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High-Resolution AoA Estimation for Hybrid Antenna Arrays

机译:混合天线阵列的高分辨率AoA估计

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Communication with unlicenced 60-GHz band is attractive for wireless networks since a free-of-charge bandwidth of 7 GHz is available. The antenna array, conducting transmitter/receiver beamforming, is often used to enhance the transmission range. However, to conduct beamforming, the transceivers have to know the angles of signal arrival. Many angle-of-arrival (AoA) estimation algorithms are well known. Unfortunately, most of them are developed for digital arrays, requiring an analog-to-digital-converter (ADC) and a digital-to-analog converter (DAC) for each antenna element. For an array with a large number of antennas, the implementation cost will be very high. Recently, hybrid antenna array, in which multiple antennas share an ADC/DAC, was proposed as a low-cost solution. However, the existing AoA estimation algorithms for hybrid arrays can only support one AoA; their applications are then limited in multipath indoor environments. In this paper, we propose new AoA estimation algorithms to solve the problem. Using an augmented beam-space approach, we extend the use of the well-known AoA estimation algorithms, MUSIC and ESPRIT developed for digital arrays, to the scenario of hybrid antenna arrays. Simulations show that the proposed algorithms, although developed for hybrid arrays, can have similar performance as MUSIC and ESPRIT in digital arrays.
机译:与无执照的60 GHz频段进行通信对于无线网络很有吸引力,因为可以使用7 GHz的免费带宽。进行发射器/接收器波束成形的天线阵列通常用于扩大发射范围。然而,为了进行波束成形,收发器必须知道信号到达的角度。许多到达角(AoA)估计算法是众所周知的。不幸的是,它们中的大多数是为数字阵列而开发的,每个天线元件都需要一个模数转换器(ADC)和一个数模转换器(DAC)。对于具有大量天线的阵列,实施成本将非常高。近来,提出了一种混合天线阵列作为低成本解决方案,其中多个天线共享一个ADC / DAC。但是,现有的用于混合阵列的AoA估计算法只能支持一种AoA。因此,它们的应用仅限于多径室内环境。在本文中,我们提出了新的AoA估计算法来解决该问题。使用增强的波束空间方法,我们将针对数字阵列开发的著名AoA估计算法(MUSIC和ESPRIT)的使用扩展到混合天线阵列的情况。仿真表明,所提出的算法尽管针对混合阵列而开发,但在数字阵列中可以具有与MUSIC和ESPRIT相似的性能。

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