基于等离子体信道预测的FM算法
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中国工程物理研究院 电子工程研究所,四川 绵阳 621999

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秦 超(2001-),男,在读硕士研究生,主要研究方向为等离子体通信.email:2629709661@qq.com.
解 楠(1975-),男,博士,研究员,主要研究方向主要为遥测遥控、卫星定位技术等.
王 鹏(1983-),男,硕士,副研究员,主要研究方向为信号处理与测控通信系统.
石先华(1987-),男,博士,副研究员,主要研究方向为遥测遥控技术.

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Adaptive Frequency Modulation based on plasma channel prediction
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Institute of Electronic Engineering,China Academy of Engineering Physics,Mianyang Sichuan 621999,China

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    摘要:

    为缓解超高声速飞行器遭遇等离子体引起通信中断的难题,提出基于信道预测的信道均衡方法。通过研究反射信号和透射信号的相关性,建立透射信号与反射信号的关系;利用反射信号实时预测等离子体信道参数,并根据预测结果做出相应的自适应调整策略,抵消等离子体寄生调制效应的影响。等离子体引起的相移会导致调相信号星座图的特殊旋转,但不会对调频信号的主频范围产生较大的影响,且调频信号采用非相干解调可忽略相位的影响,因此调频信号受到等离子体的影响更小。本文在调频(FM)体制下,利用反射信号实时预测等离子体信道特性,并在发送端调制阶段通过自适应功率放大器实时补偿等离子体寄生调制效应给传输信号造成的衰减。仿真结果表明,相比非自适应调制方式,采取自适应调制补偿信道影响的算法可有效改善误码性能。

    Abstract:

    To mitigate the communication interruption problem caused by plasma encountered by hypersonic vehicles, a channel equalization method based on channel prediction is proposed. By investigating the correlation between reflected and transmitted signals, the relationship between transmitted and reflected signals is established; the reflected signal is utilized to predict plasma channel parameters in real time, and corresponding adaptive adjustment strategies are formulated based on the prediction results to counteract the impact of plasma parasitic modulation effects. The phase shift induced by plasma causes special rotation of the constellation diagram for phase-modulated signals, but exerts no significant influence on the main frequency range of frequency-modulated signals; moreover, frequency-modulated signals employ non-coherent demodulation, rendering the phase effect negligible. Consequently, Frequency-Modulated(FM) signals are less affected by plasma. Under the frequency modulation scheme, this paper leverages reflected signals to predict plasma channel characteristics in real time, and compensates for the attenuation caused by plasma parasitic modulation effects on transmitted signals through an adaptive power amplifier at the transmitting modulation stage. Simulation results demonstrate that, compared with non-adaptive modulation schemes, the algorithm adopting adaptive modulation to compensate for channel effects can effectively improve bit error performance.

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秦超,解楠,王鹏,等.基于等离子体信道预测的FM算法[J].太赫兹科学与电子信息学报,2026,24(8):971~979. DOI:10.11805/TKYDA2025250.
Qin Chao, Xie Nan, Wang Peng, et al. Adaptive Frequency Modulation based on plasma channel prediction[J]. Journal of Terahertz Science and Electronic Information,2026,24(8):971-979. DOI:10.11805/TKYDA2025250.

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  • 收稿日期:2025-08-13
  • 最后修改日期:2025-09-09
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  • 在线发布日期: 2026-09-03
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