采用单片机/波分复用技术的60ghz超宽带光纤无线通信系统

Xiaoan Huang, R. Kohno
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引用次数: 4

摘要

我们首先提出了一种采用子载波复用/密集波分复用(SCM/DWDM)的60 ghz超宽带(UWB)光纤无线电(ROF)系统,以扩大UWB通信系统的覆盖范围并提高信道效率。单片机/DWDM首先应用于UWB-ROF系统,由于DWDM具有更好的信道效率和更窄的信道间距以及简单单片机的独特通用性,实现了60 GHz的大比特率和高移动性要求。与30 GHz高RF的光双边带(DSB)调制相比,新型的15 GHz低RF的光倍频(OFM)调制(频率四倍器)具有更低的RF要求和更低的色散容忍,甚至在标准单模光纤(SMF)中高达50公里的光传输距离更具成本效益。此外,我们还研究了系统的新型穿刺卷积编码,表明吞吐量和误码率(BER)之间的权衡。与当前标准正交频分复用(OFDM)-UWB (WiMedia规范v1.2)的最大480 Mbits/s带宽相比,每个频段的最大吞吐量可以以6 dB / Eb/No代价实现。该研究为实际UWB-ROF系统的调制和编码设计提供了一种潜在的解决方案。
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60-GHz Ultra-WideBand Radio-Over-Fiber System employing SCM/WDM
We firstly propose a 60-GHz Ultra-WideBand (UWB) Radio-Over-Fiber (ROF) System employing Subcarrier Multiplexing/Dense Wavelength Division Multiplexing (SCM/DWDM) to extend the coverage and improve high channel efficiency for UWB communication systems. SCM/DWDM is first utilized to the UWB-ROF system, due to the better channel efficiency with narrower channel spacing of the DWDM and the unique commonality of the simple SCM, achieving the large bit rate and high-mobility requirements for the 60 GHz. The novel Optical Frequency Multiplication (OFM) Modulation (Frequency Quadrupler) of 15 GHz lower RF is more cost-effective with much lower RF requirement and dispersion-tolerant even up to a 50 km optical transmission distance in the standard SingleMode Fiber (SMF), compared with Optical Double-Sideband (DSB) Modulation of 30 GHz higher RF. Moreover, we also investigate the novel Punctured Convolutional coding for the system, indicating a trade-off between throughput and Bit Error Ratio (BER). The maximum 1120 Mbits/s throughput per band can be achieved at the expense of 6 dB Eb/No penalty, in contrast to the maximum 480 Mbits/s per band of the current standard Orthogonal-Frequency-Division Multiplexing (OFDM)-UWB (WiMedia specification v1.2). This study provides a potential solution for the modulation and coding designs of a practical UWB-ROF system.
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