GMPLS based Multi Layer Service Network Architecture for advanced IP over optical network services in Japan

Author(s):  
Ichiro Inoue ◽  
Kaori Shimizu ◽  
Daisaku Shimazaki ◽  
Hisashi Kojima ◽  
Kohei Shiomoto ◽  
...  
2021 ◽  
Vol 61 ◽  
pp. 102422
Author(s):  
Amit Kumar Garg ◽  
Vijay Janyani ◽  
Bostjan Batagelj ◽  
N.H. Zainol Abidin ◽  
M.H. Abu Bakar

Author(s):  
Elaine Wong ◽  
sampath edirisinghe ◽  
Chathurika Ranaweera ◽  
Christina Lim ◽  
Ampalavanapilla Nirmalathas

2016 ◽  
pp. 219-239 ◽  
Author(s):  
C.A. Kyriakopoulos ◽  
G.I. Papadimitriou ◽  
P. Nicopolitidis ◽  
E. Varvarigos

Author(s):  
Ankur Dumka ◽  
Hardwari Lal Mandoria ◽  
Anushree Sah

The chapter surveys the analysis of all the security aspects of software-defined network and determines the areas that are prone to security attacks in the given software-defined network architecture. If the fundamental network topology information is poisoned, all the dependent network services will become immediately affected, causing catastrophic problems like host location hijacking attack, link fabrication attack, denial of service attack, man in the middle attack. These attacks affect the following features of SDN: availability, performance, integrity, and security. The flexibility in the programmability of control plane has both acted as a bane as well as a boon to SDN. Like the ARP poisoning in the legacy networks, there are several other vulnerabilities in the SDN architecture as well.


Electronics ◽  
2019 ◽  
Vol 8 (5) ◽  
pp. 539 ◽  
Author(s):  
Chia-Ling Huang ◽  
Sin-Yuan Huang ◽  
Wei-Chang Yeh ◽  
Jinhai Wang

The transportation network promotes key human development links such as social production, population movement and resource exchange. As cities continue to expand, transportation networks become increasingly complex. A bad traffic network design will affect the quality of urban development and cause regional economic losses. How to plan transportation routes and allocate transportation resources is an important issue in today’s society. This study uses the network reliability method to solve traffic network problems. Network reliability refers to the probability of a successful connection between the source and sink nodes in the network. There are many systems in the world that use network architecture; therefore, network reliability is widely used in various practical problems and cases. In the past, some scholars have used network reliability to solve traffic service network problems. However, the processing of time is not detailed enough to fully express the real user’s time requirements and does not consider that the route traffic will affect the reliability of the entire network. This study improves on past network reliability methods by using a fuzzy system and a time window to construct a network model. Using the concept of fuzzy systems, according to past experience, data or expert predictions to define the degree of flow, time and reliability, can also determine the relationship between these factors. The time window can be adjusted according to the time limit in reality, reaching the limit of the complete expression time. In addition, the network reliability algorithm used in this study is a direct algorithm. Compared with the past indirect algorithms, the computation time is greatly reduced and complex problems can be solved more efficiently.


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