用于W-CDMA移动通信系统的射频微电子技术

A. Springer, R. Weigel
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引用次数: 6

摘要

第三代(3G)移动通信系统现在才刚刚开始引入。最大数据速率为2 Mbit/s,这将使无线接入宽带数据服务(如互联网或视频应用)成为可能。与现有的主要使用TDMA和FDMA的第二代系统相比,以首字母缩略词3G概括的大多数不同的物理层技术都基于宽带cdma (W-CDMA)。这对收发器前端的设计有严重的影响。在标准化过程中,假设它们具有足够的射频性能,但它们仍然是系统的性能瓶颈。本文首先简要介绍了UMTS(通用移动通信系统)——即将在欧洲部署并已在日本运行的3G标准——通过示例的方式描述了为UMTS指定的一些测试用例及其对模拟前端的影响。研究表明,为了预测当今商用射频集成电路所需的射频性能,必须对所有模拟和数字信号处理进行精确仿真。然后给出并回顾了一些实际的设计实例。最后,对未来移动终端应用的可能技术和工艺进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RF microelectronics for W-CDMA mobile communication systems
Third generation (3G) mobile communication systems are now just starting to be introduced. With a maximum data rate of 2 Mbit/s they will make wireless access to broadband data services like the Internet or video applications feasible. Most of the different physical layer technologies summarised under the acronym 3G are based on wideband-CDMA (W-CDMA), in contrast to existing second generation systems, which mostly use TDMA and FDMA. This has severe consequences for the design of the transceiver front-ends. During standardisation these were assumed to have an adequate RF performance yet they still present a performance bottleneck for the system. Starting with a short introduction to UMTS (Universal Mobile Telecommunications System)-the 3G standard to be deployed in Europe and already operating in Japan-this paper describes by way of example some of the test cases specified for UMTS and their impact on the analogue front-end. It is shown that accurate simulation of all the analogue and digital signal processing is necessary in order to predict the RF performance needed of today's commercial RFICs. The paper then presents and reviews some actual design examples. Finally, possible technologies and techniques for application in future mobile terminals are discussed.
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