基于容量的位交织编码GFSK非相干检测设计方法

R. I. Seshadri, M. Valenti
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引用次数: 1

摘要

本文研究了一种基于容量的能量和带宽高效通信系统参数优化方法。特别考虑了非相干检测、位交错编码、高斯频移键控(GFSK)。非相干检测使用顺序、软输出(SO)、软判决差分相位检测器(SDDPD)完成。计算了该系统在调制、信道和检测器设计约束下的容量。对于广泛的频谱效率,使用可靠信号的信息理论边界来确定GFSK参数和码率的最节能组合。计算了分块衰落信道在调制和检测器设计约束下的信息中断概率。选择结果表明,基于容量的方法还有助于确定调制参数和码率的组合,并且在块衰落中具有最低的中断概率
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A Capacity-Based Approach for Designing Bit-Interleaved Coded GFSK with Noncoherent Detection
This paper investigates a capacity-based approach to parameter optimization for energy and bandwidth efficient communication systems. In particular, non-coherently detected, bit-interleaved coded, M-ary Gaussian frequency shift keying (GFSK) is considered. Non-coherent detection is accomplished using a sequential, soft-output (SO), soft-decision differential phase detector (SDDPD). The capacity of the proposed system under modulation, channel and detector design constraints is calculated. For a wide range of spectral efficiencies, the most energy efficient combination of GFSK parameters and code rates is identified using information theoretic bounds on reliable signaling. The information outage probabilities under modulation and detector design constraints are calculated for the block fading channel. Select results reveal that the capacity-based approach also helps in identifying the combination of modulation parameters and code rates with the lowest outage probabilities in block fading
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