量子人工智能在智慧城市中的研究进展

Sumin Wang;Ning Wang;Tongyu Ji;Yiyun Shi;Chao Wang
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摘要

互联网时代大数据的快速积累,让人工智能(AI)的发展逐渐减速。随着摩尔定律接近极限,打破阻碍人工智能发展的束缚势在必行。多年来,量子计算和人工智能沿着人类文明的高速公路不断前进,成为推动经济和社会发展的新引擎。本文深入探讨了量子计算与人工智能在研究和应用中的融合。文章介绍了通用量子计算机和利用量子效应的专用量子计算机的功能。文章从量子监督学习、量子无监督学习、量子强化学习和量子深度学习四个方面进一步探讨了量子计算如何增强经典人工智能。为了解决智慧城市的局限性,本文探讨了量子人工智能在智慧城市领域的巨大潜力。文章通过研究智能交通、城市运行保障、城市规划和信息通信等方面,展示了量子人工智能在这一过程中取得的大量实际成果。在可预见的未来,量子人工智能(QAI)将为智慧城市带来革命性的发展。当务之急是开发与量子计算机兼容的量子人工智能算法,构建高效、稳定、自适应的量子计算与经典计算相结合的混合计算架构,根据需要准备量子数据,推进可控量子比特硬件设备以满足实际需求。最终目标是塑造具有常识认知能力、鲁棒性、卓越的泛化能力和可解释性的下一代人工智能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research Progress of Quantum Artificial Intelligence in Smart City
The rapid accumulation of big data in the Internet era has gradually decelerated the progress of Artificial Intelligence (AI). As Moore's Law approaches its limit, it is imperative to break the constraints that are holding back artificial intelligence. Quantum computing and artificial intelligence have been advancing along the highway of human civilization for many years, emerging as new engines driving economic and social development. This article delves into the integration of quantum computing and artificial intelligence in both research and application. It introduces the capabilities of both universal quantum computers and special-purpose quantum computers that leverage quantum effects. The discussion further explores how quantum computing enhances classical artificial intelligence from four perspectives: quantum supervised learning, quantum unsupervised learning, quantum reinforcement learning, and quantum deep learning. In an effort to address the limitations of smart cities, this article explores the formidable potential of quantum artificial intelligence in the realm of smart cities. It does so by examining aspects such as intelligent transportation, urban operation assurance, urban planning, and information communication, showcasing a plethora of practical achievements in the process. In the foreseeable future, Quantum Artificial Intelligence (QAI) is poised to bring about revolutionary development to smart cities. The urgency lies in developing quantum artificial intelligence algorithms that are compatible with quantum computers, constructing an efficient, stable, and adaptive hybrid computing architecture that integrates quantum and classical computing, preparing quantum data as needed, and advancing controllable qubit hardware equipment to meet actual demands. The ultimate goal is to shape the next generation of artificial intelligence that possesses common sense cognitive abilities, robustness, excellent generalization capabilities, and interpretability.
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