2021 Projects
- ATCorp
- Adventium Labs
- BCBSND
- BlenderRender
- Bushel
- CHAPS
- CSAIA
- Collins
- Inwerken
- John Deere
- Marvin
- Microsoft
- NAU
- Noridian
- OpenStack
- Pedigree
- Potlatch
- Scheels
- UGPTI
2020 Projects
- Adventium
- Aeritae
- Appareo
- BCBS
- Barginns
- Border States
- Botlink
- Bushel
- Capturis
- Collins
- Inwerken
- John Deere
- Marvin Windows
- Microsoft
- Nau Country
- Noridian
- Openstack
- Pedigree
- Scheels
- TBD(Deakin)
- UGPTI
2019 Projects
- ATC
- Adventium
- Aeritae
- Barginns
- Border States
- Capturis
- Collins
- Deakin
- Fjorge
- ICPE
- Integrity
- Microsoft
- Myriad Mobile
- NDSU CS
- Nau Country
- Noridian
- Omnibyte
- Openstack
- Pedigree
- Scheels
- Software Center
- UGPTI
2018 Projects
- ATC
- Adventium
- Aeritae
- Appareo
- Border States
- Capturis
- ControTech
- Fjorge
- Inwerken
- John Deere
- Microsoft
- NDSU Music
- Next
- Noridian
- OmniByte
- OrbitalATK
- Pedigree
- QBE NAU
- Rockwell Collins
- Software Center
- UGPTI
2017 Projects
- Adventium
- Botlink
- Data61
- Ericsson
- FBS
- Fjorge
- Humach
- IBM
- Integrity
- Intelligent Insights
- Inwerken
- John Deere
- Microsoft
- Mindroad
- Noridian
- Pedigree
- QBE NAU
- Sanford
- UGPTI
- Valley Express
2016 Projects
- ATC
- Adventium
- Bolder Thinking
- Capturis
- Data61
- FBS
- Fjorge
- IBM
- Integrity
- Inwerken
- John Deere
- Linkoping SMHI
- Microsoft
- NDSU IT Dept
- Noridian
- Rockwell Collins
- UGPTI
- Valley Express
2015 Projects
- ATC
- Adventium
- Bolder Thinking
- CNE
- Capturis
- Ericsson
- IBM
- Inwerken
- John Deere
- Microsoft
- NICTA
- Rockwell Collins
- UGPTI
- Valley Express
2014 Projects
- Bolder Thinking
- CNE
- FBS
- IBM
- Inwerken
- John Deere
- Microsoft
- NISC
- Rockwell Collins
- UGPTI
- Valley Express
2013 Projects
2012 Projects
- ATC
- Air Academy
- Bolder Thinking
- Combridge
- Douglas Scientific
- FBS
- IBM
- Microsoft
- NDSU CS (Denton)
- NDSU CS (Kong)
- NDSU CS (Walia)
- NISC
- Phoenix International
- RDO
- Rockwell Collins
- Syntronic
- UGPTI
2011 Projects
Adventium
Project Details
Presently, when our troops are training in battlefield scenarios, there are limited options for how to simulate a dynamic battlefield. The options tend to be either physical war games or written scenarios. A far more flexible setup is required. This more flexible system is called CASPIAN, and will provide a mix of real time and simulated data to troops training in the field. The section of the system that this project will focus on is visualization of simulation and real time data on a map, along with additional analytics. By using the HLA implementation Portico and OpenMap, we will add a new federate to the existing system that will allow users to see simulated combatants, along with their actual up-to-date location.