A Study on the Vibration Characteristics of EO/IR Gimbal for UAVs

Researcher Jae-Wook Choi, Professor Dong-Gi Kwag
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引用次数: 1

Abstract

. The miniaturization of Unmanned Aerial Vehicle (UAV) and the resulting precision control technology have significantly grown in the modern world, and accordingly the development of small-sized surveillance equipment is urgently needed. This study aims to examine the vibration characteristics for the development of a 2-axis stabilization gimbal for small UAVs. Modal analysis and Harmonic response analysis were conducted to develop a 2-axis EO/IR gimbal with less than 300g. It examined the vibration characteristics of the gimbal in the range of 180Hz to 720Hz, which is the vibration frequency band due to the propeller rotation of unmanned aerial vehicles, as well as the stability of the system. It analyzed the vibration characteristics of gimbal by using a commercial finite element program (Ansys Workbench). This study investigated the structural stability of the system by analyzing the resonance frequency and the vibration characteristics of gimbal frame, considering the vibrations from disturbances in UAVs. Modeling was carried out in consideration of the miniaturization and light weight of a 2-axis EO/IR Gimbal, and mesh optimization was performed by using Tetrahedron Mesh to improve the reliability of the vibration analysis result.
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无人机EO/IR云台振动特性研究
。在当今世界,无人机的小型化及其精密控制技术得到了显著发展,因此迫切需要开发小型监控设备。本研究旨在研究小型无人机二轴稳定云台的振动特性。进行了模态分析和谐波响应分析,研制了小于300g的2轴EO/IR云台。研究了云台在180Hz ~ 720Hz(无人机螺旋桨旋转产生的振动频带)范围内的振动特性,以及系统的稳定性。利用商用有限元软件Ansys Workbench对云台的振动特性进行了分析。考虑无人机干扰下的振动,通过分析云台框架的谐振频率和振动特性,研究了系统的结构稳定性。考虑到2轴EO/IR云台的小型化和轻量化,对其进行了建模,并采用四面体网格进行了网格优化,以提高振动分析结果的可靠性。
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