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A Novel Superposed Frame Descriptor Structure for VCM LEO Satellite-Ground Communications

机译:用于VCM Leo卫星地面通信的新型叠加框架描述符结构

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With relative motion between LEO satellite and ground station, communication link budget varies in the data transmission window following orbital geometry change. To improve the efficiency of space-ground communication system, variable coding modulation scheme (VCM) has been proposed for LEO satellite-ground data transmission system to reduce the link resource waste. The modulation and coding set (MODCOD) information is transmitted in the physical layer frame descriptor (FD) based on VCM protocol. Therefore, the ground station receiver has to detect and decode the FD information for every frame, which seriously reduce the transmission efficiency and increase the receiver demodulation delay. Aiming to this issue, in this paper a novel superposed FD structure is proposed. Instead of placing the FD as part of physical layer header, the FD information is superposed on the previous frame data with superposition coding. Since FD is encoded with first order Reed-Muller code and repetition code over the frame period, it can be accurately recovered under very low signal-to-interference-plus-noise ratio (SINR). Therefore, it only needs to share a small proportion of power with the transmission data. Ground station is able to decode the data and the FD of the coming frame using successive interference cancellation (SIC). As to the low power of FD, its interference to data symbols is limited to an acceptable range. This proposed structure provides better support to parallel processing and helps achieving real-time MODCOD switch. With pre-acquired MODCOD information, ground station receiver is able to make the MODCOD transition smoother when a switch is required for the next frame and also avoiding unnecessary re-setting for the coming frames which keep the same MODCOD. This paper introduces the structure of superposed FD and its implementation. The analysis and system performance simulation results prove that with the proposed structure, the transit period for different MODCOD
机译:利用LEO卫星和地面站之间的相对运动,通信链路预算在轨道几何变化后的数据传输窗口中变化。为了提高空间地通信系统的效率,已经提出了可变编码调制方案(VCM)用于Leo卫星地面数据传输系统,以减少链路资源浪费。基于VCM协议,在物理层帧描述符(FD)中发送调制和编码集(MODCOD)信息。因此,地面站接收器必须为每个帧检测和解码FD信息,这严重降低了传输效率并增加接收器解调延迟。旨在解决这个问题,在本文中提出了一种新型的叠加FD结构。不是将FD作为物理层报头的一部分,而不是将FD信息叠置在具有叠加编码的先前帧数据上。由于FD以帧周期的第一阶REED-MULLER码和重复码编码,因此可以在非常低的信号到干扰 - 热噪声比(SINR)下精确地恢复。因此,它只需要利用传输数据共享小比例的功率。地面站能够使用连续的干扰取消(SIC)来解码即将到来的框架的数据和FD。对于FD的低功率,其对数据符号的干扰仅限于可接受的范围。这一提出的结构为并行处理提供了更好的支持,并有助于实现实时Modcod交换机。利用预先获得的Modcod信息,当下一帧需要开关时,接地站接收器能够使Modcod转换更加漂亮,并且还避免了保持相同Modcod的即将到来的帧的不必要的重新设置。本文介绍了叠加FD的结构及其实现。分析和系统性能仿真结果证明,通过所提出的结构,不同的Modcod的运输期

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