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Translation Layer: Architecture

Our aim is to accelerate, but our technical advantage lies in computational reduction: instead of continuous, unstructured server streams, we convert complex parameter variables into isolated configs.

We lowered execution overhead to become more accessible, and accelerate the transition to Quantum Industrial Processes.

I. The BQM Translation Logic: Mapping Physics to Math

Our architecture directly processes complex industrial problems and scales them into high-velocity computational frameworks. We compile massive, multi-variable consraint problems into localized Quadratic Unconsrained Binary Optimization (QUBO) Matrices.

The QUBO matrices go into our Quantum Engine which utilizes 4000+ qubit annealing QPU to provide high-fidelity solutions for large-scale optimization.

  • Variables (i.e Well Integrity, Casing Parameters, Cost Efficiency, Corner Attitudes, Aero Balance Shifts etc) are translated into a Binary Quadratic Model (BQM).
  • Non-Disruptive Engine: Our architecture operates as a localized, high-velocity plug-in tha augments and doesn't replace existing software environments.
  • Instead of high-risk system overrides, we work with you to create parameter profiles from your team data that we can stream into our secure optimization layer, and bypass legacy computing limitations.

II. Hardware Architecture: COMPUTATIONAL DEPLOYMENT

Our architecture directly processes complex industrial constraints and scales them into high-velocity computational frameworks. 

  • Depending on the scale and vector of the optimization required, we run the configurations through the optimal quantum architecture: Utility-Scale Quantum Annealing or Advanced Gate-Model Computing.
  • Instead of checking every combination of casing grades, seismic traces or wing profiles, the system physically settles into the optimal state and solves for a result in milliseconds.

Industrial Validation: The Equinor Volve Benchmark

Our Engine is validated against the Equinor Volve Field Data, the energy industry’s most transparent record of active North Sea production.

The Benchmark Study:
P-S Quantum's research team targeted the NP-Hard bottleneck of Multi-String Casing Design within the Volve drilling logs. By ingesting the lithology pressure gradients and mechanical properties of the Volve 15/9-19 series wells, the Synthesis Engine™ was tasked with identifying a Global Minimum for casing weight that satisfied a 1.25x safety factor against burst and collapse.

 

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Our systems are powered by our partner's primary, state-of-the-art quantum annealer for optimization

>99%
>99% Accuracy on satisfiability problems
>4,400qb
Our Annealer: Powered by 4,400+ Qubits enabling the optimization of thousands of interdependent variables

Quantum Backend
Architecture: 4,400+ Qubits (V2)
Connectivity: Zephyr™ topology (20-way connectivity)
Solver Type: Hybrid Solver Service (combines quantum and classical)

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