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Type of active impulse noise suppressing method based on double-loop antennas in very low frequency/ultra-low frequency coupling communications

机译:极低频/超低频耦合通信中基于双环天线的有源脉冲噪声抑制方法的类型

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摘要

Very low frequency/ultra-low frequency coupling communication systems suffer from severe disturbance from non-Gaussian impulsive noises which producing significant long tails. Considering the significant in-band parts of the impulse, traditional noise-suppression methods are not adequate in improving the signal-to-noise ratio (SNR), and the performance of existing dipole–loop double antennas active noise suppression systems are limited to a low level due to the different directionality of the antennas. A new double-loop antennas active noise suppressing system was proposed, in which one multi-turn loop antenna was employed to receive the useful signals, and one single-turn loop was employed as the noise reference antenna. A mathematical morphology processor and a time-switch filter were employed to extract the impulsive noise, and the digital equivalent model of the multi-turn loop antenna was established filtering the extracted impulsive noise to obtain a duplicate transient, which is highly correlated with the transients received from the multi-turn loop antenna. The system SNR was improved by subtracting the transient duplicate from the received signals. Simulations were carried out with Monte Carlo method, showing that the SNR can be improved with the gain of about 18 dB with communication error rate extremely reduced by orders of magnitude. Experiment system was also designed and established to verify the feasibility and efficiency, and a 50 m communication experiment in an industrial environment showed that the error rate can be decreased from 0.2 to 0.06% while employing the proposed noise suppression method.
机译:极低频/超低频耦合通信系统遭受非高斯脉冲噪声的严重干扰,产生大量长尾巴。考虑到脉冲的重要带内部分,传统的噪声抑制方法不足以提高信噪比(SNR),并且现有的偶极环双天线有源噪声抑制系统的性能仅限于由于天线的方向性不同,因此电平较低。提出了一种新的双环天线有源噪声抑制系统,该系统采用一个多匝环路天线接收有用信号,并使用一个单匝环路作为噪声参考天线。采用数学形态学处理器和时间切换滤波器提取脉冲噪声,建立多匝环形天线的数字等效模型,对提取的脉冲噪声进行滤波,得到与瞬变高度相关的重复瞬变。从多匝环形天线接收。通过从接收信号中减去瞬态重复信号来改善系统SNR。用蒙特卡罗方法进行了仿真,结果表明,可以以18 dB的增益改善SNR,并且通信错误率大大降低了几个数量级。设计并建立了实验系统以验证其可行性和效率。在工业环境中进行的50μm通讯实验表明,采用所提出的噪声抑制方法,可以将错误率从0.2降低到0.06%。

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