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Detection of the presence of a narrowband communication signal in a fast fading Ricean channel

机译:在快速衰落的Ricean通道中检测窄带通信信号的存在

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Detection of the presence of a narrow band, known communication signal of unknown amplitude, phase and Doppler shift in noise is usually based on matched filtering. If, however, the signal propagates through a multipath channel, causing a model miss match, such a procedure exhibit significant performance degradation. In this paper, we study signal detection in a Ricean multipath channel. We first identify the conditions under which the conventional, quadrature matched filter detector exhibits significant performance degradation when used in a multipath environment. Then, we develop a generalized likelihood test (GLRT) detector for a narrow band constant modolus signal in a fast fading Ricean channel. We show that the resulting test statistic consists of an appropriate superposition of the quadrature matched filter output and the energy detector statistics. As such, the complexity of the new detector is about the same as the conventional one, while its performance in severe multipath conditions is much better.
机译:检测存在窄带的存在,未知幅度,相位和多普勒频率的已知通信信号通常基于匹配的滤波。但是,如果信号通过多径通道传播,导致模型错过匹配,这种程序表现出显着的性能下降。在本文中,我们研究了Ricean Multipath通道中的信号检测。我们首先识别在多径环境中使用时常规,正交匹配过滤器检测器具有显着性能下降的条件。然后,我们在快速衰落的Ricean通道中开发用于窄带常量模型信号的广义似然测试(GLRT)检测器。我们表明所产生的测试统计包括正交匹配过滤器输出和能量检测器统计的适当叠加。因此,新探测器的复杂性与传统的探测器大致相同,而其在严重的多径条件下的性能会更好。

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