针对一对主用户和M对次用户构成的认知无线电网络(cognitive radio network,CRN),研究了非线性能量收集的认知无线电网络的次用户吞吐量最大化问题。具体来说,对于考虑次用户发射器(secondary transmitter,ST)电路功率的情况,首先将主...针对一对主用户和M对次用户构成的认知无线电网络(cognitive radio network,CRN),研究了非线性能量收集的认知无线电网络的次用户吞吐量最大化问题。具体来说,对于考虑次用户发射器(secondary transmitter,ST)电路功率的情况,首先将主用户吞吐量需求下的次用户吞吐量最大化(secondary throughput maximization,STM)问题建模为一个非线性优化问题,然后将它转化成凸优化问题,最后提出一种联合使用黄金分割和二分法的低复杂度算法,获得主用户发射器(primary transmitter,PT)能量传输和次用户信息传输的最优时间分配以及主用户发射器的最优发射功率。对于忽略次用户发射器电路功率的情况,首先证明次用户吞吐量最大化问题的凸特性,然后设计了一个更高效的算法来求解。仿真结果表明,相比等时间分配方案和链路增益优先级方案,提出的设计算法能显著提升次用户吞吐量。展开更多
研究了基站功率连续可调的飞蜂网络(femtocell networks)中最大化最小飞蜂窝吞吐量问题。提出一种轮循优化算法JPCA(joint power and channel allocation),对功率控制和信道分配进行优化。首先在确定的信道分配方案基础上,利用求解线性...研究了基站功率连续可调的飞蜂网络(femtocell networks)中最大化最小飞蜂窝吞吐量问题。提出一种轮循优化算法JPCA(joint power and channel allocation),对功率控制和信道分配进行优化。首先在确定的信道分配方案基础上,利用求解线性分式规划问题优化功率控制;继而,在所得的功率分配方案基础上,利用贪婪策略优化信道分配;依次轮循,直至收敛于某一最优解。模拟实验表明,同目前常用的资源分配算法相比,JPCA算法可大幅提升网络性能。展开更多
This paper presents a link allocation and rate assignment algorithm for multi-channel wireless networks. The objective is to reduce network con-flicts and guarantee the fairness among links. We first design a new netw...This paper presents a link allocation and rate assignment algorithm for multi-channel wireless networks. The objective is to reduce network con-flicts and guarantee the fairness among links. We first design a new network model. With this net-work model, the multi-channel wireless network is divided into several subnets according to the num-ber of channels. Based on this, we present a link allocation algorithm with time complexity O(l^2)to al-locate all links to subnets. This link allocation algo-rithm adopts conflict matrix to minimize the network contention factor. After all links are allocated to subnets, the rate assignment algorithm to maximize a fairness utility in each subnet is presented. The rate assignment algorithm adopts a near-optirml al-gorithm based on dual decomposition and realizes in a distributed way. Simulation results demonstrate that, compared with IEEE 802.11b and slotted see-ded channel hopping algorithm, our algorithm de-creases network conflicts and improves the net-work throughput significantly.展开更多
文摘研究了基站功率连续可调的飞蜂网络(femtocell networks)中最大化最小飞蜂窝吞吐量问题。提出一种轮循优化算法JPCA(joint power and channel allocation),对功率控制和信道分配进行优化。首先在确定的信道分配方案基础上,利用求解线性分式规划问题优化功率控制;继而,在所得的功率分配方案基础上,利用贪婪策略优化信道分配;依次轮循,直至收敛于某一最优解。模拟实验表明,同目前常用的资源分配算法相比,JPCA算法可大幅提升网络性能。
基金This work was supported by the National Natural Science Foundation of China under Cxant No. 60902010 the Research Fund of State Key Laboratory of Mobile Communications un-der Crant No. 2012A03.
文摘This paper presents a link allocation and rate assignment algorithm for multi-channel wireless networks. The objective is to reduce network con-flicts and guarantee the fairness among links. We first design a new network model. With this net-work model, the multi-channel wireless network is divided into several subnets according to the num-ber of channels. Based on this, we present a link allocation algorithm with time complexity O(l^2)to al-locate all links to subnets. This link allocation algo-rithm adopts conflict matrix to minimize the network contention factor. After all links are allocated to subnets, the rate assignment algorithm to maximize a fairness utility in each subnet is presented. The rate assignment algorithm adopts a near-optirml al-gorithm based on dual decomposition and realizes in a distributed way. Simulation results demonstrate that, compared with IEEE 802.11b and slotted see-ded channel hopping algorithm, our algorithm de-creases network conflicts and improves the net-work throughput significantly.