QUBO Simplification by Singular Value Decomposition and Coefficient Elimination for Ising Machines

Shinnosuke Inaba, Takeru Ota, Nozomu Togawa · IEEE Access · 2026

Ising machines, including quantum annealing machines, can efficiently solve combinatorial optimization problems by formulating them as Quadratic Unconstrained Binary Optimization (QUBO). However, it is known that the solving performance of Ising machines deteriorates as the energy landscape represented by the QUBObecomes more complex. Simplifying the coefficients of QUBOmatrix can improve the performance of solving combinatorial optimization problems using an Ising machine. In this paper, we propose QUBO simplification methods for Ising machines using singular value decomposition (SVD) and coefficient elimination based on their absolute value (ABS). The proposed SVD method simplifies QUBO by capturing the global structure of the QUBO matrix. QUBO is further simplified by combining it with the simple ABS method. The simplified QUBO is expected to have a less complex energy landscape, while maintaining the global structure of the original, enabling the Ising machine to efficiently find the (semi-)ground state.We demonstrate the numerical experiments using an Ising machine to evaluate the effectiveness of the SVD method alone, the ABS method alone, and the two methods combined.

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