7 research outputs found

    Risk driven Smart Home resource management using cloud services

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    In order to fully exploit the concept of Smart Home, challenges associated with multiple device management in consumer facing applications have to be addressed. Specific to this is the management of resource usage in the home via the improved utilization of devices, this is achieved by integration with the wider environment they operate in. The traditional model of the isolated device no longer applies, the future home will be connected with services provided by third parties ranging from supermarkets to domestic appliance manufacturers. In order to achieve this risk based integrated device management and contextualization is explored in this paper based on the cloud computing model. We produce an architecture and evaluate risk models to assist in this management of devices from a security, privacy and resource management perspective. We later propose an expansion on the risk based approach to wider data sharing between the home and external services using the key indicators of TREC (Trust, Risk, Eco-efficiency and Cost). The paper contributes to Smart Home research by defining how Cloud service management principles of risk and contextualization for virtual machines can produce solutions to emerging challenges facing a new generation of Smart Home devices

    XSACd—Cross-domain resource sharing & access control for smart environments

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    Computing devices permeate working and living environments, affecting all aspects of modern everyday lives; a trend which is expected to intensify in the coming years. In the residential setting, the enhanced features and services provided by said computing devices constitute what is typically referred to as a “smart home”. However, the direct interaction smart devices often have with the physical world, along with the processing, storage and communication of data pertaining to users’ lives, i.e. private sensitive in nature, bring security concerns into the limelight. The resource-constraints of the platforms being integrated into a smart home environment, and their heterogeneity in hardware, network and overlaying technologies, only exacerbate the above issues. This paper presents XSACd, a cross-domain resource sharing & access control framework for smart environments, combining the well-studied fine-grained access control provided by the eXtensible Access Control Markup Language (XACML) with the benefits of Service Oriented Architectures, through the use of the Devices Profile for Web Services (DPWS). Based on standardized technologies, it enables seamless interactions and fine-grained policy-based management of heterogeneous smart devices, including support for communication between distributed networks, via the associated MQ Telemetry Transport protocol (MQTT)–based proxies. The framework is implemented in full, and its performance is evaluated on a test bed featuring relatively resource-constrained smart platforms and embedded devices, verifying the feasibility of the proposed approac

    Die Bibliothek als Erfolgsfaktor - 10 Jahre danach

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    Im Jahr 2022 feiert die Universitätsbibliothek Bochum ihr 60. Jubiläum. Die UB Bochum ist auf dem Campus der Ruhr-Universität Bochum neben ihrer Rolle als professionelle Dienstleisterin für Studium, Lehre und Forschung längst ein attraktiver Lern- und Begegnungsort, geographisch zentral und in Sachen Digitalisierung sowie Vernetzung und Kooperationen zukunftsweisend

    A Blockchain-Based Approach to Provenance and Reproducibility in Research Workflows

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    The traditional Proof of Existence blockchain service on the Bitcoin network can be used to verify the existence of any research data at a specific point of time, and to validate the data integrity, without revealing its content. Several variants of the blockchain service exist to certify the existence of data relying on cryptographic fingerprinting, thus enabling an efficient verification of the authenticity of such certifications. However, nowadays research data is continuously changing and being modified through different processing steps in most scientific research workflows such that certifications of individual data objects seem to be constantly outdated in this setting. This paper describes how the blockchain and distributed ledger technology can be used to form a new certification model, that captures the research process as a whole in a more meaningful way, including the description of the used data through its different stages and the associated computational pipeline, code for analysis and the experimental design. The scientific blockchain infrastructure bloxberg, together with a deep learning based analysis from the behavioral science field are used to show the applicability of the approach

    Generic Platform for Advanced E-Health Applications

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    Abstract — The demographic change and the cost pressure in the healthcare sector drive the need for efficient and secure medical homecare solutions which apply for the people who are elderly or in anastasis. As the complexity of such systems is rising, there is a need of a common foundation of components which can be reused to lower the implementation effort of such systems. The European ITEA2 OSAmI research project targets such a common foundation of basic components for a basic, widely applicable service-oriented component platform. The German OSAmI-D subproject develops a construction kit based on the OSAmI component platform with a particular focus on services for medical and E-Health applications. The results of the ongoing project and especially the foundation of reusable components are demonstrated in the scenario of home-based ergometer training during the rehabilitation of patients with cardiologic illnesses. I
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