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The performance of an adaptive least squares lattice decision-feedback equalizer on a fading multipath HF channel

机译:衰落多径HF信道上自适应最小二乘格子决策反馈均衡器的性能

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The performance of an adaptive lattice decision-feedback equalizer, originally proposed by F. Ling and J.G. Proakis (IEEE Trans. on Comm., vol.COM-33, no.4, p.348-56, 1985) is compared with that of transversal equalizer that uses a gradient tap adaptation algorithm operating in a periodic-channel estimation-mode. Results obtained over a simulated two-path HF channel model with a 1-ms differential multipath delay and 0.5-Hz fading rate show an approximately 5-dB advantage for the lattice equalizer for low signal-to-noise ratios (SNR), but only marginal improvement for high SNR. This phenomenon is primarily attributed to the occurrence of a significant number of flat fades during typical test runs over the two-path channel model, which accounts for the total lack of any form of diversity during these periods. Since diversity enhances modem performance in the presence of flat fades, the error rate plateau was significantly reduced by exploiting dual-polarization diversity without reducing the nominal bit speed of 2400 b/s.
机译:F. Ling和J.G.最初提出的自适应晶格判决反馈均衡器的性能。将Proakis(IEEE Trans。on Comm。,vol.COM-33,no.4,p.348-56,1985)与横向均衡器进行比较,横向均衡器使用在周期信道估计模式下运行的梯度抽头自适应算法。在具有1毫秒差分多径延迟和0.5 Hz衰落速率的模拟两路径HF信道模型上获得的结果显示,对于低信噪比(SNR)的晶格均衡器,大约具有5 dB的优势,但仅高信噪比的边缘改进。这种现象主要归因于在两路径通道模型上进行的典型测试过程中出现大量的平坦衰落,这解释了在这些时间段内完全缺乏任何形式的分集。由于分集在平坦衰落的情况下提高了调制解调器的性能,因此通过利用双极化分集而不降低2400 b / s的标称位速,可以大大降低误码率的稳定水平。

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