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Research and Development of Communication Interface Based on OPC Technology

机译:基于OPC技术的通信接口的研究与开发。

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摘要

In the traditional and closed data acquisition monitoring system, information sharing between lower computer parameter acquisition device and upper computer system software is implemented by the driver. However, the internal drivers of the upper system are defined by different software developers. In this case, the hardware developers can not satisfy all the drivers. As a standard and open industrial interface, OPC technology has broken the limitations of traditional and closed data acquisition and monitoring system. In this paper, it introduces a communication interface based on OPC technology. This communication interface can not only meet the data acquisition of one or more parameter acquisition devices, but also interoperate the data in the way of OPC Server and the configuration software of the upper computer. In this way, it can improve the flexibility of the entire monitoring system. Meanwhile, multitask control switching is completed by thread pool. It ensures that each function does not interfere with each other, but also reduces the CPU occupancy rate of the entire communication interface, and ensures the stability of the communication interface.
机译:在传统的封闭式数据采集监视系统中,下层计算机参数采集设备与上层计算机系统软件之间的信息共享是由驱动程序实现的。但是,上层系统的内部驱动程序是由不同的软件开发人员定义的。在这种情况下,硬件开发人员无法满足所有驱动程序。作为一种标准的开放式工业接口,OPC技术突破了传统和封闭式数据采集与监视系统的局限性。本文介绍了一种基于OPC技术的通信接口。该通信接口不仅可以满足一个或多个参数采集设备的数据采集需求,而且还可以通过OPC Server和上位机的组态软件进行数据互操作。这样,可以提高整个监视系统的灵活性。同时,多任务控制切换由线程池完成。这样可以确保每个功能互不干扰,而且可以降低整个通信接口的CPU占用率,并确保通信接口的稳定性。

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