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BER Performance of Stratified ACO-OFDM for Optical Wireless Communications over Multipath Channel

机译:多路径信道上的光无线通信的分层ACO-OFDM的BER性能

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In intensity modulation/direct detection- (IM/DD-) based optical OFDM systems, the requirement of the input signal to be real and positive unipolar imposes a reduction of system performances. Among previously proposed unipolar optical OFDM schemes for optical wireless communications (OWC), asymmetrically clipped optical OFDM (ACO-OFDM) and direct current biased optical OFDM (DCO-OFDM) are the most accepted ones. But those proposed schemes experience either spectral efficiency loss or energy efficiency loss which is a big challenge to realize high speed OWC. To improve the spectral and energy efficiencies, we previously proposed a multistratum-based stratified asymmetrically clipped optical OFDM (STACO-OFDM), and its performance was analyzed for AWGN channel. STACO-OFDM utilizes even subcarriers on the first stratum and odd subcarriers on the rest of strata to transmit multiple ACO-OFDM frames simultaneously. STACO-OFDM provides equal spectral efficiency as DCO-OFDM and better spectral efficiency compared to ACO-OFDM. In this paper, we analyze the BER performance of STACO-OFDM under the effect of multipath fading. The theoretical bit error rate (BER) bound is derived and compared with the simulation results, and good agreement is achieved. Moreover, STACO-OFDM shows better BER performance compared to ACO-OFDM and DCO-OFDM.
机译:在基于强度调制/直接检测(IM / DD-)的光学OFDM系统中,对输入信号必须是真实和正单极性的要求会降低系统性能。在先前提出的用于光无线通信(OWC)的单极光OFDM方案中,最受人们欢迎的是非对称限幅光OFDM(ACO-OFDM)和直流偏置光OFDM(DCO-OFDM)。但是那些提议的方案遇到频谱效率损失或能量效率损失,这对于实现高速OWC是很大的挑战。为了提高频谱效率和能量效率,我们先前提出了一种基于多层的分层非对称限幅光学OFDM(STACO-OFDM),并针对AWGN信道对其性能进行了分析。 STACO-OFDM利用第一层的偶数子载波和其余层的奇数子载波同时发送多个ACO-OFDM帧。 STACO-OFDM提供与DCO-OFDM相同的频谱效率,并且与ACO-OFDM相比具有更好的频谱效率。在本文中,我们分析了多径衰落效应下STACO-OFDM的BER性能。推导了理论误码率(BER)界限,并与仿真结果进行了比较,取得了较好的一致性。此外,与ACO-OFDM和DCO-OFDM相比,STACO-OFDM显示出更好的BER性能。

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