为了提高大型无线传感器网络的稳定性,延长网络出现首个节点的死亡时间,提出一种基于簇结构稳定的分环多跳路由算法CBSM(Cluster structure stability based Sub-ring algorithm over multi-hop routing).CBSM算法将监测区域划分为许多...为了提高大型无线传感器网络的稳定性,延长网络出现首个节点的死亡时间,提出一种基于簇结构稳定的分环多跳路由算法CBSM(Cluster structure stability based Sub-ring algorithm over multi-hop routing).CBSM算法将监测区域划分为许多固定小区,采用基于节点剩余能量和节点位置的代价函数选择簇头.仿真结果表明,基于簇结构稳定的多跳路由算法,能有效延长网络出现首个节点死亡的时间,提高整个网络的稳定性.展开更多
Coordinated Multi-Point(CoMP) transmission is put forward in the Long Term Evolution-Advanced(LTE-A) system to improve both average and cell-edge throughput. In this paper, downlink CoMP(DL-CoMP) resource allocation s...Coordinated Multi-Point(CoMP) transmission is put forward in the Long Term Evolution-Advanced(LTE-A) system to improve both average and cell-edge throughput. In this paper, downlink CoMP(DL-CoMP) resource allocation scheme based on limited backhaul capacity is designed to take a tradeoff between system throughput and fairness. Resource allocation of proportional fairness based on querying table is proposed. It updates RB allocation matrix when center cell has completed resource allocation and delivers the matrix to adjacent cells for their own RB allocation. Furthermore, Water-Filling algorithm based on adaptive water level(AWF) is used for power allocation to boost system fairness. In this paper, performance of downlink CoMP based on limited backhaul capacity and single-point transmission is contrasted, and results indicate that CoMP dramatically enhances system throughput and spectral efficiency. Moreover, AWF power allocation scheme obtains higher system fairness than conventional Water-Filling(WF) algorithm, although it gets slightly lower system throughput. Finally, this paper discussed that the system performance is partially affected by the percentage of CoMP resource.展开更多
文摘为了提高大型无线传感器网络的稳定性,延长网络出现首个节点的死亡时间,提出一种基于簇结构稳定的分环多跳路由算法CBSM(Cluster structure stability based Sub-ring algorithm over multi-hop routing).CBSM算法将监测区域划分为许多固定小区,采用基于节点剩余能量和节点位置的代价函数选择簇头.仿真结果表明,基于簇结构稳定的多跳路由算法,能有效延长网络出现首个节点死亡的时间,提高整个网络的稳定性.
基金supported in part by the National Science and Technology Major Project of China under Grant 2013ZX03001024-003partially supported by the National Natural Science Foundation of China No.61201013
文摘Coordinated Multi-Point(CoMP) transmission is put forward in the Long Term Evolution-Advanced(LTE-A) system to improve both average and cell-edge throughput. In this paper, downlink CoMP(DL-CoMP) resource allocation scheme based on limited backhaul capacity is designed to take a tradeoff between system throughput and fairness. Resource allocation of proportional fairness based on querying table is proposed. It updates RB allocation matrix when center cell has completed resource allocation and delivers the matrix to adjacent cells for their own RB allocation. Furthermore, Water-Filling algorithm based on adaptive water level(AWF) is used for power allocation to boost system fairness. In this paper, performance of downlink CoMP based on limited backhaul capacity and single-point transmission is contrasted, and results indicate that CoMP dramatically enhances system throughput and spectral efficiency. Moreover, AWF power allocation scheme obtains higher system fairness than conventional Water-Filling(WF) algorithm, although it gets slightly lower system throughput. Finally, this paper discussed that the system performance is partially affected by the percentage of CoMP resource.