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Public access defibrillation: Suppression of 16.7 Hz interference generated by the power supply of the railway systems

机译:公众除颤:抑制铁路系统电源产生的16.7 Hz干扰

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Background A specific problem using the public access defibrillators (PADs) arises at the railway stations. Some countries as Germany, Austria, Switzerland, Norway and Sweden are using AC railroad net power-supply system with rated 16.7 Hz frequency modulated from 15.69 Hz to 17.36 Hz. The power supply frequency contaminates the electrocardiogram (ECG). It is difficult to be suppressed or eliminated due to the fact that it considerably overlaps the frequency spectra of the ECG. The interference impedes the automated decision of the PADs whether a patient should be (or should not be) shocked. The aim of this study is the suppression of the 16.7 Hz interference generated by the power supply of the railway systems. Methods Software solution using adaptive filtering method was proposed for 16.7 Hz interference suppression. The optimal performance of the filter is achieved, embedding a reference channel in the PADs to record the interference. The method was tested with ECGs from AHA database. Results The method was tested with patients of normal sinus rhythms, symptoms of tachycardia and ventricular fibrillation. Simulated interference with frequency modulation from 15.69 Hz to 17.36 Hz changing at a rate of 2% per second was added to the ECGs, and then processed by the suggested adaptive filtering. The method totally suppresses the noise with no visible distortions of the original signals. Conclusion The proposed adaptive filter for noise suppression generated by the power supply of the railway systems has a simple structure requiring a low level of computational resources, but a good reference signal as well.
机译:背景技术在火车站出现使用公共除颤器(PAD)的特定问题。一些国家,例如德国,奥地利,瑞士,挪威和瑞典,正在使用交流铁网供电系统,其额定频率为16.7 Hz,从15.69 Hz调制到17.36 Hz。电源频率污染了心电图(ECG)。由于它与ECG的频谱显着重叠,因此很难抑制或消除。干扰阻碍了PAD的自动决定,是否应该对患者进行电击。这项研究的目的是抑制铁路系统电源产生的16.7 Hz干扰。方法提出了一种采用自适应滤波方法抑制16.7 Hz干扰的软件解决方案。通过将参考信道嵌入PAD中以记录干扰,可以实现滤波器的最佳性能。该方法已通过AHA数据库中的ECG进行了测试。结果对正常窦性心律,心动过速症状和心室纤颤的患者进行了测试。将频率调制从15.69 Hz到17.36 Hz的模拟干扰以每秒2%的速率变化添加到ECG,然后通过建议的自适应滤波进行处理。该方法完全抑制了噪声,而原始信号没有可见失真。结论所提出的用于抑制铁路系统电源产生的噪声的自适应滤波器结构简单,所需的计算资源较少,但参考信号也很好。

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