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首页> 外文期刊>Instrumentation and Measurement, IEEE Transactions on >Low-Cost RFin–RFoutPredistorter Linearizer for High-Power Amplifiers and Ultra-Wideband Signals
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Low-Cost RFin–RFoutPredistorter Linearizer for High-Power Amplifiers and Ultra-Wideband Signals

机译:用于大功率放大器和超宽带信号的低成本RF in –RF out 预失真器线性化器

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The 5G and beyond systems require the highly efficient linear power amplifier (PA) at the base station to deliver promised data rate in a power efficient manner. To facilitate higher data rates in future 5G communication, the demands for the wideband signals are continuously increasing, which creates adversity in employing digital predistortion (DPD) for the linearization of RF PA in ultra-wideband systems. System bandwidth constraint of the conventional DPD does not provide sufficient linearization of wideband signals. In this paper, we present two types of predistorter, first is RFin-RFout analog predistorter, in which linearization is performed by RF components in the analog domain, and the second is hybrid RF predistorter which takes the advantage of advanced DSP platform for improving the performance of RFin-RFout analog predistorter. The proposed predistorters eliminate the constraint on the system bandwidth of the conventional DPD. The requirements of data converters and reconstruction filters are relaxed in the analog predistorter (APD) architecture, whereas hybrid digitally controlled (HDC) APD eliminates the need of analog components by compensating the delay digitally. In order to validate this concept, a ZX60V-63+ PA from minicircuits is tested with 160-MHz eight-component carrier-long term evolution signal. The proposed APD architecture is able to deliver an adjacent channel power ratio (ACPR) of -46.4 dBc with an ACPR improvement of 13.4 dB at 1-dB back-off. Furthermore, with digital intervention, modified model, HDC-APD further provides a significant improvement in the linearization performance and delivers an ACPR of -53.5 dBc with an ACPR improvement of 20.5 dB.
机译:5G及更高版本的系统需要基站处的高效线性功率放大器(PA),以节能的方式交付承诺的数据速率。为了在未来的5G通信中促进更高的数据速率,对宽带信号的需求不断增加,这在采用数字预失真(DPD)来实现超宽带系统中RF PA线性化时遇到了麻烦。常规DPD的系统带宽限制不能提供宽带信号的足够线性化。在本文中,我们介绍了两种类型的预失真器,一种是RFin-RFout模拟预失真器,其中线性化是由模拟域中的RF组件执行的,另一种是混合RF预失真器,它利用先进的DSP平台来改善RFin-RFout模拟预失真器的性能。提出的预失真器消除了对传统DPD系统带宽的限制。数据转换器和重建滤波器的要求在模拟预失真器(APD)架构中得到了放松,而混合数字控制(HDC)APD通过数字补偿延迟消除了对模拟组件的需求。为了验证该概念,对微型电路的ZX60V-63 + PA进行了160MHz八分量载波长期演进信号的测试。所提出的APD架构能够提供-46.4 dBc的相邻信道功率比(ACPR),并且在1-dB后退时的ACPR改善了13.4 dB。此外,借助数字干预,改进的模型,HDC-APD进一步提高了线性化性能,并提供了-53.5 dBc的ACPR和20.5 dB的ACPR改善。

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