首页> 外文会议>IEEE Convention of Electrical and Electronics Engineers in Israel >The I-MMSE approach on the weak Gaussian Z-interference channel and the type I Gaussian Broadcast-Z-interference channel
【24h】

The I-MMSE approach on the weak Gaussian Z-interference channel and the type I Gaussian Broadcast-Z-interference channel

机译:弱高斯Z干扰通道上的I-MMSE方法和I型高斯广播 - Z干扰通道

获取原文

摘要

A fundamental relationship between Estimation Theory and Information Theory for Gaussian channels was derived by Guo, Shamai and Verdú (first presented in ISIT 2008); in particular, it was shown that for the MIMO standard Gaussian channel, the mutual information and the minimum mean-square error (MMSE) are related. This fundamental relationship and its generalizations, referred to as the I-MMSE relationships, have already been shown to be useful in several aspects of Information Theory. An inherent property of the MMSE, is the “single crossing point” property: as a function of snr, the MMSE of the Gaussian input distribution and the MMSE of an arbitrary input distribution intersect at most once. In this work we will use this property and its recent extensions to the MIMO scenario. In this paper we take a look at two variations of the interference channel: the Gaussian Z-interference channel and the type I Gaussian Broadcast-Z-interference channel. We use the I-MMSE approach to derive outer bounds on the capacity region of these channels. The Z-interference problem is a simplified case of the more general interference channel, for which the capacity region is unknown, in general. The Gaussian Z-interference channel in its standard form is given by: Y1 = X1 + √aX2 + N1 Y2 = X2 + N2 where Ni and N2 are standard Gaussian and may be considered independent. We consider a power constraints Pi, i ∊ {1, 2}, on both inputs. For a ∊ (0, 1), that is, weak interference, there is no known single letter expression for the capacity region. The best known general outer bound is due to Sato. Using Ahlswede's limiting expression for the capacity region, we re-derive Sato's outer bound directly from the limiting expression using the I-MMSE approach and show why this outer bound can not be tight in general. As a- - n additional example of the usage of the I-MMSE approach, we examine the type I Gaussian Broadcast-Z-interference channel, recently presented by Shang and Poor. For this channel we show that the I-MMSE approach can derive equivalent, more natural and insightful, outer bound for the weak interference case.
机译:Guo,Shamai和Verdú估计理论与高斯渠道信息理论之间的基本关系(第一次介绍了Isit 2008);特别地,表明对于MIMO标准高斯信道,互信息和最小均方误差(MMSE)是相关的。这种基本关系及其概括被称为I-MMSE关系已经证明在信息理论的若干方面有用。 MMSE的固有属性,是“单交叉点”属性:作为SNR的函数,高斯输入分布的MMSE和最多一次任意输入分布的MMSE相交。在这项工作中,我们将使用此属性及其最近的扩展到MIMO方案。在本文中,我们看一下干扰通道的两个变体:高斯Z干扰信道和I型高斯广播-Z干扰信道。我们使用I-MMSE方法来导出这些通道的容量区域的外界。 z干扰问题是更一般的干扰信道的简化案例,其中容量区域是未知的。通过其标准形式的高斯Z干扰通道由以下方式提供:Y 1 = x 1 +√ax 2 + N 1 Y 2 = X 2 + N 2 其中NI和N2是标准高斯,并且可以被认为是独立的。我们考虑两个输入上的功率约束P I ,Iε{1,2}。对于ε(0,1),即,干扰弱,没有已知的容量区域的单字母表达式。最着名的普通外界是由于佐藤。使用Ahlswede对容量区域的限制表达式,我们使用i-mmse方法直接从限制表达式重新推出Sato的外部绑定,并显示为什么这通常不会紧张。作为I-MMSE方法的使用的另一个例子,我们检查了我最近呈现的I-MASIA播放-Z-Therfering频道,最近呈现出上差。对于这个渠道,我们表明I-MMSE方法可以导出弱干扰盒的等效,更自然和富有洞察力的外部界限。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号