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Experimental Demonstration of Special-Shaped 32-Quadrature Amplitude Modulation Constellations for Visible Light Communications

机译:用于可见光通信的特殊形状的32正交幅度调制星座的实验演示

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With the rapid development of light-emitting diode, visible light communication (VLC) has become a candidate technology for the next generation of high-speed indoor wireless communication. In this paper, we investigate the performance of the 32-quadrature amplitude modulation (32-QAM) constellation shaping schemes for the first time, where two special circular constellations, named Circular (4, 11, 17) and Circular (1, 5, 11, 15), and a triangular constellation are proposed based on the Shannon’s criterion. Theoretical analysis indicates that the triangular constellation scheme has the largest minimum Euclidian distance while the Circular (4, 11, 17) scheme achieves the lowest peak-to-average power ratio (PAPR). Experimental results show that the bit error rate performance is finally decided by the value of PAPR in the VLC system due to the serious nonlinearity of the LED, where the Circular (4, 11, 17) scheme always performs best under the 7% preforward error correction threshold of 3.8 × 10−3 with 62.5Mb/s transmission data rate and 1-meter transmission distance.
机译:随着发光二极管的飞速发展,可见光通信(VLC)已成为下一代高速室内无线通信的候选技术。在本文中,我们首次研究了32正交幅度调制(32-QAM)星座整形方案的性能,其中有两个特殊的圆形星座,分别称为Circular(4,11,17)和Circular(1,5, 11、15),并根据香农准则提出了三角形星座。理论分析表明,三角形星座图方案具有最大的最小欧几里得距离,而圆形(4、11、17)方案实现了最低的峰均功率比(PAPR)。实验结果表明,由于LED的严重非线性,VLC系统中的误码率性能最终取决于PAPR的值,其中Circular(4,11,17)方案在7%前向误差下始终表现最佳校正阈值为3.8×10-3,传输数据速率为62.5Mb / s,传输距离为1米。

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