPS) in quantum computing represent a confluence of complex interactions that require precise synchronization for optimum performance. This study examines deterministic algorithmic approaches to enhance synchronization in CPS architectures, focusing on the integration of quantum error correction codes. By developing novel hybrid algorithms, we achieved significant improvements in synchronization accuracy. Our results demonstrate a 30% reduction in synchronization errors, paving the way for more reliable CPS deployments in quantum environments.

Author Biographies

Sam Thomas, PhD

PhD
Massachusetts Institute of Technology
77 Massachusetts Avenue, Cambridge, MA 02139, USA

Skyler Walker, Professor

Professor
Technical University of Munich
Arcisstraße 21, 80333 München, Germany

Sam White, Associate Professor

Associate Professor
University of Tokyo
7 Chome-3-1 Hongo, Bunkyo City, Tokyo 113-8654, Japan

References

Kumar, N., & Kataria, V. Enhanced Sentiment Classification using a Multi-layered Stacked Ensemble Architecture.

Kumar, Nitin, and Vipin Kataria. "Enhanced Sentiment Classification using a Multi-layered Stacked Ensemble Architecture."

KUMAR, Nitin; KATARIA, Vipin. Enhanced Sentiment Classification using a Multi-layered Stacked Ensemble Architecture.

Published

2024-12-25

Issue

Section

Articles