Himanshi Babbar, Shalli Rani, Sardar M. N. Islam, S. Iyer
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Current Software-Defined Networking- based Wireless Sensor Networks (SDN-WSN) methods have developed over time to meet resource-constrained needs. In this paper, the authors have discussed security architecture, its challenges and solutions. Further, the comparative analysis of various security algorithms (SEC-SDWSN, Genetic, Routing optimization for cross-domain preservation (ROCDP)) in SDN- WSN is carried out. The SEC-SDWSN achieved the better results based on the Quality of Service (QoS) metrics (packet delivery ratio, data transmission, response time and energy consumed parameters) which shows packet delivery ratio in SEC-SDWSN is 4\\% better than Genetic and ROCDP; data transmission rate in SEC-SDWSN is 15Kbps better than Genetic; and response time in SEC-SDWSN is 5\\% better than Genetic. 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Conventional networks are constrained by hardware limitations and rigid architectural design, limiting research and innovation. Software-Defined Networking (SDN) is a networking breakthrough that allows administrators to control and customize their entire network from a central location. SDN makes network management more manageable and more effective. SDN model can deliver versatile routing and help the various communication patterns found in Wireless Sensor Networks (WSN). However, adopting this model to resource- constrained networks is difficult, particularly when security services are required. Current Software-Defined Networking- based Wireless Sensor Networks (SDN-WSN) methods have developed over time to meet resource-constrained needs. In this paper, the authors have discussed security architecture, its challenges and solutions. Further, the comparative analysis of various security algorithms (SEC-SDWSN, Genetic, Routing optimization for cross-domain preservation (ROCDP)) in SDN- WSN is carried out. The SEC-SDWSN achieved the better results based on the Quality of Service (QoS) metrics (packet delivery ratio, data transmission, response time and energy consumed parameters) which shows packet delivery ratio in SEC-SDWSN is 4\\\\% better than Genetic and ROCDP; data transmission rate in SEC-SDWSN is 15Kbps better than Genetic; and response time in SEC-SDWSN is 5\\\\% better than Genetic. 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引用次数: 2
摘要
提出了一种创新的基于QoS的软件定义无线传感器网络安全体系结构。传统的网络受到硬件限制和僵化的架构设计的限制,限制了研究和创新。软件定义网络(SDN)是一项突破性的网络技术,它允许管理员从一个中心位置控制和定制整个网络。SDN使网络管理更易于管理,更有效。SDN模型可以提供多用途路由,并支持无线传感器网络(WSN)中的各种通信模式。然而,在资源受限的网络中采用这种模型是困难的,特别是当需要安全服务时。当前基于软件定义网络的无线传感器网络(SDN-WSN)方法是随着时间的推移而发展的,以满足资源受限的需求。在本文中,作者讨论了安全架构,其挑战和解决方案。进一步,对SDN- WSN中各种安全算法(SEC-SDWSN、Genetic、Routing optimization for cross-domain preservation (ROCDP))进行了比较分析。基于服务质量(QoS)指标(分组传送率、数据传输、响应时间和能耗参数),SEC-SDWSN的分组传送率比Genetic和ROCDP高4%;SEC-SDWSN的数据传输率比Genetic提高了15Kbps;与遗传算法相比,SEC-SDWSN的响应时间提高了5%。因此,本文通过为软件定义无线传感器网络开发一种创新的基于QoS的安全架构,对网络安全架构的文献和实践做出了原创性的贡献。
QoS based Security Architecture for Software- Defined Wireless Sensor Networking
An innovative QoS based security architecture for software-defined wireless sensor networking is developed in this paper. Conventional networks are constrained by hardware limitations and rigid architectural design, limiting research and innovation. Software-Defined Networking (SDN) is a networking breakthrough that allows administrators to control and customize their entire network from a central location. SDN makes network management more manageable and more effective. SDN model can deliver versatile routing and help the various communication patterns found in Wireless Sensor Networks (WSN). However, adopting this model to resource- constrained networks is difficult, particularly when security services are required. Current Software-Defined Networking- based Wireless Sensor Networks (SDN-WSN) methods have developed over time to meet resource-constrained needs. In this paper, the authors have discussed security architecture, its challenges and solutions. Further, the comparative analysis of various security algorithms (SEC-SDWSN, Genetic, Routing optimization for cross-domain preservation (ROCDP)) in SDN- WSN is carried out. The SEC-SDWSN achieved the better results based on the Quality of Service (QoS) metrics (packet delivery ratio, data transmission, response time and energy consumed parameters) which shows packet delivery ratio in SEC-SDWSN is 4\% better than Genetic and ROCDP; data transmission rate in SEC-SDWSN is 15Kbps better than Genetic; and response time in SEC-SDWSN is 5\% better than Genetic. Therefore, an original contribution to the literature and practices of network security architecture is made in this paper by developing an innovative QoS based security architecture for software-defined wireless sensor networking.