论文标题
量子退火方法在合成孔径雷达成像中的相位未包装问题
Quantum Annealing Approaches to the Phase-Unwrapping Problem in Synthetic-Aperture Radar Imaging
论文作者
论文摘要
这项工作的重点是探索使用量子退火求解器来解决合成孔径雷达(SAR)图像的相位问题。尽管基于网络编程的解决方案存在解决方案,但这些技术并不能很好地扩展到大型图像。我们的方法涉及将问题提出为二次不受约束的二进制优化(QUBO)问题,该问题可以使用量子退火器解决。鉴于当前的量子退火器的实施方案在其拥有的Qubit数量中仍然有限,我们将问题分解为一组可以单独解决的子问题。这些单独的解决方案几乎接近最佳整数常数,每个子图像一个常数。在第二阶段,这些整数常数被确定为解决另一个QUBO问题的解决方案。我们使用各种基于软件的QUBO求解器以及合成和真实的各种图像测试我们的方法。此外,我们使用D-Wave Systems的Quantum Nealeleer,D-Wave 2000Q进行实验。基于软件的求解器获得的高质量解决方案可与最先进的相位未包装求解器相媲美。我们目前正在最佳地将问题映射到量子退火器的受限拓扑上,以提高解决方案的质量。
The focus of this work is to explore the use of quantum annealing solvers for the problem of phase unwrapping of synthetic aperture radar (SAR) images. Although solutions to this problem exist based on network programming, these techniques do not scale well to larger-sized images. Our approach involves formulating the problem as a quadratic unconstrained binary optimization (QUBO) problem, which can be solved using a quantum annealer. Given that present embodiments of quantum annealers remain limited in the number of qubits they possess, we decompose the problem into a set of subproblems that can be solved individually. These individual solutions are close to optimal up to an integer constant, with one constant per sub-image. In a second phase, these integer constants are determined as a solution to yet another QUBO problem. We test our approach with a variety of software-based QUBO solvers and on a variety of images, both synthetic and real. Additionally, we experiment using D-Wave Systems's quantum annealer, the D-Wave 2000Q. The software-based solvers obtain high-quality solutions comparable to state-of-the-art phase-unwrapping solvers. We are currently working on optimally mapping the problem onto the restricted topology of the quantum annealer to improve the quality of the solution.