Ubisense Reports 60 New Customers as Demand for High Accuracy Indoor Location Technology Intensifies; Ubisense Enhances Process Efficiencies, Space Utilization and Security for Healthcare, Industrial, Military and More.DENVER -- Ubisense, the leading provider of high accuracy indoor location technology, has secured 60 new customers in just nine months since earning approval from the U.S. Federal Communications Commission Federal Communications Commission (FCC), independent executive agency of the U.S. government established in 1934 to regulate interstate and foreign communications in the public interest. (FCC (1) (Federal Communications Commission, Washington, DC, www.fcc.gov) The U.S. government agency that regulates interstate and international communications including wire, cable, radio, TV and satellite. The FCC was created under the U.S. ) for its advanced ultra-wideband (UWB (Ultra-WideBand) A wireless technology that uses less power and provides higher speed than 802.11 Wi-Fi networks or first-generation Bluetooth products. UWB is expected to provide wireless video transmission for home theater systems, cable TV, auto safety and ) technology. This technology offers the most cost-effective, precise indoor location tracking commercially available. Ubisense is being used across many different industries to analyze and improve processes, space utilization and security. Ubisense provides innovative, sensor-driven technology that utilizes UWB to report person and asset location within one foot of accuracy. Small sensors are placed within the indoor environment and active tags worn by people or attached to assets provide location information that can be viewed in 3D. This location data can be used to determine the efficiency and security of any indoor space or training scenario. For instance, U.S.-based DSCI DSCI Decision Science DSCI Digital Serial Communications Interface DSCI Doctor of the Science of Creative Intelligence (Maharishi European Research University) DSCI Days Since Co-Op Incident provides live, virtual training scenarios for the Department of Defense (DoD) training centers. DSCI needed high resolution indoor tracking capabilities for Military Operations This is a list of missions, operations, and projects. Missions in support of other missions are not listed independently. World War I ''See also List of military engagements of World War I
MOUT Managed Object Under Test ) training. Finding that WiFi and Radio Frequency ID (RFID (Radio Frequency IDentification) A data collection technology that uses electronic tags for storing data. The tag, also known as an "electronic label," "transponder" or "code plate," is made up of an RFID chip attached to an antenna. ) systems do not offer the near-precise accuracy and reliability required by the DoD, DSCI turned to Ubisense. "Indoor tracking has always been our greatest challenge for training soldiers, and Ubisense's ultra-wideband technology solves this challenge," said Eric Wagner Eric Wagner is an American heavy metal singer who is best known for his work with doom metal band Trouble. He briefly left Trouble in the mid-nineties and went on to form Lid with guitarist Danny Cavanagh, resulting in 1997's In The Mushroom. , director, DSCI. "Ubisense is now integrated into Ft. Benning's MOUT McKenna site, one of the premier U.S. Army infantry training centers, and operates flawlessly with our integrated soldier tracking system. With this technology, we can monitor every soldier participating in indoor training exercises to determine accuracy of execution as well as identify maneuvers that require changes or more training. Having the ability to view combat training in this manner is critical because in the real world this training makes all the difference." In Europe, the Technical University of Graz The University of Graz (German, Karl-Franzens-Universität Graz), a university located in Graz, Austria, is the second-largest university in Austria. Karl-Franzens Universität, also referred to as the University of Graz, is the city's oldest university, founded in (TU Graz) recently installed Ubisense and is investigating the range of rich and meaningful augmented reality See mixed reality. experiences enabled through a combination of Ubisense's UWB-based technology with those more traditionally associated with virtual reality applications. "Ubisense has the potential to become a key enabling technology in bringing augmented reality out of the research lab and into a part of our everyday building infrastructure," said Dr. Dieter Schmalstieg, professor, TU Graz. As its customer base increases so too do the applications for which Ubisense is used. In addition to education and military organizations, workplace engineers, healthcare facilities and industrial businesses are using Ubisense for a wide range of applications. Some uses include automatically determining space utilization in office environments to improve productivity and identify cost savings, locating people and assets in healthcare facilities, and monitoring and improving manufacturing processes. "Demand for Ubisense is growing even faster than we anticipated, and the market need continues to expand," said Richard Green, CEO (1) (Chief Executive Officer) The highest individual in command of an organization. Typically the president of the company, the CEO reports to the Chairman of the Board. , Ubisense. "Our focus now is to extend our software platform to deliver greater value to our customers and to build a thriving partner network to further address the many different industries and uses for which our technology is suitable." About Ubisense Ubisense provides location-aware, sensor-driven technology that increases the usability and security of space. Ubisense utilizes advanced ultra-wideband (UWB) to deliver real-time location data within one foot of accuracy to more than 60 customers spanning workplace, healthcare, industrial and military organizations worldwide. The company is headquartered in Cambridge, England, with offices in Denver, Colorado, and Dortmund, Germany. For more information, visit http://www.ubisense.net. |
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