Performance enhancement scheme for IRS-assisted cognitive backscatter communication network
Papers|更新时间:2024-06-05
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Performance enhancement scheme for IRS-assisted cognitive backscatter communication network
Journal on CommunicationsVol. 42, Issue 12, Pages: 172-181(2021)
作者机构:
南京邮电大学宽带无线通信与传感网技术教育部重点实验室,江苏 南京 210003
作者简介:
基金信息:
The National Natural Science Foundation of China(61901229);Postdoctoral Research Funding Program of Jiangsu Province(SBH20002);Postdoctoral Research Funding Program of Jiangsu Province(SBH20003);The Natural Science Foundation of Jiangsu Province(BK20200759);The Natural Science Research of Higher Education Institutions of Jiangsu Province(19KJB510009);Research Startup Fund-ing Program of Nanjing University of Posts and Telecommunications(219012);Research Startup Fund-ing Program of Nanjing University of Posts and Telecommunications(219013)
Bin LYU, Yi CAO, Jian LI, et al. Performance enhancement scheme for IRS-assisted cognitive backscatter communication network[J]. Journal on Communications, 2021, 42(12): 172-181.
DOI:
Bin LYU, Yi CAO, Jian LI, et al. Performance enhancement scheme for IRS-assisted cognitive backscatter communication network[J]. Journal on Communications, 2021, 42(12): 172-181. DOI: 10.11959/j.issn.1000-436x.2021233.
Performance enhancement scheme for IRS-assisted cognitive backscatter communication network
为解决认知无线电网络(CRN)的可持续供电问题和改善其通信效率,面向Overlay场景,提出了智能反射面(IRS)辅助的高效多模式融合传输方案。特别地,次发射机(ST)可以在反向散射通信(BackCom)和收集再传输(HTT)模式间切换,IRS 被用以提升 ST 的能量采集、信息被动反射和信息主动传输效率。为了最大化系统和速率,定义了关于IRS相移、时隙调度和发射功率的联合优化问题。由于所定义的问题是非凸的,因此通过设计基于块坐标下降(BCD)的迭代优化算法获得了次优解。仿真结果表明,相较于参照方案,所提方案最多可将系统和速率提高200%。
Abstract
In order to achieve the self-sustainable cognitive radio network (CRN) and improve its communication efficiency, an efficient multi-mode switching scheme assisted by the intelligent reflecting surface (IRS) for the overlay scenario was proposed.In particular, the secondary transmitter (ST) could work in either backscatter communication (BackCom) mode or harvest-then-transmit (HTT) mode.The IRS was exploited to enhance the energy harvesting, information backscattering, and information transmission efficiencies at the ST.To maximize the system sum-rate, an optimization problem about the phase shirts at the IRS, time scheduling, and power allocation was formulated.Since the formulated problem was non-convex, an efficient block coordinate descent (BCD) based algorithm was proposed to achieve the sub-optimal solution.Simulation results confirm that the proposed scheme can achieve up to 200% sum-rate gain over the benchmark schemes.
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