数字伺服控制系统SERCOS总线接口的设计开发具有很高的研究价值和实用价值。
SERCOS digital servo control system bus interface design and development of high research value and practical value.
分析了磁光盘驱动器聚焦与循轨数字伺服系统各组成部分的原理,并设计和实现了一套基于DSP的数字伺服控制系统。
The paper analyzes the principle of components of magneto optical disk driver focusing and tracking servo system, then designs and realizes a DSP based digital servo control system.
采用光电编码器作为角位置传感器,以有刷直流电机作为伺服系统的伺服电机,使用控制器MCL2805实现全数字伺服控制系统。
The system takes photo-electricity coder as Angle position sensor, using brush DC motor as servo motor. The full-digital servo system is based on controller MCL2805.
文章提出了采用一种新型专用智能功率模块ASIPM,结合数字信号处理器DSP开发的永磁同步电动机伺服控制系统;
This paper proposes a servo control system for permanent magnet synchronous machine (PMSM) based on Application Specific Intelligent Power Module (ASIPM) and Digital Signal Processor (DSP).
开发了一种集合数字计算机、模拟计算机和电动伺服控制系统,面向自动控制类课程的综合教学实验仪器。
A kind of comprehensive experimental instrument, which is combined by a digital computer, an analog computer and an electric driving servo system, was proposed for automatic control teaching.
提出一种基于数字信号处理器(DSP)的全数字直流位置伺服控制系统。
This paper presents a digitized DC motor position servo control system based on DSP.
在济钢ASP1700薄板坯连铸连轧项目中,连铸机结晶器调宽系统采用了新型全数字交流伺服控制系统,代表当今世界最先进控制水平。
In the project of ASP1700 thin slab continuous casting and rolling, the system of mould width adjust in the continuous casting is equipped with the new digital alternating servo control system.
提出了一种直流脉宽调制伺服控制系统的基本框架,其算法通过嵌入式数字信号处理器(DSP)来实现。
A basic frame of direct current pulse width mode of servo control system is presented. Algorithm is realized by embedded digital signal processor.
随着角位置伺服控制系统中对数字化的需求,必须对传统的角位置伺服控制系统进行改进。
Because of the need of the digital control in the Angle servo control system, it is necessary to improve the traditional Angle servo control system.
介绍有关步进电机的伺服运动控制,设计了基于数字信号处理器的运动控制系统。
The motion control of stepping motor in the servo system is investigated and a motion control module based on digital signal processor is designed.
又因为是试验台控制系统,其本质是为了进行伺服缸的试验,所以我们针对该系统应用了多种控制策略,其中计算机控制系统的数字控制器设计是本文研究的重点内容。
Because of the essence of this control system is to complete servo cylinder test, we adopted many control strategies, and the design of digital controller of computer is the main research object.
电子控制系统则拥有一个能计算出机器每天总的操作时间、伺服时间和工作时间的数字计时器。
The electronic control system includes a digital hour counter, and can calculate total hours of operation, service hours and work hours per day.
主要介绍了全数字式交流伺服电机在万能材料试验机控制系统中的应用,并给出了将松下MINASA系列伺服电机用于5吨材料试验机的例子。
This paper introduced how to use digital ac servo motor in the universal material testing machine, and give an example of applying MINAS a serial servo motor to 5 tons material testing machine.
该文研究了可重写光盘机DSP数字伺服控制的问题,给出了数字控制系统的硬件构成。
The problems are studied about the digital servo using Digital Signal Processor (DSP)for rewritable optical disk drives, and the system scheme is presented.
本文主要介绍了全数字式交流伺服驱动器在铝塑管自动切割控制系统中的应用。
This paper presents the application of a full-digital AC-servo driver to an automatic cutting control system for aluminium plastic tubes.
提出一种基于数字信号处理器(DSP)的交流位置伺服控制系统。
This paper presents a digitized AC position servo system based on DSP.
方法:将单片机控制技术和传统的输液器相结合,采用光电传感器、信号处理电路、单片机控制系统、马达伺服电路和机械闸门、数字显示等技术。
Methods: Computer, opto-electronic sensor, signal processing circuit, digital display circuit and a mechanical gate driven by motor are used with common intavenous drips.
本课题对数字化圆筒型永磁直线同步电机伺服控制系统的研究具有重要意义,对其他直线电机的数字化伺服控制系统的研究也有一定的参考价值。
The subject is of far reaching importance to research of digital tubular PMLSM servo control system, and it also has reference value to research of other linear digital servo control system.
采用数字式交流伺服控制系统控制动横梁速度,使系统额速度稳定性、调节范围、自动化程度和测量精度都有大幅的提高,且具有一定的自诊断功能。
Digital AC-Servo control system is used to increase speed stability, adjust-ranges, automatization, measurement-precision, at the same time the system has some self-diagnose functions.
采用数字式交流伺服控制系统控制动横梁速度,使系统额速度稳定性、调节范围、自动化程度和测量精度都有大幅的提高,且具有一定的自诊断功能。
Digital AC-Servo control system is used to increase speed stability, adjust-ranges, automatization, measurement-precision, at the same time the system has some self-diagnose functions.
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