Linear current modulation with feedback on Light Emitting Diodes in Optical Wireless Communication

Muhammad Sohail, K. Sterckx, P. Saengudomlert
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Abstract

For LED-based transmitters used in optical wireless transmissions, the relationship between the input voltage and the output light intensity of an LED is nonlinear. Hence, voltage modulation cannot be used directly on an LED for continuous modulation such as OFDM without signal distortion. Compared to voltage modulation with a predistortion circuit, current modulation is simpler to apply since the output light intensity of an LED is linearly proportional to the input current over a wide range. This paper considers BJT-based transconductance circuits used for current modulation in LED-based transmitters, and proposes the use of a feedback circuit topology to overcome the problem of high variation in the forward current gain parameter of BJTs. In particular, the current-series feedback topology is analyzed, yielding a circuit design that can be used for current modulation and is insensitive to the current gain variation.
光无线通信中带反馈的发光二极管线性电流调制
对于用于光无线传输的基于LED的发射机,LED的输入电压与输出光强之间的关系是非线性的。因此,电压调制不能直接用于LED上进行连续调制,如OFDM而不会产生信号失真。与使用预失真电路的电压调制相比,电流调制更容易应用,因为LED的输出光强度在很宽的范围内与输入电流成线性比例。本文考虑了基于bjt的跨导电路用于led发射机的电流调制,并提出了使用反馈电路拓扑来克服bjt正向电流增益参数变化大的问题。特别地,我们分析了电流串联反馈拓扑结构,得出了一种可用于电流调制且对电流增益变化不敏感的电路设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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