三星先进技术研究院的陀螺测试系统的开发

V. Skvortzov, Yong-chul Cho, B. Lee, C. Song
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引用次数: 15

摘要

三星技术院开发了一种基于微机电系统(MEMS)技术的鲁棒陀螺仪。为了协助陀螺仪的开发和制造,创建了一个自动化测试系统。该系统成本低,结构灵活,采用计算机控制,具有基本和先进的特点。第一个目标是创建灵活的系统,以满足陀螺不同开发阶段和制造阶段的测试要求。进一步的主要工作目标是准确测量陀螺特性,全面表征和性能评估,通过适当的硬件和软件组合测试系统缩短陀螺开发周期。该系统的方法是建立一个自动化的、模块化的、可扩展的、灵活的系统,使用具有PC远程操作能力的独立设备。该测试系统由上位机通过GPIB接口和专用软件进行分层控制,可由各种必选设备和可选设备组成。用Visual Basic编写的软件具有数据采集和分析功能,提供:灵活利用设备的每个单元,在主机和独立仪器之间重新分配计算能力,以详细形式保存数据,以便快速方便地进行后处理和绘图。软件结构是使用面向对象编程的概念构建的。最新的软件允许进行校准和7种不同的测试,包括频率响应,相位延迟,输出信号电平,信噪比,功率谱密度噪声,时域噪声电平,以及许多计算参数,如比例因子,线性误差等。测试程序尽可能多地遵循IEEE陀螺仪测试标准的推荐指南。本文讨论了测试系统的原理、应用、测试结果和未来的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a gyro test system at Samsung Advanced Institute of Technology
Samsung Advanced Institute of Technology has developed a robust gyroscope based on microelectromechanical systems (MEMS) technology. To assist the gyro development and manufacturing an automated test system was created. The system is low cost one with modular and flexible structure controlled by computer having both basic and advanced features. The first aim was to create flexible system to meet test requirements of different development stages of a gyro and then manufacturing. The further major objectives of the work were accurate measurement of gyro characteristics, comprehensive characterization and performance evaluation, reducing of gyro development cycle time by the test system using suitable hardware and software combination. Methodology of the system is building an automated, modular, scalable, flexible system using of available standalone equipment with PC remote operation capabilities. The test system is hierarchically controlled by host computer with General Purpose Interface Bus (GPIB) interface and special software, and may consist of various required and optional equipment. The software written in Visual Basic has both data acquisition and analysis capabilities providing: a flexible utilization each unit of the equipment, redistribution of computational power between host computer and standalone instruments, data saving in a detailed form for quick and convenient postprocessing and plotting. The software structure is built using a concept of object oriented programming. Latest software allows to carry out calibration and 7 different tests including a frequency response, phase delay, output signal level, signal-to-noise ratio, power spectral density of noise, time domain noise level, and many calculated parameters, such as scale factor, linearity error and others. The test procedure follows as much as possible recommended guidelines of IEEE standards for gyroscope testing. In this paper, principles of the test system, application, results and future demands are discussed.
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