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Automation of quantum Braitenberg vehicles using finite automata: Moore machines

机译:使用有限自动机的Quantum Braiaenberg车辆自动化:Moore Machines

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摘要

Since the advent of quantum computation, there have been attempts to apply quantum mechanics to robotics and develop quantum robots. In this paper, we discuss the working of classical Braitenberg vehicles and the various problems which lead us to propose a novel improvement by automating it using classical finite automata, Moore machines. We then improve by introducing an intrinsic nature to it such that it stops its motion without requiring external signals, by using entanglement. This leads to our design of a quantum automated Braitenberg vehicle which we improve by incorporating the possibility of external control over its movement. We implement the circuits in IBM quantum experience and obtain results matching our theoretical predictions. This paper makes the following contributions: an experimental verification of the quantum logic with reasonably good results despite decoherence and errors in quantum gate applications, the idea of introducing intrinsic behaviour using quantum mechanics, the idea of flexibility in developing manual external controls, and achieving better results than classical robots using lesser number of gates.
机译:由于量子计算的出现,已经尝试将量子力学应用于机器人,并开发量子机器人。在本文中,我们讨论了经典的Braiaenberg车辆的工作以及导致我们通过使用古典有限自动机,摩尔机器来自动化提出新颖改进的各种问题。然后,我们通过使用纠缠来引入内在的性质,使其在不需要外部信号的情况下停止其运动。这导致我们设计了一辆Quantum自动化的Braiaenberg车辆,我们通过结合外部控制的可能性来改善其运动。我们在IBM量子经验中实现了电路,并获得了与我们理论预测相符的结果。本文提出了以下贡献:尽管量子栅应用中的逆势和错误,但在Quantum Gate应用中,使用量子力学引入内部行为的想法,开发手动外部控制的灵活性的想法,以及实现更好的概念结果与使用较少数量的门的古典机器人。

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