This paper provides a complete characterization of the information-energy region of simultaneous information and energy transmission over an additive white Gaussian noise channel in the finite block-length regime with finite sets of channel input symbols. Given a set of channel input symbols, the converse characterizes the tuples of information rate, energy rate, decoding error probability (DEP) and energy outage probability (EOP) that cannot be achieved by any code built using the given set of channel inputs. A novel method for constructing a family of codes that respects the given information rate, energy rate, DEP and EOP requirements is proposed. The achievable region identifies the set of tuples of information rate, energy rate, DEP and EOP that can be achieved by the constructed family of codes. The proposed construction proves to be information rate, energy rate, and EOP optimal. The achieved DEP is, however, sub-optimal, owing to the choice of the decoding regions made during the construction.
翻译:本文完整地描述在有限区段系统内、带一定系列频道输入符号的白色白高斯聚变噪声中,同时信息和能量传输的信息-能源区域。根据一套频道输入符号,反向描述信息速率、能量率、解码错误概率和能量流出概率等无法通过使用特定频道输入集构建的任何代码实现的信息-能源区域。提出了一套尊重特定信息速率、能量率、DEP和EOP要求的新型代码构建方法。可实现区域确定了由构建的代码系列所能达到的信息速率、能量率、DEP和EOP的图例。拟议的构造证明是信息速率、能量率和EOP的最佳。然而,由于在施工期间选择解码区域,实现的DEP是次优化的。但是,由于选择了在施工期间进行的解码区域,所实现的DEP是次优化的。