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A Multifunctional Smart Meter Using ANN-PSO Flux Estimation and Harmonic Active Compensation with Fuzzy Voltage Regulation

机译:使用Ann-PSO通量估计和谐波主动补偿具有模糊电压调节的多功能智能仪表

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摘要

This paper aims to present the analysis and development of a complete electronic smart meter that is able to perform four-quadrant measurements, act as a three-phase shunt active power filter (APF), and control three-phase induction motors by stator flux estimation. A transmission control protocol together with Internet protocol (TCP/IP) communication protocol for the remote access of measurement data is embedded into the application to securely transmit reliable information. An artificial neural network trained with particle swarm optimization is used for stator flux estimation, and a fuzzy logic controller is adopted to regulate the power converter DC bus voltage. The present work gathers knowledge from multidisciplinary fields, and all applied techniques have not been proposed altogether before. All control functions are embedded into a field-programmable gate array (FPGA) device, using VHSIC Hardware Description Language (VHDL), to enhance efficiency taking advantage of parallelism and high speed. An FPGA-in-the-loop cosimulation technique was first applied to prove the control functions’ functionality, and, later, experimental evaluations are conducted to finally prove equipment operation and reliability.
机译:本文旨在展示能够执行四象限测量的完整电子智能仪表的分析和开发,充当三相分流有源电力滤波器(APF),并通过定子通量估计控制三相感应电动机。传输控制协议与因特网协议(TCP / IP)通信协议一起用于远程访问测量数据的通信协议被嵌入到应用中以安全地发送可靠的信息。用粒子群优化训练的人工神经网络用于定子通量估计,采用模糊逻辑控制器来调节功率转换器直流母线电压。目前的工作收集了多学科领域的知识,并且之前尚未建议所有应用技术。所有控制功能被嵌入到一个现场可编程门阵列(FPGA)器件,使用VHSIC硬件描述语言(VHDL),从而提高工作效率利用并行性和高速的。首先应用FPGA - 循环化妆技术,以证明控制功能的功能,并进行实验评估,以最终证明设备操作和可靠性。

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