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Cognitive Radio Transmissions Exploiting Multi-User Diversity under Channel and Sensing Uncertainty

机译:利用信道和感知不确定性开发多用户多样性的认知无线电传输

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In this paper, a cognitive multiple access channel (MAC) in which the secondary transmitters opportunistically communicate with a secondary receiver (i.e., a secondary base station) is considered. It is assumed that the base station first determines the channel availability through channel sensing and then broadcasts a pilot symbol with energy depending on the channel sensing decision in order to facilitate the linear minimum mean-square estimation (LMMSE) of the channel fading coefficient between itself and each secondary user. The user with the largest estimated channel gain is selected opportunistically for data transmission during each frame. In this setting, achievable rates and energy efficiency are studied by exploiting the multi-user diversity in the presence of channel sensing and channel estimation errors. The interactions between number of users, channel sensing parameters and performance (e.g., detection and false-alarm probabilities), achievable rates, and energy efficiency are analyzed. Performance gains due to collaborative sensing and multi-user diversity are investigated.
机译:在本文中,考虑了认知多路访问信道(MAC),其中辅助发送器与辅助接收器(即,辅助基站)进行机会通信。假定基站首先通过信道感测确定信道可用性,然后根据信道感测决策以能量广播导频符号,以便于其之间的信道衰落系数的线性最小均方估计(LMMSE)和每个辅助用户。机会地选择具有最大估计信道增益的用户以在每个帧期间进行数据传输。在这种情况下,在存在信道感知和信道估计误差的情况下,通过利用多用户分集来研究可实现的速率和能效。分析了用户数量,信道感测参数和性能(例如,检测和虚警概率),可达到的速率以及能效之间的相互作用。研究了协作感测和多用户多样性带来的性能提升。

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