• Title/Summary/Keyword: Mobile multi-hop wireless networks

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Performance Analysis of Mesh WLANs based on IEEE 802.11 protocols (IEEE 802.11 프로토콜 기반 메쉬 무선랜의 성능분석)

  • Lee, Kye-Sang
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.12 no.2
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    • pp.254-259
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    • 2008
  • Mesh WLANs, which consist of wireless mesh routers connecting each other in a mesh topology and self-operate after their autoconfiguration, have several advantages in convenience, swiftness and flexibility of deployment and operation over existing WLANs the expansions of which are done by connecting the APs with wires. However, many technical issues still remain to be solved. Among them, network performance degradations due to the interference between the adjacent hops in multi-hop mesh WLANs, and the reusability of the existing wireless network protocols are critical problems to be answered. This work evaluates the VoIP support performance of IEEE 802.11a/g-based mesh WLANs with multiple wireless interfaces with simulations. The results show that there exit an unfairness in VoIP packet delay performances among mobile routers located at different hops, and that although the capacity of the admitted calls can be increased by increasing the size of voice packet payload it is far less than the expected one. This suggests that the existing 802.11 MAC protocols have their limitation when applied in mesh networks and their enhancement or even a newer one nay be required.

Performance Evaluation of Distributed Cooperative MAC Protocol Algorithm for Enhancing Multimedia QoS of WiMedia Communication Network (와이미디어 통신네트워크의 멀티미디어 QoS 개선을 위한 분산협력방식 MAC 프로토콜 성능분석)

  • Kim, Jin-Woo;Lee, Yeon-Woo;Lee, Seong-Ro
    • Journal of Korea Multimedia Society
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    • v.15 no.4
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    • pp.516-525
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    • 2012
  • In this paper, an efficient technique for enhancing the QoS of multimedia service for an WiMedia network applying distributed cooperative medium access (D-MAC) protocol is proposed. D-MAC protocol has been proposed to support high-rate Wireless Personal Area Networks (HR-WPANs) by the WiMedia Alliance. Unlike the centralized IEEE 802.15.3 MAC, the D-MAC UWB specified by WiMedia supports all devices to be self-organized and removes the SOP (Simultaneous Operating Piconet) problem, i.e., packet collisions between overlapped piconets in the centralized IEEE 802.15.3 MAC. However the WiMedia D-MAC can't prevent reduce the throughput degradation occurred by mobile nodes with low data rate. Therefore, a distributed cooperative MAC protocol for multi-hop UWB network is proposed in this paper. The proposed technique can intelligently select the transmission path with higher data rate to provide real-time multimedia services with minimum delay, thus enhances QoS of multimedia service.

Cost-Effective Deployment and Operation of the IEEE802.16j based WiBro MMR Network (IEEE802.16j 기반 WiBro MMR 네트워크의 효율적 구축 및 운용에 관한 연구)

  • Ryu, Seungwan;Choi, Go-Bong;Myung, Kwangsik;Park, Seikwon;Cho, Choong-Ho;Lee, Hyong-Woo
    • Journal of Korean Institute of Industrial Engineers
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    • v.34 no.2
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    • pp.223-234
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    • 2008
  • Mobile multi-hop relaying (MMR) technology is being considered as a promising solution capable to enhance coverage, user throughput, and system capacity of the current wired backbone dependent wireless access networks. Since the relaying nodes do not need a wired backbone access, MMR technology offers easy and low-cost deployment, flexible cell planning, and adaptive traffic handling performance. In this paper, we investigate performance and cost effectiveness of the MMR technology deployment in the IEEE802.16j based WiBro/WiMAX systems. We first introduce standardization activities and research issues of MMR WiBro/ WiMAX systems. Since the coverage extension problem may occur in metropolitan areas as well as suburban or rural areas where user density is relatively low or moderate, we introduce several MMR topologies and analyze cost-effectiveness of MMR based coverage extension with respect to the user traffic density. Then, we argue cost effect on MMR technology deployment and throughput performance, Finally, we introduce further study issues including sectorized base station based MMR deployment approaches and the single and multi-frame structure MMR approaches.