采用新波束形成方法的60ghz阵列天线

A. Baki, N. Karmakar
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引用次数: 2

摘要

在不久的将来,低于10ghz频率的频谱可能会拥挤,毫米波技术在不同新兴无线应用中的传播以及相关的能耗增加将会出现。为了增加无线通信的覆盖面积和传输比特率,同时降低能量消耗和干扰,需要具有更高波束效率和更低旁瓣电平的阵列天线技术。通过对不同的阵列单元实施不同的功率分配,可以实现更高的阵列天线的BE和更低的SLL。研究了一种新的、技术上较好的60 GHz信号波束形成方法,该方法采用天线单元阶梯功率分布(SPD)的概念,并与其他边缘逐渐变细的方法进行了比较。结果表明,该方法的最大旁瓣电平(MSLL)在两种方法中是最低的,其BE也与其他方法相当。由于SPD中不同功率分布的数量最少且逐步均匀,因此采用SPD技术制作天线元件也更容易。天线元件在SPD中的使用在功率分配方面也是比较好的边变细方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
60 GHz array antenna with new method of beam forming
The spectrum below 10 GHz frequency will likely be congested and the spreading of millimeter wave technology in different emerging wireless applications as well as associated increase in energy consumption will be witnessed in the near future. Array antenna technology with higher beam efficiency (BE) and lower side lobe level (SLL) is required in order to increase the coverage area of wireless communication, transmission bit rate and at the same time decrease the energy consumption and interference. It is possible to achieve higher BE and lower SLL of array antenna by implementing different power distributions for different array elements. A new and technically better method of beam forming by implementing the concept of Staircase Power Distribution (SPD) of antenna elements has been investigated and compared with other edge tapering methods for 60 GHz signal. It is found that the Maximum Side Lobe Level (MSLL) is the lowest in SPD among the compared methods and the BE is also equivalent to those of other edge tapering methods. Fabrication of antenna elements with SPD technology is also easier since the number of different power distribution in SPD is least and stepwise uniform. The use of antenna elements in SPD in terms of power distribution is also the best among the compared edge tapering methods.
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