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Optimization of the two-stage common-emitter transistor amplifier for equalization circuit in visible light communication system

机译:可见光通信系统中均衡电路的两级共发射极晶体管放大器的优化

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摘要

The equalization circuit in the visible light communication (VLC) system has large impacts on the frequency response and can greatly improve the 3-dB modulation bandwidth. The optimization of the two-stage common-emitter transistor amplifier for equalization circuit is presented in detail and the design rules are disclosed. At first, the frequency response of the single-stage amplifier is derived and the simulated characteristic curves illustrated the changing regularity of four main factors are given. Subsequently, the frequency response of the two-stage amplifier is investigated by simulation. It is shown that the capacitors in the resistance-capacitance (RC) network has large impacts on the low-frequency range, while the resistors in the RC network can adjust the high-frequency, and the resistors in the emitter can adjust the low-frequency. Experimental measurements of the fabricated equalization circuit demonstrated the simulation results. Then, the two-stage amplifier is induced as post-equalization circuit (post-EQC) or pre-equalization circuit (pre-EQC) and the measured frequency response curves are given. The equalization circuit with proper sets of capacitors and resistors would flatten the frequency response curve of the VLC system. It is shown that the 3-dB modulation bandwidth of the VLC system equipped with post-EQC or pre-EQC can be expanded to 292MHz or 304MHz, respectively. Moreover, if the photoelectric receiver and the post-EQC are combined in the optimization, the 3-dB modulation bandwidth can be expanded to 375MHz.
机译:可见光通信(VLC)系统中的均衡电路对频率响应有很大影响,并且可以大大提高3dB的调制带宽。详细介绍了用于均衡电路的两级共射极晶体管放大器的优化,并披露了设计规则。首先,推导了单级放大器的频率响应,并通过仿真特性曲线给出了四个主要因素的变化规律。随后,通过仿真研究了两级放大器的频率响应。结果表明,电阻电容网络中的电容器对低频范围有较大影响,而RC网络中的电阻器可以调节高频,而发射极中的电阻器可以调节低频。频率。制作的均衡电路的实验测量证明了仿真结果。然后,将两级放大器作为后均衡电路(post-EQC)或预均衡电路(pre-EQC)进行感应,并给出测得的频率响应曲线。带有适当的电容器和电阻器的均衡电路将使VLC系统的频率响应曲线平坦。结果表明,配备后均衡器或前置均衡器的VLC系统的3 dB调制带宽可以分别扩展到292MHz或304MHz。此外,如果将光电接收器和后EQC结合在一起进行优化,则3dB的调制带宽可以扩展到375MHz。

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