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LED nonlinearity mitigation techniques in optical wireless OFDM communication systems

机译:光学无线OFDM通信系统中的LED非线性缓解技术

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Light emitting diode (LED) nonlinearities have a significant impact on the performance of optical wireless (OW) communication systems based on orthogonal frequency division multiplexing (OFDM) modulation. In this paper, different techniques to compensate for the induced nonlinearity distortions are presented and analyzed. First, single-carrier frequency division multiple access (SC-FDMA) is proposed instead of OFDM for OW systems. In SC-FDMA, some of the major OFDM problems such as high peak-to-average power ratio are inherently resolved. It is shown that the performance of OW OFDM systems and their counterpart SC-FDMA systems are traded off for certain input signal powers and modulation orders. Second, OW OFDM systems with hard, soft, and turbo channel coding techniques are considered. It is reported that significant performance gains can be achieved through channel coding. Finally, a novel method to reduce signal clipping distortion through the use of iterative signal clipping (ISC) and multiple transmit LEDs is proposed. The ISC technique is based on iterative clipping of the time domain OFDM signal and transmission from a multiple LED transmitter. Transmit LEDs are synchronized, located close to each other, and placed to emit light in the same direction. Hence, the channel path gains from each LED to the receiver photodiode are similar. The received signals from the different LEDs add coherently at the receiver. Reported results demonstrate that the effect of distortion is eliminated or significantly reduced based on the considered number of transmit LEDs.
机译:发光二极管(LED)的非线性对基于正交频分复用(OFDM)调制的光学无线(OW)通信系统的性能具有重大影响。在本文中,提出并分析了不同的技术来补偿所引起的非线性失真。首先,针对OW系统,提出了单载波频分多址(SC-FDMA)代替OFDM技术。在SC-FDMA中,一些主要的OFDM问题(例如高峰均功率比)已得到内在解决。结果表明,对于某些输入信号功率和调制阶数,必须权衡OW OFDM系统及其对应的SC-FDMA系统的性能。其次,考虑具有硬,软和turbo信道编码技术的OW OFDM系统。据报道,可以通过信道编码获得显着的性能增益。最后,提出了一种通过使用迭代信号削波(ISC)和多个发射LED来减少信号削波失真的新颖方法。 ISC技术基于时域OFDM信号的迭代限幅和来自多个LED发射器的发射。发射LED是同步的,彼此靠近,并且放置方向相同。因此,从每个LED到接收器光电二极管的通道路径增益相似。来自不同LED的接收信号在接收器处相干地相加。报告的结果表明,基于考虑的发射LED数量,可以消除或显着降低失真的影响。

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