Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

AI-Powered Quantum-Topological Optimization: A Hybrid Framework for Intelligent Academic Timetabling

Record type:

paper
Creator:
KevFul
Publisher:
MDP
Host:
This paper presents a novel hybrid optimization framework that combines Quantum Annealing (QA) with Topological Data Analysis (TDA) for solving academic timetabling problems. The proposed model addresses the multi-constraint nature of university scheduling by integrating quantum-based global search capabilities with topological insights that capture structural data complexity. Empirical evaluations were conducted on real-world scheduling data from the Technical University of Mombasa (TUM), encompassing three datasets of increasing complexity: certificate/diploma, undergraduate, and postgraduate program schedules. The performance of four configurations—QA-only, TDA-only, hybrid without refinement, and full hybrid with refinement—was assessed using four key metrics: Conflict-Free Rate (CFR), Resource Utilization (RU), Computation Time (CT), and Energy Function Value (EFV). Results show that the full hybrid configuration significantly outperforms all baselines, achieving a CFR of 94.3\% and RU of 91.2\% on the most complex dataset, while also yielding the lowest EFV. Clustering and K-Nearest Neighbor (KNN) analyses were conducted to explore configuration similarities and performance consistency, confirming the hybrid model’s robustness across different problem scales.

Visit

doi.org

Languages

Kenyan Sign LanguageSwahili, Coastal

Licenses

http://creativecommons.org/licenses/by/4.0

Similar

An AI-Powered Framework For Assessing Cybersecurity Governance Maturity In African Nations: A Hybrid Model ApproachQuantum-Inspired Tensor Network and Statistical Meta-Analysis Pipeline for Topological Optimization of Plasmodium falciparum Antimalarial LigandsSupplementary Animation: The Unified Hybrid Synthesis - A Bimodal Topological Framework for Sovereign Pan-Plasmodium EradicationSolar Resource Assessment in The Sahara: A Hybrid Dataphysics Framework for Photovoltaic OptimizationIntelligent Systems as Infrastructure: A Framework for AI Product Deployment in Emerging MarketsArtificial intelligence powered intelligent energy management framework for hydrogen storage and dispatch in smart microgrids

An AI-Powered Framework For Assessing Cybersecurity Governance Maturity In African Nations: A Hybrid Model Approach

Quantum-Inspired Tensor Network and Statistical Meta-Analysis Pipeline for Topological Optimization of Plasmodium falciparum Antimalarial Ligands

ENGLISH VERSION

  • Title:<

Supplementary Animation: The Unified Hybrid Synthesis - A Bimodal Topological Framework for Sovereign Pan-Plasmodium Eradication

This video artifact serves as the empirical visual proof for the "Unified Hybrid Synthesis,

Solar Resource Assessment in The Sahara: A Hybrid Dataphysics Framework for Photovoltaic Optimization

Leveraging data-driven prediction models in renewable energy systems (RES) is pivotal for boosting e

Intelligent Systems as Infrastructure: A Framework for AI Product Deployment in Emerging Markets

The dominant AI deployment playbook was designed for capital-rich environments with deep technical t

Artificial intelligence powered intelligent energy management framework for hydrogen storage and dispatch in smart microgrids

Abstract Hydrogen energy storage is increasingly recognized