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首页> 外文期刊>EURASIP journal on advances in signal processing >Low complexity predistortion and equalization in nonlinear multicarrier satellite communications
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Low complexity predistortion and equalization in nonlinear multicarrier satellite communications

机译:非线性多载波卫星通信中的低复杂度预失真和均衡

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Aiming to reduce the power/mass requirements in satellite transponders and to reduce mission costs, joint amplification of multiple carriers using a single high-power amplifier (HPA) is being considered. In this scenario, a careful investigation of the resulting power efficiency is essential as amplification is nonlinear, and multicarrier signals exhibit enlarged peak-to-average power ratio. Thus, operating the amplifier close to saturation vastly increases signal distortion resulting in a severe degradation of performance, especially for higher order modulations. This paper proposes a reduced-complexity digital predistortion (DPD) scheme at the transmitter and a corresponding equalizer (EQ) at the receiver to mitigate these nonlinear effects. Scenarios include both the forward as well as the return links. In particular, the paper exploits the MIMO Volterra representation and builds on a basis pursuit approach using a LASSO (least absolute shrinkage and selection operator) algorithm to achieve an efficient basis representation, avoiding large computational complexity, to describe the selection of predistorter/equalizer model. The work further compares and contrasts the two mitigation techniques taking various system aspects into consideration. The gains in performance and amplification efficiency demonstrated by the use of DPD/ EQ motivate their inclusion in next-generation satellite systems.
机译:为了减少卫星转发器中的功率/质量要求并降低任务成本,正在考虑使用单个高功率放大器(HPA)对多个载波进行联合放大。在这种情况下,由于放大率是非线性的,因此多路信号表现出更大的峰均功率比,因此仔细研究最终的功率效率至关重要。因此,在接近饱和的状态下操作放大器会大大增加信号失真,从而导致性能严重下降,尤其是对于高阶调制而言。本文提出了一种在发射机处降低复杂度的数字预失真(DPD)方案,并在接收机处提出了一种相应的均衡器(EQ),以减轻这些非线性影响。方案包括前向链接和返回链接。特别是,本文利用MIMO Volterra表示法,并基于基本追踪方法(使用LASSO(最小绝对收缩和选择算子)算法)来实现有效的基本表示,避免了大的计算复杂性,以描述预失真器/均衡器模型的选择。 。这项工作进一步考虑了各种系统方面,比较了两种缓解技术。通过使用DPD / EQ所展示的性能和放大效率的提高,促使它们被纳入下一代卫星系统。

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