Wireless communication technology has progressed dramatically over the past 25 years, in terms of societal adoption as well as technical sophistication. In 1998, mobile phones were still in the process of becoming compact and affordable devices that could be widely utilized in both developed and developing countries. There were "only" 300 million mobile subscribers in the world [1]. Cellular networks were among the first privatized telecommunication markets, and competition turned the devices into fashion accessories with attractive designs that could be individualized. The service was circumscribed to telephony and text messaging, but it was groundbreaking in that, for the first time, telecommunication was between people rather than locations. Wireless networks have changed dramatically over the past few decades, enabling this revolution in service provisioning and making it possible to accommodate the ensuing dramatic growth in traffic. There are many contributing components, including new air interfaces for faster transmission, channel coding for enhanced reliability, improved source compression to remove redundancies, and leaner protocols to reduce overheads. Signal processing is at the core of these improvements, but nowhere has it played a bigger role than in the development of multiantenna communication. This article tells the story of how major signal processing advances have transformed the early multiantenna concepts into mainstream technology over the past 25 years. The story therefore begins somewhat arbitrarily in 1998. A broad account of the state-of-the-art signal processing techniques for wireless systems by 1998 can be found in [2], and its contrast with recent textbooks such as [3]-[5] reveals the dramatic leap forward that has taken place in the interim.
翻译:无线通信技术在过去的25年里取得了巨大进步,包括社会采用率和技术复杂性。在1998年,移动电话正在成为可以在发达和发展中国家广泛使用的紧凑和实惠的设备。全球仅有3亿个移动用户[1]。蜂窝网络是最早私有化的电信市场之一,竞争使设备变成了可以个性化、设计吸引人的时尚配件。服务局限于电话和文本消息,但是这是一项开创性的工作,因为第一次,通信是人与人之间而不是地点之间。无线网络在过去的几十年中发生了翻天覆地的变化,使得服务提供能力得到了革命性改善,并且使得人们使用这些设备的数量几何增长。其中有很多成分,包括用于更快传输的新型无线电接口、用于提高可靠性的信道编码、用于去除冗余数据的改进源压缩和用于降低开销的精简协议。信号处理是这些改进的核心,但在多天线通信的发展中,没有什么比信号处理起到更大的作用了。本文讲述了过去25年里,主要的信号处理进展如何将早期的多天线概念转变为主流技术的故事。因此,本文的故事从1998年开始(这个时间有些任意)。1998年的无线系统的最新信号处理技术的广泛报告可以在[2]中找到,与[3]至[5]等最近的教科书相比,其反差表明了这段时间内所取得的巨大飞跃。