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Design and Implementation of a HardwareModule forudMIMO Decoding in a 4G Wireless Receiver

机译:ud的硬件模块的设计和实现4G无线接收器中的MIMO解码

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摘要

Future 4th Generation (4G) wireless multiuser communication systems will have to provide advanced multimedia services to an increasing number of users, making good use of the scarce spectrum resources. Thus, 4G systemdesign should pursue both highertransmission bit rates and higher spectral efficiencies. To achieve this goal,multiple antenna systems are called to play a crucial role. In this contribution we address the implementation in FPGAs of a multiple-input multiple-output (MIMO) decoder embedded in a prototype of a 4G mobile receiver. This MIMO decoder is part of a multicarrier code-division multiple-access (MC-CDMA) radio system, equipped with multiple antennas at both ends of the link, that is able to handle up to 32 users and provides raw transmission bit-rates up to 125 Mbps. The task of the MIMO decoder is to appropriately combine the signals simultaneously received on all antennas to construct an improved signal, free of interference, from which to estimate the transmitted symbols. A comprehensive explanation of the complete design process is provided, including architectural decisions, floating-point to fixedpoint translation, and description of the validation procedure. We also report implementation results using FPGA devices of the Xilinx Virtex-4 family.
机译:未来的第四代(4G)无线多用户通信系统将必须为日益增加的用户提供先进的多媒体服务,并充分利用稀缺的频谱资源。因此,4G系统设计应追求更高的传输比特率和更高的频谱效率。为了实现这个目标,多个天线系统被要求发挥至关重要的作用。在此贡献中,我们解决了在FPGA中实现嵌入在4G移动接收器原型中的多输入多输出(MIMO)解码器的问题。该MIMO解码器是多载波码分多址(MC-CDMA)无线电系统的一部分,该系统在链路的两端配备了多个天线,能够处理多达32个用户并提供原始传输比特率至125 Mbps。 MIMO解码器的任务是适当地组合在所有天线上同时接收到的信号,以构建一个无干扰的改进信号,并据此估计发射的符号。提供了完整设计过程的全面说明,包括体系结构决策,浮点到定点转换以及验证过程的描述。我们还将报告使用Xilinx Virtex-4系列FPGA设备的实现结果。

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