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Adaptive onboard compensation of non-linear HPAs and imperfect butler matrices in multiport amplifiers for high throughput satellites

机译:高吞吐量卫星的多端口放大器中非线性HPA的自适应板载补偿和多种放大器

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Multiport amplifier (MPA) is a key technology for future high throughput satellites (HTS) which aim at delivering extremely high data rates with flexible payloads. MPAs offer more flexible and efficient use of power onboard the satellite. This paper outlines two major issues which degrade the optimal MPA performance, i.e. the non-linear effects of high power amplifiers (HPAs) and the hardware imperfections in implementing input/output-hybrid Butler matrices (INET/ONET). Furthermore, a novel two-step technique to improve MPA performance is presented. The proposed technique compensates the imperfect INET/ONET in the first step and predistorts the non-linear amplifiers in the second step. Simulation results presented indicate that by implementing the proposed adaptive solution, we gain in the bit error ratio (BER) performance and the system robustness to hardware imperfections.
机译:多端子放大器(MPA)是未来高吞吐量卫星(HTS)的关键技术,旨在通过灵活的有效载荷提供极高的数据速率。 MPAS提供更灵活,更有效地使用卫星电源。本文概述了两个重大问题,这会降低最佳的MPa性能,即高功率放大器(HPA)的非线性效果和实现输入/输出 - 混合管道矩阵(INET / ONET)中的硬件缺陷。此外,提出了一种提高MPa性能的新型两步技术。所提出的技术在第一步中补偿了第一步中的不完美的INET / oneT,并在第二步中预测非线性放大器。显示的仿真结果表明,通过实现所提出的自适应解决方案,我们利用误码比率(BER)性能以及对硬件缺陷的鲁棒性。

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