Rapid deployment of IoT enabled system for automobile fuel range and gas price location

Author(s):  
Andrew Weis ◽  
Matthew Strandskov ◽  
Kumar Yelamarthi ◽  
Md Sayedul Aman ◽  
Ahmed Abdelgawad
Keyword(s):  
2016 ◽  
Vol 64 (S 01) ◽  
Author(s):  
R. Malik ◽  
M. Roosta-Azad ◽  
H. Bigdeli ◽  
A. Zandi ◽  
H. Holst ◽  
...  

Author(s):  
B. Aparna ◽  
S. Madhavi ◽  
G. Mounika ◽  
P. Avinash ◽  
S. Chakravarthi

We propose a new design for large-scale multimedia content protection systems. Our design leverages cloud infrastructures to provide cost efficiency, rapid deployment, scalability, and elasticity to accommodate varying workloads. The proposed system can be used to protect different multimedia content types, including videos, images, audio clips, songs, and music clips. The system can be deployed on private and/or public clouds. Our system has two novel components: (i) method to create signatures of videos, and (ii) distributed matching engine for multimedia objects. The signature method creates robust and representative signatures of videos that capture the depth signals in these videos and it is computationally efficient to compute and compare as well as it requires small storage. The distributed matching engine achieves high scalability and it is designed to support different multimedia objects. We implemented the proposed system and deployed it on two clouds: Amazon cloud and our private cloud. Our experiments with more than 11,000 videos and 1 million images show the high accuracy and scalability of the proposed system. In addition, we compared our system to the protection system used by YouTube and our results show that the YouTube protection system fails to detect most copies of videos, while our system detects more than 98% of them.


2013 ◽  
Author(s):  
Justin Pettit ◽  
Erik Darner ◽  
Mark Jelinek

2012 ◽  
Author(s):  
Michael David Morgan ◽  
Donald Mikalson ◽  
Leonard Lotar Herchen

2021 ◽  
Vol 8 (7) ◽  
pp. 74
Author(s):  
Igor Vendramin ◽  
Andrea Lechiancole ◽  
Daniela Piani ◽  
Gaetano Nucifora ◽  
Giovanni Benedetti ◽  
...  

Sutureless and rapid-deployment bioprostheses have been introduced as alternatives to traditional prosthetic valves to reduce cardiopulmonary and aortic cross-clamp times during aortic valve replacement. These devices have also been employed in extremely demanding surgical settings, as underlined in the present review. Searches on the PubMed and Medline databases aimed to identify, from the English-language literature, the reported cases where both sutureless and rapid-deployment prostheses were employed in challenging surgical situations, usually complex reoperations sometimes even performed as bailout procedures. We have identified 25 patients for whom a sutureless or rapid-deployment prosthesis was used in complex redo procedures: 17 patients with a failing stentless bioprosthesis, 6 patients with a failing homograft, and 2 patients with the failure of a valve-sparing procedure. All patients survived reoperation and were reported to be alive 3 months to 4 years postoperatively. Sutureless and rapid-deployment bioprostheses have proved effective in replacing degenerated stentless bioprostheses and homografts in challenging redo procedures. In these settings, they should be considered as a valid alternative not only to traditional prostheses but also in selected cases to transcatheter valve-in-valve solutions.


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