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Digitally Assisted Load Modulated Balanced Amplifier for 200W Cellular Infrastructure Applications

机译:用于200W蜂窝基础设施应用的数字辅助负载调制平衡放大器

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The paper demonstrates, for the first time, a high power (200W) load modulated balanced amplifier (LMBA) targeting 5G cellular infrastructure applications. Both amplitude and phase of the injected signal applied to the control power amplifier (CPA) are configured using a dynamic phase shaping function along with a pre-distortion digital front-end. Digital baseband processing provides flexibility in varying both amplitude and phase of the injected signal to the CPA which improves efficiency and overall linearizability of the LMBA. Under real-time modulated signal excitation, excellent linearization is achieved using a segmented digital predistortion (DPD) approach applied to the balanced power amplifier (BPA) branch and a power-dependent phasing function applied to the CPA branch. The LMBA prototype implementation is carried out using NXP's 100 W gallium nitride (GaN) on silicon carbide (SiC) pre-match device in the balanced branch. Measured results achieve peak output power of 53 dBm (200 W) with 44% linearized efficiency at 8 dB back-off and corrected ACPR of -52 dBc across LTE Band-41 (~2.6 GHz).
机译:该论文首次展示了针对5G蜂窝基础设施应用的高功率(200W)负载调制平衡放大器(LMBA)。使用动态相位整形功能以及预失真数字前端,可以配置施加到控制功率放大器(CPA)的注入信号的幅度和相位。数字基带处理在改变注入到CPA的信号的幅度和相位方面都提供了灵活性,从而提高了LMBA的效率和整体线性度。在实时调制信号激励下,使用应用于平衡功率放大器(BPA)分支的分段数字预失真(DPD)方法和应用于CPA分支的功率相关相位功能,可实现出色的线性度。 LMBA原型的实现是在平衡支路中使用NXP的碳化硅(SiC)预匹配器件上的100 W氮化镓(GaN)进行的。测量结果在LTE Band-41(〜2.6 GHz)范围内达到了53 dBm(200 W)的峰值输出功率,在8 dB补偿时具有44%的线性化效率,校正后的ACPR为-52 dBc。

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