335Mb/s 3.9mm2 65nm CMOS柔性MIMO检测解码引擎,实现4G无线数据速率

M. Winter, S. Kunze, Esther P. Adeva, B. Mennenga, E. Matús, G. Fettweis, H. Eisenreich, G. Ellguth, S. Höppner, Stefan Scholze, R. Schüffny, T. Kobori
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引用次数: 28

摘要

在当前和未来的无线标准中,如WiMAX、3GPP-LTE或LTE-Advanced,接收器终端必须支持每种协议的多种工作模式[1],以及复杂的传输技术,特别是增强的MIMO检测和迭代前向纠错(FEC)。MIMO检测和FEC是接收端基带信号处理链中计算量最大的部分。其实现必须具有低功耗,但也能够在检测解码引擎中以灵活有效的方式进行交互,同时不影响与4G标准相关的具有挑战性的吞吐量和灵活性要求。在本文中,我们提出了一种结合灵活FEC引擎的MIMO球体探测器的芯片实现,实现了一个能够满足4G要求,数据速率为335Mb/s的硅检测解码引擎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 335Mb/s 3.9mm2 65nm CMOS flexible MIMO detection-decoding engine achieving 4G wireless data rates
In current and future wireless standards, such as WiMAX, 3GPP-LTE or LTE-Advanced, receiver terminals have to support numerous operating modes for each protocol [1], as well as sophisticated transmission techniques, especially enhanced MIMO detection and iterative forward error correction (FEC). MIMO detection and FEC belong to the most computationally complex parts of the receiver-side baseband signal processing chain. Implementations thereof must have low power consumption, but also be able to interact in a flexible and efficient way in the detection-decoding engine, while at the same time not compromising on the challenging throughput and flexibility requirements associated with 4G standards. In this paper, we present a chip implementation of a MIMO sphere detector combined with a flexible FEC engine, realizing a detection-decoding engine in silicon capable of satisfying 4G requirements with a data rate of 335Mb/s.
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