首页> 外文会议>12th Annual Pan Pacific Microelectronics Symposium amp; Tabletop Exhibition: International Technical Interchange >SHAPE SENSITIVITY ANALYSIS OF MICROSTRIP PATCH ANTENNA FOR USE IN A WIRELESS SENSOR NET
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SHAPE SENSITIVITY ANALYSIS OF MICROSTRIP PATCH ANTENNA FOR USE IN A WIRELESS SENSOR NET

机译:用于无线传感器网络的微带贴片天线的形状敏感性分析

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With the advancement of wireless communication systems, low cost, minimal weight, compact and low profile antennas are in great demand for both commercial and military applications. Furthermore, as the size of wireless hand-held devices shrinks, it is desirable to integrate the antenna directly on the chip package to cut down cost and provide flexible integration. Conformal low-profile antennas, such as printed dipoles, rectangular patches and slots, are widely used in large arrays on ground based, vehicular, air-borne and shipboard applications. Microstrip patches are usually used as radiating elements also in arrays and planar reflector antennas. These traditional resonant structures are typically half a wavelength in the critical dimensions and have relatively narrow bandwidth. In order to overcome these limitations, circular and annular shaped microstrip elements can be used, where the resonant dimension is related to half the circumference. This leads to a more compact solution, since for the same frequency the size of the patch is smaller. Another advantage of this solution is the possibility of working with double polarization. This paper investigates the performances of microstrip elements with circular annular shapes and suitable additional geometrical features, such as slots, to control the resonance behavior. In this work, both classical shapes (like rectangles, dipoles and rings) and the novel slotted annular patch are analyzed and compared. Figures of merit of the element performance are the bandwidth and the polarization. The shapes analyzed are suitable and versatile for use in a wireless net, both in the sensors and in the main receiver.
机译:随着无线通信系统的发展,对于商业和军事应用都非常需要低成本,最小重量,紧凑和薄型的天线。此外,随着无线手持设备的尺寸缩小,期望将天线直接集成在芯片封装上以降低成本并提供灵活的集成。适形的低调天线,例如印刷偶极子,矩形贴片和缝隙,广泛用于地面,车辆,机载和舰载应用中的大型阵列。微带贴片通常在阵列和平面反射器天线中也用作辐射元件。这些传统的谐振结构通常在关键尺寸上为波长的一半,并且具有相对较窄的带宽。为了克服这些限制,可以使用圆形和环形的微带元件,其中谐振尺寸与圆周的一半有关。这导致更紧凑的解决方案,因为对于相同的频率,贴片的尺寸更小。该解决方案的另一个优点是可以进行双极化。本文研究了具有圆环形形状和合适的附加几何特征(例如槽)的微带元件的性能,以控制共振行为。在这项工作中,分析并比较了经典形状(如矩形,偶极子和环形)和新颖的开槽环形贴片。元件性能的优值是带宽和极化度。所分析的形状适用于无线网络,既适用于传感器,也适用于主接收器。

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