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首页> 外文期刊>IEICE Transactions on Communications >Simple Millimeter-Wave Quasi-Maximal-Ratio-Combining Antenna Diversity System Based on Millimeter-Wave Self-heterodyne Transmission Technique
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Simple Millimeter-Wave Quasi-Maximal-Ratio-Combining Antenna Diversity System Based on Millimeter-Wave Self-heterodyne Transmission Technique

机译:基于毫米波自外差传输技术的简单毫米波拟最大比组合天线分集系统

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摘要

A simple millimeter-wave quasi-maximal-ratio-combining antenna diversity system based on the millimeter-wave self-heterodyne transmission technique is described. The millimeter-wave self-heterodyne transmission technique is useful for developing millimeter-wave systems with enhanced characteristics in regard to system miniaturization, development and fabrication cost, and the frequency stability of the signal transmission. We also show that applying this technique with an antenna diversity receiver configuration can easily solve a problem peculiar to millimeter-wave systems—the fact that the transmission link always requires a line-of-sight path—without requiring hardware designed with millimeter-scale precision. In this paper, we theoretically analyze the operating principle of a combining antenna diversity system based on the millimeter-wave self-heterodyne transmission technique. We further prove that we can obtain a diversity gain in accordance with that of a maximal-ratio combining diversity system without resorting to any complicated control of the received signal envelope and phase. Our experiments using the simplest two-branch diversity structure have validated the operating principle derived in our theoretical analysis. Our results show that a received CNR improvement of 3 dB is obtained as a diversity gain. We also demonstrate that circuit precision corresponding to the wavelength of the intermediate frequency, rather than to the millimeter wavelength, is sufficient to obtain the diversity effect when we control the signal phase or delay in combining the received signals.
机译:描述了一种基于毫米波自外差传输技术的简单毫米波准最大比组合天线分集系统。毫米波自外差传输技术可用于开发在系统小型化,开发和制造成本以及信号传输的频率稳定性方面具有增强特性的毫米波系统。我们还表明,将这种技术与天线分集接收机配置一起使用可以轻松解决毫米波系统特有的问题-传输链路始终需要视线路径这一事实-无需设计具有毫米级精度的硬件。本文从理论上分析了基于毫米波自外差传输技术的组合天线分集系统的工作原理。我们进一步证明,我们可以根据最大比率组合分集系统获得分集增益,而无需对接收信号包络和相位进行任何复杂的控制。我们使用最简单的两分支多样性结构进行的实验已验证了理论分析中得出的工作原理。我们的结果表明,作为分集增益,接收到的CNR改善了3 dB。我们还证明,当我们控制信号相位或组合接收信号的延迟时,与中频波长而非毫米波长相对应的电路精度足以获得分集效果。

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