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Subcarrier-Index Modulation for Reed Solomon Encoded OFDM-Based Visible Light Communication

机译:里德所罗门编码的基于OFDM的可见光通信的子载波索引调制

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In this paper, we propose the subcarrier-index modulation with Reed Solomon encoded Optical Orthogonal Frequency Division Multiplexing with index modulation (IM-RS-OFDM) scheme for visible light communication (VLC). In this technique, the data is encoded using an RS codeword and then part of the redundancy introduced by the frame which exceeds the clipping range are punctured and their corresponding subcarriers are set as inactive, where the indices of these inactive subcarriers are used to transmit extra information bits. The puncturing of the redundancy aids in mitigating clipping noise generated due to the dynamic range constraints of the optical transmitter by shortening the number of active subcarriers, while the locations of the punctured subcarriers are exploited to convey more bits in order to compensate for the reduction in spectral efficiency caused by coding redundancy. In the proposed scheme, the bipolar transmitting signal is clipped and biased according to DC bias optical OFDM (DCO-OFDM) system, and a Log-Likelihood ratio (LLR) calculation based detector is used to find the indices of punctured symbols in the codeword. Our simulation results show that the new scheme offers a better bit error rate performance compared to the conventional coded OFDM-based visible light communication.
机译:在本文中,我们为可见光通信(VLC)提出了采用Reed Solomon编码的带索引调制的光正交频分复用(IM-RS-OFDM)方案的子载波索引调制。在此技术中,使用RS码字对数据进行编码,然后对超出裁剪范围的帧引入的部分冗余进行打孔,并将其对应的子载波设置为非活动状态,其中这些非活动状态子载波的索引用于传输额外的信息位。冗余的打孔可通过缩短活动子载波的数量来减轻由于光发射器的动态范围限制而产生的削波噪声,而被打孔的子载波的位置可用于传输更多的比特,以补偿带宽的减少。编码冗余引起的频谱效率。在提出的方案中,双极性发射信号根据直流偏置光学OFDM(DCO-OFDM)系统进行削波和偏置,并使用基于对数似然比(LLR)计算的检测器来查找码字中被打孔符号的索引。我们的仿真结果表明,与传统的基于OFDM编码的可见光通信相比,该新方案提供了更好的误码率性能。

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