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首页> 外文期刊>IEEE Transactions on Communications >Optimum diversity combining and equalization in digital data transmission with applications to cellular mobile radio. I. Theoretical considerations
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Optimum diversity combining and equalization in digital data transmission with applications to cellular mobile radio. I. Theoretical considerations

机译:数字数据传输中的最佳分集组合和均衡以及在蜂窝移动无线电中的应用。一,理论考虑

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摘要

A comprehensive theory for Nth-order space diversity reception combined with various equalization techniques in digital data transmission over frequency-selective fading channels is developed. The channels are characterized by N arbitrary impulse responses possessing random parameters as well as N additive Gaussian noise sources. Various combiner-equalizers that minimize the mean-squared error are determined. Formulas are presented for the attainable least-mean-squared errors and upper bounds on average probabilities of error. The theory is applied to optimize system parameters and to predict performance for QAM data transmission operating over a model for the mobile radio channel. For this model, estimates of average attainable error rates and outage probabilities are provided as functions of system parameters. In the channel models the uncoded data rates as well as Shannon capacity are regarded as random variables.
机译:提出了在频率选择衰落信道上进行数字数据传输时,结合各种均衡技术的N阶空间分集接收的综合理论。信道的特征是具有随机参数的N个任意脉冲响应以及N个加性高斯噪声源。确定使均方误差最小的各种组合均衡器。给出了可达到的最小均方误差和平均误差概率上限的公式。该理论适用于优化系统参数并预测在移动无线电信道模型上运行的QAM数据传输的性能。对于此模型,将提供平均可达到的错误率和中断概率的估计值,作为系统参数的函数。在信道模型中,未编码的数据速率以及香农容量被视为随机变量。

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