• 제목/요약/키워드: secure routing

검색결과 149건 처리시간 0.03초

Ad Hoc 네트워크 라우팅 보안을 위한 다중경로 기반의 MP-SAR 프로토콜 (Multiple Path Security-Aware Routing Protocol Mechanism for Ad Hoc Network)

  • 한인성;유황빈
    • 한국통신학회논문지
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    • 제33권5B호
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    • pp.260-267
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    • 2008
  • 기존의 SAR(Security Aware Routing)[9] 프로토콜은 Ad Hoc 네트워크의 보안경로를 발견하는 프로토콜로, 이동 노드에 부여된 보안레벨 속성 값을 라우팅 정보로 이용하는 보안라우팅 프로토콜이다. 그러나 SAR 프로토콜은 암호화된 데이터 전달을 위해 보안노드를 경유로 데이터를 전송하므로 비밀통신과 효율적인 통신이 고려되지 않고 있다. 또한, AODV[3] 프로토콜 기반으로 동작하기 때문에 데이터의 전송 중 중간노드의 배터리소진 또는 중간노드의 이동으로 데이터 전달에 있어 통신이 단절될 경우 보안노드를 경유하는 라우팅 경로를 재탐색하게 되어 데이터의 전송지연 문제가 발생한다. 그 외에도 SAR 프로토콜의 특성상 재탐색의 경우 노드간의 연결은 가능하지만 데이터 전송에 있어서 요구되는 노드의 보안레벨 이하의 노드인 경우 경로설정이 중단되는 문제들로 재연결이 용이하지 않다. 본 논문에서는 SAR 프로토콜의 문제점을 개선하기 위해 다중경로 기반의 SAR 프로토콜인 MP-SAR을 제안한다. MP-SAR은 데이터의 기밀성을 유지하기 위해 SAR의 보안경로 탐지기법의 확장으로 다중경로를 탐색하고, 유효한 최단보안경로의 이용으로 안전한 고속의 데이터 전달을 할 수 있다.

MANET 에서 Secure Property를 고려한 라우팅 프로토콜 연구 (Study of Secure Routing Protocol for Secure Property in MANET)

  • 안영아;최진영
    • 한국정보과학회:학술대회논문집
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    • 한국정보과학회 2003년도 가을 학술발표논문집 Vol.30 No.2 (3)
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    • pp.472-474
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    • 2003
  • MANET 환경에서 Secure Property를 만족하며 노드의 Connectivity 끊김 현상을 사전에 예견하고 또한 Power group을 형성하여 liveness을 지원한다. 또한 Authentication을 만족하기 위해 Localized Certificated 방식의 매카니즘을 이용하여 Secure 라우팅 프로토콜을 제안한다.

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의료분야에서 멀티캐스트 통신을 지원하는 셀 기반의 안전한 센서 네트워크 구조 (A Cell-based Secure Sensor Network supporting Multi-casting Communication for the Application of Telemedicine)

  • 성지연;최주영;김명주
    • 융합보안논문지
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    • 제5권4호
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    • pp.49-58
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    • 2005
  • 환자의 이동성과 경제적인 의료서비스를 제공하는 미래의 원격의료시스템으로서 유비쿼터스 센서 네트워크(USN) 구조를 제시한다. 본 USN 구조는 계층적 라우팅과 평면 라우팅을 접합하여 개선한 것으로서 멀티캐스팅 통신을 지원하는 셀 기반의 안전한 4계층 구조이다. 본 구조에서는 환자의 개인정보 보호 및 안전한 의료정보를 위하여 경량의 PKI 기반 보안 통신 프로토콜을 채택하고 있으며 이에 따른 핵심 통신 과정을 함께 제시하였다.

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Efficient and Secure Routing Protocol forWireless Sensor Networks through SNR Based Dynamic Clustering Mechanisms

  • Ganesh, Subramanian;Amutha, Ramachandran
    • Journal of Communications and Networks
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    • 제15권4호
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    • pp.422-429
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    • 2013
  • Advances in wireless sensor network (WSN) technology have enabled small and low-cost sensors with the capability of sensing various types of physical and environmental conditions, data processing, and wireless communication. In the WSN, the sensor nodes have a limited transmission range and their processing and storage capabilities as well as their energy resources are limited. A triple umpiring system has already been proved for its better performance in WSNs. The clustering technique is effective in prolonging the lifetime of the WSN. In this study, we have modified the ad-hoc on demand distance vector routing by incorporating signal-to-noise ratio (SNR) based dynamic clustering. The proposed scheme, which is an efficient and secure routing protocol for wireless sensor networks through SNR-based dynamic clustering (ESRPSDC) mechanisms, can partition the nodes into clusters and select the cluster head (CH) among the nodes based on the energy, and non CH nodes join with a specific CH based on the SNR values. Error recovery has been implemented during the inter-cluster routing in order to avoid end-to-end error recovery. Security has been achieved by isolating the malicious nodes using sink-based routing pattern analysis. Extensive investigation studies using a global mobile simulator have shown that this hybrid ESRP significantly improves the energy efficiency and packet reception rate as compared with the SNR unaware routing algorithms such as the low energy aware adaptive clustering hierarchy and power efficient gathering in sensor information systems.

S-FEAR: Secure-Fuzzy Energy Aware Routing Protocol for Wireless Sensor Networks

  • Almomani, Iman;Saadeh, Maha
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제12권4호
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    • pp.1436-1457
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    • 2018
  • Secure routing services in Wireless Sensor Networks (WSNs) are essential, especially in mission critical fields such as the military and in medical applications. Additionally, they play a vital role in the current and future Internet of Things (IoT) services. Lightness and efficiency of a routing protocol are not the only requirements that guarantee success; security assurance also needs to be enforced. This paper proposes a Secure-Fuzzy Energy Aware Routing Protocol (S-FEAR) for WSNs. S-FEAR applies a security model to an existing energy efficient FEAR protocol. As part of this research, the S-FEAR protocol has been analyzed in terms of the communication and processing costs associated with building and applying this model, regardless of the security techniques used. Moreover, the Qualnet network simulator was used to implement both FEAR and S-FEAR after carefully selecting the following security techniques to achieve both authentication and data integrity: the Cipher Block Chaining-Message Authentication Code (CBC-MAC) and the Elliptic Curve Digital Signature Algorithm (ECDSA). The performance of both protocols was assessed in terms of complexity and energy consumption. The results reveal that achieving authentication and data integrity successfully excluded all attackers from the network topology regardless of the percentage of attackers. Consequently, the constructed topology is secure and thus, safe data transmission over the network is ensured. Simulation results show that using CBC-MAC for example, costs 0.00064% of network energy while ECDSA costs about 0.0091%. On the other hand, attacks cost the network about 4.7 times the cost of applying these techniques.

Development of a Secure Routing Protocol using Game Theory Model in Mobile Ad Hoc Networks

  • Paramasivan, Balasubramanian;Viju Prakash, Maria Johan;Kaliappan, Madasamy
    • Journal of Communications and Networks
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    • 제17권1호
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    • pp.75-83
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    • 2015
  • In mobile ad-hoc networks (MANETs), nodes are mobile in nature. Collaboration between mobile nodes is more significant in MANETs, which have as their greatest challenges vulnerabilities to various security attacks and an inability to operate securely while preserving its resources and performing secure routing among nodes. Therefore, it is essential to develop an effective secure routing protocol to protect the nodes from anonymous behaviors. Currently, game theory is a tool that analyzes, formulates and solves selfishness issues. It is seldom applied to detect malicious behavior in networks. It deals, instead, with the strategic and rational behavior of each node. In our study,we used the dynamic Bayesian signaling game to analyze the strategy profile for regular and malicious nodes. This game also revealed the best actions of individual strategies for each node. Perfect Bayesian equilibrium (PBE) provides a prominent solution for signaling games to solve incomplete information by combining strategies and payoff of players that constitute equilibrium. Using PBE strategies of nodes are private information of regular and malicious nodes. Regular nodes should be cooperative during routing and update their payoff, while malicious nodes take sophisticated risks by evaluating their risk of being identified to decide when to decline. This approach minimizes the utility of malicious nodes and it motivates better cooperation between nodes by using the reputation system. Regular nodes monitor continuously to evaluate their neighbors using belief updating systems of the Bayes rule.

Trust based Secure Reliable Route Discovery in Wireless Mesh Networks

  • Navmani, TM;Yogesh, P
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제13권7호
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    • pp.3386-3411
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    • 2019
  • Secured and reliable routing is a crucial factor for improving the performance of Wireless Mesh Networks (WMN) since these networks are susceptible to many types of attacks. The existing assumption about the internal nodes in wireless mesh networks is that they cooperate well during the forwarding of packets all the time. However, it is not always true due to the presence of malicious and mistrustful nodes. Hence, it is essential to establish a secure, reliable and stable route between a source node and a destination node in WMN. In this paper, a trust based secure routing algorithm is proposed for enhancing security and reliability of WMN, which contains cross layer and subject logic based reliable reputation scheme with security tag model for providing effective secured routing. This model uses only the trusted nodes with the forwarding reliability of data transmission and it isolates the malicious nodes from the providing path. Moreover, every node in this model is assigned with a security tag that is used for efficient authentication. Thus, by combining authentication, trust and subject logic, the proposed approach is capable of choosing the trusted nodes effectively to participate in forwarding the packets of trustful peer nodes successfully. The simulation results obtained from this work show that the proposed routing protocol provides optimal network performance in terms of security and packet delivery ratio.

Routing Protocol using One-Way Hash Functions for Mobile Ad Hoc Networks

  • Park, Young-Ho
    • 한국산업정보학회:학술대회논문집
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    • 한국산업정보학회 2007년도 춘계학술대회
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    • pp.26-31
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    • 2007
  • An ad hoc network is a collection of mobile nodes without any Infrastructure. However, ad hoc networks are vulnerable to attacks such as routing disruption and resource consumption; thus, routing protocol security is needed This paper proposes a secure and efficient routing protocol for mobile ad hoc networks, where only one-way hash function are used to authenticate nodes in the ROUTE REQUEST, while additional public-key cryptography is used to guard against active attackers disguising a node in the ROUTE REPLY.

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배선 전용 영역을 이용한 계층적 배치 (Hierarchical placement with routing region assignment)

  • 김원종;신현철
    • 전자공학회논문지A
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    • 제32A권2호
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    • pp.130-139
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    • 1995
  • A hierarchical placement system based on routing region assignment has been developed to increase the probability of routing completion after placement. While most of the existing placement systems attempt to reduce the cell density at the portions where routing density is high, our method is distinguished in that specific routing regions are allocated to secure complete routing where the routing density is greater than the routing capacity. Hierarchy is vuilt by clustering and recursive paritioning, and the initial placement obtained by partitioning at each level is improved by using the region refinement algorithm. After placement at each hierarchical level, global routing is performed and fouting regions are assigned, if routing density is greater than routing capacity, to be considered at the next level of placement. the proposed algorithm has been implemented and applied to place several industrical gate-array circuits. A couple of circuits which cannot be routed by using conventional placement techniques can be completely routed by using our new placement technique with routing region assignment.

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An Energy- Efficient Optimal multi-dimensional location, Key and Trust Management Based Secure Routing Protocol for Wireless Sensor Network

  • Mercy, S.Sudha;Mathana, J.M.;Jasmine, J.S.Leena
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제15권10호
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    • pp.3834-3857
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    • 2021
  • The design of cluster-based routing protocols is necessary for Wireless Sensor Networks (WSN). But, due to the lack of features, the traditional methods face issues, especially on unbalanced energy consumption of routing protocol. This work focuses on enhancing the security and energy efficiency of the system by proposing Energy Efficient Based Secure Routing Protocol (EESRP) which integrates trust management, optimization algorithm and key management. Initially, the locations of the deployed nodes are calculated along with their trust values. Here, packet transfer is maintained securely by compiling a Digital Signature Algorithm (DSA) and Elliptic Curve Cryptography (ECC) approach. Finally, trust, key, location and energy parameters are incorporated in Particle Swarm Optimization (PSO) and meta-heuristic based Harmony Search (HS) method to find the secure shortest path. Our results show that the energy consumption of the proposed approach is 1.06mJ during the transmission mode, and 8.69 mJ during the receive mode which is lower than the existing approaches. The average throughput and the average PDR for the attacks are also high with 72 and 62.5 respectively. The significance of the research is its ability to improve the performance metrics of existing work by combining the advantages of different approaches. After simulating the model, the results have been validated with conventional methods with respect to the number of live nodes, energy efficiency, network lifetime, packet loss rate, scalability, and energy consumption of routing protocol.