Robust video authentication system over internet protocol

2011 ◽  
Vol 3 (4) ◽  
pp. 322 ◽  
Author(s):  
Sue Inn Ch'ng; ◽  
Kah Phooi Seng ◽  
Li Minn Ang ◽  
Fong Tien Ong ◽  
Yee Wan Wong
Author(s):  
Pradeep K. Atrey ◽  
Abdulmotaleb El Saddik ◽  
Mohan Kankanhalli

Digital video authentication has been a topic of immense interest to researchers in the past few years. Authentication of a digital video refers to the process of determining that the video taken is original and has not been tampered with. This chapter aims to provide an overview of digital video authentication systems and a universal review of the associated methods. The chapter not only establishes the importance of authenticating a video in various application scenarios; it also identifies key properties and design issues that should be considered while designing a video authentication system. The benign and tampering operations that characterize the security and robustness aspects of a typical video authentication system are described. The past works related to video authentication, based on digital signature and digital watermarking, have been described; and the emerging trends in this area of research have also been identified.


2019 ◽  
Vol 9 (01) ◽  
pp. 47-54
Author(s):  
Rabbai San Arif ◽  
Yuli Fitrisia ◽  
Agus Urip Ari Wibowo

Voice over Internet Protocol (VoIP) is a telecommunications technology that is able to pass the communication service in Internet Protocol networks so as to allow communicating between users in an IP network. However VoIP technology still has weakness in the Quality of Service (QoS). VOPI weaknesses is affected by the selection of the physical servers used. In this research, VoIP is configured on Linux operating system with Asterisk as VoIP application server and integrated on a Raspberry Pi by using wired and wireless network as the transmission medium. Because of depletion of IPv4 capacity that can be used on the network, it needs to be applied to VoIP system using the IPv6 network protocol with supports devices. The test results by using a wired transmission medium that has obtained are the average delay is 117.851 ms, jitter is 5.796 ms, packet loss is 0.38%, throughput is 962.861 kbps, 8.33% of CPU usage and 59.33% of memory usage. The analysis shows that the wired transmission media is better than the wireless transmission media and wireless-wired.


2010 ◽  
Vol E93-B (3) ◽  
pp. 466-469 ◽  
Author(s):  
Masataka OHTA ◽  
Kenji FUJIKAWA
Keyword(s):  

2006 ◽  
Vol 65 (5) ◽  
pp. 427-439
Author(s):  
O. N. Katkov ◽  
V. A. Pimenov ◽  
A. P. Ryzhkov

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