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Improved Type3-PLL to Mitigate Parasitic Amplitude Modulation Effects Caused by Time-Varying Plasma Sheath

机译:改进的Type3-PLL缓解了随时间变化的等离子体鞘层引起的寄生振幅调制效应

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Time-varying plasma sheath likely causes parasitic amplitude and phase modulation effects on communication signals. It can increase the carrier tracking error of tracking telemetry and command systems for hypersonic vehicles flying in near space, and it may lead to loss of lock under serious conditions. This paper comprehensively analyzes the influence mechanism of the amplitude modulation effects on the loss threshold of Type3-phase-locked loop (PLL) in phase-locked receivers. Analysis result shows that amplitude fading in time-varying plasma sheaths is similar to the Gaussian distribution unrelated to the fluctuant densities. The standard deviation of amplitude fading increases with the fluctuant intensity. The 8% fluctuant intensity of electron density begins to have a significant impact on the lock probability of Type3-PLL. On the basis of the analysis results and the amplitude modulation effects, Type3-PLL with a prefiltering (PF-Type3-PLL) method is proposed to mitigate the amplitude modulation effects. PF is placed before the discriminators of Type3-PLL to restrict the amplitude variation within a reasonable range. The tracking loop PF-Type3-PLL is tested with spatial-temporal fluctuant plasma sheath model and compared with the traditional Type3-PLL. Tracking results show that PF-Type3-PLL is more robust than the traditional Type3-PLL. The phase error jitter is significantly reduced when the fluctuant intensity is 8%, and the loss threshold is reduced by 4 dB. The robustness is also enhanced under different loop noise bandwidths (5-15 Hz).
机译:随时间变化的等离子体鞘层可能会对通信信号产生寄生幅度和相位调制效应。对于在近太空飞行的高超音速飞行器,它可能会增加跟踪遥测和指挥系统的载波跟踪误差,并且在严重的情况下可能导致失锁。本文综合分析了调幅效应对锁相接收机中Type3锁相环损耗门限的影响机理。分析结果表明,随时间变化的等离子体鞘层的衰落类似于高斯分布,与波动密度无关。振幅衰减的标准偏差随强度的增加而增加。电子密度的8%波动强度开始对Type3-PLL的锁定概率产生重大影响。在分析结果和调幅效果的基础上,提出了采用预滤波(PF-Type3-PLL)方法的Type3-PLL来减轻调幅效果。 PF放置在Type3-PLL的鉴别器之前,以将幅度变化限制在合理范围内。跟踪环路PF-Type3-PLL用时空波动等离子体鞘模型进行了测试,并与传统的Type3-PLL进行了比较。跟踪结果表明,PF-Type3-PLL比传统的Type3-PLL更强大。当波动强度为8%时,相位误差抖动显着降低,损耗阈值降低4 dB。在不同的环路噪声带宽(5-15 Hz)下,鲁棒性也得到了增强。

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