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Design and parametric study of multiple element MIMO antennas for WLAN

机译:WLAN的多元素MIMO天线的设计和参数研究

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Tremendous growth has been noticed in wireless communication technologies in recent years. The advent of the 4G systems in future have adopted multiple input multiple output (MIMO) as its key feature. Modern day antennas have been scaled down to fit in the compact hand held wireless communication devices. Due to this trend antenna engineers are compelled to design the antennas which are suitable to fit in the compact chassis of hand held terminals. The requirement of size reduction becomes even stringent in case of MIMO systems. It is more challenging to accommodate multiple antennas within a small perimeter of the congested device. Moreover, the mutual coupling or electrical interference between the multiple element antenna (MEA) deteriorates the potential benefits of MIMO system. In this paper a novel hybrid multiband Koch-meander Fractal antenna has been proposed for the application in the WLAN. The proposed single element antenna (SEA) has been optimized to yield all the bands of IEEE 802.11 a/b/g standard. Further, the authors have transformed the SEA into different MEA configurations i.e., two element antenna, two element antenna with enhanced inter element distance and three element antenna configuration for MIMO/diversity systems. The study on the MEA shows that when the antennas are tightly placed adjacent to each other they suffer from high mutual coupling due to lack of an isolation mechanism. However, the 3-D radiation patterns indicate that the mutual coupling between antennas introduced pattern diversity.
机译:近年来,无线通信技术已经出现了惊人的增长。未来4G系统的出现将多输入多输出(MIMO)作为其主要功能。现代天线已按比例缩小以适合紧凑型手持无线通信设备。由于这种趋势,天线工程师不得不设计适合于手持终端的紧凑底盘的天线。在MIMO系统的情况下,减小尺寸的要求甚至变得严格。在拥挤的设备的小周长内容纳多个天线更具挑战性。而且,多元件天线(MEA)之间的相互耦合或电干扰恶化了MIMO系统的潜在益处。本文提出了一种新颖的混合型多频带科赫曼德分形天线,用于WLAN。提议的单元素天线(SEA)已进行优化,以产生IEEE 802.11 a / b / g标准的所有频段。此外,作者已经将SEA转换为不同的MEA配置,即用于MIMO /分集系统的两元素天线,具有增强的元素间距离的两个元素天线以及三个元素天线配置。对MEA的研究表明,当天线彼此紧紧放置时,由于缺乏隔离机制,它们会遭受很高的相互耦合。然而,3-D辐射方向图指示天线之间的相互耦合引入了方向图分集。

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