此设计使rti的信号总线能实现更好地控制数据流的分层控制网。与Insitu公司以前的设计相比。
The design leverages RTI's message bus to implement a hierarchical control network with well controlled data-flows.
本文以摆式列车分布式控制中的数据通讯为例,介绍了CAN总线通讯系统的设计与应用。
Based on the example of the data communication in tilting train's distributed control system, in this paper, introduces the design and application of the CAN bus communication system.
智能采集器与控制器通过现场总线通信,交换信息、发送指令、采集数据和控制。
Intelligent data acquisition collector communicates with controller via field-bus, exchanges information, sends command, gather data and control.
本设计实现了在MIC总线冗余系统中主控制器与从控制器间的数据通讯。
This design realizes the data communication between the main controller and accessary controller in MIC bus redundancy system.
现场总线是一种串行的数字数据通信链路,它沟通了生产领域的基本控制过程之间以及与更高层次控制过程的自动化控制设备之间的联系。
Field bus is a kind of serial digital data communication chain way, it links up to basically control in production field and high levels control course in the automation's control equipment.
根据PC总线计算系统硬件,对数据采集与质量控制系统的硬件进行了总体设计。
Based on the PC bus computer system hard ware, the overall design of the hardware and software function of the quality control and data acquisition system is presented.
介绍了一种基于CAN总线的数据采集与控制系统。
A data collection and control system based on CAN bus is introduced in this article.
文章采用AT 89 C 52单片机与CAN控制器sJA 1000设计了基于CAN总线的电动汽车数据采集显示与控制系统。
This paper presents a data acquisition and display system of HEV based on CAN BUS using microcontroller AT89C52 and stand-alone CAN controller SJA1000.
本文通过一个实例,介绍以IBM-PC微机为管理机与STD总线控制下的模块式工业控制机之间的远距离数据通讯、原理及方式。
This paper presents a method for data communication between IBM PC and control sys-tems under STD BUS in distributed control of computer systems.
总线控制器作为管理计算机与现场总线的接口装置,起到了管理计算机与智能仪表数据双向传输的网桥作用。
As a network bridge, communication controller is the interface device which realize the function of communication between supervise PC and field bus.
该系统采用CPLD实现了DSP与多通道adc的逻辑和时序控制,通过DSP的HPI与PCI总线接口设计实现了采集数据的高速传输。
The system utilizes CPLD to realize logical and timing control between DSP and multi-channel ADC. The interface between DSP's HPI and PCI bus is employed to achieve high-speed data transmission.
该系统以80c552单片机为控制核心,采用总线隔离技术,实现高速数据采集与数据处理分时进行。
This system with the control core of 80c552 single chip processor adopts bus isolation technique, realizing the time-sharing processing of high-speed data collecting and data processing.
文中着重介绍了工业控制机isa总线及其与高速数据采集卡的接口技术。
The interface between ISA bus and high-speed data sampling card is the emphasis of this paper.
介绍了PROFIBUS—DP现场总线在溢流染色机控制系统中的应用,采用现场总线技术与PLC技术,实现了对系统各设备的数据采集、处理及监控等功能。
An application of spilled-dyeing machine control system based on profibus-dp was described, FCS and PLC were used to control, get data on spot and monitor the system.
系统运用CMOS数字图像传感器取代模拟CCD摄像机,采用带有usb总线的PIC18 F 4550单片机来控制和传输数据,实现了视觉检测前端数据采集与传输的数字化、智能化。
CMOS digital image sensor and PIC18F4550 micro-controller with USB bus are applied to this sys - tem instead of the analog CCD camera to realize the digital acquisition and intelligent transmission.
为了降低用户界面层,感知控制代理层以及功能核心层之间的耦合度,该模型还在它们之间分别加入了用户任务数据总线与应用领域数据总线。
In addition, the model using the user task date bus and application domain date bus to reduce the coupling between the user interface and function core.
在数据通信方面,提出了由总线控制器与报文收发器构成的CAN总线接口电路,并详细论述了与总线接口初始化、总线中断处理、总线数据收发相关的设计实现过程。
For the purpose of data communication, the paper lodges the CAN interface circuit, and expatiates the programs of bus initialization, bus interrupt service routing, receiving and sending bus data.
在其变速器结构和控制模式方面采用了诸多新技术,通过CAN数据总线实现变速器控制与发动机控制相关联。
Many new technologies are used in transmission structures and control modes in Lupo cars, realizing the related relationship between transmission control and engine control through CAN data bus.
现场总线是安装在生产过程区域的现场设备、仪表与控制室内的自动控制装置、系统之间的一种串行、数字式、多点通信的数据总线。
The Fieldbus is located at the base layer of the production control and network frame and is directly connected with the factory field facilities;
现场总线是安装在生产过程区域的现场设备、仪表与控制室内的自动控制装置、系统之间的一种串行、数字式、多点通信的数据总线。
The Fieldbus is located at the base layer of the production control and network frame and is directly connected with the factory field facilities;
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