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A photonic QPSK modulation in 2 GHz with an RF signal from a microwave optoelectronic oscillator

机译:具有来自微波光电子振荡器的2 GHz中的光子​​QPSK调制,具有来自微波光电振荡器的RF信号

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This article presents a photonic circuit that achieves direct carrier QPSK modulation of an RF signal from an opto-electronic oscillator (OEO) suitable for satellite data transmitter. The circuit was implemented with three Mach-Zehnder optical modulators. One modulator was used to construct an OEO to generate a carrier with a frequency equal to 2.019 GHz. The others two modulators were used to compose the microwave photonic I/Q modulator. The setup initially achieved a data rate of 50 Mbps in a QPSK scheme with an EVM of 7.5%. Using a root-raised-cosine filter, it was possible to reduce the EVM to 5%. The diagrams of the optoelectronic circuit and the modulation measurements are displayed. After the EVM analysis, the modulated signal was demodulated through an actual satellite receiver. Using the demodulator, it was possible to measure the BER and consequently the degradation analysis. The degradation for a bit rate of 100 Mbps was 0.07 dB using the OEO as RF generator. In this case, the values of Eb/N0 and BER were 11.37 dB and 10-7, respectively.
机译:本文介绍了光源电路,该光电路从适合于卫星数据发射机的光电振荡器(OEO)实现RF信号的直接载波QPSK调制。该电路用三个Mach-Zehnder光学调制器实现。使用一个调制器来构建OEO以产生具有等于2.019GHz的频率的载波。其他调制器用于构成微波光子I / Q调制器。该设置最初在QPSK方案中实现了50 Mbps的数据速率,EVM为7.5%。使用根升余弦滤波器,可以将EVM减少至5%。显示光电电路和调制测量的图。在EVM分析之后,通过实际的卫星接收器解调调制信号。使用解调器,可以测量BER并因此测量降级分析。使用OEO作为RF发电机的偏差为100mbps的比特率为0.07dB。在这种情况下,EB / N0和BER的值为11.37 dB和10 -7 , 分别。

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