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首页> 外文期刊>IEEE Transactions on Signal Processing >Transmit Optimization With Improper Gaussian Signaling for Interference Channels
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Transmit Optimization With Improper Gaussian Signaling for Interference Channels

机译:高斯信号不正确的干扰信道传输优化

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摘要

This paper studies the achievable rates of Gaussian interference channels with additive white Gaussian noise (AWGN), when improper or circularly asymmetric complex Gaussian signaling is applied. For the Gaussian multiple-input multiple-output interference channel (MIMO-IC) with the interference treated as Gaussian noise, we show that the user's achievable rate can be expressed as a summation of the rate achievable by the conventional proper or circularly symmetric complex Gaussian signaling in terms of the users' transmit covariance matrices, and an additional term, which is a function of both the users' transmit covariance and pseudo-covariance matrices. The additional degrees of freedom in the pseudo-covariance matrix, which is conventionally set to be zero for the case of proper Gaussian signaling, provide an opportunity to further improve the achievable rates of Gaussian MIMO-ICs by employing improper Gaussian signaling. To this end, this paper proposes widely linear precoding, which efficiently maps proper information-bearing signals to improper transmitted signals at each transmitter for any given pair of transmit covariance and pseudo-covariance matrices. In particular, for the case of two-user Gaussian single-input single-output interference channel (SISO-IC), we propose a joint covariance and pseudo-covariance optimization algorithm with improper Gaussian signaling to achieve the Pareto-optimal rates. By utilizing the separable structure of the achievable rate expression, an alternative algorithm with separate covariance and pseudo-covariance optimization is also proposed, which guarantees the rate improvement over conventional proper Gaussian signaling.
机译:当应用不正确或圆形不对称的复杂高斯信号时,本文研究了具有加性高斯白噪声(AWGN)的高斯干扰信道的可实现速率。对于将干扰视为高斯噪声的高斯多输入多输出干扰信道(MIMO-IC),我们表明用户可实现的速率可以表示为常规适当或圆对称复高斯可实现的速率的总和就用户的传输协方差矩阵和附加项而言,它是用户的传输协方差和伪协方差矩阵的函数。伪协方差矩阵中的其他自由度通常在适当的高斯信令的情况下设置为零,这为通过采用不正确的高斯信令进一步提高高斯MIMO-IC的可实现速率提供了机会。为此,本文提出了广泛的线性预编码,对于任何给定的发送协方差和伪协方差矩阵对,它有效地将适当的信息承载信号映射到每个发送器处的不正确发送信号。特别地,对于两用户高斯单输入单输出干扰信道(SISO-IC),我们提出了一种联合协方差和伪协方差优化算法,采用了不正确的高斯信号来实现帕累托最优速率。通过利用可达到的速率表达式的可分离结构,还提出了一种具有独立协方差和伪协方差优化的替代算法,该算法保证了速率比常规的适当高斯信号得以提高。

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