Achievable rate region of gaussian broadcast channel with finite input alphabet and quantized output

S. Chandrasekaran, S. K. Mohammed, A. Chockalingam
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引用次数: 1

Abstract

In this paper, we study the achievable rate region of two-user Gaussian broadcast channel (GBC) when the messages to be transmitted to both the users take values from finite signal sets and the received signal is quantized at both the users. We refer to this channel as quantized broadcast channel (QBC). We first observe that the capacity region defined for a GBC does not carry over as such to QBC. Also, we show that the optimal decoding scheme for GBC (i.e., high SNR user doing successive decoding and low SNR user decoding its message alone) is not optimal for QBC. We then propose an achievable rate region for QBC based on two different schemes. We present achievable rate region results for the case of uniform quantization at the receivers. We find that rotation of one of the user's input alphabet with respect to the other user's alphabet marginally enlarges the achievable rate region of QBC when almost equal powers are allotted to both the users.
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有限输入字母和量化输出的高斯广播信道的可达速率区域
本文研究了两用户高斯广播信道(GBC)的可达速率区域,即发送给两个用户的消息均取有限信号集的值,接收到的信号在两个用户处都进行了量化处理。我们把这个信道称为量化广播信道(QBC)。我们首先观察到,为GBC定义的容量区域不会像这样转移到QBC。此外,我们还证明了GBC的最佳解码方案(即高信噪比用户进行连续解码,低信噪比用户单独解码其消息)对于QBC不是最优的。然后,我们提出了一个基于两种不同方案的QBC可实现的速率区域。我们给出了在接收端均匀量化的情况下可实现的速率区域结果。我们发现,当分配给两个用户几乎相等的权力时,其中一个用户的输入字母相对于另一个用户的输入字母的旋转会略微扩大QBC的可实现速率区域。
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