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基于RMS测量原理的数字电工仪表误差控制方法

Error Control Method of Digital Electrical Instrument Based on RMS Measurement Principle

  • 摘要: RMS测量原理是数字电工仪表中用于表征交流信号能量和计量精度的重要方法。分析了数字电工仪表在复杂工况下的误差特征,研究了控制方法的核心需求及硬件补偿与软件算法的分层设计,提出了基于STM32H743与FPGA的混合架构及改进型滑动窗DFT与LSTM预测的协同控制思路,旨在构建适配非正弦波形与宽温环境的误差控制方法,为电力系统计量精度与稳定性提供技术支撑。

     

    Abstract: The RMS measurement principle is an important method used to characterize the energy and measurement accuracy of AC signals in digital electrical instruments. This paper analyzes the error characteristics of digital electrical instruments under complex working conditions, studies the core requirements of control methods and the hierarchical design of hardware compensation and software algorithms, and proposes a hybrid architecture based on STM32H743 and FPGA and a collaborative control idea of improved sliding window DFT and LSTM prediction.

     

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