DocumentCode :
2473564
Title :
Northrop Grumman radar simulation (AVSIM)
Author :
Worsham, Richard H.
Author_Institution :
Syst. Eng. & Simulation Electron. Syst., Northrop Grumman Corp., Baltimore, MD, USA
fYear :
2002
fDate :
2002
Firstpage :
176
Lastpage :
186
Abstract :
The Northrop Grumman avionics simulation (AVSIM) is one of a set of simulations focused on fighter class radars. It is designed to support a variety of analysis and development activities, spanning requirements analysis, radar software development, performance evaluation and pilot interfaces. This paper describes AVSIM and the simulation architecture that surrounds it. The model provides high fidelity representations of both air-to-air and air-to-ground radar modes, encompassing detection capability, measurement errors, tracking performance and time lines. Analytical models are used to represent high data rate signal processing functions, while operational software is used for less intensive data processing such as radar control and tracking activities. AVSIM can be driven by models such as the joint integrated mission model (JIMM) or by tightly controlled scenarios from its own scenario generator. It can be run in real time, as part of a cockpit simulator, or in Monte Carlo mode, for detailed performance analysis. Extensive post processing capabilities provide insight into radar detection, measurement errors, tracking and time line performance. Scan patterns are also visualized, via playback capabilities. AVSIM represents a substantial advance in the state of the art for high fidelity multi-use avionics simulations.
Keywords :
aerospace simulation; airborne radar; digital simulation; military avionics; military computing; military radar; radar signal processing; radar tracking; telecommunication computing; Monte Carlo mode; Northrop Grumman AVSIM; Northrop Grumman avionics simulation; air-to-air radar; air-to-ground radar; cockpit simulator; detection capability; fighter class radars; joint integrated mission model; measurement errors; performance analysis; pilot interfaces; radar control; radar detection; radar simulation; radar software development; radar tracking; scan patterns; scenario generator; signal processing; simulation architecture; time lines; tracking performance; Aerospace electronics; Analytical models; Computer architecture; Measurement errors; Performance analysis; Programming; Radar detection; Radar measurements; Radar signal processing; Radar tracking;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Radar Conference, 2002. Proceedings of the IEEE
Print_ISBN :
0-7803-7357-X
Type :
conf
DOI :
10.1109/NRC.2002.999716
Filename :
999716
Link To Document :
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