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Articles 1 - 3 of 3
Full-Text Articles in Engineering
Recurrent Neural Network Architectures Toward Intrusion Detection, Wafaa Anani
Recurrent Neural Network Architectures Toward Intrusion Detection, Wafaa Anani
Electronic Thesis and Dissertation Repository
Recurrent Neural Networks (RNN) show a remarkable result in sequence learning, particularly in architectures with gated unit structures such as Long Short-term Memory (LSTM). In recent years, several permutations of LSTM architecture have been proposed mainly to overcome the computational complexity of LSTM. In this dissertation, a novel study is presented that will empirically investigate and evaluate LSTM architecture variants such as Gated Recurrent Unit (GRU), Bi-Directional LSTM, and Dynamic-RNN for LSTM and GRU specifically on detecting network intrusions. The investigation is designed to identify the learning time required for each architecture algorithm and to measure the intrusion prediction accuracy. …
Resource Brokering In Grid Computing, Adrian T. Bienkowski
Resource Brokering In Grid Computing, Adrian T. Bienkowski
Electronic Thesis and Dissertation Repository
Grid Computing has emerged in the academia and evolved towards the bases of what is currently known as Cloud Computing and Internet of Things (IoT). The vast collection of resources that provide the nature for Grid Computing environment is very complex; multiple administrative domains control access and set policies to the shared computing resources. It is a decentralized environment with geographically distributed computing and storage resources, where each computing resource can be modeled as an autonomous computing entity, yet collectively can work together. This is a class of Cooperative Distributed Systems (CDS). We extend this by applying characteristic of open …
Efficient Alignment Algorithms For Dna Sequencing Data, Nilesh Vinod Khiste
Efficient Alignment Algorithms For Dna Sequencing Data, Nilesh Vinod Khiste
Electronic Thesis and Dissertation Repository
The DNA Next Generation Sequencing (NGS) technologies produce data at a low cost, enabling their application to many ambitious fields such as cancer research, disease control, personalized medicine etc. However, even after a decade of research, the modern aligners and assemblers are far from providing efficient and error free genome alignments and assemblies respectively. This is due to the inherent nature of the genome alignment and assembly problem, which involves many complexities. Many algorithms to address this problem have been proposed over the years, but there still is a huge scope for improvement in this research space.
Many new genome …