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Proposal of a Nonlinear Compensation Scheme Using an Optical Chirp Controller in SCM/OFM RoF Link

机译:在SCM / OFM RoF链路中使用光线性调频控制器的非线性补偿方案的建议

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An SCM optical FM method can obtain an FM gain, so it is effective on employing an RoF link which transfers a broad-band or multicarrier RF signal. However, the RF signal quality is degraded by intermodulation distortions due to the nonlinearity of LDs and optical frequency discriminator. The nonlinear compensation technique in the RoF link has been investigated in order to obtain a higher RF signal quality. This paper proposes an insertion-type distortion nonlinear compensation. In the proposed scheme, a nonlinear device is inserted between transmitter and receiver and we propose an optical chirp controller as the nonlinear device. The proposed scheme suppresses the higher order intermodulation distortion which degrades RF signal quality in the adaptive transmittance control method. In this paper we theoretically analyze the SFDR of the optical FM method using the optical chirp controller and show that improvement in the SFDR at 9 and 5 dB compared to methods without nonlinear compensation and the adaptive transmittance control method, respectively, can be obtained.
机译:SCM光学FM方法可以获得FM增益,因此在采用RoF链路来传输宽带或多载波RF信号时有效。但是,由于LD和光鉴频器的非线性,互调失真会导致RF信号质量下降。为了获得更高的射频信号质量,已经对RoF链路中的非线性补偿技术进行了研究。本文提出了一种插入式失真非线性补偿。在提出的方案中,在发送器和接收器之间插入了一个非线性设备,我们提出了一种光学线性调频控制器作为非线性设备。所提出的方案抑制了在自适应透射率控制方法中降低RF信号质量的高阶互调失真。在本文中,我们从理论上分析了使用光线性调频控制器的光学FM方法的SFDR,并表明与没有非线性补偿的方法和自适应透射率控制方法相比,分别可获得9 dB和5 dB的SFDR改进。

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