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Maglev Train Signal Processing Architecture Based on Nonlinear Discrete Tracking Differentiator

机译:基于非线性离散跟踪微分器的磁悬浮列车信号处理架构

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摘要

In a maglev train levitation system, signal processing plays an important role for the reason that some sensor signals are prone to be corrupted by noise due to the harsh installation and operation environment of sensors and some signals cannot be acquired directly via sensors. Based on these concerns, an architecture based on a new type of nonlinear second-order discrete tracking differentiator is proposed. The function of this signal processing architecture includes filtering signal noise and acquiring needed signals for levitation purposes. The proposed tracking differentiator possesses the advantages of quick convergence, no fluttering, and simple calculation. Tracking differentiator’s frequency characteristics at different parameter values are studied in this paper. The performance of this new type of tracking differentiator is tested in a MATLAB simulation and this tracking-differentiator is implemented in Very-High-Speed Integrated Circuit Hardware Description Language (VHDL). In the end, experiments are conducted separately on a test board and a maglev train model. Simulation and experiment results show that the performance of this novel signal processing architecture can fulfill the real system requirement.
机译:在磁悬浮列车悬浮系统中,信号处理起着重要的作用,原因是由于传感器的安装和操作环境恶劣,一些传感器信号容易被噪声破坏,并且某些信号不能直接通过传感器获取。基于这些考虑,提出了一种基于新型非线性二阶离散跟踪微分器的架构。该信号处理体系结构的功能包括过滤信号噪声并获取用​​于悬浮的所需信号。提出的跟踪微分器具有收敛速度快,无抖动,计算简单的优点。本文研究了在不同参数值下跟踪微分器的频率特性。这种新型跟踪微分器的性能在MATLAB仿真中进行了测试,并且该跟踪微分器以超高速集成电路硬件描述语言(VHDL)实现。最后,分别在测试板和磁悬浮列车模型上进行实验。仿真和实验结果表明,这种新颖的信号处理架构的性能可以满足实际的系统需求。

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