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A Task Model to Reduce Control Delays

机译:减少控制延迟的任务模型

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摘要

Industrial control applications are usually developed in two phases: control design and real-time system implementation. In the control design stage a regulator is obtained and later it is translated into an algorithm in the implementation phase. Traditionally, these two phases have been developed in separate ways. Recently, some works have pointed out the necessity of the integration of the control design and its implementation. One of these works reduce the delay variance of control tasks (defined as the control action interval (CAI) and data acquisition interval (DAI) parameters) splitting every task into three parts. The CAI reduction method highly reduces the delay variance and improves the control performance. This work shows how to evaluate these delays under static and dynamic scheduling policies. A new task model is proposed in order to reduce the CAI and DAI parameters, which implies an improvement in the control performance. The new task model will be implemented in a real process, and the experimental measurements will show how, effectively, the control performance is highly improved with the methods presented in this paper.
机译:工业控制应用程序通常分为两个阶段开发:控制设计和实时系统实施。在控制设计阶段,需要获得一个调节器,然后在实施阶段将其转换为算法。传统上,这两个阶段是以不同的方式开发的。近来,一些工作指出了控制设计及其实现集成的必要性。这些工作之一减少了控制任务的延迟差异(定义为控制动作间隔(CAI)和数据获取间隔(DAI)参数),将每个任务分为三个部分。 CAI减少方法可大大减少延迟差异并提高控制性能。这项工作展示了如何在静态和动态调度策略下评估这些延迟。为了减少CAI和DAI参数,提出了一种新的任务模型,这意味着控制性能的提高。新的任务模型将在实际过程中实施,实验测量结果将显示如何有效地利用本文提出的方法来提高控制性能。

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