期刊文献+

无线Ad hoc网络中基于0-1优化的两步骤资源分配算法 被引量:5

Zero-One Integer Programming Based Optimization Model and Two-phase Resource Optimization Algorithm for Wireless Ad hoc Networks
下载PDF
导出
摘要 为了解决无线Ad hoc网络中节点性能随节点个数增加而下降的问题,利用多射频多信道技术(MR-MC)进行资源分配以及减少网络干扰量已成为优化无线网络性能的重要技术手段。在此基础上,提出了一种基于0-1规划的网络优化模型和两步骤资源分配算法TBCA&LS(Tree Based Channel Assignment&Link Scheduling)。该算法利用分簇重组网络结构,通过分析相邻链路干扰关系构建0-1优化模型,并在此基础上执行将信道分配和链路调度结合的资源分配算法,减少相邻链路冲突,增加并行传输量,进而达到提升网络吞吐量、优化网络资源分配的目的。最后,在Matlab仿真软件中执行两步骤资源分配算法,实验结果表明,与对比算法CCAS和仅利用信道分配的算法相比,所提算法可以有效优化网络性能。 In order to solve the problem that the capability of wireless Ad Hoc networks will decrease with the increase of the number of nodes,the use of multi-radio multi-channel(MR-MC)to distribute resources and reduce the interference among nodes has become an important technical for the wireless network performance optimization.Therefore,we proposed a zero-one integer programming network optimization model and a tree-based channel assignment & link scheduling approach to make that the limited available channels can optimally work and ensure higher capacity increase in wireless Ad hoc networks.Then,we implemented the algorithms in Matlab7.0.The results show that our method performs much better than CCAS and the algorithm which only use channel assignment.
出处 《计算机科学》 CSCD 北大核心 2017年第1期103-108,122,共7页 Computer Science
基金 国家质检公益性行业专项课题(2015424041)资助
关键词 0-l规划 网络优化 资源分配 信道分配 链路调度 0-1 integer programming Network optimization Resource allocation Channel assignment Link scheduling
  • 相关文献

参考文献7

二级参考文献96

  • 1Gupta P, Kumar P R. The capacity of wireless networks[J]. IEEE Transactions on Information Theory, 2000, 46 (2): 388-404.
  • 2Kodialam M, Nandagopal T, Characterizing the capacity region in multi-radio multi-channel wireless mesh networks[C]//ACM MobiCorm 2005 : 73-87.
  • 3Alicherry R B M, Li L. Joint channel assignment and routing for throughput optimization in multi-radio wireless mesh networks [C]//ACM MobiCom. 2005 : 58-72.
  • 4Rad A H M,Wong V W S. Joint channel allocation, interface assignment and MAC design for multi-channel wireless mesh networks[C]//IEEE Infocorm 2007 : 1469-1480.
  • 5Meng X, Wong S H Y, Yuan Y, et al. Characterizing flows in large wireless data networks[C]//ACM MobiCom. 2004:174-186.
  • 6Brar G, Blough P M, Santi P. Computationally efficient scheduling with the physical interference model for throughput improvement in wireless mesh networks[C]//ACM MobiCom. 2006 : 2-13.
  • 7Dai L, Xue Y, Chang B, et al. Integrating traffic estimation and routing optimization for multiradio multi-channel wireless mesh networks[C] //IEEE InfocorrL 2008: 71-83.
  • 8Song Yang, Zhang Chi, Fang Yu-guang. Harnessing Traffic Uncertainties in Wireless Mesh Networks-A Stochastic Optimization Approach[J].Mobile Network, 2009,14: 124-133.
  • 9Wang W, Wang Y, Li X-Y, et al. Efficient Interference Aware TDMA Link Scheduling for Static Wtreless Mesh Networks[C]// ACM MobiCom. 2006: 262-273.
  • 10LIANG Y C, CHEN K C, LI G Y. Cognitive radio networking and communications: an overview[J]. IEEE Transactions on Vehicular Technology, 2011,60(7): 3386-3407.

共引文献28

同被引文献57

引证文献5

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部