David M. Miles
- ORCiD
- https://orcid.org/0000-0002-4714-5966
- OpenAlex ID
- https://openalex.org/A5076180417 (API record)
Associated Concepts [?]
- Physics
- Quantum mechanics
- Magnetic field
- Computer science
- Geology
- Engineering
- Magnetometer
- Astronomy
- Geography
- Remote sensing
- Fluxgate compass
- Geophysics
- Electrical engineering
- Aerospace engineering
- Nuclear physics
- Plasma
- Artificial intelligence
- Mathematics
- Chemistry
Authored Works
sorted by decreasing year, and then by display-name
- The Effects of Temperature and Thermal Gradients on Fluxgate Stability and Core Performance
- Single-Sensor Magnetic Interference Mitigation using Singular Spectrum Analysis and Machine Learning
- SelenITA: A dual-spacecraft lunar CubeSat mission to characterize the near-surface electromagnetic plasma environment
- Low-noise Magnetic Field Measurements using Copper Permalloy Fluxgate Cores
- LOBSTR: A Multi-Local Time Radiation Belt Mission Concept Study
- Improvements to In-situ Magnetometer Calibration Using Selective Signal Processing to Remove Local Stray Fields
- High-Resolution Study of the Relationship Between the Region 2 Equatorward Boundary and Soft Electron Fluxes
- Harnessing spectral continuity to isolate spacecraft reaction wheel signatures in magnetometer measurements - Implications for machine learning
- Constellation Ready Magnetometer – A nanosatellite fluxgate gradiometer payload with spacecraft noise mitigation
- Beyond Bandpass: Time-Varying Interference Mitigation for In-Situ Magnetic Field Data using Multichannel Singular Spectrum Analysis
- The MAGIC of Fluxgate Magnetometer Cores
- The Canadian SWeeping Energetic Particle Telescope (SWEPT): Pitch Angle Resolved Energetic Particles in the Lunar Environment
- MagneToRE: Mapping the 3-D Magnetic Structure of the Solar Wind Using a Large Constellation of Nanosatellites
- In-situ Magnetometer Calibration Routines Developed for the Swarm-Echo Mission
- Characterization of Tesseract: Performance of a New, High-Stability Magnetometer Design for Applications on Constellation Missions
- e-POP Satellite Observations of Ion Upflow over Pulsating/Diffuse Aurora
- Tesseract: A High Stability, Nanosatellite Scale Magnetometer for Constellation Missions
- Magnetic Field topology reconstruction in a 3-D simulation box using Gaussian Process Regression
- Building a Better Fluxgate Core - Implications for Future Magnetic Field Instruments
- The CaNoRock Undergraduate Student Rocket School
- Advances in Low-Noise Fluxgates Enabling Nanosatellite Constellation Instruments
- A Hybrid Fluxgate and Search Coil Magnetometer Concept For Nanosat Missions
- Low-altitude ion heating with downflowing and upflowing ions
- Fluxgate Magnetometry on the Experimental Albertan Satellite #1 (Ex-Alta-1) CubeSat Mission: Steps Toward a Magnetospheric Constellation Mission
- Evidence of Ubiquitous Large-Amplitude Alfven waves in the Global Field-Aligned Current System
- Alfvénic Dynamics and Fine Structuring of Discrete Auroral Arcs: Swarm and e-POP Observations
- Anisotropic ion heating and BBELF waves within the low-altitude ion upflow region
- High-resolution Multi-instrument Observations of Ion Outflows in the Topside Ionosphere on the Enhanced Polar Outflow Probe (e-POP)
- Swarm In Situ Observations of F-Region Polar Cap Patches Created by Cusp Ionization
Linked Co-Authors
- A. W. Yau
- Alexandros Chasapis
- Allison Jaynes
- Ananya Sen Gupta
- Bennett A. Maruca
- Christine Gabrielse
- D. J. Knudsen
- Daniel Verscharen
- G. B. Hospodarsky
- H. Fuqua Haviland
- I. R. Mann
- J. H. Westlake
- J. S. Halekas
- Jonas Sousasantos
- L. G. Ozeke
- L. L. Hood
- M. A. Shay
- Omar Leon
- P. J.
- R. A. Qudsi
- R. Bandyopadhyay
- R. Chhiber
- R. P. Sawyer
- Rachael Filwett
- Robert M. Broadfoot
- S. K. Vines
- S. R. Bounds
- W. H. Matthaeus
- Yuki Harada
Linked Collaborating Institutions
- Aerospace Corporation, California
- Brazilian National Institute for Space Research
- Instituto Tecnologico de Aeronautica, Centro Tecnico Aeroespacial
- Johns Hopkins University, Applied Physics Laboratory
- NASA Goddard Space Flight Center, Maryland
- NASA Marshall Space Flight Center
- National Observatory of Athens, Greece
- Natural Resources Canada
- Northumbria University, UK
- Princeton University, New Jersey
- Royal Military College of Canada
- U.S. Department of the Navy, Naval Research Laboratory, Washington DC
- Umea University, Sweden
- University College London, Mullard Space Science Laboratory
- University College London, UK
- University of Alberta, Canada
- University of Alberta, Department of Physics
- University of Arizona
- University of Bergen, Norway
- University of British Columbia, Canada
- University of Calabria, Italy
- University of Calgary, Canada
- University of California, Berkeley
- University of California, Berkeley, Department of Astronomy
- University of California, Los Angeles
- University of Colorado, Boulder
- University of Colorado, Boulder, Laboratory for Atmospheric and Space Physics
- University of Delaware
- University of Delaware, Department of Physics and Astronomy
- University of Iowa
- University of Iowa, Department of Physics and Astronomy
- University of Michigan
- University of Minnesota, School of Physics and Astronomy
- University of New Hampshire
- University of Oslo, Department of Physics
- University of Oslo, Norway
- University of Saskatchewan, Canada
- University of Texas, San Antonio
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