Statistical QoS-Driven Energy-Efficiency optimization for URLLC Over 5G Mobile Wireless Networks in the Finite Blocklength Regime

Xi Zhang, Jingqing Wang, H. Poor
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引用次数: 8

Abstract

To support delay-bounded multimedia services over 5G mobile wireless networks, the statistical quality-of-service (QoS) technique has been designed to jointly guarantee the statistically delay-bounded video transmissions over different time-varying wireless channels, simultaneously. On the other hand, with stringent delay-bounded and error-rate-bounded QoS requirements for 5G applications, the traditional Shannon capacity is no longer appropriate to characterize the maximum achievable data transmission rate given the block error probability. Towards this end, the finite blocklength coding (FBC) technique has been developed to support the new type of Ultra-Reliable and Low Latency Communications (URLLC). However, since the existing approximations of the transmission rate are neither convex nor concave in terms of the transmit power in the finite blocklength regime, it is challenging to formulate and solve the resource allocation optimization problems for URLLC over various different wireless fading channels while guaranteeing the statistical delay-bounded QoS requirements. To overcome the aforementioned problems, we propose the energy efficient FBC based cross-layer design while guaranteeing the statistical delay-bounded QoS requirements for URLLC. In particular, we establish and analyze FBC based wireless network models. By taking into account the statistical delay-bounded QoS constraints, we formulate and solve the ε-effective energy efficiency optimization problem using FBC. Also conducted is a set of simulations which validate and evaluate our proposed FBC scheme under the statistical delay-bounded QoS constraints for URLLC.
基于统计qos驱动的5G移动无线网络有限块长度下URLLC能效优化
为了在5G移动无线网络上支持时延有界的多媒体业务,设计了统计服务质量(QoS)技术,共同保证在不同时变无线信道上同时实现时延有界的视频传输。另一方面,由于5G应用对时延有界和错误率有界的QoS要求严格,传统的香农容量不再适合描述给定块错误概率的最大可实现数据传输速率。为此,开发了有限块长度编码(FBC)技术来支持新型的超可靠和低延迟通信(URLLC)。然而,由于现有的传输速率近似在有限块长范围内的传输功率既不凸也不凹,因此在保证统计延迟有界的QoS要求的情况下,制定和解决各种不同无线衰落信道上URLLC的资源分配优化问题是一项挑战。为了克服上述问题,我们提出了基于FBC的节能跨层设计,同时保证了URLLC的统计延迟有界QoS要求。特别地,我们建立并分析了基于FBC的无线网络模型。在考虑统计延迟有界QoS约束的基础上,提出并求解了基于FBC的ε有效能效优化问题。在统计延迟有界的QoS约束下,对我们提出的FBC方案进行了仿真验证和评价。
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