In this paper, the fundamental limits on the rates at which information and energy can be simultaneously transmitted over an additive white Gaussian noise channel are studied under the following assumptions: $(a)$ the channel is memoryless; $(b)$ the number of channel input symbols (constellation size) and block length are finite; and $(c)$ the decoding error probability (DEP) and the energy outage probability (EOP) are bounded away from zero. In particular, it is shown that the limits on the maximum information and energy transmission rates; and the minimum DEP and EOP, are essentially set by the type induced by the code used to perform the transmission. That is, the empirical frequency with which each channel input symbol appears in the codewords. Using this observation, guidelines for optimal constellation design for simultaneous energy and information transmission are presented.
翻译:在本文中,根据以下假设,研究了对可同时通过添加的白色高斯噪声频道传送信息和能量的速度的基本限制:频道无记忆的(a)美元;频道输入符号(星座大小)和区块长度的(b)美元是有限的;解码误差概率(DEP)和能量流出概率(EOP)的(c)美元是从零的捆绑起来的。具体地说,显示关于最大信息和能量传输率的限制;最低限度的DEP和EOP基本上由用于传输的代码所引出的类型决定,即每个频道输入符号在代码中的经验频率。利用这一观察,提出了同步能源和信息传输的最佳星座设计指南。