用于固定无线OFDM系统的汞/充水

A. Lozano, A. Tulino, S. Verdú
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引用次数: 10

摘要

固定无线系统旨在为住宅和企业用户提供宽带连接。由于它们通常在频率选择性低多普勒条件下工作,因此首选的信号选择是OFDM(正交频分复用)。与移动系统不同的是,在移动系统中,频道变化往往太快,发射器无法跟上,而在固定无线系统中,这种变化可以被准确地跟踪。这为在OFDM音调上分配功率提供了额外的灵活性。对于理想的高斯信号,采用经典的充水策略来解决并行信道上的功率分配问题。然而,对于实际使用的离散星座,注水不再是最优的。相反,使相互信息最大化的权力分配由更一般的汞/充水政策给出。本文阐述了在具有QAM星座的频率选择OFDM信道上使用汞/充水技术,并量化了常规充水技术对互信息的抑制程度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mercury/waterfilling for fixed wireless OFDM systems
Fixed wireless systems are designed to provide broadband connectivity to residential and enterprise customers. Since they typically operate in frequency-selective low-Doppler conditions, a preferred signalling choice is OFDM (orthogonal frequency-division multiplexing). In contrast with mobile systems, where the channel variations are often too rapid to be followed by the transmitter, in fixed wireless such variations can be accurately tracked. This provides the added flexibility of allocating power over the OFDM tones. For ideal Gaussian signals, the allocation of power over parallel channels is solved by the classical waterfilling policy. For the discrete constellations used in practice, however, waterfilling is no longer optimal. Rather, the power allocation that maximizes the mutual information is then given by the more general mercury/waterfilling policy. This paper illustrates the usance of mercury/waterfilling on frequency-selective OFDM channels with QAM constellations and it quantifies the extend to which conventional waterfilling curtails the mutual information.
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