EDA for RF and analog front-ends in the 4G era: Challenges and solutions

D. Gonzalez, A. Rusu, M. Ismail
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引用次数: 2

Abstract

Convergence into 4G wireless communication systems pushes the design of radio receivers beyond limits unconceivable only few years ago. The complexity of RF systems has increased enormously as new communication standards have appeared in the wireless scenario. The convergence trends, enabled by the advances in fabrication technology, have driven the software defined radio (SDR) more and more into the RF and analog front-end. There is a clear need for design automation and advanced simulation techniques at the different levels that go from the system idea to chip fabrication. Reducing the number of design iterations between these levels is key in meeting the increasingly tight time-to-market constraints. As of today, there is not a single tool that covers the complete design flow. Instead, there is an intricate puzzle of design and simulation tools that focus on the various steps that go from system to silicon. The amount of RF and analog EDA tools available is certainly scarce in comparison with their digital counterparts. Most of the design work still depends on the radio engineer, making the process less than optimal. This paper describes some of the challenges faced by today's radio designers and discusses some of the solutions provided by the EDA community.
4G时代射频和模拟前端EDA:挑战与解决方案
4G无线通信系统的融合将无线电接收器的设计推向了仅仅几年前无法想象的极限。随着新的通信标准在无线场景中的出现,射频系统的复杂性大大增加。由于制造技术的进步,融合趋势推动了软件定义无线电(SDR)越来越多地进入射频和模拟前端。显然,从系统思想到芯片制造的不同层次都需要设计自动化和先进的仿真技术。减少这些级别之间的设计迭代次数是满足日益紧迫的上市时间限制的关键。到目前为止,还没有一种工具能够涵盖完整的设计流程。相反,有一个复杂的设计和仿真工具的谜题,专注于从系统到硅的各个步骤。与数字工具相比,RF和模拟EDA工具的数量当然是稀缺的。大多数设计工作仍然依赖于无线电工程师,这使得这个过程不是最理想的。本文描述了当今无线电设计人员面临的一些挑战,并讨论了EDA社区提供的一些解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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