摘要
作为试验研究与方法验证的重要环节,测控平台及其软件环境的开发与设计占据重要的地位。该文基于太空帆板振动形态监测与主动控制的研究背景,以Visual C++环境、OpenGL技术和嵌入式测控单元为实现手段,阐述光纤机敏帆板结构振动形态感知、现场可视化与振动主动控制软件环境的开发与设计,包括设计思路、关键技术、主要功能与核心单元,并通过试验结果验证了测控软件环境开发设计的有效性,为试验平台及其测控系统提供了环境友好、功效强大的软件平台支撑。
As an important part of experimental research and method verification, the development and design of measurement and control platform and software environment play an important role. Based on the background of space panel vibration shape perception and active control, using Visual C++, OpenGL and embedded measurement and control units, this paper emphasizes on the design of fiber optic smart panel vibration shape perception, real-time visualization and active vibration control, including design idea, key technology, main function and kernel unit. Testing results prove the development and design of software environment effective, and it supports environment-friendly software platform with powerful function for testing platform and measurement and control system.
出处
《计算机工程》
CAS
CSCD
北大核心
2008年第21期31-34,共4页
Computer Engineering
基金
国家自然科学基金资助重大项目(90405013
90716027)
上海市教委"曙光计划"基金资助项目(04SG41)
上海市重点学科建设基金资助项目(T0103)
上海市电站自动化技术重点实验室基金资助项目
关键词
振动形态感知
振动主动控制
软件环境与平台
现场可视化
vibration shape perception
vibration active control
software environment and platform
real-time visualization