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Hybrid asymmetrically clipped OFDM-based IM/DD optical wireless system

机译:混合非对称限幅基于OFDM的IM / DD光无线系统

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摘要

In this paper, we present a hybrid asymmetrically clipped optical orthogonal frequency division multiplexing (OFDM) system. This system uses a combination of asymmetrically clipped optical OFDM (ACO-OFDM) and pulse amplitude modulated discrete multitone (PAM-DMT) techniques, which can be used in intensity modulated direct detection (IM/DD) optical wireless (OW) systems. In this hybrid scheme, ACO-OFDM and PAM-DMT signals are transmitted together. Clipping noise is estimated at the receiver and canceled to recover the PAM-DMT symbols. This scheme does not require any DC bias for transmission, which makes the transmitter less complex and very power efficient. With this system, we can increase the data rate of the ACO-OFDM system by almost twice. In addition, no bandwidth penalty is incurred. Extensive computer simulations show that the bit-error rate (BER) performance of ACO-OFDM in the additive white Gaussian noise environment is not affected by any kind of interference, but only due to half of the available transmit power, we see a 3 dB degradation. However, the BER performance of PAM-DMT shows some degradation at low signal-to-noise ratio (SNR) but is identical to the conventional scheme at higher SNR. We also see a slight improvement in peak-to-average power ratio (PAPR) of the output combined signal. Therefore, advantages such as increased data rate, DC-bias elimination, no bandwidth, and PAPR penalty make this scheme very attractive for OW systems using IM/DD.
机译:在本文中,我们提出了一种混合非对称限幅光学正交频分复用(OFDM)系统。该系统结合了非对称限幅光学OFDM(ACO-OFDM)和脉冲幅度调制离散多音(PAM-DMT)技术的组合,可用于强度调制直接检测(IM / DD)光学无线(OW)系统。在这种混合方案中,ACO-OFDM和PAM-DMT信号一起发送。在接收器处估计削波噪声,并消除削波噪声以恢复PAM-DMT符号。该方案不需要任何直流偏置来进行传输,这使发射机的复杂度降低了,并且功率效率很高。使用该系统,我们可以将ACO-OFDM系统的数据速率提高几乎两倍。另外,不会引起带宽损失。大量的计算机模拟表明,在加性高斯白噪声环境中,ACO-OFDM的误码率性能不受任何干扰的影响,而仅由于可用发射功率的一半,我们看到了3 dB降解。但是,PAM-DMT的BER性能在低信噪比(SNR)下显示出一定程度的下降,但与在较高SNR下的常规方案相同。我们还看到输出组合信号的峰均功率比(PAPR)略有改善。因此,诸如提高数据速率,消除DC偏置,无带宽和PAPR损失等优点使该方案对于使用IM / DD的OW系统非常有吸引力。

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