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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >A Linear High-Efficiency Millimeter-Wave CMOS Doherty Radiator Leveraging Multi-Feed On-Antenna Active Load Modulation
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A Linear High-Efficiency Millimeter-Wave CMOS Doherty Radiator Leveraging Multi-Feed On-Antenna Active Load Modulation

机译:利用多馈天线有源负载调制的线性高效毫米波CMOS Doherty散热器

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摘要

This paper presents a Doherty radiator architecture that explores multi-feed antennas to achieve an on-antenna Doherty load modulation network and demonstrates high-speed high-efficiency transmission of wideband modulated signals. On the passive circuits, we exploit the multi-feed antenna concept to realize compact and high-efficiency on-antenna active load modulation for close-to-ideal Doherty operation, on-antenna power combining, and millimeter-wave (mm-Wave) signal radiation. Moreover, we analyze the far-field transmission of the proposed Doherty radiator and demonstrate its wide field of view (FoV). On the active circuits, we employ a gigahertz-bandwidth adaptive biasing at the Doherty auxiliary power amplifier (PA) path to enhance the main/auxiliary Doherty cooperation and appropriate turning-on/-off of the auxiliary path. A proof-of-concept Doherty radiator implemented in a 45-nm CMOS silicon on insulator (SOI) process over 62–68 GHz exhibits a consistent 1.45$imes $–1.53$imes $PAE enhancement at 6-dB power backoff (PBO) over an idealistic class-B PA with the same PAE at$P_{mathrm {1,dB}}$. The measured continuous-wave performance at 65 GHz demonstrates 19.4/19.2-dBm$P_{mathrm {SAT}}/P_{mathrm {1,dB}}$and achieves 27.5%/20.1% PAE at peak/6-dB PBO, respectively. For single-carrier 1 Gsym/s 64- quadratic-amplitude modulation (QAM), the Doherty radiator shows average output power of 14.2 dBm with an average 20.2% PAE and −26.7-dB error vector magnitude (EVM) without digital pre-distortion. Consistent EVMs are observed over the entire antenna FoV, demonstrating spatially undistorted transmission and constant Doherty PBO efficiency enhancement.
机译:本文提出了一种Doherty辐射器架构,该架构探索了多馈天线以实现天线上Doherty负载调制网络,并演示了宽带调制信号的高速高效传输。在无源电路上,我们利用多馈天线概念来实现紧凑,高效的天线有源负载调制,以实现接近理想的Doherty操作,天线上的功率合并和毫米波(mm-Wave)信号辐射。此外,我们分析了拟议中的Doherty辐射器的远场传输,并展示了其宽视场(FoV)。在有源电路上,我们在Doherty辅助功率放大器(PA)路径上采用了千兆赫兹带宽的自适应偏置,以增强主/辅助Doherty协作以及适当地开启/关闭辅助路径。在62-68 GHz的45nm CMOS绝缘体上硅(SOI)工艺中实现的概念验证Doherty辐射器呈现出一致的1.45 n $ times $ < /tex-math>–1.53 $ times $ nPAE增强为6 n $ P _ { mathrm {1 ,dB}} $ n。在65 GHz处测得的连续波性能表明19.4 / 19.2-dBm n <在线公式xmlns:mml = “ http://www.w3.org/1998/Math/MathML ” xmlns:xlink = “ http://www.w3.org/1999/xlink"> $ P _ { mathrm {SAT}} / P _ { mathrm {1 ,dB }} $ n并在峰值/ 6 dB PBO处分别达到27.5 %/ 20.1 %PAE。对于单载波1 Gsym / s 64二次振幅调制(QAM),Doherty辐射器的平均输出功率为14.2 dBm,平均PAE为20.2%,而没有数字前置的EVM为-26.7dB -失真。在整个天线FoV上观察到一致的EVM,证明了空间无失真的传输和恒定的Doherty PBO效率增强。

著录项

  • 来源
    《Solid-State Circuits, IEEE Journal of》 |2018年第12期|3587-3598|共12页
  • 作者单位

    School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA;

    School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA;

    School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA;

    School of Electrical and Computer Engineering, Georgia Institute of Technology, Atlanta, GA, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Modulation; Impedance; System-on-chip; Loaded antennas; Silicon; Silicon-on-insulator;

    机译:调制;阻抗;片上系统;负载天线;硅;绝缘体上硅;

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