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Quantitative analysis of the stacked autoencoder method in MIMO-ACO-OFDM VLC systems

机译:堆叠autoencoder的定量分析MIMO-ACO-OFDM VLC系统的方法

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In this paper, a stacked autoencoder network is utilised to realise the signal constellation and transceivers adapted to the dimmable indoor visible light communication system in order to acquire lower symbol error probability. Its decoder parts function as denoising and the equaliser for the proposed multiple-input multiple-output (MIMO) orthogonal frequency division multiplexing (OFDM) visible light communication system which can compensate the non-linear transfer function and the crosstalk between multiple LED data streams. The bit error rate performance as well as the influence of LED spatial intervals on root mean square delay spread, impulse response and bit rate have been analysed considering multipath reflections of the indoor MIMO-VLC system. The numerical results show that the a stacked autoencoder technique performs better in bit error rate reduction compared with state-of-art the zero forcing and minimum mean squared error algorithm. The experiment also shows, when the semi-angle at half power of LEDs and the field of view of Photodetectors become small, better performance can be achieved at the centre of the room, which can be explained by strong beam converge and the decreased multipath interference. Moreover, enlarging the separation between LEDs leads to improved bit error rate performance and reduced channel correlation of channel matrix, which need to be optimally chosen in practice.
机译:在这篇文章中,一个堆叠autoencoder网络利用实现信号星座收发器适应可控室内可见光通信系统为了获得更低的符号错误概率。去噪和解码器部分功能提出多输入多扳平比分输出(MIMO)正交频率分多路复用(OFDM)可见光通信系统可以补偿非线性传递函数和相声多个领导之间的数据流。率的性能以及领导的影响空间间隔对均方根延迟传播、脉冲响应和比特率分析了考虑多路径的反射室内MIMO-VLC系统。显示一个堆叠autoencoder技术减少在比特误码率性能更好与技术发展水平相比零迫使和最小均方误差算法。实验还显示,当semi-angle一半的力量led的视野光电探测器成为小,更好的性能可以在房间的中心,实现哪个可以解释为强光束收敛和降低多路径干扰。扩大led导致之间的分离改进的比特误码率性能和降低通道信道矩阵的相关性,它所需要的在实践中是最佳选择。

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