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An alternating-phase fed slotted waveguide array with a double-layered feedstructure and meandering radiating waveguides in 60 GHz band

机译:具有双层馈电结构和60GHz带中的双层馈电结构和曲折的辐射波导的交流阶段供给槽波导阵列

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An alternating-phase fed single-layer slotted waveguide array is an attractive candidate for high gain and mass producible millimeter wave planar antennas because of small transmission loss of a waveguide even in millimeter wave and its simple structure suitable for mass-production [1]–[5]. It consists of several radiating waveguides with a resonant shunt slot array and a feed waveguide arranged at the end of the radiating waveguides. The whole structure is accommodated in a single layer. The radiating waveguides are excited 180-degree out of phase with adjacent ones by a cascade of T-junctions arrayed at a spacing of a half guided wavelength in the feed waveguide. A great advantage of the alternating-phase fed array is cost reduction for assembling; a slotted plate and a groove feed structure are just tacked and fixed screws together' with a choke structure at the periphery [3]. This array has already been put into.practical use for 26GHz wireless IP access service (WIPAS) system [4]. 31.5 dBi gain with 65 % efficiency in 26 GHz and 34.8 dBi gain with 57% efficiency in 76 GHz [5] are achieved by the prototypes, respectively. The authors have also developed the alternating-phase fed array with a sector shaped pattern for radar applications in 60 GHz [6]. A problem of this array' is narrow bandwidth, that is, side lobe level is increased in case that the operation frequenty is changed from the design one, since the feeding network of the alternating-phase fed array is a series circuit. In order to solve this problem, a novel alternating-phase fed array is proposed in this paper. A double-layer feeding network, the upper layer for the alternating-phase fed slotted waveguide array and the lower layer for a tournament-type parallel-fed power divider, is introduced to reduce the long line effect. Furthermore, meandering structure Is adopted for the radiating waveguides to eliminate grating lobes due to the staggered slot arrangement. In this paper, design of the proposed array and experimental results of the prototype array in 60 GHz are described.
机译:交替阶段美联储单层开槽波导阵列是高增益和质量生产石毫米波平面天线的有吸引力的候选者,因为即使在毫米波中的波导的小传输损失和适用于大量生产的简单结构[1] - [5]。它包括几种辐射波导,其具有谐振分流槽阵列和布置在辐射波导的末端的馈电波导。整个结构容纳在单层。通过在饲料波导中的半引导波长的间隔处排列的级联,通过相邻的辐射波导将辐射波导与相邻的级联。交替相馈阵列的一个很大的优点是组装成本降低;槽位和槽进料结构只是在周边的扼流结构[3]上用扼流结构固定在一起并将螺钉固定在一起。该阵列已经被置于26GHz无线IP接入服务(WIPAS)系统[4]的练习使用。 31.5 DBI增益在26GHz和34.8 dBi增益中具有65%的效率,分别通过原型实现了76 GHz [5]的57%效率。作者还开发了具有60GHz [6]中的雷达应用的交替相馈阵列,用于雷达应用[6]。该阵列'的问题是窄的带宽,即,在从设计之一改变操作之外的情况下,侧瓣电平增加,因为交替相馈阵列的馈送网络是串联电路。为了解决这个问题,本文提出了一种新颖的交替相馈阵列。引入双层馈电网,用于交流阶段进料波导阵列的上层和用于比赛型并联功率分配器的下层,以减少长线效应。此外,采用蜿蜒结构用于消除由于交错的槽布置而消除光栅凸杆。在本文中,描述了60GHz中的原型阵列的所提出的阵列和实验结果的设计。

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