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Analysis of delay-and-multiply optical FSK receivers with line-coding and non-flat laser FM response

机译:具有行编码和非平面激光FM响应的延迟倍频光FSK接收机的分析

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摘要

We present a theoretical analysis of the performance of coherent optical FSK systems when the driving laser signal is AMI or Manchester (biphase) line-coded to counteract the nonideal FM characteristic of the transmit laser diode, and the received signal is heterodyned and detected by a delay-and-multiply demodulator. The analysis takes into account IF filtering by assuming linear filtering of the noisy signal phase, accounting, for small linewidths, for laser phase noise in a straightforward and accurate manner. A simple equivalent baseband model of the system is derived for performance evaluation, applicable to both cases of large demodulator delay and when the delay tends to zero (ideal discriminator). Noise statistics include the clicks due to both signal and phase noise. The problem of performance evaluation is reduced to a classical intersymbol interference problem which is solved by mead of the method of Gauss quadrature rules. The analysis accurately predicts the effectiveness of AMI and Manchester line coding, depending on several system parameters such as linewidth, modulation index, IF bandwidth and laser FM response, and can be easily extended to other line coding techniques.
机译:当驱动激光信号被AMI或曼彻斯特(双相)线编码以抵消发射激光二极管的非理想FM特性,并且接收信号被外差和检测时,我们对相干光FSK系统的性能进行了理论分析。延迟和乘法解调器。该分析通过假设对噪声信号相位进行线性滤波来考虑IF滤波,并考虑到了小线宽和激光相位噪声的直接和精确方式。导出系统的简单等效基带模型以进行性能评估,适用于解调器延迟较大以及延迟趋于零的情况(理想的鉴别器)。噪声统计数据包括由于信号和相位噪声引起的咔嗒声。性能评估的问题被简化为经典的符号间干扰问题,通过高斯正交规则的方法解决了该问题。该分析可根据线宽,调制指数,中频带宽和激光FM响应等多个系统参数准确预测AMI和Manchester线编码的有效性,并可轻松扩展到其他线编码技术。

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