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Radio frequency carrier amplitude-burst transmitters – from architecture to circuit

机译:射频载波幅度突发发射机–从架构到电路

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The radio frequency carrier amplitude-burst transmitter constitutes a promising architecture capable of efficiently transmitting signals of highly demanding complex modulation schemes. However, the tested practical implementations present results that stay way behind the theoretically advanced promises. This study presents the first thorough study of the power efficiency and linearity characteristics that can be actually achieved with this architecture. The analysis starts with a brief revision of the theoretical idealised behaviour of these switched-mode amplifier systems, followed by the study of the many sources of impairments that appear in their real implementation. In particular, a special attention is paid to the dynamic load modulation caused by the often ignored interaction between the narrow-band signal reconstruction filter and the switched-mode power amplifier. The performance of this architecture is clearly explained based on the presented theory, which is supported by simulations and corresponding measurement results of a fully working implementation. The drawn conclusions allowed the development of a set of design rules for future improvements.
机译:射频载波幅度突发发射机构成了一种有前途的架构,能够有效地发送要求很高的复杂调制方案的信号。但是,经过测试的实际实现所提供的结果远远落后于理论上先进的承诺。这项研究是对这种架构实际可以实现的功率效率和线性特性的首次全面研究。分析首先对这些开关模式放大器系统的理论理想行为进行了简要修订,然后研究了在其实际实现中出现的许多损伤源。尤其要特别注意由窄带信号重构滤波器和开关模式功率放大器之间经常被忽略的相互作用引起的动态负载调制。基于所提出的理论清楚地解释了该体系结构的性能,该理论得到了完全可行的实施方案的仿真和相应的测量结果的支持。得出的结论允许制定一组设计规则以供将来改进。

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