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Analysis of the lateral diffuse metal-oxide semiconductor (LDMOS) power amplifier for cellular base stations

机译:用于蜂窝基站的横向扩散金属氧化物半导体(LDmOs)功率放大器的分析

摘要

The primary purpose of this thesis was to present a theoretical large-signal analysis to study the power gain and efficiency of a microwave power amplifier for LS-band communications using software simulation. Power gain, efficiency, reliability, and stability are important characteristics in the power amplifier design process. These characteristics affect advance wireless systems, which require low-cost device amplification without sacrificing system performance.Large-signal modeling and input and output matching components are used for this thesis. Motorolau27s Electro Thermal LDMOS model is a new transistor model that includes self-heating affects and is capable of small-large signal simulations. It allows for most of the design considerations to be on stability, power gain, bandwidth, and DC requirements. The matching technique allows for the gain to be maximized at a specific target frequency. Calculations and simulations for the microwave power amplifier design were performed using Matlab and Microwave Office respectively. Microwave Office is the simulation software used in this thesis.The study demonstrated that Motorolau27s Electro Thermal LDMOS transistor in microwave power amplifier design process is a viable solution for common-source amplifier applications in high power base stations. The MET-LDMOS met the stability requirements for the specified frequency range without a stability-improvement model. The power gain of the amplifier circuit was improved through proper microwave matching design using input/output-matching techniques. The gain and efficiency of the amplifier improve approximately 4dB and 7.27% respectively. The gain value is roughly .89 dB higher than the maximum gain specified by the MRF21010 data sheet specifications. This work can lead to efficient modeling and development of high power LDMOS transistor implementations in commercial and industry applications.
机译:本文的主要目的是提供理论上的大信号分析,以使用软件仿真研究用于LS波段通信的微波功率放大器的功率增益和效率。功率增益,效率,可靠性和稳定性是功率放大器设计过程中的重要特征。这些特性影响了先进的无线系统,这些无线系统要求低成本的设备放大而不牺牲系统性能。本文采用大信号建模以及输入和输出匹配组件。摩托罗拉的电热LDMOS模型是一种新的晶体管模型,具有自发热效应,并且能够进行大大小小的信号仿真。它考虑了大多数设计注意事项,涉及稳定性,功率增益,带宽和DC要求。匹配技术可以使增益在特定目标频率下最大化。分别使用Matlab和Microwave Office进行了微波功率放大器设计的计算和仿真。微波办公软件是本文使用的仿真软件。研究表明,摩托罗拉的微波热电LDMOS晶体管在功率放大器设计过程中是大功率基站共源放大器应用的可行解决方案。 MET-LDMOS在不具有稳定性改进模型的情况下满足了指定频率范围的稳定性要求。通过使用输入/输出匹配技术进行适当的微波匹配设计,可以提高放大器电路的功率增益。放大器的增益和效率分别提高了约4dB和7.27%。增益值大约比MRF21010数据手册规格中指定的最大增益高0.89 dB。这项工作可以导致在商业和工业应用中对高功率LDMOS晶体管实现进行有效的建模和开发。

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    Bonhome Waldack;

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  • 年度 2003
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