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SCADA system with predictive controller applied to irrigation canals

机译:具有预测控制器的SCADA系统应用于灌溉渠

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This paper applies a model predictive controller (MPC) to an automatic water canal with sensors and actuators controlled by a PLC network (programmable logic controller), and supervised by a SCADA system (supervisory control and data acquisition). This canal is composed by a set of distributed subsystems that control the water level in each canal pool, constrained by discharge gates (control variables) and water off-takes (disturbances). All local controllers are available through an industrial network managed by the SCADA system, where the centralized predictive controller runs. In this paper a complete new platform connecting the SCADA supervisory system and the MATLAB software (named SCADA-MATLAB platform) is built, in order to provide the usual SCADA systems with the ability to handle complex control algorithms. The developed MPC-model presents a novelty in the control of irrigation canals as it allows the use of industrial PLCs to implement high complex controllers, through the new developed SCADA-MATLAB platform. Experimental results demonstrate the reliability and effectiveness of the proposed strategy in real-life typical situations, including gate malfunctioning and extreme water off-take conditions.
机译:本文将模型预测控制器(MPC)应用于具有传感器和执行器的自动水渠,该传感器和执行器由PLC网络控制(可编程逻辑控制器),并由SCADA系统进行监督(监督控制和数据采集)。该运河由一组分布式子系统组成,这些子系统控制每个运河水池中的水位,并受排水门(控制变量)和取水量(干扰)的约束。所有本地控制器都可以通过由SCADA系统管理的工业网络来访问,在该网络中运行集中式预测控制器。本文建立了一个完整的新平台,该平台将SCADA监控系统和MATLAB软件(称为SCADA-MATLAB平台)连接起来,以便为通常的SCADA系统提供处理复杂控制算法的能力。开发的MPC模型通过新开发的SCADA-MATLAB平台允许使用工业PLC来实现高度复杂的控制器,因此在灌溉渠的控制方面具有新颖性。实验结果证明了该策略在实际的典型情况下(包括闸门故障和极端取水条件)的可靠性和有效性。

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