摘要
为了增强齿轮几何精度检测通用化和提高设计开发的效率,提出一种基于模块化思想的齿轮几何精度检测系统设计方法。采用坐标几何解析测量法、矩阵矢量运算和虚拟仪器等技术方法,将机械结构、硬件电路和软件算法分解为一系列标准模块。根据不同的测量需求,按设计结构将不同的模块进行合理的组合。利用该方法已完成了对环面蜗杆螺旋线误差检测仪的开发,与传统的齿轮精度检测检测设计方法相比,减少了设计和调试的工作量,缩短了整机的开发周期。
In order to enhance the universal of gear geometric precision detection and improve the efficiency of design and development,a design method of gear geometric precision detection system was proposed based on modularization. Mechanical structure, hardware circuits and software algorithms were decomposed into a series of standard modules using coordinate geometry analytical measurement method, matrix-vector operations and virtual instrument technology methods. Appropriately combining the modules according to the schemed structures, systems for variant types of electronic devices were designed. Development of the worm helix error detector has been completed following the strategy, reduces the controller design and debugging tasks abundantly, and shortens the development period compared with the traditional designs.
出处
《仪表技术与传感器》
CSCD
北大核心
2014年第9期72-74,共3页
Instrument Technique and Sensor
基金
国家863计划资助项目(2012AA041202)
国家自然科学基金资助项目(51127001)
重庆市两江学者资助项目
关键词
模块化
齿轮几何精度
矩阵矢量运算
虚拟仪器
modularization
gear geometric precision
matrix-vector operations
virtual instrument