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Multicarrier Successive Predistortion for Nonlinear Satellite Systems

机译:非线性卫星系统的多载波连续预失真

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摘要

To satisfy the aggressive demand for higher satellite throughput, industry trend is moving toward sharing the transponder amplifier by multiple carriers, each employing high-order modulations that are spectrally compact. This trend, in conjunction with the inherently nonlinear nature of the amplifier when driven efficiently closer to saturation, creates significant intermodulation distortion that needs to be appropriately compensated. This paper presents a powerful compensation technique that is capable of mitigating the nonlinear intermodulation distortion and is placed at the transmitter or gateway. It is a novel multicarrier data predistortion technique that successively modifies the transmitted symbols to drive multicarrier distortion vector toward zero. This distortion vector results from passing the transmitted symbols from the multiple carriers, intrinsically accessible at the gateway, through the nonlinear satellite channel model. The novel successive predistortion technique and methods of estimating the distortion are described in detail. It is demonstrated using extensive computer simulations that the proposed multicarrier predistortion technique is capable of achieving near-optimum performance, even when only a simple linear receiver is employed and no exchange of data is assumed between receivers.
机译:为了满足对更高卫星吞吐量的迫切需求,行业趋势正在朝着由多个载波共享转发器放大器的方向发展,每个载波都采用频谱紧凑的高阶调制。当驱动放大器更接近饱和时,这种趋势与放大器固有的非线性特性相结合,会产生明显的互调失真,需要适当地补偿。本文提出了一种强大的补偿技术,该技术能够缓解非线性互调失真,并被放置在发射机或网关处。它是一种新颖的多载波数据预失真技术,可连续修改发送的符号,以将多载波失真矢量驱动为零。这种失真矢量是由于从网关固有访问的多个载波的传输符号通过非线性卫星信道模型而产生的。详细描述了新颖的连续预失真技术和估计失真的方法。使用广泛的计算机仿真证明,即使仅采用简单的线性接收器,并且假定在接收器之间不进行数据交换,所提出的多载波预失真技术也能够实现接近最佳的性能。

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