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Adapting Techniques to Improve Efficiency in Radio Frequency Power Amplifiers for Visible Light Communications

机译:适应技术提高射频功率放大器效率的可见光通信

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It is well known that modern wireless communications systems need linear, wide bandwidth, efficient Radio Frequency Power Amplifiers (RFPAs). However, conventional configurations of RFPAs based on Class A, Class B, and Class AB exhibit extremely low efficiencies when they manage signals with a high Peak-to-Average Power Ratio (PAPR). Traditionally, a number of techniques have been proposed either to achieve linearity in the case of efficient Switching-Mode RFPAs or to improve the efficiency of linear RFPAs. There are two categories in the application of aforementioned techniques. First, techniques based on the use of Switching-Mode DC-DC converters with a very-fast-output response (faster than 1 mu s). Second, techniques based on the interaction of several RFPAs. The current expansion of these techniques is mainly due to their application in cellphone networks, but they can also be applied in other promising wireless communications systems such as Visible Light Communication (VLC). The main contribution of this paper is to show how Envelope Tracking (ET), Envelope and Elimination (EER), Outphasing, and Doherty techniques can be helpful in developing more efficient VLC transmitters capable of reaching high bit-rates (higher than 1 Mbps) by using advance modulation schemes. Finally, two examples based on the application of the Outphasing technique and the use of a Linear-Assisted Envelope Amplifier (EA) to VLC are presented and experimentally verified.
机译:众所周知,现代无线通信系统需要线性,宽带宽,高效的射频功率放大器(RFPA)。然而,基于A类,B类和类AB的RFPA的传统配置在管理具有高峰平均功率比(PAPR)的信号时表现出极低的效率。传统上,已经提出了许多技术在有效的切换模式RFPA的情况下实现线性度或提高线性RFPA的效率。在上述技术的应用中有两类。首先,基于使用开关模式DC-DC转换器具有非常快速输出响应的技术(比1μs更快)。其次,基于几个RFPA的相互作用的技术。目前这些技术的扩展主要是由于它们在手机网络中的应用,但它们也可以应用于其他有前途的无线通信系统,例如可见光通信(VLC)。本文的主要贡献是展示信封跟踪(ET),信封和消除(EER),迎象和深度技术如何有助于开发能够达到高比特率的更高效的VLC发射器(高于1 Mbps)通过使用提前调制方案。最后,提出了两个示例,基于突出技术的应用和使用线性辅助包络放大器(EA)至VLC的应用,并经过实验验证。

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