Showing posts with label company: SAIC. Show all posts
Showing posts with label company: SAIC. Show all posts

January 23, 2012

Contract Award: SAIC to develop smart phones' mobile ad-hoc networks for U.S. DARPA


News Report

As announced by U.S. DoDSAIC was awarded a 8 M$ contract to provide a flexible Smartphone Mobile Ad-hoc Network, associated development, and test framework to ensure successful integration and validation of content-based Mobile Edge Networking technology developer solutions.

Work will be performed in SAIC's McLean's headquarters, and is expected to be completed by June 2014. The U.S. Defense Advanced Research Projects Agency (DARPA) is the contracting activity.

The Context

SAIC is already working with DARPA for developing ad-hoc networks aimed at enabling network centric connectivity for ground and airborne vehicles, as well as interoperabilty among current, future, proprietary and non-proprietary communications devices.

Most of this work is performed in the context of DARPA's MAINGATE program, which seeks to develop the next generation Network Centric Radio System with additional capabilities and an assured affordable unit price to the user. MAINGATE will enable heterogeneous groups of radios to be integrated into a heterogeneous network tolerant to high latency and packet loss. The technologies developed for the program will permit affordable, tactical, real-time, high fidelity video, data and voice services to be deployed in a networked environment to support tactical operations in maneuver or dismounted operations for line-of-site and beyond-line-of-site communications on the move and stopped.

The system has been successfully tested among a large number of low and high bandwidth users, including video, along with voice and data. Specifically, MAINGATE was installed and tested in configurations using aerostats, unmanned aerial vehicles (e.g., Fire Scout and BAT UASs) and Stryker vehicles, to provide networking among several tactical forces performing various simulated missions.

MAINGATE prototype radio use a mobile ad hoc networking capability to link devices via IP-based transmissions. Reliability issues such as signal loss and interference are mitigated by technologies such as mobile ad hoc networking (MANET) protocols, multiple input, multiple output (MIMO), dynamic spectrum access and disruption-tolerant networking.

References: Defense.gov (1), DefenseSystems (2), SAIC (3), DARPA (4)

December 20, 2011

NATO activites and planned acquisition in the Cyberspace (second part)


News Report

Yesterday we focused our attention on the important developments that are occurring in the area of cyber defence within the NATO. By reporting the speech of NC3A's General Manager Mr Georges D’hollander (at the last AFCEA Cyber Security Defence Conference), we introduced the key activities that are under development within the Alliance for supporting member and partner Nations in the possible event of a significant cyber attack.

In this context, The NATO Computer Incident Response Capability (NCIRC) appears as the basic program that will increase NATO’s Cyber Defence capability to respond to computer security threats and vulnerabilities. NCIRC is expected to provide the means for handling and reporting incidents as well as disseminating important incident-related information to system and security management. It concentrates incident handling into one centralised and co-ordinated effort, thereby eliminating duplication of effort.

As reported by The Wall Street Journal and other news sources, NATO is starting to collect bids from more than 300 companies across its 28 member nations for the NCIRC. The list of the bidders includes some of the world's top defense companies, such as Lockheed Martin, Northrop Grumman, Finmeccanica, IBM and SAIC.

Finmeccaninca and Northrop Grumman, in particular, announced the signing of a cooperation agreement for bidding on the NCIRC. The agreement - which does not indicate timing or potential value - should meet the requirements for NCIRC Full Operational Capability (FOC). Finmeccanica will participate in the program through its Cyber ​​Solutions unit, a new brand which is responsible in for all the activites of the Group dealing with the Cybersphere. "This is an intense collaboration that combines the power, resources and expertise of both companies in the United Kingdom, the United States and Italy, which led to an offer capable of satisfying the requirements of this major program of NATO," said Alberto de Benedictis, CEO of Finmeccanica UK.

The €32 million ($42 million) contract for NCIRC, although valued at less than the price of one fighter jet, holds great significance because it cements the alliance's role in protecting cutting-edge infrastructure, say NATO officials.

In the meantime, NATO conducted from 13 to 15 December a cyber defence exercise in order to test technical and operational Alliance cyber defence capabilities. The exercise, called Cyber Coalition 2011, was an opportunity to test Alliance working procedures for responding to large scale cyber attacks targeting information infra-structures of NATO and individual countries. The exercise was based  on a fictitious crisis in which all participant nations had to deal with simulated cyber attacks. The scenario of the exercise required action, coordination and collaboration from cyber defence specialists and management bodies. A total of 23 NATO and six partner nations nations were involved in the exercise. Around 100 specialists took part in the exercise from locations in the Alliance’s SHAPE Headquarters in Mons and the NATO Headquarters in Brussels. A similar number of national experts participated from national cyber defence facilities in their respective countries. 

References: C4I Technology News (1), The Wall Street Journal (2), GovconWire (3), DedaloNews (4), NATO (5)

December 5, 2011

Contract Award: Northrop Grumman to support U.S. Air Force in enhancing satellite multi-sensor integration capabilities


News Report

As reported by defpro.news and other news sources, Northrop Grumman has been awarded a $5.75 million contract from the U.S. Air Force to provide research and development for the Modular Architecture for Signal-processing, Tracking and Exploitation Research program (MASTER). The contract was awarded by the Space and Missile System Center's Development Planning Directorate, located at Los Angeles Air Force Base, Calif.

MASTER supports the government ground processing effort for the U.S. Air Force's Commercially Hosted IR Payload (CHIRP) program's on-orbit period. An experimental CHIRP sensor is hosted on a commercial SES satellite operating in geosynchronous orbit over the United States. The SES satellite was successfully launched on Sept. 21 from French Guiana.

The Program

The term hosted payloads refers to the utilization of available capacity on commercial satellites to accommodate additional transponders, instruments, or other spacebound items. By offering "piggyback rides" or "hitchhiking" opportunities on commercial spacecraft already scheduled for launch, satellite firms allow entities such as government agencies to send sensors and other equipment into space on a timely and cost-effective basis. The hosted payloads concept is similar to the ridesharing or multiple manifesting concept, but instead of sharing a space launch vehicle, the partners share a satellite bus. In some cases, hosted payloads may also be referred to as secondary payloads.

Hosted payloads can allow the government to plan and implement space missions on shorter cycles compared to the time it takes to procure an entire satellite -- typically 24 months versus 7 to 15 years. This is especially important for agencies facing impending gaps in operational capability. The commercial partnership gives the government an opportunity to leverage an already planned or existing satellite bus, launch vehicle, and satellite operations.

SES-2 satellite, built by Orbital Sciences Corp. of Dulles, Va., carries the first commercially hosted payload for the U.S. Air Force. The satellite was placed into geostationary transfer orbit on September 2011. In addition to its broadcast payload for North American customers, SES-2 carries the U.S. Air Force Commercially Hosted Infrared Payload (CHIRP), a staring, wide-field-of-view telescope designed to test infrared sensor technologies.

The CHIRP sensor was developed by scientists on the Third Generation Infrared System (3GIRS) Risk Reduction team for U.S. Air Force Space and Missile Systems Center (SMC) and Air Force Research Laboratory. The sensor uses a telescope to persistently view a quarter of the Earth from geosynchronous orbit, which matches the Earth's rotation so it appears in the same place in the sky. Its large format focal plane array accommodates a wide-field-of-view infrared staring system to sense bright spots on the surface of the Earth that aid in the early warning of missile launches and to support other military missions.  The sensor is remotely commanded and monitored by staff located at the SAIC-developed CHIRP Mission Analysis Center (CMAC) in Seal Beach, Calif. The CHIRP sensor data is securely transmitted to a U.S. government facility, as well as CMAC, for mission data processing and evaluation of the sensor.

The CHIRP sensor features a fixed telescope that can view one quarter of the Earth from geosynchronous orbit. The infrared sensor, based on a 2,000 by 2,000 pixel staring array, will test the potential of its wide field-of-view capabilities for future overhead persistent infrared missions for the U.S. Air Force.

U.S. Air Force's MASTER program has assisted the ground processing effort of the government for the CHIRP campaign. MASTER has been successful in integrating and using algorithms provided by outside third parties as well as processing data from multiple sensors and new experimental simulated data. The MASTER architecture has also enabled innovative parallel data processing with multiple plug-and-play algorithms, along with significant advances in star and static-source line-of-site correction methods.

The Context

In recent times, the hosted payloads concept has gained significant traction within both government and industry. Government agencies, facing new budgetary realities, have issued solicitations and held industry days to investigate the cost and feasibility of commercial solutions, including hosted payloads, as a means of fulfilling their mission requirements.

The U.S. Air Force's Commercially Hosted Infrared Payload (CHIRP) Flight Demonstration Program launched a wide field-of-view, passive infrared sensor on a commercial GEO (SES-2) on September 9, 2011. The experiment supports next-generation infrared sensor system development and is essential to reducing technology risk for the Third Generation Infrared Surveillance (3GIRS) system.

The U.S. Air Force expects to achieve major cost savings by flying this mission as a hosted payload. It has been estimated that if CHIRP were to fly as a dedicated free flyer the cost would be around $500 million. The hosted payload ended up costing $65 million and should satisfy 80% of the technical questions. CHIRP is SES' first hosted payload, SES-2 is also an important demonstration of how hosting government special purpose payloads on commercial satellites can provide cost effective means for experimenting with new technologies.

An innovative three-way industry partnership was responsible for  developing, integrating and testing the CHIRP sensor for the U.S. Air Force. SES acted as the prime contractor for the hosted payload project; SAIC developed and built the CHIRP sensor; and Orbital was responsible for the overall system design, integration and testing processes, as well as the designer and integrator  of the hosted payload interface that will be employed for future hosted payloads aboard Orbital’s commercial satellites.

The MASTER contract awarded to Northrop Grumman is a follow-on effort to the Alternative Infrared Satellite System program, begun in 2006 and then renamed Third Generation Infrared Surveillance. MASTER has been focused on developing an open, plug-and-play, sensor-agnostic processing architecture for the government to use in evaluating whole earth-staring array sensors.

Comments

"MASTER provides an important sensor-agnostic ground processing capability for our customer," said Ron Alford, Northrop Grumman's director, sensor exploitation systems and Colorado campuses. "The architecture utilizes an enterprise approach with an open architecture and plug-and-play components. In future data processing systems, measurable cost savings can be enjoyed by using the MASTER architecture to provide common processing capabilities across sensor types and system constellations without the need for customized processing chains."

"This approach not only reduces costs, but facilitates new missions, new sensor/data providers and the participation of third parties in specialized processing algorithms for new and changing missions," Alford said.

States Romain Bausch, President and CEO of SES, said: “SES-2 will provide seamless replacement capacity at the important orbital position of 87 degrees West, ensuring a number of our North American customers a smooth continuation of their operations for years to come. Fitted with CHIRP, SES’ first hosted payload, SES-2 is also an important demonstration of how hosting government special purpose payloads on commercial satellites can provide cost effective means for experimenting with new technologies

References: defpro.news (1), Space Commerce (2), HostedPayload.com (3), SAIC (4), SpaceNews (5), Aerospace and Defence News (6)

October 12, 2011

Contract Award: SAIC to provide information assurance and cybersecurity services for US Navy's SPAWAR

References: SAIC (1)

News Report

As announced in a recent press releaseSAIC was awarded a prime contract by the Space and Naval Warfare Systems Center (SSC) Atlantic to provide information assurance and cybersecurity services in support of its mission to provide U.S. tactical, strategic, and operations support. The contract has a one-year base period of performance, four one-year options, and a total value of more than $210 million if all options are exercised. Work will be performed in Charleston, S.C., and Washington, D.C.

The Context

SPAWAR Systems Center Atlantic (SSC Atlantic) is a Department of the US Navy organization, which reports directly to the Space and Naval Warfare Systems Command (SPAWAR)

SSC Atlantic's Intelligence, Surveillance, and Reconnaissance/Information Operations Department provides technical support services to the US Department of the Navy, military health systems, the Department of Homeland Security, and other U.S. Department of Defense, federal, and state agencies.

Under the awarded contract, SAIC will provide information assurance in support of military health information systems, software development, systems integration, afloat and shore computer network defense modernization, and information technology operations.

This support will include information assurance and cybersecurity programs, information systems modeling and simulation, wide area and local area network development, performance and integration and communications systems.

Comments

"We look forward to helping SSC Atlantic provide defensible security strategies and practical solutions to help address the IA and complex cyber security challenges our nation faces today," said Jim Thigpen, SAIC senior vice president and business unit general manager.

Related Posts
  • US Navy unveils new "green" data center (link)

SAIC unveils GeoRover Mobile software solution


References: SAIC (1,2)

News Report

As reported in a recent press release, SAIC has developed a new software solution enabling the collection of Geographic Information System (GIS) data in the field with or without network connectivity, named GeoRover Mobile. The GeoRover Mobile solution can be used to collect and edit field data for use by environmental, utility, law enforcement, education, land management, forestry, and government and defense applications.

The Product

GeoRover Mobile is a program that resides on mobile devices (phones or tablets) that operate using the Android platform and integrates available global positioning system (GPS) and Wi-Fi networks to provide current location data and other information. The application enables users to create waypoints, track logs and routes when connected to an internal or external GPS, including Bluetooth, to obtain real-time connection.
 
The software solution is comprised of the GeoRover Mobile Desktop extension for the Esri ArcGIS desktop application and the Mobile application for Android devices. Using a unique Map-Pack process, the SAIC GeoRover Mobile solution can create maps packaged with other layers to quickly share information between desktop and mobile software applications. The toolbar allows users to easily import and export points, lines and polygons from new or existing feature layers and base maps from raster datasets. Users can also link photos, including geotagged photos, or voice recordings to features within the mapping application.

The list of the features provided by the GeoRover Mobile includes the following ones:

  • Interactive touch screen functionality for adding point, line or polygon features to existing layers
  • Editing of feature classes with domain values set in layer schema
  • Capability to attach photos, including geotagged photos, or voice recording to point, line or polygon features
  • Creation of waypoints, track logs and routes when connected to an internal or external GPS, including Bluetooth, to obtain real-time location
  • Capability to move selected point or reshape a line or polygon feature with versatile vertex editing
Comments

"We are pleased to provide customers with mobile GIS solutions for the Android platform, delivering the ability to visualize map content while collecting data even in the most remote locations," said John Thomas, SAIC senior vice president and business unit general manager. "This new technology demonstrates SAIC's ability to offer cutting edge mobile solutions helping solve difficult problems."

September 19, 2011

Contract Award: SAIC to provide information systems engineering and information technology services to US Army

References: SAIC

News Report

As appeared on a recent news report, Science Applications International Corporation (SAIC) was awarded a prime contract by the U.S. Army Information Systems Engineering Command (ISEC) to provide information systems engineering and information technology (IT) services in support of the United States Army Information Systems Engineering Command (ISEC) and federal agency communication systems worldwide.

The Context

ISEC carries out important roles in the US Army's information mission area, with major functions including engineering, installing, quality assurance and testing for the diverse communications and automation systems throughout the Army. Under the contract, SAIC will provide information systems engineering and IT services as required, including full life cycle planning, design, development, engineering, implementation, procurement, logistics, evaluation, test, sustainment, and ancillary services for all ISEC projects.

The multiple award, indefinite-delivery/indefinite-quantity contract has a five year period of performance with a total contract ceiling value of $892 million.

Comments

"We look forward to providing innovative and flexible technologies to support ISEC's engineering and technical requirements around the world," said Peter Dube, SAIC senior vice president and business unit general manager.

September 9, 2011

Contract Award: SAIC to improve US Special Forces C4I


References: SAIC

News Report

As announced in a recent press releaseSAIC was awarded a task order by the U.S. Special Operations Command (USSOCOM) to provide enterprise-wide mission critical information technology services in support of C4 mission needs of the U.S. Special Operations Command Pacific (SOCPAC) and the Joint Special Operations Task Force, Philippines (JSOTF-P).

The Context

USSOCOM is the unified command responsible for training, organizing and equipping Special Operations Forces and providing those forces to the geographic combatant commanders. Under the task order, SAIC will provide mission critical IT services in support of C4 mission needs for special operations units involved in special operations throughout the U.S. Pacific Command Area of Responsibility. SAIC will provide network and desktop support for special operations units in Hawaii and other deployed locations.

The task order received by SAIC has a one-year base period of performance, four one-year options, and a contract ceiling value of more than $35 million if all options are exercised. Work will be performed primarily in Hawaii and the Philippines. The task order was awarded under the Special Operations Forces Information Technology Enterprise Contracts.

Comments

"We look forward to supporting USSOCOM by providing mission critical IT services supporting C4 mission needs of SOF engaged in special operations throughout the Pacific theater," said John Thomas, SAIC senior vice president and business unit general manager.
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