基于FBC的能量收集无线自组网qos驱动的最优功率分配

Xi Zhang, Jingqing Wang, H. Poor
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摘要

在过去的几十年里,为了支持延迟有界的5G多媒体无线服务,已经提出并研究了统计延迟有界服务质量(QoS)技术。此外,基于能量收集(EH)的系统使移动设备能够从各种外部来源收集能量,已经设计用于解决能源短缺问题。研究人员最近将基于EH的系统与短包通信集成在一起,因为它们具有小有效载荷和低延迟的潜在优势,可以支持可靠的多媒体数据传输。在低时延5G多媒体无线业务的短时延要求下,采用传统的Shannon容量对误码率有界的非渐近状态下的数据速率进行建模是不理想的。因此,研究人员提出了非渐近状态下的有限无线数据传输速率。然而,由于在非渐近区域分析有效容量最大化问题的复杂性,在统计延迟有界和错误率有界QoS约束下确定有效容量最大化问题的凸性具有挑战性。为了克服这些挑战,我们在接下来的步骤中设计了基于EH的跨层优化方案,以支持有限块长度体系中统计延迟有界和错误率有界的QoS要求。首先,我们描述了有限块长度编码(FBC)下基于EH的系统模型。其次,我们推导并分析了有限区块长度下EH方案的/spl epsilon/-有效容量最大化问题的凸性。最后,我们进行了几次仿真评估,验证了在有限块长度体制下统计延迟有界和错误率有界QoS约束下我们提出的EH方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal QoS-Driven Power Allocation for Energy Harvesting Wireless Ad-Hoc Networks Using FBC
In the last few decades, the statistical delay- bounded quality-of-service (QoS) technique has been proposed and investigated to support the delay-bounded 5G multimedia wireless services In addition, the energy harvesting (EH) based systems, which enable the mobile devices to harvest energy from various external sources, have been designed to address the energy scarcity problem. Researchers have recently integrated EH based systems with short-packet communications for their potential benefits of small payloads and low latency to support reliable multimedia data transmissions. Under the short delay requirements for the low-latency 5G multimedia wireless services, it is not ideal to apply the traditional Shannon capacity for modeling the data rate under the error-rate bounded in the non- asymptotic regime. Accordingly, researchers have developed the finite wireless data transmission rate in the non-asymptotic regime. However, it is challenging to determine the convexity of the effective-capacity maximization problem subject to the statistical delay-bounded and error-rate bounded QoS constraints due to the complexity of analyzing the maximization problem in the non- asymptotic regime. To overcome these challenges, we design the EH based cross- layer optimization scheme in supporting the statistical delay-bounded and error-rate bounded QoS requirements in the finite blocklength regime in the following steps. First, we characterize the EH based system models under finite blocklength coding (FBC). Second, we derive and analyze the convexity of the /spl epsilon/-effective capacity maximization problem for our proposed EH scheme in the finite blocklength regime. Finally, we conduct several simulation evaluations which validate our proposed EH scheme under the statistical delaybounded and error-rate bounded QoS constraints in the finite blocklength regime.
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