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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Extending the Bandwidth and Dynamic Range of Old RF Instruments to Meet State-of-the-Art Performance, Using a Synthetic Instrument Approach
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Extending the Bandwidth and Dynamic Range of Old RF Instruments to Meet State-of-the-Art Performance, Using a Synthetic Instrument Approach

机译:使用合成仪器方法扩展旧RF仪器的带宽和动态范围,以满足最新性能

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摘要

A decrease in life cycle cost is a key issue for testing mobile communication systems. The rapid development and edge technology requires high-performance instruments and state-of-the-art measurement technology. New investments are expensive, but even older generation instruments are capable of extending their bandwidth and dynamic range to meet even the latest third-generation partnership project (3GPP) cellular measurement requirements by the addition of external hardware using a synthetic instrument approach. The novelty of this paper is the high performance on the most crucial parameters, i.e., the dynamic range and bandwidth achieved by only replacing some parts of the legacy instrument. Moreover, the demonstrated direct IF synthesis has a high degree of novelty at wide modulation bandwidths. It is desired to use virtual/synthetic instruments and make the signal processing in the software independent of the hardware, i.e., software-defined measurements (SDMs). In this paper, a state-of-the-art experimental setup for signal generation and signal analysis is demonstrated. A direct IF synthesis is used to generate a wideband code-division multiple-access (WCDMA) carrier with more than 72-dB adjacent carrier leakage ratio (ACLR) up to 12 parallel carriers with more than 68-dBc ACLR over a total bandwidth of 100 MHz. The signal analysis capabilities (e.g., ACLR performance) for a WCDMA carrier is better than -70 dBc and for a continuous wave better than -85 dBc over a bandwidth of 42.5 MHz. The critical RF downconverter in the setup is carefully designed not to degrade the dynamic range performance.
机译:生命周期成本的降低是测试移动通信系统的关键问题。快速发展和前沿技术需要高性能的仪器和最新的测量技术。新的投资很昂贵,但是即使是老一代仪器,也可以通过使用合成仪器方法添加外部硬件来扩展其带宽和动态范围,从而满足最新的第三代合作伙伴计划(3GPP)蜂窝测量要求。本文的新颖之处在于在最关键的参数上具有高性能,即仅更换旧仪器的某些部分即可实现的动态范围和带宽。此外,已证明的直接IF合成在宽调制带宽下具有高度的新颖性。期望使用虚拟/合成仪器并使软件中的信号处理与硬件即软件定义的测量(SDM)无关。在本文中,演示了用于信号生成和信号分析的最新实验装置。直接IF合成用于生成宽带码分多址(WCDMA)载波,该载波的总带宽为80dBc,相邻载波泄漏比(ACLR)大于72dB,多达12个并行载波,ACLR大于68dBc。 100 MHz。在42.5 MHz带宽上,WCDMA载波的信号分析能力(例如ACLR性能)优于-70 dBc,连续波优于-85 dBc。设计中的关键RF下变频器经过精心设计,不会降低动态范围性能。

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