Steve Furber
Affiliations: | Department of Computer Science | The University of Manchester, Manchester, England, United Kingdom |
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Publications
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Hopkins M, Mikaitis M, Lester DR, et al. (2020) Stochastic rounding and reduced-precision fixed-point arithmetic for solving neural ordinary differential equations. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 378: 20190052 |
Rhodes O, Peres L, Rowley AGD, et al. (2020) Real-time cortical simulation on neuromorphic hardware. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 378: 20190160 |
Rowley AGD, Brenninkmeijer C, Davidson S, et al. (2019) SpiNNTools: The Execution Engine for the SpiNNaker Platform. Frontiers in Neuroscience. 13: 231 |
Yan Y, Kappel D, Neumaerker F, et al. (2019) Efficient Reward-Based Structural Plasticity on a SpiNNaker 2 Prototype. Ieee Transactions On Biomedical Circuits and Systems |
Hoppner S, Vogginger B, Yan Y, et al. (2019) Dynamic Power Management for Neuromorphic Many-Core Systems Ieee Transactions On Circuits and Systems I-Regular Papers. 66: 2973-2986 |
Behrenbeck J, Tayeb Z, Bhiri C, et al. (2018) Classification and regression of spatio-temporal signals using NeuCube and its realization on SpiNNaker neuromorphic hardware. Journal of Neural Engineering |
Rhodes O, Bogdan PA, Brenninkmeijer C, et al. (2018) sPyNNaker: A Software Package for Running PyNN Simulations on SpiNNaker. Frontiers in Neuroscience. 12: 816 |
Rast AD, Adams SV, Davidson S, et al. (2018) Behavioral Learning in a Cognitive Neuromorphic Robot: An Integrative Approach. Ieee Transactions On Neural Networks and Learning Systems |
van Albada SJ, Rowley AG, Senk J, et al. (2018) Performance Comparison of the Digital Neuromorphic Hardware SpiNNaker and the Neural Network Simulation Software NEST for a Full-Scale Cortical Microcircuit Model. Frontiers in Neuroscience. 12: 291 |
Saeedi S, Bodin B, Wagstaff H, et al. (2018) Navigating the Landscape for Real-Time Localization and Mapping for Robotics and Virtual and Augmented Reality Arxiv: Computer Vision and Pattern Recognition. 106: 2020-2039 |