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5G Millimeter Wave Active Phased-Array Antenna Active Load Pulling Evaluation on Power Amplifiers

机译:5G毫米波有源相控阵天线电力放大器上的主动负载拉动评估

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Phased-array antennas, such as the ones presently developed for 5G millimeter wave (mmW) applications, are concentrating a high density of radiating elements to provide high gain, high directivity, and beam forming capabilities to efficiently address the user equipments (UE). The proximity of a large number of radiating elements creates mutual couplings (MC) responsible for undesirable active load pulling (ALP) that affects the single element power amplifiers (PA) performances. This paper proposes an analysis of the mutual coupling effects that occurs in the context of 5G mmW base station phased array antennas. Active load-pulling and its variation versus the beam steering angle are evaluated. The introduced methodology can be used to determine the exact perturbation the PAs will experience to yield to a phased array antenna / PA co-design.
机译:相控阵天线,例如目前为5G毫米波(MMW)应用开发的阵列天线,用于集中高密度的辐射元件,以提供高增益,高方向性和光束形成能力,以有效地解决用户设备(UE)。 大量辐射元件的接近度会产生负责的相互耦合(MC),其负责影响单个元件功率放大器(PA)性能的不期望的主动负载拉动(ALP)。 本文提出了在5G MMW基站相控阵天线的上下文中发生的相互耦合效果的分析。 评估主动负载拉伸及其变化与光束转向角。 介绍的方法可用于确定PAS将经验到逐相阵列天线/ PA共同设计的精确扰动。

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