A Framework to Defy DXDOS Against XML Webservices in Cloud Environment Using Modified SOA
Cloud Computing is becoming hot cake of current software industry. Cloud Computing found its root in SOA. Service Oriented Architecture is a computing paradigm, which revolves around the concepts like service registration, service searching, and service interoperability. XML has become
the transport of data between applications over the internet. Web Service is a technology, a process and a phenomenon, which can be used to implement Service Oriented Architecture. XML based Web Services are becoming more insidious base technology for making applications to converse and exchange
data in Service oriented architecture. According to the specification of web service nothing has been mentioned about its security. It is depending on the web security for its protection. Protection of web services in Cloud environment is the major concern of current research. Among the other
risks of web services XDoS is the important issue. In this research paper, we have proposed and implemented an approach to mitigate DXDoS attack against Webservices using modified SOA and for IP Traceback Honey Bee algorithm is being used.
Keywords: Cloud; DXDoS; Honey Bee Algorithm; IP Traceback; SOA; Webservice
Document Type: Research Article
Affiliations: 1: Anna University, 600025, India; Sri Sai Ram Engineering College, Chennai 600044, India 2: Computer Science and Engineering Department, Jerusalem College of Engineering, Pallikaranai, Chennai 600100, Tamil Nadu, India
Publication date: 01 September 2017
- Journal of Computational and Theoretical Nanoscience is an international peer-reviewed journal with a wide-ranging coverage, consolidates research activities in all aspects of computational and theoretical nanoscience into a single reference source. This journal offers scientists and engineers peer-reviewed research papers in all aspects of computational and theoretical nanoscience and nanotechnology in chemistry, physics, materials science, engineering and biology to publish original full papers and timely state-of-the-art reviews and short communications encompassing the fundamental and applied research.
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