This image contains a screenshot of the 3D Terrain Visualization (3DTV) application in which there is a first-person view of rolling hills textured with military raster imagery, clickable icons of units in the field, a overhead scrolling map inset marking the user's position and orientation, and a text area indicating the user's latitude and longitude. Also pictured is the hardened and ruggedized military system running the 3DTV application.
3DTV

3D Terrain Visualization

Status: Completed

Developed a 3D terrain visualization capability integrated by Lockheed Martin into the digital Army Battle Command System (ABCS) that provides accurate line of sight and real-time unit locations on an optimally adapting mesh terrain overlayed with military terrain imagery and unit symbology.

Screenshot of the Asset Lifecycle Information Management System (ALIM) web application user interface containing a hierarchy of functional locations on the left, a 3D rendering of a research bay with a selected X-Ray system in the center, and various properties of the X-Ray system on the right.

An integrative, data-driven framework to enhance situational awareness and decision support for day-to-day facility management, helping increase facility and equipment availability for production work through the strategic integration of data and technology.

This is a project placeholder image of the TCAT challenge coin that consists of a picture of the state of Texas in red, white, and blue overlayed with the words
COIN

Counter-Insurgency

Status: Completed

Designed, executed, and analyzed scenarios within a Human Social Cultural Behavior (HSCB) simulation developed by NASA Jet Propulsion Laboratory (JPL) to assess irregular warfare effects and operations to influence violent extremist organizations.

Screenshot of the Dashboard for Irrigation Efficiency Management (DIEM) web application displaying an input parameter component and numerous resulting graphs.

An integrated, web-based software solution for forecasting field-specific irrigation schedules that optimize rainfall and irrigation productivity. This is accomplished by configuring basic historic, near real-time, and future agronomic information including weather, soil and crop characteristics, and irrigation parameters into a variety of interactive data visualizations for portraying key aspects that support irrigation decisions.

This image depicts 4 aspects of the DREAMS (Disaster Relief and Emergency Medical Services) Digital EMS project: a screenshot of the software user interface, a military HMMWV ambulance, a white civilian ambulance, and a dual-screen Physician cart.
DREAMS™ Digital EMS

Disaster Relief and Emergency Medical Services

Status: Completed

A mobile telemedicine solution providing high quality video, audio and patient physiologic data in real-time from mobile remote ambulances, deployable systems, and portable kits to hospital physicians to enable earlier physician intervention, resulting in increased survivability and reduced morbidity.

Screenshot of the Electromagnetic Battle Management (EMBM) proof-fo-concept dashboard displaying a 2D aerial map in the center overlayed with filled boundaries and icons. The map is surrounded by numerous by numerous dashboard components providing various modeling data and information.
EMBM

Electromagnetic Battle Management

Status: Completed

A proof-of-concept dashboard with customizable user-defined profiles, interchangeable components and enhanced visualization and analytical capabilities designed to assist Joint-level electromagnetic battle managers in the preparation, planning, execution, and analysis of warfighter operations.

ELITE software project screenshot

A technology that pairs a Laboratory Information Management System (LIMS) supporting daily laboratory operations with a biosurveillance module for monitoring, reporting and analyzing tracked test results for program diseases such as foot-and-mouth disease (FMD). The system can be configured to support numerous custom test types, test procedures, laboratory workflows, forms and reports, and hardware/network infrastructure, and can be defined locally or distributed throughout a network of laboratories.

Screenshot of the Emergency Management Exercise System (EM*ES) in which a timeclock is displayed in the upper left corner, a tabbed menu across the top, and the remainder of the screen is a 2D map overlayed with various boundary lines and a plume model.

An exercise management system used to help train both civilian and military emergency response personnel in large-scale incident management and planning. Over 25,000 U.S. and international emergency responders have been trained in exercises ranging from the incident command post up to the state operations level.

Screenshot of the first-person Emergency Management Exercise System – Virtual (EM*ES Virtual) simulation-based virtual training system. The screen displays multiple fire personnel carrying a stretcher to retrieve an injured industry worker.

A simulation-based, virtual training system to support TEEX’s Industrial Incident Management and Incident Command training program. This system immerses trainees into highly realistic situations, provides opportunities to exercise management and response doctrine within situation-specific emergencies, and enables for a richer and more effective training experience for participants.

Screenshot of the Emergency Response Support System (ERSS) web application that consists of a 2D U.S. topographic map in the center surrounded by numerous dashboard components providing various modeling data and information.
ERSS

Emergency Response Support System

Status: Completed

A web-based information dashboard developed for the USDA that can be used for incident management, as well as day-to-day planning and disease monitoring and surveillance. This tool has been used by APHIS for tracking a real-world foot-and-mouth disease outbreak in South Korea, by State Animal Health Officials to understand and manage animal health related events within their state, and by producers to monitor and assess disease status across their production systems. This is one perspective of the AgConnect system.

Accessibility improvements are in progress ahead of the April 2027 deadline. If you need immediate access, visit our Accommodations page.