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Variable m-CAP for Bandlimited Visible Light Communications

机译:用于带状可见光通信的可变M-CAP

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The multi-band carrier-less amplitude and phase (m-CAP) modulation technique has been demonstrated as a significant candidate for use in visible light communication (VLC) systems, as spectral efficiency becomes ever more important. When employing m-CAP modulation, the signal bandwidth is typically split into m equally distributed subcarriers regardless of the -3 dB bandwidth. Thus, in this paper we investigate the impact of splitting the signal bandwidth into unequally spaced subcarriers on the m-CAP VLC system performance. We demonstrate that by allocating different bandwidths for individual subcarriers, we can achieve up to 36% improvement in data rate for 6-CAP (i.e. 6 subcarriers). We show that the higher the order of the variable m-CAP, the more significant improvement in data rate becomes even for a highly bandlimited VLC system when compared to the conventional m-CAP scheme.
机译:多频带载波的幅度和相位(M-CAP)调制技术已经证明作为可见光通信(VLC)系统中使用的重要候选,因为光谱效率变得更加重要。当采用M-CAP调制时,无论-3 dB带宽如何,信号带宽通常被分成M同等分布的子载波。因此,在本文中,我们研究了在M-CAP VLC系统性能上将信号带宽分成不平等间隔的子载波的影响。我们证明,通过为单个子载波分配不同的带宽,我们可以在6章(即6个子载波)的数据速率上提高高达36%。我们表明,与传统的M-CAP方案相比,变量M-CAP的顺序越高,即使对于高带限制的VLC系统,数据速率的更大提高也变得越大。

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