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A Simple and All-Optical Microwave Doppler Frequency Shift and Phase Measurement System Based on Sagnac Loop and I/Q Detection

  • Northwestern Polytechnical University Xian
  • China Aerospace Science and Technology Corporation

科研成果: 期刊稿件文章同行评审

7 引用 (Scopus)

摘要

Microwave measurement system, which acquires the microwave parameters including frequency, phase, and amplitude information, is one of the backbone parts in modern radio frequency (RF) systems. In this article, a simple and novel optical approach is proposed to perform broadband in-phase/quadrature (I/Q) downconverter and is applied in Doppler frequency shift (DFS) and phase measurement. In the proposed approach, a Mach-Zehnder modulator (MZM) is used to modulate both RF and local oscillator (LO) signals. A Sagnac loop structure and optical coupler are used to suppress the optical carrier. A dense wavelength division multiplexer (DWDM) and two photodiodes (PDs) are used to build I/Q channels. The proposed approach has an all-optical structure and no frequency-dependent electronic devices are needed. In the experimental demonstration, the I/Q downconverter achieves low phase imbalance (<0.9°), low I/Q amplitude imbalance (< 0.5 dB), and large dynamic range (106.5 text {dB}cdot text {Hz}{2/3} ) over an ultrawide operating frequency. When DFS measurement is implemented using the I/Q downconverter, the microwave DFS is measured with a maximum measurement error of 8 Hz, and a clear direction can be obtained. When the system is applied for phase detection, the phase shift is successfully estimated with a measurement error of less than 7°.

源语言英语
文章编号9285328
期刊IEEE Transactions on Instrumentation and Measurement
70
DOI
出版状态已出版 - 2021

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