智能分布式子阵列MIMO (DS-MIMO)微带天线系统,频率灵活,用于通信和雷达应用

Y. Madany, H. Elkamchouchi, A. E. Ahmed
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引用次数: 1

摘要

最近的技术使通信设备和雷达中的电子和射频电路小型化,并且在物理上变得更小。天线设计一直是制约小型通信终端发展的关键因素之一,也是满足下一代和雷达要求的关键因素之一。多天线技术(MATs)在过去几年中因其巨大的收益而受到了广泛的关注。MATs可以提高可靠性和信道容量水平。此外,多天线系统对减少上行链路和下行链路的干扰都有很大的贡献。为了提高通信系统的可靠性,可以在发射机或接收机上安装多个天线。多天线分集背后的思想是通过独立信道传输相同信号的多个版本来提供给接收机。在现代通信收发器和雷达系统中,主要目的是将高功率射频信号从发射机引导到天线,同时防止大信号泄漏到更敏感的接收机前端。因此,单极双掷(SPDT)发送/接收(T/R)开关起着重要作用。本文介绍并研究了具有控制器单元和频率捷变的智能分布式子阵列MIMO (DS-MIMO)微带天线系统的设计。所有提出的天线系统已经使用商业软件进行了评估。最后给出了设计方案,并利用网络分析仪对其辐射特性进行了分析,以满足通信和雷达应用的要求。
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Smart distributed subarray MIMO (DS-MIMO) microstrip antenna system with frequency agile for communication and radar applications
Recent technologies enable electronic and RF circuits in communication devices and radar to be miniaturized and become physically smaller in size. Antenna design has been one of the key limiting constraints to the development of small communication terminals and also in meeting next generation and radar requirements. Multiple antenna technologies (MATs) have gained much attention in the last few years because of the huge gain. MATs can enhance the reliability and the channel capacity levels. Furthermore, multiple antenna systems can have a big contribution to reduce the interference both in the uplink and the downlink. To increase the communication systems reliability, multiple antennas can be installed at the transmitter or/and at the receiver. The idea behind multiple antenna diversity is to supply the receiver by multiple versions of the same signal transmitted via independent channels. In modern communication transceiver and radar systems, primary aims are to direct high power RF signal from transmitter to antenna while preventing leakage of that large signal into more sensitive frontend of receiver. So, a Single-Pole Double-Throw (SPDT) Transmitter/Receiver (T/R) Switch plays an important role. In this paper, design of smart distributed subarray MIMO (DS-MIMO) microstrip antenna system with controller unit and frequency agile has been introduced and investigated. All the entire proposed antenna system has been evaluated using a commercial software. The final proposed design has been fabricated and the radiation characteristics have been illustrated using network analyzer to meet the requirements for communication and radar applications.
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