A gigabit ethternet switch based Software Radio platform for Gbps wireless communications

Chuan Liu, Xiang Chen, Xiujun Zhang, Ming Zhao, Shidong Zhou, Jing Wang
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Abstract

Software Radio (SR) is an emerging paradigm of the wireless communication system design due to its flexibility and adaptability. However, the implementation of SR platform is always challenging, especially for high date rate transmission such as up to 1Gbps. Although general-purpose processor(GPP) based SR platform can take full advantages of Software Radio, the performance is often limited due to the lack of real-time processing capacity for high-throughput radio systems, especially for high-throughput channel decoding. Therefore, hardware accelerating units(HAU) are usually also involved in the SR platform, such as field programmable gate arrays(FPGAs) and embedded digital signal processors(DSPs). As HAUs and GPPs have their own advantages for different applications in SR, the scalability of interface is a bottleneck in the implementation of SR platform. In this paper, a Gigabit Ethernet(GE) switch based programmable platform for Gbps wireless communications is presented. By means of the good scalability and flexibility of GE interface, the new structure based on GE data-switch combines the real-time computing performance of HAUs with the adaptability and programmability of GPPs, which can provide a radio platform with great scalability for the development of future wireless communication technologies. As a demonstration, a MIMO-OFDM radio system has been designed and implemented on this platform, which can achieve a throughput up to 1Gbps.
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一个基于千兆以太网交换机的软件无线电平台,用于Gbps无线通信
软件无线电(SR)由于其灵活性和适应性而成为无线通信系统设计的一个新兴范例。然而,SR平台的实现一直具有挑战性,特别是对于高达1Gbps的高数据速率传输。虽然基于通用处理器(GPP)的SR平台可以充分利用软件无线电的优势,但由于高吞吐量无线电系统,特别是高吞吐量信道解码缺乏实时处理能力,其性能往往受到限制。因此,硬件加速单元(HAU)通常也涉及到SR平台,如现场可编程门阵列(fpga)和嵌入式数字信号处理器(dsp)。由于HAUs和gpp对于SR中的不同应用各有优势,因此接口的可扩展性是SR平台实现的瓶颈。本文提出了一种基于千兆以太网(GE)交换机的Gbps无线通信可编程平台。基于GE数据交换机的新结构利用GE接口良好的可扩展性和灵活性,将HAUs的实时计算性能与gpp的适应性和可编程性相结合,为未来无线通信技术的发展提供了一个具有良好可扩展性的无线电平台。作为演示,在该平台上设计并实现了MIMO-OFDM无线电系统,该系统的吞吐量可达1Gbps。
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