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Cooperative primary-secondary transmission using superposition coding and successive interference cancellation

机译:使用叠加编码和连续干扰消除的协作式主次传输

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In a collaborative primary-secondary transmission system, a secondary transmitter (ST) working as a relay is allowed to transmit its own signal superimposed on the primary signal only if it does not intervene the primary transmission. The spectrum room for the secondary usage is thanks to the link gain achieved by the relaying. At the secondary receiver (SR), it also receives the primary signal first, removes it contained in the superposed signals and gets its own signal. In this case, how near the SR to the primary transmitter is important and hence the location of SR is somewhat restrictive. In this paper, we show successive interference cancellation (SIC) only with the superposed signal does not degrade the performance of the collaboration and moreover enlarges the area in which the spectrum sharing is successful. We provide two protocols: SIC-OT and SIC-ET. SIC-OT optimally allocates time slots as well as the transmit power but SIC-ET allocates only the power. Numerical examples are used to verify that the proposed protocols provide better performance than the previous collaboration schemes.
机译:在协作式初级-次级传输系统中,仅当中继器不介入初级传输时,才允许其充当中继器的次级发射机(ST)传输叠加在初级信号上的自身信号。二次使用的频谱空间归功于中继实现的链路增益。在次要接收器(SR),它也首先接收主要信号,将其包含在叠加信号中,然后去除它自己的信号。在这种情况下,SR与主发送器的接近程度非常重要,因此SR的位置在一定程度上受到限制。在本文中,我们展示了仅使用叠加信号进行的连续干扰消除(SIC)不会降低协作性能,而且扩大了频谱共享成功的领域。我们提供两种协议:SIC-OT和SIC-ET。 SIC-OT最佳地分配了时隙以及发射功率,但SIC-ET仅分配了功率。数值示例用于验证所提出的协议提供了比以前的协作方案更好的性能。

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