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Capacity of root-mean-square bandlimited Gaussian multiuser channels

机译:均方根带限高斯多用户信道的容量

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摘要

Continuous-time additive white Gaussian noise channels with strictly time-limited and root-mean-square (RMS)-bandlimited inputs are studied. The capacity of the single-user and two-user RMS-bandlimited channels are found in easy-to-compute parametric forms and are compared to the classical formulas for the capacity of strictly bandlimited channels. In addition, channels are considered where the inputs are further constrained to be pulse-amplitude-modulated waveforms. The capacity of the single-user RMS-bandlimited PAM channel is shown to coincide with Shannon's capacity formula for the strictly bandlimited channel. This shows that the laxer bandwidth constraints precisely offsets the PAM structural constraint and illustrates a tradeoff between the time-domain and frequency-domain constraints. In the synchronous two-user channel, the pair of pulses that achieves the boundary of the capacity region is derived, and it is shown that the shapes of the optimal pulses depend not only on the bandwidth but also on the respective signal-to-noise ratios.
机译:研究了具有严格时间限制和均方根(RMS)带宽限制输入的连续时间加性高斯白噪声通道。单用户和两用户RMS带宽限制信道的容量以易于计算的参数形式找到,并且与严格限制带宽的信道的经典公式进行比较。另外,考虑将输入进一步限制为脉冲幅度调制波形的通道。单用户RMS带宽限制的PAM信道的容量显示出与Shannon严格带宽限制的信道的容量公式一致。这表明较大的带宽约束恰好抵消了PAM结构约束,并说明了时域约束和频域约束之间的权衡。在同步两用户信道中,导出了达到容量区域边界的一对脉冲,并且表明,最佳脉冲的形状不仅取决于带宽,而且取决于各个信噪比。比率。

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