Glover Fred, Kochenberger Gary, Ma Moses, Du Yu
Entanglement, Inc., New York, NY USA.
FutureLab Consulting, Mill Vallay, CA 94941 USA.
Ann Oper Res. 2022;314(1):185-212. doi: 10.1007/s10479-022-04695-3. Epub 2022 May 2.
Quantum Bridge Analytics relates to methods and systems for hybrid classical-quantum computing, and is devoted to developing tools for bridging classical and quantum computing to gain the benefits of their alliance in the present and enable enhanced practical application of quantum computing in the future. This is the second of a two-part tutorial that surveys key elements of Quantum Bridge Analytics and its applications. Part I focused on the Quadratic Unconstrained Binary Optimization (QUBO) model which is presently the most widely applied optimization model in the quantum computing area, and which unifies a rich variety of combinatorial optimization problems. Part II (the present paper) introduces the domain of QUBO-Plus models that enables a larger range of problems to be handled effectively. After illustrating the scope of these QUBO-Plus models with examples, we give special attention to an important instance of these models called the Asset Exchange Problem (AEP). Solutions to the AEP enable market players to identify exchanges of assets that benefit all participants. Such exchanges are generated by a combination of two optimization technologies for this class of QUBO-Plus models, one grounded in network optimization and one based on a new metaheuristic optimization approach called combinatorial chaining. This combination opens the door to expanding the links to quantum computing applications established by QUBO models through the Quantum Bridge Analytics perspective. We show how the modeling and solution capability for the AEP instance of QUBO-Plus models provides a framework for solving a broad range of problems arising in financial, industrial, scientific, and social settings.
量子桥接分析涉及混合经典-量子计算的方法和系统,致力于开发连接经典计算和量子计算的工具,以获取它们联合带来的益处,并在当下推动量子计算更广泛的实际应用,在未来实现量子计算应用的进一步拓展。这是一个分为两部分的教程中的第二部分,该教程概述了量子桥接分析的关键要素及其应用。第一部分聚焦于二次无约束二进制优化(QUBO)模型,它是目前量子计算领域应用最广泛的优化模型,统一了丰富多样的组合优化问题。第二部分(即本文)介绍了QUBO+模型领域,该领域能够有效处理更广泛的问题。在用示例说明这些QUBO+模型的范围之后,我们特别关注这些模型的一个重要实例,即资产交换问题(AEP)。AEP的解决方案使市场参与者能够识别对所有参与者都有益的资产交换。此类交换是通过针对这类QUBO+模型的两种优化技术组合生成的,一种基于网络优化,另一种基于一种名为组合链的新元启发式优化方法。这种组合为从量子桥接分析的角度扩展QUBO模型与量子计算应用之间的联系打开了大门。我们展示了QUBO+模型的AEP实例的建模和求解能力如何为解决金融、工业、科学和社会环境中出现的广泛问题提供一个框架。