• Title/Summary/Keyword: HWMP

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A Survey on Hybrid Wireless Mesh Protocol Security

  • Tan, Whye-Kit;Lee, Sang-Gon;Lam, Jun-Huy
    • Proceedings of the Korea Multimedia Society Conference
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    • 2012.05a
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    • pp.81-82
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    • 2012
  • Wireless Mesh Network (WMN) functionality had been included into IEEE 802.11s. For WMN, the routing message is one of the most important parts that need to be protected. Hybrid Wireless Mesh Protocol (HWMP) is the default routing protocol for WMN. In this paper, the attacks and vulnerabilities of HWMP had been identified and the requirements needed to protect HWMP had also been discussed. Existing HWMP security had been compared with the requirements.

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Multi-Interface Multi-Channel R-HWMP Routing Protocol for End-to-End Bandwidth Reservation in IEEE 802.11s WMNs (IEEE 802.11s 무선 메쉬 네트워크에서 종단간 대역폭 예약을 위한 멀티 인터페이스 멀티 채널 R-HWMP 라우팅 프로토콜)

  • Jung, Whoi Jin;Kim, Bong Gyu;Lee, Jae Yong;Kim, Byung Chul
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.7
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    • pp.37-48
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    • 2014
  • Wireless mesh networks have emerged as a key technology in environment that needs wireless multi-hop communication without infrastructure and IEEE 802.11s mesh network standard have currently been established. One of big differences between this standard and the legacy IEEE 802.11 is that MCCA MAC is included to support QoS. MCCA supports bandwidth reservations between neighbors, so it can satisfy the QoS of bandwidth guarantee. However, MCCA has dis-advantages as follow; 1) it can not guarantee end-to-end bandwidth, 2) in multi-interface multi-channel wireless environments, the IEEE 802.11s does not provide a bandwidth reservation protocol and a wireless channel assignment etc. In this paper, we have proposed MIMC R-HWMP, which expands R-HWMP that was proposed in our previous work[3], to support multi-interface multi-channel. By simulation, we showed end-to-end bandwidth guarantee and the increase in the available bandwidth in multi-interface multi-channel wireless mesh networks.

A Reservation-based HWMP Routing Protocol Design Supporting E2E Bandwidth in TICN Combat Wireless Network (TICN 전투무선망에서의 종단간 대역폭을 보장하는 예약 기반 HWMP 라우팅 프로토콜 설계)

  • Jung, Whoi Jin;Min, Seok Hong;Kim, Bong Gyu;Choi, Hyung Suk;Lee, Jong Sung;Lee, Jae Yong;Kim, Byung Chul
    • Journal of the Korea Institute of Military Science and Technology
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    • v.16 no.2
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    • pp.160-168
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    • 2013
  • In tactical environment, tactical wireless networks are generally comprised of Tactical MANETs(T-MANETs) or Tactical WMNs(T-WMNs). The most important services in tactical network are voice and low rate data such as command control and situation awareness. These data should be forwarded via multi-hop in tactical wireless networks. Urgent and mission-critical data should be protected in this environment, so QoS(Quality of Service) must be guaranteed for specific type of traffic for satisfying the requirement of a user. In IEEE 802.11s, TDMA-based MAC protocol, MCCA(MCF Controlled Channel Access), has a function of resource reservation. But 802.11s protocol can not guarantee the end-to-end QoS, because it only supports reservation with neighbors. In this paper, we propose the routing protocol, R-HWMP(Reservation-based HWMP) which has the resource reservation to support the end-to-end QoS. The proposed protocol can reserve the channel slots and find optimal path in T-WMNs. We analyzed the performance of the proposed protocol and showed that end-to-end QoS is guaranteed using NS-2 simulation.

Security Framework for Hybrid Wireless Mesh Protocol in Wireless Mesh Networks

  • Avula, Mallikarjun;Lee, Sang-Gon;Yoo, Seong-Moo
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.8 no.6
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    • pp.1982-2004
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    • 2014
  • Wireless Mesh Networks (WMNs) are emerging as promising, convenient next generation wireless network technology. There is a great need for a secure framework for routing in WMNs and several research studies have proposed secure versions of the default routing protocol of WMNs. In this paper, we propose a security framework for Hybrid Wireless Mesh Protocol (HWMP) in WMNs. Contrary to existing schemes, our proposed framework ensures both end-to-end and point-to-point authentication and integrity to both mutable and non-mutable fields of routing frames by adding message extension fields to the HWMP path selection frame elements. Security analysis and simulation results show that the proposed approach performs significantly well in spite of the cryptographic computations involved in routing.

Improving the Reliability of IEEE 802.11s Based Wireless Mesh Networks for Smart Grid Systems

  • Kim, Jaebeom;Kim, Dabin;Lim, Keun-Woo;Ko, Young-Bae;Lee, Sang-Youm
    • Journal of Communications and Networks
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    • v.14 no.6
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    • pp.629-639
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    • 2012
  • A challenge faced by smart grid systems is providing highly reliable transmissions to better serve different types of electrical applications and improve the energy efficiency of the system. Although wireless networking technologies can provide high-speed and cost-effective solutions, their performance may be impaired by various factors that affect the reliability of smart grid networks. Here, we first suggest the use of IEEE 802.11s-based wireless LAN mesh networks as high-speed wireless backbone networks for smart grid infrastructure to provide high scalability and flexibility while ensuring low installation and management costs. Thereafter, we analyze some vital problems of the IEEE 802.11s default routing protocol (named hybrid wireless mesh protocol; HWMP) from the perspective of transfer reliability, and propose appropriate solutions with a new routing method called HWMP-reliability enhancement to improve the routing reliability of 802.11s-based smart grid mesh networking. A simulation study using ns-3 was conducted to demonstrate the superiority of the proposed schemes.

Tier-based Proactive Path Selection Mode for Wireless Mesh Networks

  • Fu-Quan, Zhang;Joe, In-Whee;Park, Yong-Jin
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.6 no.5
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    • pp.1303-1315
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    • 2012
  • In the draft of the IEEE 802.11s standard, a tree topology is established by the proactive tree-building mode of the Hybrid Wireless Mesh Protocol (HWMP). It is used for cases in which the root station (e.g., gateway) is an end point of the majority of the data connections. In the tree topology, the root or central stations (e.g., parent stations) are connected to the other stations (e.g., leaves) that are one level lower than the central station. Such mesh stations are likely to suffer heavily from contention in bottleneck links when the network has a high traffic load. Moreover, the dependence of the network on such stations is a point of vulnerability. A failure of the central station (e.g., a crash or simply going into sleep mode to save energy) can cripple the whole network in the tree topology. This causes performance degradation for end-to-end transmissions. In a connected mesh topology where the stations having two or more radio links between them are connected in such a way that if a failure subsists in any of the links, the other link could provide the redundancy to the network. We propose a scheme to utilize this characteristic by organizing the network into concentric tiers around the root mesh station. The tier structure facilitates path recovery and congestion control. The resulting mode is referred to as Tier-based Proactive Path Selection Mode (TPPSM). The performance of TPPSM is compared with the proactive tree mode of HWMP. Simulation results show that TPPSM has better performance.

Implementation of a Mesh Router Supporting Multi-path Routing based on IEEE 802.11s (다중 경로 라우팅을 지원하는 IEEE 802.11s기반 메쉬 라우터 구현)

  • Kim, Jeong-Soo;Chung, Sang-Hwa;Choi, Hee-Jin
    • The Journal of Korean Institute of Communications and Information Sciences
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    • v.36 no.12A
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    • pp.950-958
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    • 2011
  • This paper focuses in the implementation of mesh router supporting multi-path routing based on IEEE 802.11s. In HWMP of IEEE 802.11s, the single path routing just was defined. So, in this work, we implemented not only the single path routing defined in IEEE 802.11s, but also a multipath routing based on AOMDV which extended the standard. A multi-channel multi-interface technology that can transmit and receive simultaneously and lower bandwidth reduction caused by interferences than a single-channel single-interface was implemented in our mesh router. We also developed an outdoor test bed with the mesh routers. The bandwidth of the mesh router and a real-time video streaming service were verified using the test bed. And, the single path and multipath routing algorithms are also compared. In this test bed, The average TCP bandwidth was 23.77 Mbps and the latency was 2.4 ms in five hops. The test bed could service real-time streaming with an average jitter of 0.547 ms in five hops. The mesh router that used the multipath routing path reduced the path recovery time by 12.73% on average.