Experimental Investigation of Decoupling Effect on the Nonlinearity of Power Amplifiers in Transmitter Array

Fangyun Peng, Fei Yang, Bo Liu, Xiaoming Chen
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Abstract

In a practical compact massive multiple-input multiple-output (MIMO) transmitter array, each antenna or subarray is connected to an independent power amplifier (PA) with a modest power capacity in order to avoid the challenging demand of high-power capacity of a single PA for the whole array and to facilitate the power dissipation of the transmitter array. In this case, there is simply not enough space for an isolator between the antenna and the PA. As a result, the array mutual coupling changes the load impedances of the PAs and thus further increases the MIMO transmitter’s nonlinearity. In this work, the decoupling effect on the transmitter array’s linearity is investigated experimentally by using an array prototype with PAs. The mutual coupling of the array can be effectively suppressed using a hybrid decoupling structure. Two continuous-wave (CW) signals at different frequencies are injected into the PAs, and the output signal of each PA is measured via a coupler. The measured results show that with effective mutual coupling reduction, the PA interference is greatly suppressed by up to 16 db and the amplitude of the desired signal is enhanced by up to 10 db.
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发射阵列中功率放大器非线性解耦效应的实验研究
在实际的紧凑型大规模多输入多输出(MIMO)发射阵列中,每个天线或子阵列都连接一个独立的功率放大器(PA),其功率容量适中,以避免整个阵列对单个PA的高功率容量的挑战,并促进发射阵列的功耗。在这种情况下,在天线和扩音器之间没有足够的空间放置隔离器。因此,阵列相互耦合改变了放大器的负载阻抗,从而进一步增加了MIMO发射机的非线性。本文利用带PAs的阵列样机,实验研究了去耦效应对发射机阵列线性度的影响。采用混合去耦结构可以有效地抑制阵列间的相互耦合。将两个不同频率的连续波(CW)信号注入放大器,并通过耦合器测量每个放大器的输出信号。测量结果表明,通过有效的互耦抑制,扩音干扰被抑制了16 db,期望信号的幅度提高了10 db。
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