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Multi-Gigabit Real-Time Signal Processing for Future Converged Networks

机译:面向未来融合网络的千兆级实时信号处理

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The increasing demand for higher data rates in fixed and mobile networks requires the deployment of optical fibre, which is, however, not always possible. In order to bridge such missing links wirelessly, commercial radios support 1 Gbit/s. The main limitation towards higher data rates is the baseband signal processing speed, as the range above 1 Gbit/s is not yet covered by existing chipsets. In this paper, we present a further-developed bidirectional 5 Gbit/s mmwave link, where the previously presented link [1] has been extended so that the major impairment effects on the real radio link, namely the carrier frequency offset (CFO) and I/Q imbalance, are now compensated for. The enhanced system has shown a 5 Gbit/s transmission over a wireless link of approximately 1 m with an average error vector magnitude (EVM) of -16.9 dB. This allows for an error-free transmission using standard Forward Error Correction (FEC) methods.
机译:在固定和移动网络中对更高数据速率的不断增长的需求要求部署光纤,但这并非总是可能的。为了无线桥接这种丢失的链路,商用无线电支持1 Gbit / s。更高数据速率的主要限制是基带信号处理速度,因为现有芯片组尚未覆盖1 Gbit / s以上的范围。在本文中,我们提出了进一步发展的双向5 Gbit / s毫米波链路,其中先前提出的链路[1]已得到扩展,从而对实际无线电链路的主要损害影响是载波频率偏移(CFO)和I / Q不平衡,现已得到补偿。增强型系统显示了在大约1 m的无线链路上的5 Gbit / s传输,平均误差矢量幅度(EVM)为-16.9 dB。这允许使用标准前向纠错(FEC)方法进行无错误的传输。

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