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High-efficiency, multi-mode, multi-band terminal power amplifiers

机译:高效,多模式,多频段终端功率放大器

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摘要

Ubiquitous coverage, the ability of a mobile device to wirelessly communicate as intended from any location in the world, is not a reality today. Multiple wide-area and local-area wireless systems are now deployed in various places around the world. These mobile systems include cellular, local area networks, personal area networks, and specialized networks. Characteristics of these systems span a broad combination of constant-envelope and envelope-varying signals, time-division (half duplex) and code-division (full duplex) multiplexing, and high (several watts) to very low (microwatts) transmitter output powers. As a result, demands on the RF power amplifier (PA) in a multi-mode application are daunting. Linear RF techniques are unlikely to meet all requirements for near-future mobile terminals - particularly the need to simultaneously realize long mobile-battery life while also providing multi-mode operation using bandwidth-efficient signals. Initial results show that newer polar techniques meet many of the objectives for multi-mode and multi-band mobile terminals, including those for battery life. This is information on the cutting edge of RF progress. This article compares and contrasts advanced architectures and presents encouraging preliminary direct polar modulation results.
机译:如今,无处不在的覆盖范围(移动设备能够按预期从世界上任何地方进行无线通信的能力)都不是现实。现在,在世界各地部署了多个广域和局域无线系统。这些移动系统包括蜂窝,局域网,个人区域网和专用网络。这些系统的特性涵盖了恒定包络和包络变化信号,时分(半双工)和码分(全双工)多路复用以及高(几瓦)到极低(微瓦)发射机输出功率的广泛组合。结果,在多模式应用中对RF功率放大器(PA)的需求令人生畏。线性RF技术不太可能满足近期移动终端的所有要求-特别是需要同时实现较长的移动电池寿命,同时还需要使用带宽高效的信号提供多模式操作。初步结果表明,更新的极化技术可以满足多模式和多频段移动终端的许多目标,包括电池寿命的目标。这是有关RF进展的信息。本文比较并对比了先进的体系结构,并提出了令人鼓舞的初步直接极性调制结果。

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