Decentralized simultaneous energy and information transmission in multiple access channels

Selma Belhadj Amor, S. Perlaza
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引用次数: 4

Abstract

In this paper, the fundamental limits of decentralized simultaneous information and energy transmission in the two-user Gaussian multiple access channel (G-MAC) are fully characterized for the case in which a minimum energy transmission rate b is required for successful decoding. All the achievable and stable information-energy transmission rate tuples (R1, R2, B) are identified. R1 and R2 are in bits per channel use measured at the receiver and B is in energy units per channel use measured at an energy-harvester (EH). Stability is considered in the sense of an η-Nash equilibrium (NE), with η ≥ 0 arbitrarily small. The main result consists of the full characterization of the η-NE information-energy region, i.e., the set of information-energy rate triplets (R1, R2, B) that are achievable and stable in the G-MAC when: (a) both transmitters autonomously and independently tune their own transmit configurations seeking to maximize their own information transmission rates, R1 and R2 respectively; (b) both transmitters jointly guarantee an energy transmission rate B at the EH, such that B ≥ b. Therefore, any rate triplet outside the η-NE region is not stable as there always exists one transmitter able to increase by at least η bits per channel use its own information transmission rate by updating its own transmit configuration.
分散的能量和信息同时传输在多个访问通道
本文充分表征了双用户高斯多址信道(G-MAC)中分散同时信息和能量传输的基本限制,即成功解码所需的最小能量传输速率b。确定了所有可实现且稳定的信息能量传输速率元组(R1, R2, B)。R1和R2是在接收器上测量到的每通道使用的比特,B是在能量采集器(EH)上测量到的每通道使用的能量单位。稳定性被认为是在η-纳什平衡(NE)的意义上,η≥0任意小。主要结果包括对η-NE信息-能量区域的完整表征,即在G-MAC中可以实现且稳定的信息-能量速率三元组(R1, R2, B),当:(a)发射机各自自主和独立地调整自己的发射配置,分别寻求最大化自己的信息传输速率R1和R2;(b)两个发射机共同保证在EH处的能量传输速率b,使得b≥b。因此,在η- ne区域之外的任何速率三重态都是不稳定的,因为总是存在一个发射机能够通过更新自己的发射配置来使用自己的信息传输速率每信道至少增加η比特。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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