Simula to Lead Quantum Software Testing and Integration for EU Project
Insider Brief PRESS RELEASE — Quantum computing promises unprecedented processing power, with the potential to transform fields from medicine to finance. However, today’s quantum computers operate in a noisy, error-prone environment,…
Matt Swayne
Publisher The Quantum Insider
Sep 29, 2026 at 8:11 AM UTC · 2 phút đọc

Simula to Lead Quantum Software Testing and Integration for EU Project
Insider Brief
- The EU-funded Q-VERSE project aims to develop open, standardized software tools that enable quantum applications to run across different hardware platforms without dependence on a single provider.
- Simula will lead work on hybrid quantum-classical workflows, automated testing, noise mitigation and performance benchmarking.
- The 36-month project brings together Simula and 12 partner organizations from six European countries to validate the tools across five industrial use cases, including railway scheduling, finance, drug design and telecommunications.
PRESS RELEASE — Quantum computing promises unprecedented processing power, with the potential to transform fields from medicine to finance. However, today’s quantum computers operate in a noisy, error-prone environment, and their programming tools remain fragmented across different hardware vendors.
To take on these challenges, the EU-funded Q-VERSE (Quantum Virtual Ecosystem for a unified Runtime for agnostic Software Engineering) project is bringing together leading European research institutions and industry partners.
Q-VERSE is recognised as part of the European Quantum Flagship, which is a 10-year European Union initiative launched to establish Europe as a global leader in quantum technologies. The project aims to create open, standardised software tools that allow developers to write applications that run reliably across different types of quantum hardware, without relying on a singular provider.
Simula to lead quality and testing
Simula will lead Q-VERSE’s Work Package 4 (Quantum Enablers and Integration Components). Simula’s efforts are headed by Dr. Shaukat Ali (Head of Department for Engineering Complex Software Systems) and Dr. Paolo Arcaini, Chief Research Scientist with Simula. The Simula team will focus on ensuring quantum software is reliable, fast, and accurately tested:
- Hybrid quantum-classical workflows: Quantum computers rarely work alone; they operate alongside classical supercomputers. Simula is leading the effort to develop intelligent workflows (using AI techniques such as Graph Neural Networks and Reinforcement Learning) that automatically split complex tasks between standard computers and quantum processors to maximise speed and efficiency.
- Automated testing and noise mitigation: Unlike traditional software, quantum outputs are probabilistic, making bugs harder to spot. Simula will build a flexible testing framework to automatically detect software flaws and use machine-learning tools to filter out real-world hardware noise.
- Standardised benchmarking: Simula is designing a comprehensive performance-tracking system to measure how well quantum applications perform in real time, helping developers pinpoint system slowdowns or hardware degradation.
“Quantum hardware is evolving rapidly, but software tools have lagged behind,” explains Dr. Ali. “Our focus will be to apply rigorous software engineering principles; automated testing, intelligent hybrid orchestration, and noise mitigation so that developers can build trustworthy quantum applications ready for real-world use.”
Real-world industrial impact
The tools developed in Q-VERSE will be validated across five large-scale industrial use cases, including railway scheduling, financial portfolio optimisation, pharmaceutical drug design, and telecommunications data analytics.
Simula is working alongside 12 partner organisations from 6 European countries. The 36-month project is supported by funding from the European Union’s Horizon Europe programme.
More information on the Q-VERSE project is available on its project page.
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Originally reported by The Quantum Insider
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