Precomputed embeddings reduce the preprocessing overhead of a quantum-annealer-based Benders decomposition by about an order of magnitude on small transmission-network expansion problems, with no loss in solution quality.
Extending the D-Wave with support for Higher Precision Coefficients
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abstract
D-Wave only guarantees to support coefficients with 4 to 5 bits of resolution or precision. This paper describes a method to extend the functionality of the D-Wave to solve problems that require the support of higher precision coefficients.
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quant-ph 1years
2026 1verdicts
CONDITIONAL 1representative citing papers
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Performance enhancing of hybrid quantum-classical Benders approach for MILP optimization
Precomputed embeddings reduce the preprocessing overhead of a quantum-annealer-based Benders decomposition by about an order of magnitude on small transmission-network expansion problems, with no loss in solution quality.