论文标题
基于混乱的多载波VLC调制器,具有LED非线性的补偿
Chaos-Based Multicarrier VLC Modulator With Compensation of LED Nonlinearity
论文作者
论文摘要
发光二极管(LED)闪电基础设施的大规模部署为可见光通信(VLC)重复使用,以利用室内场景中当前的RF光谱危机。 VLC中的主要问题之一是LED的动态范围有限及其非线性响应,这可能导致通信中的严重降解,更具体地说是位错误率(BER)。基于光学正交频施加多路复用(O-OFDM)的多载波多路复用的广泛使用而加剧了这一点,其特征在于高峰与平均功率比。在这里,我们提出了一个基于混乱的编码调制(CCM)设置,专门适用于LED非线性。它取代了通常的调制,同时保持多载波O-OFDM结构不变。首先,考虑到LED非线性响应,我们获得了对位误差概率的半分析结合。在信噪比的利益比率范围内,界限尤其紧密。然后,我们提出了一种基于优化技术设计调制器的方法。目标函数是半分析结合,优化应用于CCM共轭函数的参数化。这适当地塑造了混乱的波形,并导致在理想预性下的经典表现优于古典的改善。
The massive deployment of light-emitting diode (LED) lightning infrastructure has opened the opportunity to reuse it as visible light communication (VLC) to leverage the current RF spectrum crisis in indoor scenarios. One of the main problems in VLC is the limited dynamic range of LEDs and their nonlinear response, which may lead to a severe degradation in the communication, and more specifically in the bit error rate (BER). This is aggravated by the extensive usage of multicarrier multiplexing, based on optical orthogonal frequency division multiplexing (O-OFDM), characterized by a high peak-to-average power ratio. Here, we present a chaos-based coded modulation (CCM) setup specifically adapted to the LED nonlinearities. It replaces the usual modulation, while keeping the multicarrier O-OFDM structure unchanged. First, we obtain a semi-analytical bound for the bit error probability, taking into account the LED nonlinear response. The bound results particularly tight for the range of signal-to-noise ratio of interest. Then, we propose a method to design the modulator based on optimization techniques. The objective function is the semi-analytical bound, and the optimization is applied to a parameterization of the CCM conjugation function. This appropriately shapes the chaotic waveform and leads to BER improvements that outperform classical counterparts under ideal predistortion.