Multi-disk clutch optimization using quantum annealing

Fuente: arXiv
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Bibliographic Details
Main Authors: Malcolm, John D., Roth, Alexander, Radic, Mladjan, Martin-Ramiro, Pablo, Oillarburu, Jon, Aizpurua, Borja, Orus, Roman, Mugel, Samuel
Format: Preprint
Published: 2022
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author Malcolm, John D.
Roth, Alexander
Radic, Mladjan
Martin-Ramiro, Pablo
Oillarburu, Jon
Aizpurua, Borja
Orus, Roman
Mugel, Samuel
author_facet Malcolm, John D.
Roth, Alexander
Radic, Mladjan
Martin-Ramiro, Pablo
Oillarburu, Jon
Aizpurua, Borja
Orus, Roman
Mugel, Samuel
contents In this work, we develop a new quantum algorithm to solve a combinatorial problem with significant practical relevance occurring in clutch manufacturing. It is demonstrated how quantum optimization can play a role in real industrial applications in the manufacturing sector. Using the quantum annealer provided by D-Wave Systems, we analyze the performance of the quantum and quantum-classical hybrid solvers and compare them to deterministic- and random-algorithm classical benchmark solvers. The continued evolution of the quantum technology, indicating an expectation for even greater relevance in the future is discussed and the revolutionary potential it could have in the manufacturing sector is highlighted.
format Preprint
id arxiv_https___arxiv_org_abs_2208_05916
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Multi-disk clutch optimization using quantum annealing
Malcolm, John D.
Roth, Alexander
Radic, Mladjan
Martin-Ramiro, Pablo
Oillarburu, Jon
Aizpurua, Borja
Orus, Roman
Mugel, Samuel
Quantum Physics
In this work, we develop a new quantum algorithm to solve a combinatorial problem with significant practical relevance occurring in clutch manufacturing. It is demonstrated how quantum optimization can play a role in real industrial applications in the manufacturing sector. Using the quantum annealer provided by D-Wave Systems, we analyze the performance of the quantum and quantum-classical hybrid solvers and compare them to deterministic- and random-algorithm classical benchmark solvers. The continued evolution of the quantum technology, indicating an expectation for even greater relevance in the future is discussed and the revolutionary potential it could have in the manufacturing sector is highlighted.
title Multi-disk clutch optimization using quantum annealing
topic Quantum Physics
url https://arxiv.org/abs/2208.05916