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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Robust cancellation of minimum shift keying-encoded radio interference in data from the transient electromagnetic method
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Robust cancellation of minimum shift keying-encoded radio interference in data from the transient electromagnetic method

机译:从瞬态电磁法中取消最小移位键控键控的无线电干扰的鲁棒取消

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摘要

Interference from radio signals in the very low frequency (VLF, 3-30 kHz) band constitutes a significant part of the noise in data, measured using the transient electromagnetic method (TEM). Most radio signals in this frequency band convey streams of binary data, encoded using minimum shift keying or variants thereof. We have developed a framework for cancellation of these signals by modeling and subtracting the interfering signals from the recorded data. The framework uses several techniques to ensure robust and accurate modeling of the radio signals in a typical airborne TEM environment. These include combination of signals from multiple receiver coils, tracking of time-varying parameters for each receiver coil, use of a priori knowledge pertaining to the TEM primary field, and use of a high-performance decoding algorithm. Examples using recorded noise data from the field combined with synthetic TEM signals indicate a significant reduction in noise power. This results in a reduction of the standard deviation of approximately 1.5-4 times in the early to intermediate-time response, after common processing steps have been applied. In the late-time part of the response, little to no improvement is seen. Although the attainable improvement in signal quality is highly case dependent, we expect that significant noise reduction can be achieved in most cases. Despite not being tested, our framework should be directly applicable in the low frequency (LF, 30-300 kHz) band, which has relevance for wide-band systems.
机译:在非常低频(VLF,3-30 kHz)带中的无线电信号的干扰构成数据中噪声的大部分,使用瞬态电磁方法(TEM)测量。在该频带中的大多数无线电信号传送二进制数据的流,使用最小移位键控或其变型编码。我们通过从记录的数据建模和减去干扰信号来开发了一种用于取消这些信号的框架。该框架使用多种技术来确保在典型的空中TEM环境中的无线电信号的稳健和准确的建模。这些包括来自多个接收器线圈的信号的组合,跟踪每个接收器线圈的时变参数,使用与TEM主领域有关的先验知识,以及使用高性能解码算法。使用来自字段的记录的噪声数据与合成TEM信号组合的示例表示噪声功率显着降低。在应用常见处理步骤之后,这导致在早期到中间时间响应的标准偏差降低约1.5-4倍。在延迟部分的回应中,没有看到没有改善。尽管信号质量的可达到的改善是非常依赖的,但我们期望在大多数情况下可以实现显着的降噪。尽管没有进行测试,但我们的框架应直接适用于低频(LF,30-300 kHz)频段,这对宽带系统具有相关性。

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