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A Comparative Study on Vortex Transmitter Versus Differential Pressure Transmitter for Flow Control

机译:涡流变送器与差压变送器对流量控制的比较研究

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This research emphasizes on the study of Vortex transmitter and Differential Pressure (DP) transmitter performance for a laboratory pilot plant by observing process response criteria consisting of dead-time (TD), rise time (TR), overshoot (%OS) and settling time (TS) for set point changes in a Proportional-Integral-Derivative (PID) flow control architecture. Four experiments were conducted; rising set point for Vortex transmitter, rising set point for DP transmitter, falling set point for Vortex transmitter and falling set point for DP transmitter. Limit tolerance test for Vortex transmitter and DP transmitter were done to determine the operational limits. Continuous Cycling Method is applied for controller tuning. Control and data collection for the flow plant is done using Distributed Control System (DCS) in real time. It is observed that Vortex transmitter produces a smaller TD, TS, Ts and %OS compared to DP transmitter for falling SP experiment, while less conclusive results were obtained for rising SP set up where Vortex transmitter produces a larger TD and Ts but smaller TR and %OS.
机译:本研究强调了通过观察由死区时间(TD),上升时间(TR),过冲(TRE),过冲(%OS)和建立时间的过程响应标准来研究实验室导频工厂的涡流发射器和差压(DP)发射机性能(TS)用于比例积分衍生物(PID)流量控制架构中的设定点变化。进行了四个实验;涡流变送器的上升设定点,DP发射器的上升设定点,涡流变送器下降设定点和DP发射器的下降设定点。限制涡流发射器和DP发射器的限制公差测试是为了确定操作限制。连续循环方法应用于控制器调谐。流动工厂的控制和数据收集是使用分布式控制系统(DCS)实时完成的。观察到与DP发射器相比,涡旋发射器与用于下降SP实验的DP发射器相比,vortex发射机产生较小的Td,Ts,Ts和%OS,而涡旋发射器产生较大的Td和Ts但是较小的Ts但是较小的Ts但是较小的Ts但是较小的Ts但较小的Ts但较小的Ts,而且较少的结论Sp,则涡旋发射器产生较小的TD,TS,TS和%OS。 %操作系统。

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