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1

Malik, Ritu, Meenakshi Mittal, Isha Batra, and Chander Kiran. "Wireless Mesh Networks (WMN)." International Journal of Computer Applications 1, no. 23 (2010): 68–76. http://dx.doi.org/10.5120/533-697.

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2

Wang, Xinheng. "Wireless mesh networks." Journal of Telemedicine and Telecare 14, no. 8 (2008): 401–3. http://dx.doi.org/10.1258/jtt.2008.008003.

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Wireless telemedicine using GSM and GPRS technologies can only provide low bandwidth connections, which makes it difficult to transmit images and video. Satellite or 3G wireless transmission provides greater bandwidth, but the running costs are high. Wireless networks (WLANs) appear promising, since they can supply high bandwidth at low cost. However, the WLAN technology has limitations, such as coverage. A new wireless networking technology named the wireless mesh network (WMN) overcomes some of the limitations of the WLAN. A WMN combines the characteristics of both a WLAN and ad hoc networks
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3

Vinod, Kimbahune. "AUTONOMOUSLY-RECONFIGURABLE WIRELESS MESH NETWORKS." IJIERT - International Journal of Innovations in Engineering Research and Technology 3, no. 6 (2016): 16–20. https://doi.org/10.5281/zenodo.1463672.

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<strong>Multi - hop wireless mesh network experience link - failure due to channel interference,dynamic obstacles etc. which causes performance degradation of the network in Wireless Mesh Networks. The paper proposes �Autonomously Reconfigurable Wireless Mesh Networks system based upon IEEE 802.11� form r - WMN to recover autonomously in case the network failure occurs,to improve the network performance. The paper presents an autonomously network reconfiguration system (ARS) that allows amultiradio WMN to self - recover from local link failure to maintain network performance. By using channels
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Nguyen Minh, Quy, Ban Nguyen Tien, and Quy Vu Khanh. "Improved Multi-Channel Multi-Interface Routing Protocol for Wireless Mesh Networks." International Journal of Interactive Mobile Technologies (iJIM) 16, no. 11 (2022): 136–48. http://dx.doi.org/10.3991/ijim.v16i11.29433.

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In recent years, Wireless Mesh Networks (WMN) are emerging as a potential technology to enhance the ability and availability of wireless networks. WMN consists of wireless mesh routers and terminals connected by wireless multi-hop communication. Besides, in WMN, each wireless node owns many interfaces, and each interface operates on many channels. However, effectively using multiple orthogonal channels and multiple interfaces to increase the performance of WMN and decrease the radio link transmission interference is of significant challenge. In this paper, we consider routing issues in WMN. Th
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Singh, Rajinder, and Er Nidhi Bhalla. "Path Mechanism to reduce packet data loss in Wireless Mesh Networks." INTERNATIONAL JOURNAL OF COMPUTERS & TECHNOLOGY 2, no. 3 (2012): 134–41. http://dx.doi.org/10.24297/ijct.v2i3c.6779.

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A wireless mesh network (WMN) is a communicationnetwork made up of radio nodes organized in a meshtopology. Wireless mesh network often consists of meshclients, mesh routers and gateways. A wireless Mesh networkuses multi-hop communication. Due to multi-hop architectureand wireless nature, Mesh networks are vulnerable to varioustypes of Denial of Services attack. It suffers from Packetdropping at Routing layer. Client nodes are unable to getservices from gateway nodes, hence network gets down. ThePaper emphasis on the developing of a path protocol when theminimun possible packet dropp occurs i
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Supraja, Dr P., Anas A. Salameh, Dr Varadaraju H R, Dr M. Anand, and Unggul Priyadi. "An Optimal Routing Protocol Using a Multiverse Optimizer Algorithm for Wireless Mesh Network." International Journal of Communication Networks and Information Security (IJCNIS) 14, no. 3 (2022): 36–46. http://dx.doi.org/10.17762/ijcnis.v14i3.5569.

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Wireless networks, particularly Wireless Mesh Networks (WMNs), are undergoing a significant change as a result of wireless technology advancements and the Internet's rapid expansion. Mesh routers, which have limited mobility and serve as the foundation of WMN, are made up of mesh clients and form the core of WMNs. Mesh clients can with mesh routers to create a client mesh network. Mesh clients can be either stationary or mobile. To properly utilise the network resources of WMNs, a topology must be designed that provides the best client coverage and network connectivity. Finding the ideal answe
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Ohara, Seiji, Ermioni Qafzezi, Admir Barolli, Shinji Sakamoto, Yi Liu, and Leonard Barolli. "WMN-PSODGA - An Intelligent Hybrid Simulation System for WMNs Considering Load Balancing." International Journal of Distributed Systems and Technologies 11, no. 4 (2020): 39–52. http://dx.doi.org/10.4018/ijdst.2020100103.

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Wireless mesh networks (WMNs) are becoming an important networking infrastructure because they have many advantages, such as low cost and increased high-speed wireless Internet connectivity. In the authors' previous work, they implemented a hybrid simulation system based on particle swarm optimization (PSO) and distributed genetic algorithm (DGA), called WMN-PSODGA. Moreover, they added to the fitness function a new parameter for mesh router load balancing a number of covered mesh clients per router (NCMCpR). In this article, the authors consider Exponential, Weibull, and Normal distributions
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Turlykozhayeva, Dana, Waldemar Wójcik, Almat Akhmetali, Nurzhan Ussipov, Symbat Temesheva, and Sayat Akhtanov. "Single gateway placement in wireless mesh networks." Physical Sciences and Technology 11, no. 1-2 (2024): 43–48. http://dx.doi.org/10.26577/phst2024v11i1a5.

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Wireless Mesh Networks (WMNs) remain pivotal in various domains due to their versatility and scalability, offering robust and adaptable connectivity in areas where traditional wired networks are impractical. They find extensive use in diverse scenarios like smart cities, disaster recovery, industrial automation, and rural connectivity, underscoring their continued relevance in modern networking applications. Recent research in WMNs has increasingly concentrated on optimizing gateway placement and selection to enhance network performance and ensure efficient data transmission. This paper introd
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Kojic, Nenad, Marija Zajeganovic-Ivancic, Irini Reljin, and Branimir Reljin. "New algorithm for packet routing in mobile ad-hoc networks." Journal of Automatic Control 20, no. 1 (2010): 9–16. http://dx.doi.org/10.2298/jac1001009k.

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Mobile ad-hoc networks (MANET) are one of wireless networks implementation. MANET is very popular technology initially based on military purposes. Specific modifications of MANET created a possibility to implement several new wireless networks. One of them is a wireless mesh network (WMN). Over the last ten years, WMNs have gained more and more attention and are now considered as a convincing solution for providing better Internet access services for end users. WMN is an emerging technology that offers a cost-effective and scalable method to connect wireless devices. The main problem in WMNs i
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Fan, Wen Qi, Sheng Chun Huang, and Ji Bo Wei. "Key Technology Research on Wireless Mesh Network MAC Protocol." Applied Mechanics and Materials 696 (November 2014): 215–21. http://dx.doi.org/10.4028/www.scientific.net/amm.696.215.

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Wireless Mesh Networks (WMN) is distributed broadband wireless network architecture with characteristic of high throughput and high data rate. The quantity of research being conducted in this area has dramatically increased recently. Medium Access Control (MAC) is the key technology to exploit the multi-hop advantage of WMN. This paper introduces two major research topic of MAC design in WMN, the topology control and link scheduling. A survey of recent research on these topics is given in detail.
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11

Pulyala, Ranjith. "Localized Network Reconfiguration Plan for Wireless Mesh Networks." International Journal for Research in Applied Science and Engineering Technology 10, no. 4 (2022): 779–805. http://dx.doi.org/10.22214/ijraset.2022.41305.

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Abstract: Wireless mesh networks (WMNs) have emerged as a key technology for next-generation wireless networking. Because of their advantages over other wireless networks, WMNs are undergoing rapid progress and inspiring numerous applications. In multi-hop wireless mesh networks (WMNs) experience frequent link failures caused by channel interference, dynamic obstacles and/or applications’ bandwidth demands. These failures cause severe performance degradation in WMNs or require expensive, manual network management for their real-time recovery. This paper presents an Autonomous network Reconfigu
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12

Alanazi, Shaker, Kashif Saleem, Jalal Al-Muhtadi, and Abdelouahid Derhab. "Analysis of Denial of Service Impact on Data Routing in Mobile eHealth Wireless Mesh Network." Mobile Information Systems 2016 (2016): 1–19. http://dx.doi.org/10.1155/2016/4853924.

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Wireless mesh networks (WMNs) are a promising technology that has emerged with the combination of several wireless networks. These wireless networks and devices communicate in a mesh network manner, to provide edge-to-edge, easy, and cost-effective data communication. Many current and future promising applications depend on WMN and one of the most important applications is eHealthcare, where the confidential information transfers with the help of WMN. WMN devices communicate over a wireless medium, which opens the system to a number of vulnerabilities; thus, an intruder can launch malicious ac
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Wei, Liu. "The Analysis of Single-Radio Mode, Dual-Radio Mode and Multi-Radio Mode WMN’s Capacity." Applied Mechanics and Materials 182-183 (June 2012): 2045–49. http://dx.doi.org/10.4028/www.scientific.net/amm.182-183.2045.

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WMN is the abbreviations of Wireless mesh networks. Along with the evolution of WMN, there appears single-radio mode WMN ,dual-radio mode WMN ,multi-radio mode WMN and their mixed mode WMN. Single-radio mode WMN network has the lowest capacity and the lowest cost, dual-radio and multi-radio mode WMN are better than single-radio mode WMN, multi-radio mode WMN has the largest bandwidth and flexibility, and has obtained the large-scale application.
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14

Rao, A. Narayana, and Ch D. V. Subba Rao. "QoS-Aware Service Selection and Multicast Framework for Wireless Mesh Networks." International Journal of Business Data Communications and Networking 12, no. 1 (2016): 1–15. http://dx.doi.org/10.4018/ijbdcn.2016010101.

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Wireless Mesh Network (WMN) is a multi-hop, multi-path network that has become the most favored method in delivering end-to-end data, voice and video. Data transmission through WMN has the security and reliability, same as the conventional wired networks. Since, WMN has a decentralized topology, maintaining QoS is very crucial. Hence in this work, we propose to develop a WMN that selects services based on high QoS. In order to avoid redundancy in data transmission, in this work we propose to develop an efficient framework for multicasting by determining the most effective path for transmitting
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15

Sauram, Sukunya, Peerapong Uthansakul, and Monthippa Uthansakul. "Design of Node Locations for Indoor Wireless Mesh Network." ECTI Transactions on Electrical Engineering, Electronics, and Communications 9, no. 2 (2010): 276–83. http://dx.doi.org/10.37936/ecti-eec.201192.172505.

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In literatures, the performance of Wireless Mesh Network (WMN) has been analyzed by assuming the same quality for each hop. However, this assumption is hardly true in practice due to the physical obstructions of wireless link, especially for an indoor environment. Therefore, this paper revisits the analysis of WMN performance by taking the effect of physical obstructions into account instead of assuming an equally deterministic property for each hop. These obstructions cause the degradation of signal strength which relatively decrease the success rate oftransmission between hop to hop. This pa
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16

Mohammad, Khalaf Rahim Al-juaifari, Mumtaiz Alshamy Hussain, and Hassan Abed Khammas Noor. "Power enhancement based link quality for wireless mesh network." International Journal of Electrical and Computer Engineering (IJECE) 11, no. 2 (2021): 1388–94. https://doi.org/10.11591/ijece.v11i2.pp1388-1394.

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Energy consumption of wireless network communication is still a big issue and a lot of research papers have proposed many solutions to increase node life time. The WMN architecture is made up of a fixed and mobile component, whereas the wireless mesh networks (WMNs) are multi-hop wireless networks with instant deployment, self-healing, self-organization and self-configuration features. The reduction in the distance by a factor of two can result in at least four times more powerful signals at the receiver. This paper presents suggestions that the links are more reliable without the increase in
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17

Matam, Rakesh, and Somanath Tripathy. "Secure Multicast Routing Algorithm for Wireless Mesh Networks." Journal of Computer Networks and Communications 2016 (2016): 1–11. http://dx.doi.org/10.1155/2016/1563464.

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Multicast is an indispensable communication technique in wireless mesh network (WMN). Many applications in WMN including multicast TV, audio and video conferencing, and multiplayer social gaming use multicast transmission. On the other hand, security in multicast transmissions is crucial, without which the network services are significantly disrupted. Existing secure routing protocols that address different active attacks are still vulnerable due to subtle nature of flaws in protocol design. Moreover, existing secure routing protocols assume that adversarial nodes cannot share an out-of-band c
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18

Manullang, Fenmelin Muhardafen, Niken Dwi Wahyu Cahyani, and Vera Suryani. "Analisis Performansi Routing Hybrid Wireless Mesh Protocol (HWMP) pada Wireless Mesh Network (WMN) Berdasarkan Standar IEEE 802.11S." Jurnal SIFO Mikroskil 13, no. 1 (2012): 43–52. http://dx.doi.org/10.55601/jsm.v13i1.45.

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Wireless Mesh Network (WMN) merupakan jaringan komunikasi wireless yang terbentuk dari node radio dimana minimal terdapat dua atau lebih jalur komunikasi data pada setiap node. Di dalam WMN terdapat beberapa node client yang dapat begerak dengan kecepatan lambat (seperti kecepatan pejalan kaki) yang memungkinkan jaringan ini menjadi dinamis. Apalagi karena WMN merupakan jaringan yang wireless berarti akan memungkinkan ada user dalam jaringan yang terkadang bertambah ataupun berkurang. Dengan adanya perubahan kecepatan dan jumlah user, WMN membutuhkan suatu protokol routing yang handal untuk me
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19

Shivan, Qasim Ameen, and Chandren Muniyandi Ravie. "Improvement at Network Planning using Heuristic Algorithm to Minimize Cost of Distance between Nodes in Wireless Mesh Networks." International Journal of Electrical and Computer Engineering (IJECE) 7, no. 1 (2017): 309–15. https://doi.org/10.11591/ijece.v7i1.pp309-315.

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Wireless Mesh Networks (WMN) consists of wireless stations that are connected with each other in a semi-static configuration. Depending on the configuration of a WMN, different paths between nodes offer different levels of efficiency. One areas of research with regard to WMN is cost minimization. A Modified Binary Particle Swarm Optimization (MBPSO) approach was used to optimize cost. However, minimized cost does not guarantee network performance. This paper thus, modified the minimization function to take into consideration the distance between the different nodes so as to enable better perfo
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20

Sharma, Sharad, and Asha Malik. "Routing in Wireless Mesh Networks based on Termites' Intelligence." International Journal of Applied Metaheuristic Computing 8, no. 2 (2017): 1–21. http://dx.doi.org/10.4018/ijamc.2017040101.

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Wireless Mesh Network (WMN) is envisaged to be key component of next generation wireless networks which can effectively cope with the ever increasing fast and vast growing need to access data and avail services over the network. These networks provide infrastructure less high speed internet access to the end users and have a cutting edge over the existing networks. Routing, being most critical issue in their implementation. The dynamic network conditions impose setbacks in the selection of optimal path. There is exigent requirement to tackle these routing issues in context of these networks. I
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Nurmawan, Hery, Bambang Soedijono, and Eko Pramono. "Perancangan Perbandingan Jumlah Hop Pada Wireless Mesh Network." Jurnal Informa : Jurnal Penelitian dan Pengabdian Masyarakat 5, no. 4 (2020): 67–72. http://dx.doi.org/10.46808/informa.v5i4.158.

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Wireless Mesh Network (WMN) adalah jaringan nirkabel yang memiliki kemampuan untuk megkonfigurasi dirinya sendiri (self-configure) dan mengorganisasi dirinya sendiri (selforganizing). Jaringan ini biasanya diimplementasikan pada perangkat keras 802.11. WMN terdiri dari beberapa node yang membentuk backbone jaringan. Node-node tersebut mampu mengkonfigurasi secara otomatis dan me-rekonfigurasi secara dinamis untuk menjaga konektivitas jaringan. WMN banyak diterapkan untuk mengatasi masalah keterbatasan jangkauan access point pada wireless LAN. Untuk mendapatkan kinerja yang optimal pada WMN dip
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Nasron, Riwanul, Teuku Yuliar Arif, and Rizal Munadi. "Analisa Kinerja TCP HYBLA pada Jaringan Wireless Mesh Network (WMN)." Jurnal Nasional Komputasi dan Teknologi Informasi (JNKTI) 2, no. 1 (2019): 66. http://dx.doi.org/10.32672/jnkti.v2i1.1418.

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&lt;p&gt;Wireless Mesh Network (WMN) merupakan topik penelitian yang menarik dan populer beberapa tahun terakhir. Jaringan WMN adalah jaringan komunikasi yang terdiri dari &lt;em&gt;node &lt;/em&gt;mesh, &lt;em&gt;router &lt;/em&gt;mesh, gateway, dan mesh klien. Jaringan yang dibentuk bisa berupa homogen dan juga heterogen. Kinerja WMN sangat berhubungan dengan TCP. Transport Control Protocol (TCP) adalah connection oriented protokol pada lapisan transport. TCP awalnya dirancang untuk jaringan kabel tetapi juga berkinerja baik dalam jaringan nirkabel. Untuk itu TCP Hybla hadir untuk bekerja pa
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23

Ameen, Shivan Qasim, and Ravie Chandren Muniyandi. "Improvement at Network Planning using Heuristic Algorithm to Minimize Cost of Distance between Nodes in Wireless Mesh Networks." International Journal of Electrical and Computer Engineering (IJECE) 7, no. 1 (2017): 309. http://dx.doi.org/10.11591/ijece.v7i1.pp309-315.

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Wireless Mesh Networks (WMN) consists of wireless stations that are connected with each other in a semi-static configuration. Depending on the configuration of a WMN, different paths between nodes offer different levels of efficiency. One areas of research with regard to WMN is cost minimization. A Modified Binary Particle Swarm Optimization (MBPSO) approach was used to optimize cost. However, minimized cost does not guarantee network performance. This paper thus, modified the minimization function to take into consideration the distance between the different nodes so as to enable better perfo
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24

A., Ramakrishna*1 &. Dr. K. Subba Rao2. "AWARENESS OF WIRELESS MESH NETWORKS USING ROUTING METRICS." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 7, no. 3 (2018): 837–41. https://doi.org/10.5281/zenodo.1209617.

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The Wireless Mesh Network (WMN) is a key emerging technology to construct next generation wireless multi-hop network. It combines the advantages of both mobile ad-hoc network (MANET) and traditional fixed network, attracting significant industrial and academic attentions. In network layer, routing metrics are also important to the performance of communication. In this paper, we review the some of existing routing metrics like Distance routing metric, Latency Routing Metrics, Traffic Load Routing Metric, and&nbsp; Compositive Metrics &nbsp;in WMNs.
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Sandhu, Preet Pavneet Kaur, and Prof Jatinder Singh Saini. "QoS in Wireless Mesh Networks- A Review." INTERNATIONAL JOURNAL OF COMPUTERS & TECHNOLOGY 13, no. 6 (2014): 4543–48. http://dx.doi.org/10.24297/ijct.v13i6.2516.

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This paper is a review on QoS issue of Wireless mesh networks. QoS comes up with a great collection of networking technologies and procedures that guarantees the capability of a network to deliver with predictable consequences. WMNs have emerged as a flexible, reliable and cost effective way of providing broadband internet access over wide areas through multi hop communication. This paper has reviewed different routing protocols used in the WMNs. The overall objective of this paper is to explore the various short comings of the routing protocols of WMN.
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Qadir, Reshi Isfaq, and Anuradha Saini. "Optimization of WMN Performance for Different Propagation Environment." International Journal of Advanced Research in Computer Science and Software Engineering 8, no. 4 (2018): 76. http://dx.doi.org/10.23956/ijarcsse.v8i4.635.

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Wireless mesh networks are multihop systems in which contrivances avail each other in transmitting packets through the network, especially in arduous conditions. We can drop these ad hoc networks into place with minimal preparation, and they provide a reliable, flexible system that can be elongated to thousands of contrivances. The wireless mesh network topology developed is a point-to-point-to-point, or peer-to-peer, system called an ad hoc, multi-hop network. A node can send and receive messages, and in a mesh network, a node withal functions as a router and can relay messages to its neighbo
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Vetrichelvi, G., and G. Mohan Kumar. "Implementation of ARS-STR in STR for Effective Energy Transmission." Asian Journal of Electrical Sciences 2, no. 1 (2013): 20–25. http://dx.doi.org/10.51983/ajes-2013.2.1.1854.

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Wireless mesh networks (WMNs) have emerged as a key technology for next generation wireless networking. Because of their advantages over other wireless networks, WMNs are undergoing rapid progress and inspiring numerous applications. In multi-hop wireless mesh networks (WMNs) experience frequent link failures caused by channel interference, dynamic obstacles and/or applications bandwidth demands. These failures cause severe performance degradation in WMNs or require expensive, manual network management for their real-time recovery. This paper presents an Autonomous network Reconfiguration Syst
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Wong, Wei Lok, Wei Siang Hoh, Bi Lynn Ong, Azamuddin Abdul Rahman, and Nor Syahidatul Nadiah Ismail. "Performance Evaluation of Mobility Management Protocols in Inter-Network Wireless Mesh Networks: A Comparative Study." Journal of Advanced Research Design 124, no. 1 (2025): 90–101. https://doi.org/10.37934/ard.124.1.90101.

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This study addresses the critical challenge of mobility management in Wireless Mesh Networks (WMNs), focusing on the performance comparison of various Mobility Management Protocols (MMPs). The diverse range of MMPs, including Proxy Mobile IPv6 (PMIPv6), Fast PMIPv6 (FPMIPv6), Mobile IPv6 (MIPv6), Hierarchical MIPv6 (HMIPv6), Fast MIPv6 (FMIPv6), and Fast Hierarchical MIPv6 (FHMIPv6), present distinct advantages and limitations in terms of performance, scalability, security, and flexibility. Selecting the most suitable MMP for a given WMN application is a complex task, primarily due to the lack
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Kalafatidis, Sarantis, Sotiris Skaperas, Vassilis Demiroglou, Lefteris Mamatas, and Vassilis Tsaoussidis. "Logically-Centralized SDN-Based NDN Strategies for Wireless Mesh Smart-City Networks." Future Internet 15, no. 1 (2022): 19. http://dx.doi.org/10.3390/fi15010019.

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The Internet of Things (IoT) is a key technology for smart community networks, such as smart-city environments, and its evolution calls for stringent performance requirements (e.g., low delay) to support efficient communication among a wide range of objects, including people, sensors, vehicles, etc. At the same time, these ecosystems usually adopt wireless mesh technology to extend their communication range in large-scale IoT deployments. However, due to the high range of coverage, the smart-city WMNs may face different network challenges according to the network characteristic, for example, (
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Lou, Ya Fang, and Zhi Jun Yuan. "The Research and Application of Key Technology on Wireless Multi-Hop Mesh Network." Advanced Materials Research 791-793 (September 2013): 1660–63. http://dx.doi.org/10.4028/www.scientific.net/amr.791-793.1660.

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Wireless multi-hop mesh network (Wireless Mesh Network, WMN), is a new network technology developed from mobile Ad hoc, widely used in the world. The paper carried out in-depth research and outlook to the key technologies, network architecture, performance and characteristics and typical application scenarios of Wireless Mesh Network.
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Binh, Le Huu, and Tung Khac Truong. "An Efficient Method for Solving Router Placement Problem in Wireless Mesh Networks Using Multi-Verse Optimizer Algorithm." Sensors 22, no. 15 (2022): 5494. http://dx.doi.org/10.3390/s22155494.

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Wireless Mesh Networks (WMNs) are increasingly being used in a variety of applications. To fully utilize the network resources of WMNs, it is critical to design a topology that provides the best client coverage and network connectivity. This issue is solved by determining the best solution for the mesh router placement problem in WMN (MRP-WMN). Because the MRP-WMN is known to be NP-hard, it is typically solved using approximation algorithms. This is also why we are conducting this work. We present an efficient method for solving the MRP-WMN using the Multi-Verse Optimizer algorithm (MVO). A ne
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Qin, Zhen Quan, Xiao Li, and Jia Ning Zhang. "Experimental Characterization of Channel Selection and Multi-Hops in Wireless Mesh Network." Applied Mechanics and Materials 321-324 (June 2013): 2859–63. http://dx.doi.org/10.4028/www.scientific.net/amm.321-324.2859.

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Wireless Mesh Network (WMN) is able to extend the coverage of the network infrastructure by multi-hop wireless connections between APs. However, full potentialities and limits of this new technology have still to be explored. In this paper, we design an experimental testbed to analyze the characterization of Channel Selection and Multi-hops in Wireless Mesh Network, we believe that the data collected by our experiments may be of interest to network designers who want to know the effective capabilities of a WMN before investing on its deployment.
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Amien, Januar Al, and Cuncun Wibowo. "IMPLEMENTASI WIRELESS MESH NETWORK MENGGUNAKAN CONTROLLER ACCESS POINT SYSTEM MANAGER DI LINGKUNGAN KAMPUS UNIVERSITAS MUHAMMADIYAH RIAU." JURNAL FASILKOM 7, no. 2 (2018): 273–83. http://dx.doi.org/10.37859/jf.v7i2.658.

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Universitas Muhammadiyah Riau memiliki sebuah jaringan nirkabel yang tidak dapat diakses secara mobail sehingga menyulitkan user dalam mengakses jaringan jika berpindah-pindah tempat dikarenakan setiap institusi memiliki protokol dan Service set identifier (SSID) yang berbeda-beda. Dengan banyaknya SSID yang berbeda-beda menyulitkan administrator dalam mengontrol jaringan nirkabel. Wirelees Mash Network (WMN) merupakan jaringan nirkabel yang menggunakan protokol Mesh Made Easy (MME) sehingga dengan penerapan jaringan menggunakan WMN dapat diakses secara mobail. Controller Access Point System M
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Cao, Zhan Mao, Yuan Ping Zhang, Zhi Long Shan, and Yun Cheng Jiang. "A Scheme to Address Routers in MIMO Triangular Wireless Overlay Mesh." Applied Mechanics and Materials 427-429 (September 2013): 2584–87. http://dx.doi.org/10.4028/www.scientific.net/amm.427-429.2584.

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A scheme to address router nodes is given for wireless Mesh Networks (WMN) with multiple input multiple output (MIMO) character. Both the wireless transceiver number of a node and geographical topology mesh contribute to wireless overlay model by placing link into different channel planes edge in case of interference. The triangular mesh is an important overlay topology for wireless networks. The router node addressing scheme keeps its instinct symmetric property. Several general cases over the addressing scheme are also discussed for the shortest routing path and the node coordination itself.
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Huang, Dong, and Bigui He. "Dynamic characteristics of mesh–based network control system under optimal resource circumstances." Journal of Electrical Engineering 63, no. 5 (2012): 322–27. http://dx.doi.org/10.2478/v10187-012-0047-1.

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Network control system (NCS) has been presenting significance in industry and automation by supporting usability and convenience. However, for insufficiency for diversity of infrastructure and scalability, it has limitations in the field of flexibility for network architecture compared to the wireless mobile network. Hence, there shows the pressing need for tackling the existing network control system with control flow by wireless mesh network (WMN) with strong flexibility effectively. Consequently, for each control system, its stability is one of the prerequisites and criteria. In this paper,
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Wobiageri, Ndidi Abidde, Eyidia Nkechinyere, and Iyaminapu Iyoloma Collins. "Optimization of Wireless Mesh Networks for Disaster Response Communication." International Journal of Current Science Research and Review 08, no. 03 (2025): 1312–19. https://doi.org/10.5281/zenodo.15040499.

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Abstract : Wireless Mesh Networks (WMNs) have emerged as a resilient and adaptable solution for disaster response communication, offering self-healing and self-organizing capabilities that ensure uninterrupted connectivity in emergency scenarios. Traditional communication infrastructures often fail due to network congestion, power outages, and physical damage during disasters, necessitating an optimized approach for rapid and reliable data transmission. This study presents an AI-optimized WMN framework aimed at enhancing network performance by improving packet delivery ratio (PDR), reducing en
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Elzain and Wu. "Software Defined Wireless Mesh Network Flat Distribution Control Plane." Future Internet 11, no. 8 (2019): 166. http://dx.doi.org/10.3390/fi11080166.

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Wireless Mesh Networks (WMNs), have a potential offering relatively stable Internet broadband access. The rapid development and growth of WMNs attract ISPs to support users’ coverage anywhere anytime. To achieve this goal network architecture must be addressed carefully. Software Defined Networking (SDN) proposes new network architecture for wired and wireless networks. Software Defined Wireless Networking (SDWN) has a great potential to increase efficiency, ease the complexity of control and management, and accelerate technology innovation rate of wireless networking. An SDN controller is the
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Akshaya, M. S* Dr. K. Selvakumar. "A CENTRALIZED AND DISTRIBUTED BASED FORWARDING TECHNIQUE TO IMPROVE THROUGHPUT IN MULTI-HOP WIRELESS MESH NETWORKS." INTERNATIONAL JOURNAL OF ENGINEERING SCIENCES & RESEARCH TECHNOLOGY 6, no. 2 (2017): 97–103. https://doi.org/10.5281/zenodo.268692.

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Wireless Mesh Network (WMN) is a multiradio multihop network that is emerged as prime technology for the next generation wireless networks. Because of their vantages over other wireless networks, WMN gains rapid progress and renders numerous applications. This paper presents high throughput reliable multicast in multihop wireless mesh networks. The combined MAC layer retransmission, link quality awareness and wireless broadcast advantage are capture to design Expected Multicast Transmission Count (EMTX). EMTX based multicast routing will give high end to end packet delivery, less hop by hop tr
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Nan Guo, Shuang Yu, and Tianhan Gao. "Anonymous Communication Scheme for Wireless Mesh Network Based on Network Coding." Research Briefs on Information and Communication Technology Evolution 3 (October 15, 2017): 76–83. http://dx.doi.org/10.56801/rebicte.v3i.46.

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Wireless Mesh Network, holding the features of self-organization, strong scalability, low deploymentcost, is considered to be the most competitive technology for broadband wireless access service.However, the security and privacy issues become the bottleneck for WMN’s rapid popularization.Network coding, which can improve both network throughput and anonymity, is adopted for thecommunication security in WMN recently. However, the related network-coding based anonymouscommunication schemes suffer from the efficiency and security issues. In this paper, an efficientanonymous communication scheme
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D., Jasmine David, Jeyantha Jafna Juliet S., Selvarathi M., Angelin Jeba, Christina Magneta S., and Jemima Jebaseeli T. "Channel Assignment Using Mutual Learning Automata in Wireless Mesh Networks." Journal of Trends in Computer Science and Smart Technology 7, no. 2 (2025): 117–39. https://doi.org/10.36548/jtcsst.2025.2.002.

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Wireless Mesh Networks (WMN) provide consumers with reliable internet connectivity. By utilizing the Learning Automata for Channel Assignment (LACA), a single router serves multiple users, resulting in significant data traffic within the mesh network. The primary challenge in a multi-channel environment is managing this substantial data flow. This research presents the Mutual Learning Automata-based Channel Assignment (MLACA) Scheme to address this issue. In this framework, Learning Automata (LA) are deployed at adjacent mesh routers, enabling them to collaborate on data transmission and infor
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Arif, Teuku Yuliar, Munandar Munandar, Ramzi Adriman, and Rizal Munadi. "CARA-OHT: Collision-Aware Rate Adaptation for Optimal High-Throughput in IEEE 802.11s Wireless Mesh Networks." International Journal of Interactive Mobile Technologies (iJIM) 14, no. 13 (2020): 172. http://dx.doi.org/10.3991/ijim.v14i13.13245.

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The wireless mesh network (WMN) is a future network technology that develops single-hop wireless local area networks (WLANs) into multi-hop wireless mesh networks, based on the IEEE 802.11s standard. However, this development still presents many challenges, such as determining the best route between sources and destinations, especially taking into account the use of the medium access control (MAC) and physical (PHY) layers of IEEE 802.11n/ac. Some papers have proposed rate adaptation algorithms particularly for single-hop networks; however, these only focused on mechanisms to find data rates s
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Anita, C. S., and R. M. Suresh. "Improving QoS Routing in Hybrid Wireless Mesh Networks, Using Cross-Layer Interaction and MAC Scheduling." Cybernetics and Information Technologies 15, no. 3 (2015): 52–67. http://dx.doi.org/10.1515/cait-2015-0041.

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Abstract Delivering Quality of Services (QoS) for cooperative Wireless Mesh Networks (WMN) is an important issue when enabling heterogeneous wireless technologies on the client side. A standard approach for satisfying the QoS requirements of different wireless clients appears to be a complex task due to the capacity variations. In addition to the routing layer, the information at the lower layers, such as Physical and Medium Access Control (MAC) layers must be considered for providing the QoS guarantee. The strength of a signal received from heterogeneous clients at the physical layer and the
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Sarasvathi, V., N. Ch S. N. Iyengar, and Snehanshu Saha. "QoS Guaranteed Intelligent Routing Using Hybrid PSO-GA in Wireless Mesh Networks." Cybernetics and Information Technologies 15, no. 1 (2015): 69–83. http://dx.doi.org/10.1515/cait-2015-0007.

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Abstract In Multi-Channel Multi-Radio Wireless Mesh Networks (MCMR-WMN), finding the optimal routing by satisfying the Quality of Service (QoS) constraints is an ambitious task. Multiple paths are available from the source node to the gateway for reliability, and sometimes it is necessary to deal with failures of the link in WMN. A major challenge in a MCMR-WMN is finding the routing with QoS satisfied and an interference free path from the redundant paths, in order to transmit the packets through this path. The Particle Swarm Optimization (PSO) is an optimization technique to find the candida
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Benmohammed, Asma, and Merniz Salah. "Delay of Reliable Multicast Protocols in Wireless Networks." WSEAS TRANSACTIONS ON COMMUNICATIONS 22 (September 18, 2023): 104–9. http://dx.doi.org/10.37394/23204.2023.22.9.

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Wireless Mesh Network (WMN) plays important roles towards the next generation wireless networking. It is a key technology to support wireless multi-hop networks. Due to dynamic routing nature of WMNs, the optimization of routing protocol is most critical task. Our work consists on the study and the analysis of the performances of two reliable multicast protocols based on active networks: AMRHy(Active Dynamic Replier Reliable Multicast) and DyRAM(Active Multicast Reliable Hybrid). This analysis will allow us to show the contribution of the combination of the class receiver-initiated and sender-
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Rahim Al-juaifari, Mohammad Khalaf, Hussain Mumtaiz Alshamy, and Noor Hassan Abed Khammas. "Power enhancement based link quality for wireless mesh network." International Journal of Electrical and Computer Engineering (IJECE) 11, no. 2 (2021): 1388. http://dx.doi.org/10.11591/ijece.v11i2.pp1388-1394.

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Energy consumption of wireless network communication is still a big issue and a lot of research papers have proposed many solutions to increase node life time. The WMN architecture is made up of a fixed and mobile component, whereas the wireless mesh networks (WMNs) are multi-hop wireless networks with instant deployment, self-healing, self-organization and self-configuration features. The reduction in the distance by a factor of two can result in at least four times more powerful signals at the receiver. This paper presents suggestions that the links are more reliable without the increase in
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Zhang, Jianwei, Chenwei Zhao, Zengwei Zheng, and Jianping Cai. "SR-WMN: Online Network Throughput Optimization in Wireless Mesh Networks With Segment Routing." IEEE Wireless Communications Letters 11, no. 2 (2022): 396–400. http://dx.doi.org/10.1109/lwc.2021.3129893.

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Cao, Zhan Mao, and Jian Chao Tang. "Routing Methods and Scheduling Patterns in MIMO WMN Virtual Model." Applied Mechanics and Materials 519-520 (February 2014): 216–21. http://dx.doi.org/10.4028/www.scientific.net/amm.519-520.216.

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Multi-input multi-output wireless mesh networks (MIMO WMNs) act as backbone broadband networks for ubiquitous access. Topology model is a crucial factor in interference avoidance, simplifying channel allocation, and discussing optimal scheduling and routing. Cartesian product of graphs (CPG) is introduced for MIMO WMN as a virtual topology. By putting orthogonal channels into different channel layer meshes, some conclusions are explored on channel allocation, routing and scheduling. A path coherent realization is composed of combinatorial edges over multiple channels for all hops. Some importa
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Owczarek, Piotr, and Piotr Zwierzykowski. "Metrics in routing protocol for wireless mesh networks." Image Processing & Communications 18, no. 4 (2013): 7–20. http://dx.doi.org/10.2478/v10248-012-0089-9.

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Abstract The interest in services offered by wireless network has been growing for many years. It has encouraged the development of wireless technologies. New solutions are able to satisfy the ever-increasing demands concerning wireless services. It is also evident in the diversification of quality assessment methods employed with reference to connections used in such networks. One of the basic elements used in connection quality assessment are metrics. The use of metrics is directly linked to the type of the routing protocol applied in a given network. The selection of a given routing protoco
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Nicopolitidis, Petros, Faouzi Zarai, Amel Meddeb Makhlouf, and Malek Rekik. "OAP-WMN: optimised and secure authentication protocol for wireless mesh networks." International Journal of Security and Networks 14, no. 4 (2019): 205. http://dx.doi.org/10.1504/ijsn.2019.10024506.

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Rekik, Malek, Amel Meddeb Makhlouf, Faouzi Zarai, and Petros Nicopolitidis. "OAP-WMN: optimised and secure authentication protocol for wireless mesh networks." International Journal of Security and Networks 14, no. 4 (2019): 205. http://dx.doi.org/10.1504/ijsn.2019.103151.

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