Fundamental rate-reliability-complexity limits in outage limited MIMO communications

P. Elia, J. Jaldén
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引用次数: 1

Abstract

The work establishes fundamental limits between rate, reliability and computational complexity, for the general setting of outage-limited MIMO communications. In the high-SNR regime, the limits are optimized over all encoders, all decoders, and all complexity regulating policies. The work then proceeds to explicitly identify encoder-decoder designs and policies, that meet this optimal tradeoff. In practice, the limits aim to meaningfully quantify different pertinent and interrelated measures, such as the optimal rate-reliability capabilities per unit complexity and power, the optimal diversity gains per complexity costs, or the optimal goodput per flop. Finally the tradeoff's simple nature, renders it useful for insightful comparison of the rate-reliability-complexity capabilities for different encoders-decoders.
中断受限MIMO通信中的基本速率-可靠性-复杂性限制
该工作建立了速率、可靠性和计算复杂性之间的基本限制,为限制中断的MIMO通信的一般设置。在高信噪比状态下,对所有编码器、所有解码器和所有复杂性调节策略的限制进行了优化。接下来的工作是明确地确定编码器-解码器的设计和策略,以满足这一最佳权衡。实际上,这些限制旨在有意义地量化不同的相关和相互关联的度量,例如每单位复杂性和功率的最佳速率可靠性能力,每复杂性成本的最佳多样性增益,或每次触发器的最佳商品。最后,权衡的简单性使得它对不同编码器-解码器的速率-可靠性-复杂性能力的深刻比较非常有用。
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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