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首页> 外文期刊>Journal of computer sciences >ENERGY EFFICIENT FLOW AND LEVEL CONTROL IN A HYDRO POWER PLANT USING FUZZY LOGIC | Science Publications
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ENERGY EFFICIENT FLOW AND LEVEL CONTROL IN A HYDRO POWER PLANT USING FUZZY LOGIC | Science Publications

机译:基于模糊逻辑的水电厂能效流量和水位控制科学出版物

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> The main objective and an innovative design of this work is to improve the energy efficiency by controlling the variables flow and level in a hydroelectric power plant using Programmable Logic Control (PLC)-Human Machine Interface (HMI) and fuzzy logic approach. This project will focus on design and development of flow and level controller for small scale hydro generating units by implementing gate control based on PLC-HMI and Fuzzy Logic Control (FLC). So far there is no other better performing control scheme, with uncomplicated approach, in order to match and satisfy the dynamic changes in load demand. In this project, FLC will be applied to flow and level control for small scale hydro generating units is proposed. A lab scale experimental setup is made-up as prototype model for flow and level control and simulation outputs were achieved, using PLC-HMI based fuzzy controller scheme. The hardware set up is designed with 5 stages in the tank 1 and 2 stages in the tank 2. Based on the outputs of the level sensors from tanks 1 and 2, the ladder logic will perform. B&R Industrial Automation PLC inbuilt with 24 digital inputs and provides 16 potential free outputs is used to perform control action. Finally, the performance of the proposed scheme is evaluated by simulation results by comparing with conventional controllers output using the data collected from the hydroelectric power plant. The merits of the proposed Fuzzy scheme over the conventional method are spotlighted.
机译: >这项工作的主要目标和创新设计是通过使用可编程逻辑控制(PLC)-人机界面(HMI)和HMI来控制水力发电厂的流量和液位,从而提高能源效率。模糊逻辑方法。该项目将通过实施基于PLC-HMI和模糊逻辑控制(FLC)的闸门控制,专注于小型水力发电机组流量和液位控制器的设计和开发。迄今为止,没有其他性能更好的控制方案可以使用简单的方法来匹配并满足负载需求的动态变化。在这个项目中,FLC将被应用于小型水力发电机组的流量和水位控制。使用基于PLC-HMI的模糊控制器方案,构成了实验室规模的实验装置,作为流量和液位控制的原型模型,并获得了模拟输出。硬件设置的设计是在水箱1中有5级,在水箱2中有2级。根据水箱1和2的液位传感器的输出,将执行梯形逻辑。贝加莱工业自动化PLC内置24个数字输入并提供16个无电势输出,用于执行控制动作。最后,通过与从水力发电厂收集的数据与常规控制器输出进行比较的仿真结果,通过仿真结果评估了该方案的性能。与常规方法相比,所提出的模糊方案的优点受到关注。

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