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Feedforward hybrid control using foundation fieldbus: A case study of temperature control with DeltaV system

机译:使用基础现场总线的前馈混合控制:以DeltaV系统的温度控制为例

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With Foundation Fieldbus (FF) technology, a control strategy can incorporate function blocks running in both host controller and field devices, which is known as hybrid control. This paper focuses on implementation of feedforward hybrid control by utilizing basic function blocks in H1 field devices and advanced function block in host controller to provide a guideline for detailed design to specify of the FF philosophy to be used in a greenfield or brownfield project for maximizing end user achievement. A laboratory-scale FF H1 segment configured and operated on the DeltaV host system for feedforward on temperature control is used as an illustrative case study to analyze three different configurations by assigning control function block into different field devices in terms of the network load for scheduled communications during segment macrocycle. Experimental results obtained from the preferred control loop with minimum scheduled traffic load verify that an improvement in disturbance response can be achieved. Using control block in field device for FF-based hybrid architecture can, therefore, be applied for creating the feedforward control with disturbance anticipation capability.
机译:利用基金会现场总线(FF)技术,控制策略可以合并在主机控制器和现场设备中运行的功能块,这被称为混合控制。本文着重于通过使用H1现场设备中的基本功能块和主机控制器中的高级功能块来实现前馈混合控制的方法,从而为详细设计提供指导,以指定要在未开发项目或未开发项目中使用的FF原理,以最大程度地实现最终目标用户成就。在DeltaV主机系统上配置并运行以进行温度控制前馈的实验室规模FF H1网段,作为说明性案例研究,通过根据网络负载为调度通信分配控制功能块到不同的现场设备来分析三种不同的配置在段大循环期间。从具有最小调度流量负载的首选控制环路获得的实验结果证明,可以实现干扰响应的改善。因此,可以将现场设备中的控制块用于基于FF的混合体系结构,以创建具有干扰预测能力的前馈控制。

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