To meet the booming development of diversified services and new applications in the future, the fifth-generation mobile conmmnication system (5G) has arisen. Resources are increasingly scarce in the @namic time-vary...To meet the booming development of diversified services and new applications in the future, the fifth-generation mobile conmmnication system (5G) has arisen. Resources are increasingly scarce in the @namic time-varying of 5G networks. Allocating resources effectively and ensuring quality of service (QoS) requirements of multi-seiwices come to be a research focus. In this paper, we utilize effective capacity to build a utility function with multi-QoS metrics, including rate, delay bound and packet loss ratio. Taking advantage of opportunity cost (OC), we also propose a multi-QoS guaranteed resource allocation algm'ithm for multi-services to consider the future condition of system. In the algorithm, according to different business characteristics and the theory of OC, we propose different selection conditions for QoS users and best effort (BE) users to choose more reasonable resources. Finally, simulation results show that our proposed algorithm achieves superior system utility and relatively better fairness in multi-service scenarios.展开更多
针对异构认知无线电网络(cognitive radio networks,CRN)共存的情况,提出了FQMAC(fair and Qo S guaranted MAC)协议。采用信标帧同步,将时间划分为信标周期,在信标周期内分别进行信道感知、信道协商和数据传输;将被其他异构网络的次用...针对异构认知无线电网络(cognitive radio networks,CRN)共存的情况,提出了FQMAC(fair and Qo S guaranted MAC)协议。采用信标帧同步,将时间划分为信标周期,在信标周期内分别进行信道感知、信道协商和数据传输;将被其他异构网络的次用户(secondary user,SU)占用的信道也作为可用信道。根据信道质量将所有可用信道划分等级,根据次用户业务特征将次用户划分等级。等级高的次用户优先预约等级高的信道。对信道协商阶段的合理时长通过建立马尔可夫链模型进行了理论分析,得出其合理时长的理论值。仿真实验结果证明FQMAC可以较好地提升网络的吞吐量,保障了用户的Qo S(quality of service),并实现了较好的公平性。展开更多
In this paper,an expression for the user’s achievable data rate in the multi-user multiple-input multiple-output(MU-MIMO)system with limited feedback(LF)of channel state information(CSI)is derived.The energy efficien...In this paper,an expression for the user’s achievable data rate in the multi-user multiple-input multiple-output(MU-MIMO)system with limited feedback(LF)of channel state information(CSI)is derived.The energy efficiency(EE)is optimized through power allocation under quality of service(QoS)constraints.Based on mathematical equivalence and Lagrange multiplier approach,an energy-efficient unequal power allocation(EEUPA)with LF of CSI scheme is proposed.The simulation results show that as the number of transmitting antennas increases,the EE also increases which is promising for the next generation wireless communication networks.Moreover,it can be seen that the QoS requirement has an effect on the EE of the system.Ultimately,the proposed EEUPA with LF of CSI algorithm performs better than the existing energy-efficient equal power allocation(EEEPA)with LF of CSI schemes.展开更多
为了满足非正交多址接入(non-orthogonal multiple access,NOMA)系统下行链路的一个多用户集群中不同用户的业务需求,提出了具有用户服务质量(quality of service,QoS)保证与最大最小(max-min)公平性准则的功率分配算法。针对不同用户需...为了满足非正交多址接入(non-orthogonal multiple access,NOMA)系统下行链路的一个多用户集群中不同用户的业务需求,提出了具有用户服务质量(quality of service,QoS)保证与最大最小(max-min)公平性准则的功率分配算法。针对不同用户需求,制定了在基站发射总功率与用户满足的最低速率要求约束下的maxmin公平准则的优化问题模型,并利用二分法与Karush-Kuhn-Tucker(KKT)条件对复杂的非凸问题进行求解。仿真结果表明,该功率分配算法既保证了用户的QoS要求又满足了用户的公平性准则,并且NOMA系统的吞吐量相较于传统多址接入系统的吞吐量有较大的提升。展开更多
基金supported by the National Science and Technology Major Project under Grant No.2016ZX03001009-003the Nature and Science Foundation of China under Grants Nos.61471068111 Project of China B16006
文摘To meet the booming development of diversified services and new applications in the future, the fifth-generation mobile conmmnication system (5G) has arisen. Resources are increasingly scarce in the @namic time-varying of 5G networks. Allocating resources effectively and ensuring quality of service (QoS) requirements of multi-seiwices come to be a research focus. In this paper, we utilize effective capacity to build a utility function with multi-QoS metrics, including rate, delay bound and packet loss ratio. Taking advantage of opportunity cost (OC), we also propose a multi-QoS guaranteed resource allocation algm'ithm for multi-services to consider the future condition of system. In the algorithm, according to different business characteristics and the theory of OC, we propose different selection conditions for QoS users and best effort (BE) users to choose more reasonable resources. Finally, simulation results show that our proposed algorithm achieves superior system utility and relatively better fairness in multi-service scenarios.
文摘针对异构认知无线电网络(cognitive radio networks,CRN)共存的情况,提出了FQMAC(fair and Qo S guaranted MAC)协议。采用信标帧同步,将时间划分为信标周期,在信标周期内分别进行信道感知、信道协商和数据传输;将被其他异构网络的次用户(secondary user,SU)占用的信道也作为可用信道。根据信道质量将所有可用信道划分等级,根据次用户业务特征将次用户划分等级。等级高的次用户优先预约等级高的信道。对信道协商阶段的合理时长通过建立马尔可夫链模型进行了理论分析,得出其合理时长的理论值。仿真实验结果证明FQMAC可以较好地提升网络的吞吐量,保障了用户的Qo S(quality of service),并实现了较好的公平性。
基金supported in part by the Postgraduate Research & Practice Innovation Program of Jiangsu Province (KYCX18_0883)in part by the Key Technologies R & D Program of Jiangsu Province (BE2018733)in part by Open Research Fund of Jiangsu Engineering Research Center of Communication and Network Technology, NJUPT
文摘In this paper,an expression for the user’s achievable data rate in the multi-user multiple-input multiple-output(MU-MIMO)system with limited feedback(LF)of channel state information(CSI)is derived.The energy efficiency(EE)is optimized through power allocation under quality of service(QoS)constraints.Based on mathematical equivalence and Lagrange multiplier approach,an energy-efficient unequal power allocation(EEUPA)with LF of CSI scheme is proposed.The simulation results show that as the number of transmitting antennas increases,the EE also increases which is promising for the next generation wireless communication networks.Moreover,it can be seen that the QoS requirement has an effect on the EE of the system.Ultimately,the proposed EEUPA with LF of CSI algorithm performs better than the existing energy-efficient equal power allocation(EEEPA)with LF of CSI schemes.
文摘为了满足非正交多址接入(non-orthogonal multiple access,NOMA)系统下行链路的一个多用户集群中不同用户的业务需求,提出了具有用户服务质量(quality of service,QoS)保证与最大最小(max-min)公平性准则的功率分配算法。针对不同用户需求,制定了在基站发射总功率与用户满足的最低速率要求约束下的maxmin公平准则的优化问题模型,并利用二分法与Karush-Kuhn-Tucker(KKT)条件对复杂的非凸问题进行求解。仿真结果表明,该功率分配算法既保证了用户的QoS要求又满足了用户的公平性准则,并且NOMA系统的吞吐量相较于传统多址接入系统的吞吐量有较大的提升。