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Adaptive asymmetric linearization of radio over fiber links for wireless access

机译:用于无线访问的光纤链路上的无线电自适应非对称线性化

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摘要

The biggest concern in the use of radio-over-fiber (ROF) links in wireless access is their limited dynamic range due to nonlinear distortion (NLD). In this paper, a higher order adaptive filter based nonlinearity compensation scheme is proposed. Pre-compensation is done for the downlink while post-compensation is done for the uplink to result in asymmetry with respect to complexity. This centralized signal processing is attractive in that it keeps the remote unit simple. Accurate measurements of ROF link parameters are not required with this approach because the filters are adapted from the distortion of the input/output base band signal. This technique also facilitates fast tracking of modifications and drifts in the link characteristics. Measurements and simulation results show that gradually saturating amplitude nonlinearity can be adequately linearized with some backoff from the clipping limit. A 42% backoff is required for pre-compensation to protect the laser while only a 16.7% backoff is required for post-compensation. Phase pre-compensation is accomplished with a higher accuracy than phase post-compensation.
机译:在无线访问中使用光纤无线(ROF)链路时,最大的担忧是由于非线性失真(NLD)而导致的动态范围有限。本文提出了一种基于高阶自适应滤波器的非线性补偿方案。对下行链路进行预补偿,而对上行链路进行后补偿,从而导致复杂性方面的不对称。这种集中的信号处理之所以吸引人,是因为它使远程单元保持简单。这种方法不需要精确测量ROF链路参数,因为滤波器是根据输入/输出基带信号的失真进行调整的。该技术还有助于快速跟踪链路特性中的修改和漂移。测量和仿真结果表明,逐渐饱和的幅度非线性可以通过削波极限的适当补偿而充分线性化。预补偿需要42%的补偿以保护激光器,而后补偿仅需要16.7%的补偿。相位预补偿比相位后补偿具有更高的精度。

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