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首页> 外文期刊>IEEE Communications Magazine >Digital predistortion for mitigating spurious emissions in spectrally agile radios
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Digital predistortion for mitigating spurious emissions in spectrally agile radios

机译:数字预失真可减轻频谱捷变无线电中的杂散发射

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摘要

Spectrally non-contiguous transmissions pose serious transceiver design challenges due to the nonlinear PA. When two or more non-contiguous carriers with close proximity are amplified by the same PA, spurious emissions inside or in the vicinity of the transmitter RF band are created. These spurious emissions may violate emission limits or otherwise compromise network coverage and reliability. Lowering the transmit power is a straightforward remedy, but it will reduce throughput, coverage, and power efficiency of the device. To improve linearity without sacrificing performance, several DPD techniques have recently been proposed to target the spurious emissions explicitly. These techniques are designed to minimize the computational and hardware complexity of DPD, thus making them better suited for mobile terminals and other lowcost devices. In this article, these recent advances in DPD for non-contiguous transmission scenarios are discussed, with a focus on mitigating the spurious emissions in the concrete example case of non-contiguous dual-carrier transmission. The techniques are compared to more traditional DPD approaches in terms of their computational and hardware complexities, as well as linearization performance.
机译:由于非线性功率放大器,频谱非连续传输给收发器设计提出了严峻的挑战。当同一PA放大两个或更多个非常接近的非连续载波时,会在发射机RF频带内或附近产生杂散发射。这些杂散发射可能会违反发射限制或以其他方式损害网络覆盖范围和可靠性。降低发射功率是一种直接的补救方法,但是它将降低设备的吞吐量,覆盖范围和功率效率。为了在不牺牲性能的情况下提高线性度,最近提出了几种DPD技术来明确针对杂散发射。这些技术旨在最小化DPD的计算和硬件复杂性,从而使其更适合于移动终端和其他低成本设备。本文讨论了非连续传输场景中DPD的这些最新进展,重点是在非连续双载波传输的具体示例情况下减轻杂散发射。在计算和硬件复杂性以及线性化性能方面,将这些技术与更传统的DPD方法进行了比较。

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