Mannone Maria, Seidita Valeria, Chella Antonio
ICAR, National Research Council (CNR), Palermo, Italy.
Dipartimento di Scienze Molecolari e Nanosistemi (DSMN) and European Centre for Living Technology (ECLT), Ca' Foscari University of Venice, Venezia, Italy.
Philos Trans A Math Phys Eng Sci. 2025 Jan 30;383(2289):20240139. doi: 10.1098/rsta.2024.0139.
Quantum computing is a branch of computer science derived from the fundamental laws of quantum mechanics, such as state superposition, multi-value logic and destructive measure. An open challenge in itself is to re-think in quantum terms classic problems and solving techniques. Another nature-inspired field is the development of swarm-based robotic applications, where the challenge is catching the fundamental laws governing swarm dynamics, such as pattern formation and target reaching. Here, we review some recent approaches on swarm dynamics, the organizational rules of which are formalized according to quantum computing. In this way, the shades of probability in decision-making for multiple-robot systems can be expressed according to the multi-value logic underlying quantum computing. In our review, specific quantum circuits are sketched to give an idea of how these problems have been faced in computational terms. The article is enriched by references to sonification, a strategy adding one more sensory dimension to data representation, a human-friendly tool to navigate the complexity of swarm-robotic movements in a given arena.This article is part of the theme issue 'The road forward with swarm systems'.
量子计算是计算机科学的一个分支,它源自量子力学的基本定律,如态叠加、多值逻辑和破坏性测量。其本身面临的一个开放性挑战是从量子角度重新思考经典问题及其解决技术。另一个受自然启发的领域是基于群体的机器人应用的发展,其中的挑战在于掌握群体动力学的基本规律,如模式形成和目标达成。在此,我们回顾一些关于群体动力学的最新方法,其组织规则是根据量子计算形式化的。这样,多机器人系统决策中的概率阴影就可以根据量子计算所基于的多值逻辑来表达。在我们的综述中,绘制了特定的量子电路,以说明在计算方面是如何处理这些问题的。本文还参考了可听化,这是一种为数据表示增加一个感官维度的策略,是一种在给定场景中帮助人们理解群体机器人运动复杂性的人性化工具。本文是主题为“群体系统的前进之路”特刊的一部分。