Analysis of line of sight stabilization performance based on direct vs. indirect of a 2-axis gimbaled servo system for millimeter wave seeker

被引:0
|
作者
Shin S. [1 ]
Lee S.-Y. [1 ]
机构
[1] Power Control Team, Hanwha Systems Co., Ltd
来源
Shin, Seungchul (seungchul11.shin@hanwha.com) | 2018年 / Korean Institute of Electrical Engineers卷 / 67期
关键词
2-axis gimbal; DC motor; Direct LOS; Indirect LOS; Line of sight stabilization; PI control;
D O I
10.5370/KIEE.2018.67.11.1555
中图分类号
学科分类号
摘要
Tracking and detecting targets by the millimeter wave seeker is affected by movement of platform. Stabilization equipments use an inertial sensor to compensate for disturbance of stabilizing gimbal or platform. In the direct line of sight stabilization system, an inertial sensor is mounted on inner gimbal to compensate the disturbance directly, so the performance is excellent and the implementation method is simple. However gimbal design requires somewhat larger volume. Since an inertial sensor is mounted on gimbal base in the indirect line of sight stabilization system, additional space of gimbal is not required for the gimbal design. However, this method does not directly compensate for the disturbance of the line of sight stabilization axis, which can degrade performance. In order to perform the tracking performance, two methods are analyzed for line of sight stabilization performance based on direct and indirect of a 2-axis gimbaled servo system for millimeter wave seeker in this study. The simulation and experimental results validate the performance comparison of two methods. Copyright © The Korean Institute of Electrical Engineers.
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页码:1555 / 1561
页数:6
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