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MAK Technologies, Inc.

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VT MÄK
Company typeLLC
IndustryModeling & Simulation
Headquarters,
United States
ParentVT Systems
Websitewww.mak.com

VT MÄK, also known as MÄK Technologies, Inc. is a software company based in Cambridge MA that provides commercial off-the-shelf (COTS) modeling and simulation software. The company develops and sells software for distributed simulations that system integrators, governments, and research institutions use to build and populate 3D simulated environments. Users include medical, aerospace, defense, and transportation industries. In addition to offering COTS software, MÄK provides the following services: simulation content creation, software customization, interoperability, research and development, and training.

History

VT MÄK was founded in 1990 as MÄK Technologies Inc. In 2006 the company was acquired by Vision Technologies Systems, Inc. (VT Systems). MÄK has contributed significantly to SISO interoperability standards including the High-Level Architecture (HLA) RPRFOM[1] and the Web Live Virtual Constructive (WebLVC) simulation initiative.[2][3]

In 2013, VT MÄK acquired DI-Guy. Formerly a business segment of Boston Dynamics, DI-Guy develops software tools for real-time human visualization, simulation and artificial intelligence.[4]

Technology

VT MÄK develops COTS software for distributed simulation.[5] MÄK works with customers to build and populate 3D simulated environments where modeling and simulation is needed to train, plan, analyze, experiment, prototype, and demonstrate. VT MÄK uses open standards as a base for its product line, which is natively compliant with both High Level Architecture (HLA) and Distributed Interactive Simulation (DIS) IEEE standards. The company has also drafted and submitted the WebLVC protocol for review to the Simulation Interoperability Standards Organization (SISO), in an effort to bring live, virtual, and constructive simulation to web browsers.[6]

VT MÄK also holds several United States software patents including: A computer-implemented method for use in a distributed interactive simulation (DIS) type network protocol for simulating sustained contact of first and second computer-implemented objects on each other in a virtual environment, as well as two patents for high speed eye tracking device and method.

Customers

VT MÄK’s software is used by governments, system integrators, and research institutions such as Boeing, Raytheon Integrated Defense Systems, General Dynamics, Lockheed Martin, Northrup Grumman, BAE Systems, Meggitt Training Systems, Rheinmetall Canada,[7] Thales, RUAG, University of Iowa, Cincinnati Children's Hospital, SAIC, the United States Air Force,[8] the Naval Air Warfare Center, The Council for Scientific and Industrial Research in South Africa, George Mason University, NASA Langley,[9] Czech Air Defense Technical Institute, the Federal Aviation Administration,[10] DRDC Toronto, Bell Helicopter, ITT, Embraer, Selex Galileo, and EADS.

Products

MÄK's product line includes interoperability tools to help link distributed simulations together; Simulation tools to model vehicles, people and interactions within virtual worlds; Visualization tools which visualize the simulations playing out in those virtual worlds. With the inclusion of DI-Guy in 2013, MÄK now has a full line of Human Character Simulation tools.[11]

Product Categories

  • Link — Introperability tools for interconnecting simulators and simulation components within a Distributed Interactive Simulation (DIS) compliant with the High-level architecture.
  • Simulate — Scenario generation and simulation solution for generating and running urban, battlefield, and airspace scenarios.
  • Visualize — 3D immersive scenes, 2D map displays, and 3D informational displays showing the simulation activity.
  • Humans — AI Human characters for real-time visual simulations. Characters move realistically, respond to simple high-level commands, and travel throughout the environment as directed.
  • Terrain — a streaming terrain solution that supplies the physical environment to simulation and visualization tools.
  • Web / Mobile — WebLVC based interoperability tools that connect distributed simulation federations to web clients using json messages.

Standards

Simulation industry standards and formats contributed to, and used by, VT MÄK include:

References

  1. ^ "RPR FOM Interim Meeting". 'Simulation Interoperability Standards Organization, July 12, 2013. {{cite web}}: Italic or bold markup not allowed in: |publisher= (help)
  2. ^ "WebLVC Linking Web-based Applications with Traditional M&S Federations". Simulation Interoperability Standards Organization, February 24, 2014. {{cite web}}: Italic or bold markup not allowed in: |publisher= (help)
  3. ^ "WebLVC Final Report". 'Simulation Interoperability Standards Organization, February 11, 2014. {{cite web}}: Italic or bold markup not allowed in: |publisher= (help)
  4. ^ "DI-Guy is Now Part of VT MÄK". Military Simulation and Training Magazine, December 11, 2013. {{cite web}}: Italic or bold markup not allowed in: |publisher= (help)
  5. ^ "Interactive Networked Battlefield Simulation Training Technologies" (PDF). Retrieved 20 May 2014.
  6. ^ "WEB LIVE, VIRTUAL, CONSTRUCTIVE (WEBLVC) Study Group". Retrieved 2 April 2014.
  7. ^ "Rheinmetall Canada Chooses VT MAK'S Simulation and Visualization Components". Aerospace and Defense News. Retrieved 20 May 2014.
  8. ^ "QuickStrike: An Air Force Operations Staff Trainer" (PDF). Air Force SBIR/STTR, September 11, 2009.
  9. ^ "VT MÄK Expanding Applications to Civil Aviation". Inside S&T - Airline, August 10, 2011. {{cite web}}: Italic or bold markup not allowed in: |publisher= (help)
  10. ^ "VT MÄK Expanding Applications to Civil Aviation". Halldale Group. Retrieved 20 May 2014.
  11. ^ "MAK demonstrates HLA Evolved, DDS Interoperability..." 12 News. Retrieved 20 May 2014.
  12. ^ Vats, Garima; Singh, Avantika; Chandra, Nidhi (2013). "Distributed Interactive Simulation and Its Application in Multi Sensor Tracking" (PDF). International Journal of Advanced Research in Computer Science and Software Engineering. 3 (4). International Journal of Advanced Research in Computer Science and Software Engineering: 274–279. ISSN 2277-128X.

External links