NT was established in 2012 on the initiative of the founding partners who have several years of experience in the fields of defense and aerospace
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2 NT was established in 2012 on the initiative of the founding partners who have several years of experience in the fields of defense and aerospace technologies
3 Headquarters Elmas (Ca) - Italy Technical Premises and Lab Elmas (Ca) - Italy
4 NT was established in 2012 and grown to over 15 employees, with a strong and diverse engineering team. Employees 10% 10% 40% 40% Software Engineers Electronics Engineers Administration Management
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6 «Design, Development and Integration of Hardware and Software Systems; provision of assistance and maintenance services»
7 INFERENCE LEVEL Systems and Software Engineering compliant with ISO , ISO , ISO and Model Based System Engineering Software Design and Development with strong competences in Real Time systems compliant with IEEE based process for real-time systems using multi-tasking OS Operational Documentation compliant with military standards (e.g. MIL-STD-498) System of Systems Engineering & Design Command & Control Systems for Test & Evaluation Real time mission-critical processing systems Automatic Video Trackers Front-End Processing Equipment Payload Data Ground Segment Chain Tracks Management Tactical Data Link Pattern Recognition Adaptive Expert Systems for Control Rooms High Low
8 What algorithms or techniques are appropriate and optimal for a particular application? What architecture should be used (i.e., where in the processing flow should data be fused (viz. at the data, feature, or decision levels)? How should individual sensor data be processed to extract the maximum amount of information? What accuracy can realistically be achieved by a data fusion process? How can the fusion process be optimized in a dynamic sense? How does the data collection environment (i.e., signal propagation, target characteristics, etc.) affect the processing? Under what conditions does multi-sensor data fusion improve system operation (under what conditions does it impede or degrade performance)?
9 Systems analysis and design processes are based on the operation concept and up-to-date system engineering methodologies. Requirements Analysis System Architecture and Design Identifying COTS products and accessories Developing custom system software System and software integration Test and deployment Training and support Concept of Operations Requirements and Architecture Detailed Design Verification and Validation Implementation Operations and Maintenance System Verification and Validation Integration, Test, and Verification Focus on complex architectures for test range. Integration of systems driven by both operation concept and performance. Integration of new systems in existent architectures through multiprotocol front-end systems. Support to define the System of Systems operation procedures, operation hierarchies and roles
10 Our skills & expertise span from low level software/firmware to real time and mission critical applications under different OS and RTOS environments. Management of multiple vendor solutions Integration of algorithms and APIs into the software solution SUPPORT PLANNING REQUIREMENT ANALISYS Integration of multi-layer/tier applications (drivers, middleware, user interface application) RELEASE SOFTWARE DEVELOPMENT LIFECYCLE DESIGN & DEVELOPMENT C++ and/or boost exceptions Qt and/or MFC/Win Embedded systems CppUnit or other unit test framework Multi-threaded real-time systems Labview CLIENT SIDE EVALUATION TESTING & INTEGRATION CODING & IMPLEMENTATION
11 The Multi Sensor Central Control System (MSCCS) proposed by Nurjana Technologies is an integrated and modular Command & Control System based on the NT software suite - Mission Management Platform (MMP) - designed to provide a complete suite of applications for a wide spectrum of testing and evaluation activities in a test centre Nurjana Electro Optical System is a complete HW and SW system for real time optical tracking in the field of high precision measurements. NEOS configuration is established through an detailed analysis of accuracy of the required tracking data, physical and dynamic characteristics of the target and test environment. The real-time video tracker can be configured by the user to ensure the success of the mission. NT s Mission Management Platform (MMP) is a complete suite providing all the software packages for managing, configuring and launching missions. The NT MMP is a framework that can be installed in a modular multi sensor control system configuration (MSCCS), without limitations regarding the number of Controller Working Position (CWP)
12 Multi Sensor Data Fusion for Space Debris where NT researchers are working with UniCA-DIEE to study and develop an innovative platform to find and track the debris, using integrated optical and radar sensors network. Aeromobili a pilotaggio remoto Intelligente co-planned by NT and UniCA DIEE, is about artificial intelligence to manage a swarm of equipped unmanned aircrafts for environmental monitoring. Sistema Satellitare Integrato di Gestione Incendi : deriving from the analysis of the severity of forest fires risk and the evaluation of the opportunities offered by the new environmental monitoring technologies, is a contribution to reduce the environmental and economical damages caused by forest fires, through the development of a software system that -by integrating innovative data processing techniques provided by new satellite technologies for environmental monitoring-, allows the planning of strategic prevention interventions, tactical management of the event and post-fire recovery. Our partners are CNR- IBIMET and Aerospace Engineering School of the Sapienza University of Rome (SIA).
13 Challenge Most European shooting ranges are too narrow and too short to provide the currently necessary Surface Danger Area (SDA) for shooting tests with Guided Munition (GM). NT Solution The Mission Abort System is an MSCCS/MMP configuration designed to ensure the mission of a flight vehicle is performed inside a Permitted Flight Corridor (PFC). The Flight Vehicle could be an aircraft or UAV or also a missile or projectile. Along with displaying the current operations, MSCCS-MAS takes advanced decisions along with the resulting output signals, in relation with predefined mission events (e.g. flight termination). The MSCCS-MAS system integrates real-time data from different TSPI sources as radars, tracking sensors and telemetry systems. The system processes data through advanced data fusion algorithms in order to produce the visual output of the current operation. Furthermore it takes advanced real-time decisions automatically providing output signals and commands during operations. This feature is performed by the state-transition configurable algorithms.
14 Challenge Port Wakefield Proof and Experimental Establishment hosts weapons trials, munitions proofing and environmental testing for the Royal Australian Navy, Australian Army and Royal Australian Air Force. The main scope of the project was the augmentation of the Proof & Experimental Establishment Port Wakefield (P&EE PW) test instrumentation systems to support LAND 17 test activities for the Future Artilllery Ammunition, in-service ammunition and Course Correcting Fuzes. NT Solution MSCCS-BTS is part of the Ballistic Tracking System (BTS), that is a requirement for the augmentation of P&EE PW. This version of the MSCCS-BTS system integrates data coming from different Ethernet radars, Electro-Optical System (EOS) or Splash Detection System (SDS) sources, processing them through advanced data fusion algorithms, and producing a visual output of the current operation. MSCCS-BTS processes data through advanced data fusion algorithms and produces a visual output of the current operation. It uses the identified target position to predict the impact point thanks to a specific algorithm of ballistic prediction developed by Nurjana Technologies.
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16 Sweden Italy Denmark France Germany Turkey Thailand Singapore Indonesia Australia
17 DGA (France) System and Software up-grade and System Integration of the EW Radar Simulator Bigare DGA (France) Study and Design of the Electro-Optic Tracking System for French MOD Weibel (Denmark) MSCCS-BTS: Multi Sensor Central Control Station for a Balistic Tracking System (subcontractor for Australian Test Range) Bofors Test Range (Sweden) MSCCS-BTS: Multi Sensor Central Control Station for Radar and Electro-Optics System Integration and Engineering Support Roketsan (Turkey) System and Software Design & Development of Test Range Command and Control Applications (sub-contractor for Turkish Test Range) Serco ESA (Italy) Copernicus: Ground Segment Operations engineering support for the Sentinel Space Missions OTO Melara Leonardo (Italy) MSCCS-MAS: Multi Sensor Central Control Station Mission for the Abort System designed to provide the guided ammunition with an automatic and selfdestruction command (Germany and Italian Test Range) Piaggio Aerospace (Italy) IADS support Engineer: engineering support for Telemetry tests on the P1HH UAV IT AirForce (Italy) MSCCS-ABSS: Multi Sensor Central Control Station for a Automatic Bomb Scoring System (Italian Test Range) Serco ESA (Italy) GMES: engineering support for the Ground Segment of Sentinels Space Missions Roketsan (Turkey) MSCCS-EOS:. Multi Sensor Central Control Station designed to provide the integrated mission management and real time data-fusion for electrooptical and radar sensors (Turkish Test Range) Roketsan (Turkey) MTSU: Mobile Trial Simulator Unit is a mobile standalone system, which contains the functionalities for simulate ballistic missions and tracking missions
18 Maria Grazia Fadda, Marketing Manager : grazia.fadda@nurjanatech.com Pietro Andronico, CEO: pietro.andronico@nurjanatech.com
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