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Multi-Object Tracking (MOT) is most often approached in the tracking-by-detection paradigm, where object detections are associated through time.
Track clustering with a quantum annealer for primary vertex reconstruction at hadron colliders
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Beitrag zur Theorie des Ferromagnetismus
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Beweis des Adiabatensatzes
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Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?
A. Einstein, B. Podolsky, and N. Rosen · 1935
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Discussion of Probability Relations between Separated Systems
E. Schrödinger · 1935
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On the Adiabatic Theorem of Quantum Mechanics
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Polarization Correlation of Photons Emitted in an Atomic Cascade
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David Elieser Deutsch and Roger Penrose · 1989
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Quantum annealing in the transverse Ising model
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Quantum Computation by Adiabatic Evolution
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Repeated and Continuous Measurement Processes
Alexander S. Holevo · 2001
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How powerful is adiabatic quantum computation?
W. van Dam, M. Mosca, and U. Vazirani · 2001
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MOT20: A benchmark for multi object tracking in crowded scenes
Patrick Dendorfer, Hamid Rezatofighi, Anton Milan, Javen Shi, Daniel Cremers, Ian Reid, Stefan Roth, Konrad Schindler, and Laura Leal-Taixé · 2003
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On the role of entanglement in quantum-computational speed-up
Richard Jozsa and Noah Linden · 2003
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Global data association for multi-object tracking using network flows
Zhang Li, Li Yuan, and R. Nevatia · 2008
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Compound Josephson-junction coupler for flux qubits with minimal crosstalk
R. Harris, T. Lanting, A. J. Berkley, J. Johansson, M. W. Johnson, P. Bunyk, E. Ladizinsky, N. Ladizinsky, T. Oh, and S. Han · 2009
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Quantum teleportation over 143 kilometres using active feed-forward
Xiao-Song Ma, Thomas Herbst, Thomas Scheidl, Daqing Wang, Sebastian Kropatschek, William Naylor, Bernhard Wittmann, Alexandra Mech, Johannes Kofler, Elena Anisimova, Vadim Makarov, Thomas Jennewein, Rupert Ursin, and Anton Zeilinger · 2012
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GMCP-Tracker: Global Multi-object Tracking Using Generalized Minimum Clique Graphs
Amir Roshan Zamir, Afshin Dehghan, and Mubarak Shah · 2012
Cited alongside, same era.
Vision meets robotics: The KITTI dataset
A Geiger, P Lenz, C Stiller, and R Urtasun · 2013
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Architectural considerations in the design of a superconducting quantum annealing processor
P. I. Bunyk, E. Hoskinson, M. W. Johnson, E. Tolkacheva, F. Altomare, A. J. Berkley, R. Harris, J. P. Hilton, T. Lanting, and J. Whittaker · 2014
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Loophole-free Bell inequality violation using electron spins separated by 1.3 kilometres
B. Hensen, H. Bernien, A. E. Dréau, A. Reiserer, N. Kalb, M. S. Blok, J. Ruitenberg, R. F. L. Vermeulen, R. N. Schouten, C. Abellán, W. Amaya, V. Pruneri, M. W. Mitchell, M. Markham, D. J. Twitchen, D. Elkouss, S. Wehner, T. H. Taminiau, and R. Hanson · 2015
Cited alongside, same era.
MOTChallenge 2015: Towards a Benchmark for Multi-Target Tracking
Laura Leal-Taixé, Anton Milan, Ian Reid, Stefan Roth, and Konrad Schindler · 2015
Control of Automated Guided Vehicles Without Collision by Quantum Annealer and Digital Devices
Masayuki Ohzeki, Akira Miki, Masamichi J. Miyama, and Masayoshi Terabe · 2019
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Joint Discriminative and Generative Learning for Person Re-Identification
Zhedong Zheng, Xiaodong Yang, Zhiding Yu, Liang Zheng, Yi Yang, and Jan Kautz · 2019
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Adiabatic Quantum Graph Matching with Permutation Matrix Constraints
Marcel Seelbach Benkner, Vladislav Golyanik, Christian Theobalt, and Michael Moeller · 2020
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Learning a Neural Solver for Multiple Object Tracking
Guillem Braso and Laura Leal-Taixe · 2020
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Lifted Disjoint Paths with Application in Multiple Object Tracking
Andrea Hornakova, Roberto Henschel, Bodo Rosenhahn, and Paul Swoboda · 2020
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Tracking Objects as Points
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Cited alongside, same era.
Scalable Person Re-identification: A Benchmark
Liang Zheng, Liyue Shen, Lu Tian, Shengjin Wang, Jingdong Wang, and Qi Tian · 2015
Cited alongside, same era.
CVXPY: a python-embedded modeling language for convex optimization
Steven Diamond and Stephen Boyd · 2016
Cited alongside, same era.
MOT16: A Benchmark for Multi-Object Tracking
Anton Milan, Laura Leal-Taixe, Ian Reid, Stefan Roth, and Konrad Schindler · 2016
Cited alongside, same era.
Performance Measures and a Data Set for Multi-Target, Multi-Camera Tracking
Ergys Ristani, Francesco Solera, Roger S. Zou, Rita Cucchiara, and Carlo Tomasi · 2016
Cited alongside, same era.
PathTrack: Fast Trajectory Annotation with Path Supervision
Santiago Manen, Michael Gygli, Dengxin Dai, and Luc Van Gool · 2017
Cited alongside, same era.
Traffic Flow Optimization Using a Quantum Annealer
Florian Neukart, Gabriele Compostella, Christian Seidel, David von Dollen, Sheir Yarkoni, and Bob Parney · 2017
Cited alongside, same era.
Multiple People Tracking by Lifted Multicut and Person Re-identification
Siyu Tang, Mykhaylo Andriluka, Bjoern Andres, and Bernt Schiele · 2017
Cited alongside, same era.
Xingyi Zhou, Vladlen Koltun, and Philipp Krähenbühl · 2020
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Q-Match: Iterative Shape Matching via Quantum Annealing
Marcel Seelbach Benkner, Zorah Lahner, Vladislav Golyanik, Christof Wunderlich, Christian Theobalt, and Michael Moeller · 2021
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Quantum Permutation Synchronization
Tolga Birdal, Vladislav Golyanik, Christian Theobalt, and Leonidas Guibas · 2021
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Learning a Proposal Classifier for Multiple Object Tracking
Peng Dai, Renliang Weng, Wongun Choi, Changshui Zhang, Zhangping He, and Wei Ding · 2021
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mRNA codon optimization with quantum computers
Dillion M. Fox, Kim M. Branson, and Ross C. Walker · 2021
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The Complexity of Object Association in Multiple Object Tracking
Robert Ganian, Thekla Hamm, and Sebastian Ordyniak · 2021
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Gurobi optimizer reference manual, 2021
Gurobi Optimization, LLC · 2021
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Making Higher Order MOT Scalable: An Efficient Approximate Solver for Lifted Disjoint Paths
Andrea Hornakova, Timo Kaiser, Paul Swoboda, Michal Rolinek, Bodo Rosenhahn, and Roberto Henschel · 2021
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The Advantage System: Performance Update
Catherine McGeoch and Pau Farré · 2021
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Tracking-by-Counting: Using Network Flows on Crowd Density Maps for Tracking Multiple Targets
Weihong Ren, Xinchao Wang, Jiandong Tian, Yandong Tang, and Antoni B. Chan · 2021
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Strong Quantum Computational Advantage Using a Superconducting Quantum Processor
Yulin Wu, Wan-Su Bao, Sirui Cao, Fusheng Chen, Ming-Cheng Chen, Xiawei Chen, Tung-Hsun Chung, Hui Deng, Yajie Du, Daojin Fan, Ming Gong, Cheng Guo, Chu Guo, Shaojun Guo, Lianchen Han, Linyin Hong, He-Liang Huang, Yong-Heng Huo, Liping Li, Na Li, Shaowei Li, Yuan Li, Futian Liang, Chun Lin, Jin Lin, Haoran Qian, Dan Qiao, Hao Rong, Hong Su, Lihua Sun, Liangyuan Wang, Shiyu Wang, Dachao Wu, Yu Xu, Kai Yan, Weifeng Yang, Yang Yang, Yangsen Ye, Jianghan Yin, Chong Ying, Jiale Yu, Chen Zha, Cha Zhang, Haibin Zhang, Kaili Zhang, Yiming Zhang, Han Zhao, Youwei Zhao, Liang Zhou, Qingling Zhu, Chao-Yang Lu, Cheng-Zhi Peng, Xiaobo Zhu, and Jian-Wei Pan · 2021
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Online multi-object tracking using multi-function integration and tracking simulation training
Jieming Yang, Hongwei Ge, Jinlong Yang, Yubing Tong, and Shuzhi Su · 2021
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Learnable Online Graph Representations for 3D Multi-Object Tracking
Jan-Nico Zaech, Dengxin Dai, Alexander Liniger, Martin Danelljan, and Luc Van Gool · 2021
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Phase-Programmable Gaussian Boson Sampling Using Stimulated Squeezed Light
Han-Sen Zhong, Yu-Hao Deng, Jian Qin, Hui Wang, Ming-Cheng Chen, Li-Chao Peng, Yi-Han Luo, Dian Wu, Si-Qiu Gong, Hao Su, Yi Hu, Peng Hu, Xiao-Yan Yang, Wei-Jun Zhang, Hao Li, Yuxuan Li, Xiao Jiang, Lin Gan, Guangwen Yang, Lixing You, Zhen Wang, Li Li, Nai-Le Liu, Jelmer J. Renema, Chao-Yang Lu, and Jian-Wei Pan · 2021
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