异构云无线接入网中面向无线携能通信的干扰管理技术研究

项目来源

国家自然科学基金(NSFC)

项目主持人

任远

项目受资助机构

西安邮电大学

立项年度

2018

立项时间

未公开

项目编号

61801382

项目级别

国家级

研究期限

未知 / 未知

受资助金额

23.50万元

学科

信息科学-电子学与信息系统-通信理论与系统

学科代码

F-F01-F0103

基金类别

青年科学基金项目

关键词

干扰管理 ; 无线携能通信 ; 异构云无线接入网 ; 波束成形 ; 多用户分集 ; 干扰管理 ; 无线携能通信 ; 异构云无线接入网 ; 波束成形 ; 多用户分集

参与者

江帆;王军选;弥寅;王天赐;强煜玺;吴洋

参与机构

西安邮电大学

项目标书摘要:本项目面向未来无线携能通信异构云无线接入网中多层、密集组网的场景,研究网络中存在复杂泛在干扰情况下的高效干扰管理技术,以期对网络频谱效率、能量传输性能以及系统实现复杂度和反馈开销等核心性能指标进行统筹优化。研究的主要内容包括:(1)面向无线携能通信的分层干扰管理方案,优化并创新现有的机会干扰对齐方法;(2)面向无线携能通信的基于节点有限协作的干扰管理方案,通过对参考信号空间、收发波束成形向量的码本化设计,实现多场景下网络信息传输和能量传输性能的进一步优化;(3)面向无线携能通信的多目标信息能量波束成形方案,以网络能效优化为设计指标,设计鲁棒、可靠、高效的波束成形方案,实现系统传输的能效优化。

Application Abstract: Focusing on simultaneous wireless information and power transfer(SWIPT)in future heterogeneous cloud radio access network(H-CRAN)with multi-tier and dense picocell/femtocell deployments,this project proposes novel interference management schemes to effectively handle ubiquitous and complicated network interference.The project aims to jointly optimize several core performance and efficiency indicators of the system,such as spectrum efficiency,power transfer performance,implementation complexity and feedback overhead,addressing the demands of future wireless communication systems.The main targets of this project are listed as follows.(1)We propose novel SWIPT oriented hierarchical interference management schemes.By fundamentally improving the existing interference management schemes,our new schemes are tailored to the needs of H-CRANs with new properties and improved performance.(2)We consider the possibilities of limited-cooperation among access points in H-CRANs with SWIPT,and propose novel coordinated OIA to further improve system performance.Accordingly,we study the coordinated optimization and quantization strategies for the reference signal space and transceiver beamforming vectors.(3)We propose SWIPT oriented multi-objective information and energy beamforming schemes.Targeting at network energy efficiency,the beamforming schemes are designed to be robust,secure and efficient and the system transmission performance can be optimized.

项目受资助省

陕西省

项目结题报告(全文)

本项目面向未来异构云无线接入网中多层、灵活、密集组网的场景,研究网络中存在复杂泛在干扰情况下基于无线携能通信的干扰管理理论和技术,以期对网络频谱效率、能量效率和系统开销等核心性能指标进行统筹优化,完成的主要研究内容包括以下三个方面。(1)研究了面向无线携能通信的分层干扰管理方案,优化并创新现有的机会干扰对齐方法,设计了对小区内性能有觉知的干扰管理方案,利用参考信号空间指导用户调度策略的设计,实现了干扰对齐启发的机会通信方案,降低了网络中簇内与簇间干扰,有效提升了网络的和速率性能和能量收集性能;(2)研究了面向无线携能通信的基于节点有限协作的干扰管理方案,针对存在中继协作通信、小小区网络、无线传感器网络、物联网以及非正交多址接入的多类异构网络中的干扰处理,提出了基于“干扰利用”思想的传输方案设计,将干扰作为能量来源为系统中的设备充电,拓展了传统通信系统中基于“干扰消除”的解决思路,实现了多场景下网络信息传输和能量传输性能的进一步优化,有效提升了系统传输的有效性和可靠性;(3)研究了面向无线携能通信的协同优化传输方法,考虑系统功率消耗、安全速率、能量效率等多个核心优化指标,通过开展无线资源分配以及传输收发机设计,在保障用户服务质量的前提下,降低了系统时延和回程链路负载,有效提升了系统性能。总体而言,本研究创新了异构网络中多场景下面向无线携能通信的干扰管理和无线传输新方法,相关研究将有望为智能化异构云无线接入网中的无线携能传输及干扰管理提供物理层的全新解决方案。本项目在执行过程中取得了一些研究成果,超额完成了申请书中的预期目标,总共发表论文16篇,其中SCI检索文章9篇,EI检索文章7篇,申请发明专利3项;后续的成果也在不断向这些期刊杂志投稿。通过对本项目的研究,加强了和国际同行的交流,扩大了项目组在异构云无线接入网中面向无线携能通信领域的国际影响力,培养了一支具有创新能力的科研团队。

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  • 1.Secrecy Communications for Wireless-Powered Cooperative NOMA Systems: A Power Allocation and Friendly Jamming Approach

    • 关键词:
    • Cooperative communication;Jamming;Network layers;Connection outage probability;Cooperative non-orthogonal multiple access;Dynamic power allocation;Eavesdroppe;Multiple access;Non-orthogonal;Outage probability;Physical layer security;Secrecy communications;Secrecy outage probabilities
    • Ren, Yuan;Zhang, Xu;Zhang, Xuewei;Lu, Guangyue
    • 《25th IEEE Wireless Communications and Networking Conference, WCNC 2024》
    • 2024年
    • April 21, 2024 - April 24, 2024
    • Dubai, United arab emirates
    • 会议

    This paper investigates the secrecy communications of a downlink wireless-powered cooperative non-orthogonal multiple access (NOMA) system with a source node, a relay, a pair of near and far users, and an eavesdropper (Eve). A wireless-powered relay assists the transmission from the source to the far user, and the Eve intends to wiretap the confidential message transmitted to the near user. We propose a dynamic power allocation and friendly jamming based secure transmission scheme. Specifically, the optimal power allocation factors at the source node for the paired NOMA users are obtained to guarantee the perfect successive interference cancellation performance and improve the transmission reliability of the pair of NOMA users. In the direct transmission phase, the source transmits a superimposed signal to the near user and the wireless-powered relay, and the far user serves as a friendly jammer to emit artificial noise to confuse the Eve. In the cooperative transmission phase, the relay utilizes the harvested energy to assist the transmission to the far user. By applying the Gaussian-Chebyshev and Gaussian-Laguerre quadratures, closed-form expressions for the secrecy outage probability of the near user and the connection outage probability of the far user are derived. Simulation results verify the correctness of our theoretical analysis. The superiority of the proposed scheme is also demonstrated for improving the secrecy performance, as compared to the existing cooperative NOMA schemes. © 2024 IEEE.

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  • 2.Joint Resource Allocation and Relay Selection in Wireless-Powered FD Relay Networks with Imperfect CSI

    • 关键词:
    • Channel state information;Finite difference method;Resource allocation;Duplex relay;Full-duplex;Imperfect channel state information;Joint resource allocations;Outage probability;Power allocations;Relay network;Relay selection;Time and power allocations;Wireless-powered
    • Ren, Yuan;Zhang, Xuewei;Li, Hongyan;Lu, Guangyue
    • 《2023 IEEE International Conference on Communications Workshops, ICC Workshops 2023》
    • 2023年
    • May 28, 2023 - June 1, 2023
    • Rome, Italy
    • 会议

    In this paper, we investigate the robust resource allocation and relay selection in wireless-powered full-duplex (FD) multi-relay networks, where a self-energy recycling relay node is selected from N candidates to assist the transmission from the source node to the destination node. With imperfect channel state information (CSI), an optimization problem is formulated to minimize the outage probability, and the optimal values of time and power allocation coefficients are obtained. Moreover, on the basis of the optimal time and power allocation coefficients, a two-stage relay selection scheme is proposed. In addition, the analytical expressions of outage probability and diversity order are derived to characterize the performance of the proposed scheme. Finally, simulation results are provided to verify the theoretical analysis and demonstrate the effectiveness of the proposed scheme in different scenarios. © 2023 IEEE.

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  • 3.Transmission Design and Component Allocation for STAR-RIS Assisted NOMA Systems with Direct Link

    • 关键词:
    • Stars;Component allocation;Mode-switching;Multiple access;Multiple access systems;Non-orthogonal;Non-orthogonal multiple access;Outage probability;Reconfigurable;Simultaneously transmitting and reflecting reconfigurable intelligent surface;Transmission components
    • Ren, Yuan;Cai, Wenzhe;Zhang, Xuewei;Yang, Suihu
    • 《98th IEEE Vehicular Technology Conference, VTC 2023-Fall》
    • 2023年
    • October 10, 2023 - October 13, 2023
    • Hong Kong, China
    • 会议

    This paper investigates a simultaneously transmitting and reflecting reconfigurable intelligent surface (STAR-RIS) assisted downlink non-orthogonal multiple access (NOMA) system, consisting of a base station (BS), a STAR-RIS, a transmission user and a reflection user, where STAR-RIS uses mode switching protocols. Under the proposed transmission model, the base station serves the two users via the STAR-RIS and a direct link exists from the base station to the reflection user. By using the Beaulieu series, the statistical property of the Nakagami-m fading cascaded channel is characterized. Based on this, closed-from expressions of outage probability and diversity order for the reflection user and transmission user are obtained, respectively. In addition, to ensure the maximum gain in system throughput, a component allocation scheme is proposed, and the optimal allocation interval between the transmission and reflection components is obtained. Numerical results verify the theoretical analysis and demonstrate the superiority of the proposed scheme in terms of outage probability and system throughput compared to existing schemes. © 2023 IEEE.

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  • 4.Incremental Relay Inspired Mode Selection for SWIPT-Enabled NOMA Systems with Imperfect SIC and Random User Locations

    • 关键词:
    • Energy transfer;Location;Multiple access interference;Imperfect successive interference cancelation;Incremental relay;Mode-switching;Multiple access;Non-orthogonal;Non-orthogonal multiple access;Random users;Successive interference cancellations;Transmission mode;Transmission mode switching
    • Ren, Yuan;Ding, Zhouting;Zhang, Xuewei;Jiang, Fan;Wang, Junxuan
    • 《2023 IEEE/CIC International Conference on Communications in China, ICCC Workshops 2023》
    • 2023年
    • August 10, 2023 - August 12, 2023
    • Dalian, China
    • 会议

    This paper proposes transmission mode switching for the simultaneous wireless information and power transfer enabled non-orthogonal multiple access (NOMA) systems with imperfect successive interference cancellation (SIC) and random user locations. The system is composed of a base station (BS) and multiple near and far users. The location of the near and far users follows a homogeneous Poisson point process. The near users adopt incremental relay protocol and the simultaneous wireless information and power transfer enabled system can switch between cooperative and non-cooperative transmission mode based on 1-bit feedback of the far users. Due to the decoding errors of practical SIC process, imperfect SIC is considered at the near user. Under the proposed mode switching scheme, the closed-form expressions for the outage probability and system throughput are obtained considering random user locations. Numerical results demonstrate the correctness of the theoretical analysis and show that the proposed scheme outperforms the traditional cooperative and non-cooperative NOMA schemes in terms of outage and throughput performance. © 2023 IEEE.

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  • 5.Providing Video Services With Diversified Viewing Qualities: A Scalable Video Coding Based Caching and Transmission Approach

    • 关键词:
    • Finite difference method;Motion compensation;Stochastic systems;Transmissions;Video signal processing;Base layers;Cache-aided data rate;Caching scheme;Data-rate;Duplex relay;Full-duplex;Random caching;Scalable video-coding;Successful transmission probability;Transmission probabilities
    • Zhang, Xuewei;Chu, Chengli;Ren, Yuan;Wang, Junxuan
    • 《2023 IEEE/CIC International Conference on Communications in China, ICCC Workshops 2023》
    • 2023年
    • August 10, 2023 - August 12, 2023
    • Dalian, China
    • 会议

    This paper proposes a novel video caching and transmission scheme in cache and full-duplex (FD) relay assisted wireless networks, where parts of the contents to be requested are stored in the local caches of relay nodes. To provide diversified viewing qualities to multimedia users, we combine scalable video coding (SVC) with edge caching in this work. With the aid of SVC, each video is encoded into multiple layers, including a base layer (BL) and multiple enhancement layers (ELs). The super layers, each of them containing one BL and several successive ELs, are cached and transmitted to users to bring diversified viewing experiences. Under the proposed caching and transmission policies, we conduct comprehensive performance analysis. By using the tool of stochastic geometry, we obtain the analytical expressions for successful transmission probabilities (STPs) in cache hit and miss cases. After obtaining STPs, the cache-aided data rate (CADR) is derived. Simulation results validate the derived STPs and demonstrate that the proposed SVC-based random caching scheme with FD relays has great potential to increase the data transmission rate. © 2023 IEEE.

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  • 6.Secrecy Communications for Wireless-Powered Full-Duplex Cooperative NOMA Systems: A User Selection and Friendly Jamming Approach

    • 关键词:
    • Cooperative communication;Harvesting;Intelligent systems;Jamming;Transmissions;Cooperative non-orthogonal multiple access;Eavesdroppe;Effective secrecy throughput;Energy;Friendly jammer;Full-duplex;Multiple access;Non-orthogonal;Secrecy outage probabilities;Wireless-powered
    • Ren, Yuan;Ren, Jing;Zhang, Xuewei;Lu, Guangyue
    • 《2023 IEEE/CIC International Conference on Communications in China, ICCC Workshops 2023》
    • 2023年
    • August 10, 2023 - August 12, 2023
    • Dalian, China
    • 会议

    This paper studies the secure communications of a wireless-powered full-duplex cooperative non-orthogonal multiple access (CoNOMA) system with a source node, a group of near users, a far user and an external eavesdropper. In particular, the eavesdropper intends to wiretap the transmitted signals from the source. Two of the near users are picked up, served as a wireless-powered relay and a wireless friendly jammer, respectively. We propose a user selection and cooperative jamming based secure transmission scheme. Specifically, the source transmits a superimposed signal to the selected near user. The selected near user, who is employed as a relay, can harvest energy from the radio frequency signals and decode the information simultaneously. The harvested energy are then utilized to forward the signal to the far user. The jammer also collects energy from the source, and emits artificial noise by using the harvested energy to confuse the eavesdropper. Based on the proposed scheme, the closed-form expression for secrecy outage probability (SOP) and effective secrecy throughput (EST) are derived. The correctness of our theoretical analysis is verified by Monte-Carlo simulations, and the superiority of the proposed scheme in improving the system secure performance is also validated. © 2023 IEEE.

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  • 7.Prediction of mmWave BS Layout by DNN with Sub-6GHz Band Features

    • 关键词:
    • Backpropagation;Codes (symbols);Integer programming;Mapping;Millimeter waves;Personnel training;Base station layout;Channel information;Integer Program- ming;Mm waves;Network coverage;Network planning;Path loss;Planning method;Propagation characteristics;Sub-6ghz
    • Wan, Xin;Sun, Changyin;Jiang, Fan;Wang, Junxuan;Jiang, Jing
    • 《2023 IEEE International Conference on Consumer Electronics, ICCE 2023》
    • 2023年
    • January 6, 2023 - January 8, 2023
    • Las Vegas, NV, United states
    • 会议

    Due to the different propagation characteristics such as large path loss and susceptibility to blockage, the coverage of mmWave base stations (BSs) is more irregular and complex than that of the legacy wireless frequency band. As a consequence, the traditional network planning method will not satisfy the demand for mmWave system. To address this issue, this paper proposes a predicting algorithm for the layout of mmWave BSs leveraging the Sub-6GHz band. Specifically, the mapping relationship between the channel information in the Sub-6GHz band and the layout of mmWave BSs is utilized. To approximate this implicit and highly nonlinear mapping relationship, a deep neural network (DNN) is employed, leveraging the strong approximation capability of DNN. To train the DNN by the training data set, an integer programming (IP) algorithm is used as a supervisor, which obtains the BSs layout outcomes by solving an optimization problem. Moreover, to improve the generalization and scalability performance of the proposed scheme in large-scale scenarios, the candidate BS locations are clustered by environment features in addition to the wireless features. Simulation results show that the proposed algorithm can achieve a near-optimal network coverage even only Sub-6 GHz channel information is used. And the time consumption is less than 0.3% compared with the reference algorithm. © 2023 IEEE.

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  • 8.Secrecy Communication for Simultaneous Transmission and Reflection (STAR) RIS Aided Systems with Multiple Eavesdroppers

    • 关键词:
    • Network layers;Optimization;Transmissions;Aided systems;Artificial noise;Physical layer security;Reconfigurable;Reconfigurable intelligent surface;Secrecy communications;Simultaneous transmission;Simultaneous transmission and reflection;Sub-problems;Sum secrecy rate
    • Ren, Yuan;Jia, Yao;Zhang, Xuewei;Jiang, Fan;Lu, Guangyue
    • 《34th IEEE Annual International Symposium on Personal, Indoor and Mobile Radio Communications, PIMRC 2023》
    • 2023年
    • September 5, 2023 - September 8, 2023
    • Toronto, ON, Canada
    • 会议

    In this paper, we investigate the physical layer security for simultaneous transmission and reflection (STAR) reconfigurable intelligent surface (RIS) aided systems. We consider a more practical case where multiple eavesdroppers can wiretap the transmitted signals from the access point (AP) to the legitimate users located in the transmission and reflection regions, respectively. An artificial noise (AN) aided secrecy transmission scheme is then proposed, aiming to improve the secrecy performance. The transmit beamforming and AN vectors of AP as well as the transmission and reflection coefficients are jointly optimized to maximize the sum secrecy rate. To effectively solve the formulated problem, it is firstly divided into two subproblems, and then the methods of semi-definite relaxation and Sion's minimax theorem are employed to deal with the subproblems. By alternatively solving the sub-problems, the optimal solutions are obtained. Simulation results demonstrate the effectiveness of the proposed scheme compared to the conventional scheme without AN and STAR-RIS, and also bring useful insights into the design of secrecy communications in STAR-RIS aided systems with multiple eavesdroppers. © 2023 IEEE.

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  • 9.On the Discrete Phase Shifts Design for Distributed RIS-aided Downlink MIMO-NOMA Systems

    • 关键词:
    • Channel coding;Approximate expressions;Channel statistics;Discrete phase;Inter clusters;Multiple access systems;Nakagami-m fading;Non-orthogonal;Performance;Precoders;Reconfigurable
    • Yang, Shizhao;Zhang, Jun;Xia, Wenchao;Ren, Yuan;Yin, Hao;Zhu, Hongbo
    • 《2022 IEEE Wireless Communications and Networking Conference, WCNC 2022》
    • 2022年
    • April 10, 2022 - April 13, 2022
    • Austin, TX, United states
    • 会议

    In this paper, we study a distributed reconfigurable intelligent surface-aided downlink multiple-input multiple-output non-orthogonal multiple access systems with random distributed users, where the signal alignment can be achieved within the paired users by controlling discrete phase shifts. In particular, a unified precoder and decoder are provided to cancel inter-cluster interference. To evaluate the performance of proposed framework, the near and far users' channel statistics with Nakagami-m fading are derived. Further, the approximate expressions of average outage probability are obtained by utilizing the proposed channel statistics, and the corresponding diversity orders can also be obtained to acquire more insights. Finally, simulation results reveal that not only discrete phase shifts design by selecting a 3bit resolution can realize the near optimal performance but also the diversity gain can be significantly improved by increasing the number of reflection elements. © 2022 IEEE.

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  • 10.Joint Space Location Optimization and Resource Allocation for UAV-Assisted Emergency Communication System

    • 关键词:
    • Antennas;Location;Particle swarm optimization (PSO);Unmanned aerial vehicles (UAV);Vehicle to vehicle communications;Aerial vehicle;Emergency communication;Location optimization;Multiple access;Non-orthogonal;Non-orthogonal multiple access;Resources allocation;Space location;Space location optimization;Unmanned aerial vehicle relaying
    • Ren, Yuan;Cao, Xinxin;Zhang, Xuewei;Jiang, Fan;Lu, Guangyue
    • 《96th IEEE Vehicular Technology Conference, VTC 2022-Fall 2022》
    • 2022年
    • September 26, 2022 - September 29, 2022
    • London, United kingdom
    • 会议

    In the emergency communication scenario, how to quickly collect ground users (GUs) information and carry out reliable transmission has become a difficult point. In this paper, we consider the unmanned aerial vehicle (UAV)-assisted emergency communication system based on uplink non-orthogonal multiple access (NOMA). For the considered system, an alternative optimization scheme for the space location of UAV and resource allocation is proposed to maximize the uplink throughput from the UAV to base station (BS). The original joint optimization problem turns out to be non-convex and is divided into two sub-problems. Firstly, we optimize the space location of UAV by using particle swarm optimization algorithm, which has significant advantages in solving the optimal space location problem. Secondly, by using the tools of the first-order Taylor expansion and successive convex approximation, we jointly optimize the bandwidth allocation coefficients and transmit powers of GUs to maximize the throughput from the UAV to BS. Finally, simulation results verify our proposed scheme is superior in terms of the throughput for UAV-assisted emergency communication system compared with the existing scheme and the baseline schemes.
    © 2022 IEEE.

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