论文标题

带量子退火的方格上的交通信号优化

Traffic Signal Optimization on a Square Lattice with Quantum Annealing

论文作者

Inoue, Daisuke, Okada, Akihisa, Matsumori, Tadayoshi, Aihara, Kazuyuki, Yoshida, Hiroaki

论文摘要

智能运输系统在城市城市的传播造成了巨大的计算负载,需要一种新的架构来管理大规模的交通。在这项研究中,我们开发了一种通过量子退火机,即D-Wave Quantum Nealealer的量子退火机,用于在方格上排列在方格上的交通信号的方法。我们首先提出一个信号优化问题,该问题最大程度地减少了两个正交方向的流量流量的不平衡。然后,我们将这个问题重新制定为Ising Hamiltonian,它与量子退火器完全兼容。将新的控制方法与用于大型50 x大型城市的常规局部控制方法进行了比较,结果表现出我们的全球控制方法在抑制交通不平衡范围内的优势。此外,用量子退火机获得的全局控制方法的解比传统模拟退火获得的解决方案更好。此外,我们在分析上证明,局部和全局控制方法在汽车具有同等概率转弯和直奔的限制下收敛。这些结果通过数值实验验证。

The spread of intelligent transportation systems in urban cities has caused heavy computational loads, requiring a novel architecture for managing large-scale traffic. In this study, we develop a method for globally controlling traffic signals arranged on a square lattice by means of a quantum annealing machine, namely the D-Wave quantum annealer. We first formulate a signal optimization problem that minimizes the imbalance of traffic flows in two orthogonal directions. Then we reformulate this problem as an Ising Hamiltonian, which is fully compatible with quantum annealers. The new control method is compared with a conventional local control method for a large 50-by-50 city, and the results exhibit the superiority of our global control method in suppressing traffic imbalance over wide parameter ranges. Furthermore, the solutions to the global control method obtained with the quantum annealing machine are better than those obtained with conventional simulated annealing. In addition, we prove analytically that the local and the global control methods converge at the limit where cars have equal probabilities for turning and going straight. These results are verified with numerical experiments.

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