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Application of Quantum Annealing to Nurse Scheduling Problem

机译:量子退火在护士排班问题中的应用

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摘要

Quantum annealing is a promising heuristic method to solve combinatorial optimization problems, and efforts to quantify performance on real-world problems provide insights into how this approach may be best used in practice. We investigate the empirical performance of quantum annealing to solve the Nurse Scheduling Problem (NSP) with hard constraints using the D-Wave 2000Q quantum annealing device. NSP seeks the optimal assignment for a set of nurses to shifts under an accompanying set of constraints on schedule and personnel. After reducing NSP to a novel Ising-type Hamiltonian, we evaluate the solution quality obtained from the D-Wave 2000Q against the constraint requirements as well as the diversity of solutions. For the test problems explored here, our results indicate that quantum annealing recovers satisfying solutions for NSP and suggests the heuristic method is potentially achievable for practical use. Moreover, we observe that solution quality can be greatly improved through the use of reverse annealing, in which it is possible to refine returned results by using the annealing process a second time. We compare the performance of NSP using both forward and reverse annealing methods and describe how this approach might be used in practice.
机译:量子退火是解决组合优化问题的一种有前途的启发式方法,而对现实问题中的性能进行量化的努力为深入了解如何在实践中最佳使用此方法提供了见识。我们研究了使用D-Wave 2000Q量子退火设备解决具有严格约束条件的护士调度问题(NSP)的量子退火的经验性能。 NSP会为一组护士寻求最佳分配,以在时间表和人员限制下伴随轮班。将NSP简化为新颖的Ising型哈密顿量后,我们针对约束要求以及解的多样性来评估从D-Wave 2000Q获得的解质量。对于此处探讨的测试问题,我们的结果表明,量子退火可以回收满足NSP要求的解决方案,并表明启发式方法对于实际应用是有可能实现的。此外,我们观察到通过使用反向退火可以大大提高解决方案的质量,其中可以通过第二次使用退火过程来细化返回的结果。我们使用正向和反向退火方法比较NSP的性能,并描述如何在实践中使用此方法。

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