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首页> 外文期刊>IEE Proceedings. Part I, Solid-State and Electron Devices >Carrier-phase synchronisation in the demodulation of UQPSK signals
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Carrier-phase synchronisation in the demodulation of UQPSK signals

机译:UQPSK信号解调中的载波相位同步

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The paper describes a novel carrier-phase synchronisation process that has been developed for use in a digital communication system operating over a satellite link and employing unbalanced quaternary phase shift keyed (UQPSK) signals. The satellite is not geostationary and may travel close to the surface of the earth over at least a part of its orbit. Correct carrier phase synchronisation needs to be achieved here as soon as the satellite rises above the horizon, during the time it is transmitting data signals, and therefore without the use of a known training signal. Under these conditions the digital signal is received at a low signal to noise ratio and in the presence of a severe Doppler shift. Correct carrier phase synchronisation must then be maintained as the satellite passes overhead and until it approaches the horizon again. Thus the synchronisation circuits must tolerate also a high rate of change of Doppler shift, albeit at a higher signal to noise ratio. The synchronisation algorithm is in two separate parts that operate sequentially and are both non-data aided. The first part removes the Doppler shift from the received signal and the second part then achieves carrier phase synchronisation, which is maintained over the rest of the transmission. The paper describes the new algorithms and presents the results of a series of computer simulation tests to assess their performances.
机译:本文介绍了一种新颖的载波相位同步过程,该过程已开发用于在卫星链路上运行的数字通信系统中,并采用了不平衡的四相相移键控(UQPSK)信号。卫星不是对地静止的,可能会在其至少一部分轨道上靠近地球表面传播。一旦卫星在其发射数据信号的时间内上升到地平线以上,就需要在此处实现正确的载波相位同步,因此,不使用已知的训练信号。在这些条件下,数字信号以低信噪比和严重的多普勒频移接收。然后,当卫星从头顶经过时,必须保持正确的载波相位同步,直到再次到达地平线为止。因此,即使在较高的信噪比下,同步电路也必须容忍多普勒频移的高变化率。同步算法分为两个独立的部分,它们按顺序运行,并且都没有数据辅助。第一部分从接收到的信号中消除多普勒频移,第二部分则实现载波相位同步,并在传输的其余部分保持同步。本文介绍了新算法,并提出了一系列计算机仿真测试的结果以评估其性能。

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