Area of research
Atmospheric Science · Oceanography
Research interest
Research interests include Meteorological Phenomena and Simulations, Climate variability and models, Ocean Waves and Remote Sensing, and Tropical and Extratropical Cyclones Research.
Optimizing Earth Observing Constellations of Satellite Sensors Using ASPEN: A Proof-of-Concept Study for Global NWP and Nowcasting Applications
Proof-of-Concept Quantitative Assessment of the Socioeconomic Benefits and Cost Effectiveness of Earth-Observing Systems
Assimilating atmospheric motion vector winds using a feature track correction observation operator
System for Analysis of Wind Collocations (SAWC): A Novel Archive and Collocation Software Application for the Intercomparison of Winds from Multiple Observing Platforms
On the use of consistent bias corrections to enhance the impact of <i>Aeolus</i><scp>Level‐2B</scp> Rayleigh winds on <scp>National Oceanic and Atmospheric Administration</scp> global forecast skill
Optimization and impact assessment of Aeolus <scp>HLOS</scp> wind assimilation in <scp>NOAA</scp>'s global forecast system
Exploiting Aeolus level-2b winds to better characterize atmospheric motion vector bias and uncertainty
A statistically optimal analysis of systematic differences between Aeolus horizontal line-of-sight winds and NOAA's Global Forecast System
A Statistically Optimal Analysis of Systematic Differences between Aeolus HLOS Winds and NOAA’s Global Forecast System
A Forward Model for Data Assimilation of GNSS Ocean Reflectometry Delay-Doppler Maps
The Earth-Observing Satellite Constellation: A review from a meteorological perspective of a complex, interconnected global system with extensive applications
A collocation study of atmospheric motion vectors (AMVs) compared to Aeolus wind profiles with a feature track correction (FTC) observation operator
Assimilation of GNSS reflectometry delay‐Doppler maps with a two‐dimensional variational analysis of global ocean surface winds
A Feature Track Correction (FTC) Observation Operator applied to Aeolus-AMV Collocations
Exploiting Aeolus Level-2B Winds to Better Characterize Atmospheric Motion Vector Bias and Uncertainty
A Near‐Real‐Time Version of the Cross‐Calibrated Multiplatform (CCMP) Ocean Surface Wind Velocity Data Set
The alternative of CubeSat-based advanced infrared and microwave sounders for high impact weather forecasting
The Ensemble Mars Atmosphere Reanalysis System (EMARS) Version 1.0.
A Study of the HWRF Analysis and Forecast Impact of Realistically Simulated CYGNSS Observations Assimilated as Scalar Wind Speeds and as VAM Wind Vectors
Variational Analysis of Simulated Ocean Surface Winds from the Cyclone Global Navigation Satellite System (CYGNSS) and Evaluation Using a Regional OSSE
Progress in Forecast Skill at Three Leading Global Operational NWP Centers during 2015–17 as Seen in Summary Assessment Metrics (SAMs)
Evaluating and Extending the Ocean Wind Climate Data Record
Comments on “Reanalyses and Observations: What’s the Difference?”
An Empirical Cumulative Density Function Approach to Defining Summary NWP Forecast Assessment Metrics
Community Global Observing System Simulation Experiment (OSSE) Package (CGOP): Perfect Observations Simulation Validation
Community Global Observing System Simulation Experiment (OSSE) Package (CGOP): Description and Usage
Future Observing System Simulation Experiments
Observing System Simulation Experiments (OSSEs) to Evaluate the Potential Impact of an Optical Autocovariance Wind Lidar (OAWL) on Numerical Weather Prediction
Observing System Simulation Experiments to Assess the Potential Impact of New Observing Systems on Hurricane Forecasting
High-Latitude Ocean and Sea Ice Surface Fluxes: Challenges for Climate Research