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月表环境无线电波传播分段预测模型
引用本文:朱秋明,黄攀,陈学强,王成华,王凤宇,周生奎. 月表环境无线电波传播分段预测模型[J]. 四川大学学报(工程科学版), 2014, 46(2): 116-120
作者姓名:朱秋明  黄攀  陈学强  王成华  王凤宇  周生奎
作者单位:南京航空航天大学,南京航空航天大学,南京航空航天大学,南京航空航天大学,北京空间飞行器总体设计部,南京航空航天大学
基金项目:深空通信中基于Mengali线性分解理论的多进制多调制度连续相位信号非相干检测(61172078)
摘    要:针对经典无线电波传播模型不适用于月球特殊的传播环境问题,提出一种月表环境下电波传播损耗分段预测模型。该模型首先建立包含自由空间段、月面反射段和月球绕射段的理想分段预测模型,并给出不同区间内传播损耗预测算法,然后考虑传播路径剖面上多重障碍物导致的额外损耗,以及其对分段区间参数的修正方法。将其应用于美国国家航天局提供的月表实际场景,仿真结果表明该模型预测结果与“阿波罗”登月工程获得的实测数据非常吻合,可用于辅助月表无线通信系统的参数设计和性能评估。

关 键 词:传播损耗;预测模型;月表环境;布莱默级数
收稿时间:2013-09-21
修稿时间:2013-12-23

A New Segment Prediction Model for Radio Propagation over Lunar Surface
Zhu Qiuming,Huang Pan,Chen Xueqiang,Wang Chenghu,Wang Fengyu and Zhou Shengkui. A New Segment Prediction Model for Radio Propagation over Lunar Surface[J]. Journal of Sichuan University (Engineering Science Edition), 2014, 46(2): 116-120
Authors:Zhu Qiuming  Huang Pan  Chen Xueqiang  Wang Chenghu  Wang Fengyu  Zhou Shengkui
Affiliation:College of Electronic Info. Eng.,NUAA;China Airborne Missile Academy;College of Electronic Info. Eng.,NUAA;College of Electronic Info. Eng.,NUAA;College of Electronic Info. Eng.,NUAA;Beijing Inst. of Spacecraft System Eng.;College of Electronic Info. Eng.,NUAA
Abstract:Most of the traditional radio models are invalid due to the special propagation environment on lunar. A novel path loss prediction method for lunar surface is proposed. Firstly a theoretical segment model according to communication distance was established and three propagation scenarios were analyzed. Then the multiple isolated obstacles on propagating path were considered, which will not only lead to an additional transmission loss but also affect the segment parameters. Lastly our method was applied on a real lunar surface scenario provided by National Aeronautics and Space Administration (NASA). The simulation results showed that the prediction results were very close to measured data by Apollo project. This Segment Prodiction Modle can be very useful on system parameters design and performance analysis of lunar communication system.
Keywords:Propagation loss   Prediction model   Lunar surface   Bremmer series
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