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Frequency-dependent power amplifier modeling and correction for distortion in wideband radar transmissions

机译:频率相关的功率放大器建模和宽带雷达传输失真校正

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This paper presents initial results on utilizing the Volterra series, more specifically the Memory Polynomial model subset of the Volterra series, to model the power and frequency dependent non-linear distortion of a physical power amplifier. This modeling technique is also used to create the necessary digital predistortion so that, when used in series with the same modeled high power amplifier, the overall system acts solely as a linear function of input power within a given bandwidth. This amplifier modeling and associated digital predistortion are especially useful in wideband radar applications, where digital predistortion allows the amplifier to operate at its highest power added efficiency by operating in its compression region while still behaving linearly. As a result, wideband radar waveforms can be generated at high fidelity, maximizing transmission power with the given equipment while maintaining low range sidelobes. The results section of this paper reports preliminary findings.
机译:本文介绍了利用Volterra级数(更具体地说是Volterra级数的记忆多项式模型子集)对物理功率放大器的功率和频率相关的非线性失真进行建模的初步结果。这种建模技术还用于创建必要的数字预失真,因此,当与相同的建模高功率放大器串联使用时,整个系统仅充当给定带宽内输入功率的线性函数。这种放大器建模和相关的数字预失真在宽带雷达应用中特别有用,在数字雷达中,数字预失真允许放大器通过在其压缩区域内工作,同时仍保持线性表现,从而以最高的功率附加效率工作。结果,可以以高保真度生成宽带雷达波形,从而在保持低范围旁瓣的情况下,利用给定设备最大程度地提高发射功率。本文的结果部分报告了初步发现。

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