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Research on a TCM-based Transmission Approach for EM-MWD by Combining Phase Modulation and Convolutional Coding

机译:相互卷积编码基于TCM的发送方法对EM-MWD的研究

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In practical applications of electromagnetic measurement while drilling (EM-MWD) in the underground coal mine, the signal-to-noise ratio (SNR) of the receiver cannot always meet the requirements of reliable communication conditions due to the earth-attenuation, interfering signal from a well site, etc. Traditional digital communication systems use independent design coding and modulation techniques to improve system performance. The coding is mainly achieved by introducing redundant bits and the improvement of error performance is at the expense of information rate. Aimed to solve this problem, we use a coding technique based on trellis coded modulation (TCM) to maximize the minimum distance between modulated output sequences and achieve significant coding gain. Simulation and experiments show that the system can improve the anti-noise performance of the system by obtaining a coding gain without reducing the transmission rate. Compared to the uncoded quadrature phase shift keying (QPSK), TCM can achieve a coding gain of at least 3 dB under the same transmitting rate. At that time, as the number of TCM system states or trace back depth increases, the coding gain is further enhanced. The TCM code modulation method can be used in an EM-MWD system to improve the system performance.
机译:在电磁测量的实际应用中,在地下煤矿钻井(EM-MWD)时,由于地球衰减,干扰信号引起的接收器的信噪比(SNR)不能总是满足可靠的通信条件的要求从井网站等。传统的数字通信系统使用独立的设计编码和调制技术来提高系统性能。编码主要通过引入冗余比特来实现,并且误差性能的提高是以牺牲信息速率为代价的。旨在解决这个问题,我们使用基于格子编码调制(TCM)的编码技术来最大化调制输出序列之间的最小距离并实现显着的编码增益。模拟和实验表明,通过在不降低传输速率的情况下获得编码增益,系统可以通过获得编码增益来提高系统的抗噪声性能。与未编码的正交相移键控(QPSK)相比,TCM可以在相同的发送速率下实现至少3dB的编码增益。此时,随着TCM系统状态的数量或痕量背部深度增加,编码增益进一步增强。 TCM代码调制方法可用于EM-MWD系统,以提高系统性能。

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