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Optimization and Performance Limits of a 64-QAM Wireless Communication Link at 220-260 GHz in a SiGe HBT Technology

机译:SiGe HBT技术中220-260 GHz的64-QAM无线通信链路的优化和性能限制

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We present a 1-meter wireless link based on Tx and Rx RF front-end modules working at a tunable LO frequency of 220-260 GHz with a channel BW of 13.5 GHz. The modules were manufactured in a SiGe HBT technology with fT/fmax=350/550 GHz. The modulation scheme used was 64-QAM. This high spectral-efficiency modulation requires a higher degree of system purity than QPSK or BPSK. Therefore, an accurate correction of all error sources in the RF front-end, such as IQ imbalance, LO spectral purity, and linearity and intermodulation products, has been performed. After this, and together with a decision-directed feed-forward equalizer of 41 taps, a 81 Gbps 64-QAM with an EVM of 8.7% was achieved at 235 GHz. using a BW of 11.5 GHz. The full available channel BW could not be exploited at 1-meter distance because of AWGN SNR and phase noise constrains which scale linearly with the modulation BW.
机译:我们提出了一种基于Tx和Rx RF前端模块的1米无线链路,该前端模块在220-260 GHz可调LO频率下工作,信道带宽为13.5 GHz。这些模块采用SiGe HBT技术制造,具有 T /F max = 350/550 GHz。使用的调制方案是64-QAM。与QPSK或BPSK相比,这种高频谱效率调制需要更高的系统纯度。因此,已经对RF前端中的所有误差源(例如IQ不平衡,LO频谱纯度以及线性度和互调产物)进行了准确的校正。此后,再加上41个抽头的决策导向前馈均衡器,在235 GHz频率下实现了EVM为8.7%的81 Gbps 64-QAM。使用11.5 GHz的带宽。由于AWGN SNR和相位噪声约束与调制BW成线性比例关系,因此无法在1米的距离处利用全部可用信道BW。

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