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The Distortions Region of Broadcasting Correlated Gaussians and Asymmetric Data Transmission Over a Gaussian BC

机译:广播相关高斯的扭曲区域和高斯BC上的不对称数据传输

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A memoryless bivariate Gaussian source is transmitted to a pair of receivers over an average-power limited bandwidth-matched Gaussian broadcast channel. Based on their observations, Receiver 1 reconstructs the first source component while Receiver 2 reconstructs the second source component both seeking to minimize the expected squared-error distortions. In addition to the source transmission digital information at a specified rate should be conveyed reliably to Receiver 1-the "stronger" receiver. Given the message rate we characterize the achievable distortions region. Specifically, there is an ${sf SNR}$ -threshold below which Dirty Paper coding of the digital information against a linear combination of the source components is optimal. The threshold is a function of the digital information rate, the source correlation and the distortion at the "stronger" receiver. Above this threshold a Dirty Paper coding extension of the Tian-Diggavi-Shamai hybrid scheme is shown to be optimal.
机译:无记忆双变高斯源以平均功率有限带宽匹配的高斯广播频道发送到一对接收器。基于其观察,接收器1重构第一源分量,而接收器2重建第二源组件,两者都试图最小化预期的平方误差失真。除了以指定速率以指定速率的源传输数字信息,应可靠地传送到接收器1-“更强”的接收器。鉴于消息率我们表征可实现的扭曲区域。具体而言,下面有一个$ { sf snr} $ -threshold,其针对源组件的线性组合的数字信息的脏纸编码是最佳的。阈值是数字信息速率,源相关性和“强”接收器处的失真的函数。在此阈值之上,Tian-Diggavi-Shamai混合体方案的脏纸编码延伸显示为最佳。

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