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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Ultra-Wideband Photonic Microwave I/Q Mixer for Zero-IF Receiver
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Ultra-Wideband Photonic Microwave I/Q Mixer for Zero-IF Receiver

机译:零中频接收器的超宽带光子微波I / Q混频器

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Zero-intermediate frequency (IF) receiver features the advantages of compact structure and agile operating frequency, but faces the problems of local oscillator (LO) leakage, direct current (dc) offset, even-order distortion, and in-phase/quadrature (I/Q) imbalance. In this paper, a photonic microwave I/Q mixer for zero-IF receiver is proposed based on a single integrated polarization multiplexing Mach-Zehnder modulator (PDM-MZM). Thanks to its all-optical operation and LO power optimization, an I/Q phase imbalance below 0.9°, an isolation ratio below -30 dB, and a typical conversion gain of -2.3 dB are achieved over an ultra-wide operating frequency from 10 to 40 GHz. Combined with the balanced detection techniques, the dc offset and even-order distortions are well suppressed, and the typical third-order spurious free dynamic range is 107.9 dB · Hz2!3. Using the proposed photonic I/Q mixer, the vector signals with various modulation formats, carrier frequencies, and data rates (200-700 Mb/s) are directly demodulated to I/Q basebands, and the error vector magnitude and the bit rate error are measured with the power range from -25 to 15 dBm. Subharmonic vector I/Q demodulation is also experimentally demonstrated. The proposed all-optical, ultrawideband and high-efficient microwave I/Q mixer is suitable for a zero-IF receiver and may find potential applications in electronic systems such as wideband wireless communications, frequency hopping radar, or multiband satellite transponder.
机译:零中频(IF)接收器具有结构紧凑和工作频率灵活的优点,但面临本地振荡器(LO)泄漏,直流(dc)偏移,偶数阶失真以及同相/正交( I / Q)不平衡。本文提出了一种基于单个集成偏振复用马赫曾德尔调制器(PDM-MZM)的零中频接收机光子微波I / Q混频器。凭借其全光操作和LO功率优化,在从10的超宽工作频率上,I / Q相位失衡低于0.9°,隔离比低于-30 dB,典型转换增益为-2.3 dB。至40 GHz。结合平衡检测技术,可以很好地抑制直流偏移和偶数阶失真,典型的三阶无杂散动态范围为107.9 dB·Hz2!3。使用提出的光子I / Q混频器,将具有各种调制格式,载波频率和数据速率(200-700 Mb / s)的矢量信号直接解调为I / Q基带,并且误差矢量幅度和比特率误差在-25至15 dBm的功率范围内进行测量。次谐波矢量I / Q解调也已通过实验证明。拟议的全光,超宽带和高效微波I / Q混频器适用于零中频接收机,并且可能在电子系统中找到潜在的应用,例如宽带无线通信,跳频雷达或多频带卫星转发器。

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