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Ultra-Wideband Modulation Signal Measurement Using Local Sweep Digitizing Method

机译:使用局部扫描数字化方法的超宽带调制信号测量

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Recently, bandwidth for wireless communications are getting wider, i.e. 400 MHz for the 5th generation mobile communication (5G), and about 2 GHz for wireless LAN (IEEE 802.11ad). To evaluate the transceiver devices used in these communications, a high-speed waveform digitizer is required. In this paper, the "Local Sweep Digitizing Method" which accurately captures ultra-wideband signals covering 2 GHz with low cost is introduced. It is a method of decomposing a wideband signal transmitted at a high frequency into subband signals of several hundred megahertz bandwidths while downconverting it to an intermediate frequency, and capturing it for each subband signal by a low speed waveform digitizer. The captured waveform is synthesized by post digital processing. At this time, a correction process for matching the carrier phase and the conversion gain of each subband signal is performed. In this method, an ultra-wideband signal can be captured by a single low-speed high-resolution analog-to-digital converter (ADC) and the measurable bandwidth can be easily controlled by adjusting the Local Sweep section.
机译:近来,用于无线通信的带宽越来越宽,即,用于第五代移动通信(5G)的带宽为400 MHz,而用于无线LAN(IEEE 802.11ad)的带宽约为2 GHz。为了评估在这些通信中使用的收发器设备,需要一个高速波形数字转换器。在本文中,介绍了一种“本地扫描数字化方法”,该方法可准确捕获低成本,覆盖2 GHz的超宽带信号。它是一种将高频传输的宽带信号分解为几百兆赫兹带宽的子带信号,同时将其下变频为中频,并通过低速波形数字化仪为每个子带信号捕获的方法。捕获的波形通过后数字处理合成。此时,执行用于使每个子带信号的载波相位和转换增益匹配的校正处理。采用这种方法,可以通过单个低速高分辨率模数转换器(ADC)捕获超宽带信号,并且可以通过调整本地扫描部分来轻松控制可测量的带宽。

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