Wireless mesh network (WMN) is a new multi-hop network for broadband accessing to intemet. However, there exists a server unfairness problem based on different hop distances in WMN. To solve this problem, the unfair...Wireless mesh network (WMN) is a new multi-hop network for broadband accessing to intemet. However, there exists a server unfairness problem based on different hop distances in WMN. To solve this problem, the unfairness issue was analyzed in test-bed experiment and NS2 simulation. A dynamic queue management scheme E-QMMN was proposed, which allocates the queue buffer according to the hop distance of every flow. The experimental results show that the proposed scheme can not only increase the hop distance fairness of the legacy scheme at most 50%, but also reduce the average round trip time at least 29% in congested WMN environments.展开更多
Wireless mesh networks (WMNs) are new kind of networking technology which facilitate the extension of wireless local area networks into wide areas and have emerged as a key technology for next-generation wireless netw...Wireless mesh networks (WMNs) are new kind of networking technology which facilitate the extension of wireless local area networks into wide areas and have emerged as a key technology for next-generation wireless networking.Due to the advantages of WMNs over other wireless networks,they are now a promising approach for future network access.Typical applications range from home broadband Internet access and community networking to wireless metropolitan area networks.Meanwhile,the considerable efforts in academic range from network architecture,network capacity,layered communication protocols,security,cross-layer design,etc.Still many technical challenges exist in designing affordable,reliable,and sustainable WMNs infrastructures.In order to provide a better understanding of these challenges,this paper presents a detailed investigation of current technologies for WMNs,and it will help to guide and refocus future works in this area.展开更多
在具有OFDM物理层的无线Mesh网络上,结合信道、自适应调制与编码(Adaptive Modulation and Coding,AMC)技术、有限缓冲区数目和业务特性等,提出具有服务质量(Quality of Service,QoS)保证的、跨层的多业务接入控制和调度算法。接入控制...在具有OFDM物理层的无线Mesh网络上,结合信道、自适应调制与编码(Adaptive Modulation and Coding,AMC)技术、有限缓冲区数目和业务特性等,提出具有服务质量(Quality of Service,QoS)保证的、跨层的多业务接入控制和调度算法。接入控制利用AMC优化资源分配并保证业务平均性能,达到长期公平;基于业务量滑动平均和信噪比门限切换的调度,在保持长期公平性的同时,不仅有效地利用业务在信道传输上的差异,降低QoS业务的延迟,提高系统吞吐率,还可根据需要调节业务的延迟,保证业务不同的延迟要求,克服了业务切换造成的性能不公平,达到短期公平。分析和仿真表明算法是准确可行的,达到了设计目标,并具有实现简单、适应性强等特点。展开更多
基金Projects(61163060,61103204,60963022) supported by the National Natural Science Foundation of ChinaProject(D018023) supported by the Natural Science Foundation of Guangxi Province,ChinaPostdoctoral Funding of Central South University,China
文摘Wireless mesh network (WMN) is a new multi-hop network for broadband accessing to intemet. However, there exists a server unfairness problem based on different hop distances in WMN. To solve this problem, the unfairness issue was analyzed in test-bed experiment and NS2 simulation. A dynamic queue management scheme E-QMMN was proposed, which allocates the queue buffer according to the hop distance of every flow. The experimental results show that the proposed scheme can not only increase the hop distance fairness of the legacy scheme at most 50%, but also reduce the average round trip time at least 29% in congested WMN environments.
基金supported in part by the National High Technology Research and Development Program of China (863 Program) (No. 2006AA01Z232,2009AA01Z212, 2009AA01Z202)Key Science and Technology Supporting Plan Item of Jiangsu Province(No. BE2008134)Special Fund of Trans-formation of Scientific and Technological Achievements of Jiangsu Province(No. BA2007012)
文摘Wireless mesh networks (WMNs) are new kind of networking technology which facilitate the extension of wireless local area networks into wide areas and have emerged as a key technology for next-generation wireless networking.Due to the advantages of WMNs over other wireless networks,they are now a promising approach for future network access.Typical applications range from home broadband Internet access and community networking to wireless metropolitan area networks.Meanwhile,the considerable efforts in academic range from network architecture,network capacity,layered communication protocols,security,cross-layer design,etc.Still many technical challenges exist in designing affordable,reliable,and sustainable WMNs infrastructures.In order to provide a better understanding of these challenges,this paper presents a detailed investigation of current technologies for WMNs,and it will help to guide and refocus future works in this area.
文摘在具有OFDM物理层的无线Mesh网络上,结合信道、自适应调制与编码(Adaptive Modulation and Coding,AMC)技术、有限缓冲区数目和业务特性等,提出具有服务质量(Quality of Service,QoS)保证的、跨层的多业务接入控制和调度算法。接入控制利用AMC优化资源分配并保证业务平均性能,达到长期公平;基于业务量滑动平均和信噪比门限切换的调度,在保持长期公平性的同时,不仅有效地利用业务在信道传输上的差异,降低QoS业务的延迟,提高系统吞吐率,还可根据需要调节业务的延迟,保证业务不同的延迟要求,克服了业务切换造成的性能不公平,达到短期公平。分析和仿真表明算法是准确可行的,达到了设计目标,并具有实现简单、适应性强等特点。