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Quantum Collaborative Robotics Initiative

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DataCite Commons2024-05-07 更新2025-04-16 收录
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http://dataverse.jpl.nasa.gov/citation?persistentId=doi:10.48577/jpl.OD0CLZ
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Quantum Mechanics can provide guaranteed security, ultimate speed, and compatibility with a quantum computing and computers in a network of dynamical systems such a robotic/unmanned system. Achieving compatibility for quantum computers in communication in a network of multi-robot system, when the quantum computers are used as the computing processing system for the robots. It is logical for the robots in the network (which we assume all robots are equipped with quantum computers) to communicate with QC and QE rather than classical communication methods. Currently, the research work in the area of quantum mechanics in conjunction with robotics applications has been solely on developing quantum computers and algorithms which are able to significantly accelerate the speed of computations (in comparison with classical commutations for robotic applications). There is a lot of study that indicates how important the quantum computer can be in robotics applications. The main advantage can be referred to the speed of computing. Other advantages can be referred to that quantum computing tools can be applied to machine intelligence to create smarter and more creative unmanned systems and robots. Therefore the current quantum robot investigations is on developing quantum computers and quantum algorithms. For instance, NASA uses quantum computing for space travel and robotics, where the basic idea of quantum computing is that quantum bits, or qubits — which can exist in more than two states and be represented as both a 0 and 1 simultaneously — can be used to greatly boost computing power compared to even today’s most powerful super computers. When Quantum Computers become available for robots and performing required robotics commutations, the only rational and practical way for the robots, equipped with quantum computers and quantum computing capability, is to communicate with QE and QC in a multi-robotic network, which logically should be the most suitable and compatible. If quantum computers are accessible for robots then in a multi-robot scenario the classical communication between robots may actually defeat the purpose and advantage of quantum computers and their capability in a network.
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2023-02-07
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