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Achievable information rates of PPM impulse radio for UWB channels and rake reception

机译:UWB信道和瑞克接收的PPM脉冲无线电可获得的信息速率

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摘要

The performance of impulse radio is investigated for ultra-wideband (UWB) channels and orthogonal M-ary pulse position modulation (PPM) in terms of the maximum achievable information rate, where the outputs of the M-ary correlation receiver implemented through the rake structure with conventional maximal ratio combining are subject to either soft or hard decisions. The major difference observed between the soft- and hard-output systems is that at low values of the mutual information the minimum information bit energy to noise ratio required for reliable communication increases with the constellation size for the hard-output systems. Furthermore, it is demonstrated that independent of the type of the output, achievable rates are considerably low at medium-to-large signalto- noise ratio (SNR) values in UWB channels compared to those in additive white Gaussian noise channels, as the frequencyselectivity of the UWB channel destroys the orthogonality of the transmitted PPM signals. Interference from other users and constellation size put additional constraints on the achievable rates at high SNR.
机译:根据最大可达到的信息速率,研究了超宽带(UWB)信道和正交M进制脉冲位置调制(PPM)脉冲无线电的性能,其中M进制相关接收机的输出是通过rake结构实现的常规最大比例组合的选择取决于软性决定或硬性决定。软输出和硬输出系统之间观察到的主要区别在于,在互信息量较低的情况下,可靠通信所需的最小信息比特能量与噪声之比随硬输出系统的星座图大小而增加。此外,已证明,与加性高斯白噪声信道相比,UWB信道中中等至较大的信噪比(SNR)值与输出的类型无关,可实现的速率非常低,因为UWB信道破坏了传输的PPM信号的正交性。来自其他用户的干扰和星座图大小对高SNR时可达到的速率施加了额外的限制。

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