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Comparative Analysis on OQPSK and QDPSK of Continuous Pressure Wave System in Drilling Fluid Channel

机译:钻井液通道连续压力波系统OQPSK和QDPSK的比较分析。

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Based on the urgent needs for high transmission speed and high reliability of wireless MWD, the OQPSK modulation of the drilling fluid continuous wave signal is proposed in this article. The Principle of delay orthogonal modulation and coherent demodulation of OQPSK are studied, and the changes in the phase vector of the inputted bit sequence are analyzed; according to the principle of continuous wave generation, the phase adjustment mechanism of rotary value are analyzed and the relationship between the signal waveform, as well as the rotational speed when adjusting the phase, is studied; the information transmission rate, band efficiency and bit error rate of the OQPSK and QDPSK continuous wave communication systems are comparatively analyzed and simulated. The results show that OQPSK eliminates the phase transition of n, which belongs to constant envelope modulation, is suitable for the transmission under low SNR drilling fluid channel, meanwhile simplifies the phase adjustment and reduces generator design. QDPSK can simplify the computational complexity of phase adjustment, and reduces the design difficulty of the continuous-wave generator's control circuit. The rotary valve forms of "slow down -speed up" and " speed up -slow down " are suitable for π/ 2 and 3π/ 2 phase jump respectively; the motor control modes which combine closed loop position and closed loop velocity can achieve phasestable signal and reduce the dynamic torque of the motor; in the same carrier frequency and SNR, the information rate and bandwidth efficiency of both OQPSK's and QDPSK's are twice as those of the two-phase shift keying system's, and they can improve the wireless transmission performance of MWD system.
机译:基于对高传输速度的迫切需求和无线MWD的高可靠性,本文提出了钻井流体连续波信号的OQPSK调制。研究了OQPSK的延迟正交调制和相干解调的原理,分析了输入比特序列的相位向量的变化;根据连续波产生的原理,分析了旋转值的相位调整机构,并研究了信号波形之间的关系,以及调节相时的转速; OQPSK和QDPSK连续波通信系统的信息传输速率,频带效率和误码率相对较好地分析和模拟。结果表明,OQPSK消除了N的相变,它属于恒定的包络调制,适用于低SNR钻井液流体通道下的传输,同时简化相位调整并减少发电机设计。 QDPSK可以简化相位调整的计算复杂性,并降低了连续波发生器控制电路的设计难度。 “慢速 - 速度上升”和“加速 - 速度向下”的旋转阀形式适用于π/ 2和3π/ 2相跳;结合闭环位置和闭环速度的电动机控制模式可以实现可靠的信号并降低电动机的动态扭矩;在相同的载波频率和SNR中,OQPSK和QDPSK的信息速率和带宽效率是两相移键控系统的两倍,它们可以提高MWD系统的无线传输性能。

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