Title :
Modeling and optimization of Electro-Optical dual axis Inertially Stabilized Platform
Author :
Mokbel, Hany F. ; Ying, Lv Qiong ; Roshdy, Amr A. ; Hua, Cao Guo
Author_Institution :
Coll. of Mech. & Electr. Eng., Changchun Univ. of Sci. & Technol., Changchun, China
Abstract :
A dual-axis Inertially Stabilized Platform (ISP) was designed to perform a continuous Yaw and Pitch rotations, about the Z and Y-axes respectively, to facilitate surveillance and tracking of a moving target from a moving platform. The Electro-Optical (EO) tracking and ranging system consists of a Laser Range Finder (LRF) and a Charge Coupled Device (CCD) camera. The ISP structure consists of the inner gimbal that carrying the EO devices and rotates in the Elevation direction about the Y-axis, and the outer gimbal that makes the cross elevation rotation (Azimuth) about the Z-axis. The Kinematics and dynamics models are discussed in details to facilitate understanding the precession of the ISP, as well as, to simulate the designed system to assure the ability of the system to act diligently according to the maximum designed requirements. This paper not only gives the mathematical model for the two-axis ISP, but the more important is that it gives the methodology to derive and analyze it, to direct the design toward optimality. Enhancement, optimization and performance estimation of the design was done based on this mathematical model as well as the 3D model.
Keywords :
electro-optical devices; electro-optical effects; laser ranging; surveillance; target tracking; ISP structure; Y-axes; Yaw and Pitch rotations; Z-axes; charge coupled device camera; cross elevation rotation; dynamics models; electro-optical dual axis; electro-optical tracking; elevation direction; inertially stabilized platform; inner gimbal; kinematics models; laser range finder; mathematical model; moving target; ranging system; surveillance; Acceleration; Angular velocity; Azimuth; Equations; Mathematical model; Torque; Vectors; Design Optimization; Inertially Stabilized Platform (ISP); Mathematical Modeling;
Conference_Titel :
Optoelectronics and Microelectronics (ICOM), 2012 International Conference on
Conference_Location :
Changchun, Jilin
Print_ISBN :
978-1-4673-2638-4
DOI :
10.1109/ICoOM.2012.6316293