Reusable Modeling of Pulsed Doppler Radar Seeker for Coherent Video Signal Simulation
- DOI
- 10.2991/icamcs-16.2016.15How to use a DOI?
- Keywords
- Reusable Model, Radar Seeker, Coherent Video Signal, Design Pattern
- Abstract
A reusable framework of pulsed Doppler radar seeker (PDRS) is established for coherent video signal simulation, which provides an efficient tool to its design and evaluation. General PDRS configurations are described with emphasis on performance limitations. The discussions on the key parts of PDRS are self-contained and provide sufficient detail to allow a clear understanding of principles involved, which are depicted in a series of UML class diagram. Augmented proportional navigation law is used to generate the acceleration demands, while the bank-to-turn control command to obtain the fin-angle demand and the six degree of freedom (6-DOF) missile motion solution can then be accomplished by using missile aerodynamic characteristics. An air defense warfare scenario is designed to validate coherent video modeling. The 6-DOF trajectory simulation is also considered. The electronic countermeasures are also taken into account. Results show that this PDRS coherent video model is accurate for 6-DOF trajectory simulation, and the closed loop simulation offers an effective and practical way to design parameters and evaluate performance of missile.
- Copyright
- © 2016, the Authors. Published by Atlantis Press.
- Open Access
- This is an open access article distributed under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).
Cite this article
TY - CONF AU - Jing Zhao AU - Shenshen Wang AU - Wanfang Che AU - Fangnian Wang PY - 2016/06 DA - 2016/06 TI - Reusable Modeling of Pulsed Doppler Radar Seeker for Coherent Video Signal Simulation BT - Proceedings of the 2016 5th International Conference on Advanced Materials and Computer Science PB - Atlantis Press SP - 71 EP - 77 SN - 2352-5401 UR - https://doi.org/10.2991/icamcs-16.2016.15 DO - 10.2991/icamcs-16.2016.15 ID - Zhao2016/06 ER -