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- IT-T3 + (Denne task skal produsere * spørreundersøkelse av brukergruppene * en sammenligning med 2-3 andre lignende institusjonen * en oppsummering av state-of-the-art for IT-strategy i utvalgte forskningsinstitusjoner)
- Secure InterNetwork Architecture + (Design a secure architecture for the network infrastructure is the main goal.)
- IT-T2 + (Det task skal etablere * dette situasjonbildet skal baseres på erfaringer fra IT-drift og brukere fra UNIK * en foreslått framgangsmåte er å spørre representanter fra brukere om opplevelser ved bruk av IT ved UNIK, problemstillinger og ønsker)
- TrygtSvangerskap:Trygt Svangerskap + (Develop key performance indicators for prevention of violence in pregnancy)
- Cystinet + (Digital Health for Africa)
- Societal Security in the Digital Age + (Digitisation has changed the way we intera … Digitisation has changed the way we interact. From a societal point of view, digitisation is the key driver for less corruption. Furthermore, digitisation opens for digital inclusion. The advances of "always connected" and "everything being available" has challenges, mainly the protection of critical infrastructures. </br>Main focus of the thesis will be the analysis of challenges and opportunities in a digitised society. Thereafter, models for trust-enhancing mechanisms are developed, analysed and piloted.nisms are developed, analysed and piloted.)
- Implementation evaluation of Cost 231 WI model + (Discuss first results from implementation of propagation models used in COST 231 with the Munich reference test site.)
- Antennas and their communication parameters (B2-B3) + (Discussion on Antennas and their communication parameters)
- Multiple Access + (Discussion on Multiple Access Protocols. Understand why it is necessary to explore methods to allow multiple users to share the spectrum simultaneously.)
- Mobile Communications- Network Architecture and Functionality + (Discussion on mobile network architecture including GSM, UMTS and LTE)
- SCOTT:WP24 + (Distributed cloud integration of wireless … Distributed cloud integration of wireless sensor networks will enable sensor/actuator data to be centrally controlled, to be added to blogs, virtual communities and social networking applications. From an industrial point of view, having data available in a cloud will significantly facilitate maintenance, administration; ease data mining as well as interoperability with available networked systems. Current solutions on the Internet of Things consumer market are mostly proprietary and vendors are thus trying to push their own eco-system to gain a higher market share.</br>In an industrial context, the integration of wireless sensor networks into cloud services is still in its infancy due to different application requirements, backward compatibility issues, a higher number of stakeholders (e.g. suppliers) and not to be underestimated because of administration effort. Current solutions lack common mechanisms, protocols and interfaces for cloud integration and personal data protection. In particular, sensors and actuators connected to each other via different access networks have difficulties talking securely to each other and require significant manual configuration and updating.</br>Figure 83 shows a simplified view of distributed sensors and actuators connected to a cloud.</br>We address these main challenges with following objectives:</br>* Integration of industrial WSNs into the Internet and cloud computing architectures</br>* Support for distributed wireless sensor nodes amongst access networks and distributed cloud servers (e.g. edge computing) with support for privacy and security</br>* Support for movement of wireless sensor nodes from one access network to another without manual configurationrk to another without manual configuration)
- Privacy violation through improper handling of electronic waste + (Distribution system operators (DSO) repres … Distribution system operators (DSO) represent the link between the electric grid and end-users, as they are responsible for delivering electricity to residential homes, industrial consumers, etc. As the grid quickly evolves into a Smart Grid by the addition of a variety of IoT devices like Smart Meters, more and more personal sensitive information is being collected, transmitted and stored. When devices are replaced, sensitive information might still be present that could end up in the hands of persons trying to take advantage of it causing privacy threats.</br></br>The thesis would focus on electronic waste handling practices (current and planned) by identifying</br></br># devices storing sensitive information (including but not limited to the Advanced Metering Infrastructure – AMI),</br># the attributes of the information stored,</br># regulations regarding the data life-cycle.</br># etc.</br></br>Questions that the thesis might answer:</br></br># Is it a reasonable worry that information might be leaked from discarded devices? (Risk owner – Customer)</br># What are the existing e-waste handling practices?</br># Are there DSO`s (among the 100+ in Norway) whose customers might face the risk of their information being leaked after storage devices are discarded? (Risk owner – Customer)</br># Might DSO’s face penalties for negligent handling of discarded devices? (Risk owner – DSO)g of discarded devices? (Risk owner – DSO))
- PhD DSO Security + (During this industrial PhD, Manish will analyse the security implications when moving the control of the distribution grid into the cloud)
- API comparison: Protege, OWL and SPARQL + (During this lecture we will continue the discussion of the differences between Protege, OWL, SPARQL (and Jena) APIs. The expected outcome is a comparison between the APIs.)
- Policies and Semantic Web Rules in Practise + (During this lecture we will discuss the important requirements in the semantic web services context, focusing on policies.)
- Context-aware Scenarios + (During this lecture you will present to your colleagues the scenario which you would like to work with.)
- Modelling your own ontology - 2013 + (During this lecture you will present your own ontology, and we discuss the structure and evtl. problems)
- UNIKUM:Julebord + (Eat christmas food and drink christmas beverages)
- Mobile Edge Computing + (Edge Computing Controllers make decisions about services based on information retrieved from nodes, and we aim to check the privacy issues in such decisions.)
- ENDRISK + (Endrisk proposal to Horizon 2020, not succ … Endrisk proposal to Horizon 2020, not successful</br>Our mission in this project “Equitable, Novel, Digitally supported Research Interventions for Sustainable Knowledge – shared as Understandable, Unbiased and Utilized information to manage poverty related infectious diseases in Sub-Saharan Africa” - ENDRISK - is to contribute research findings and practice development strategies to tackling PRDs and reduce disease burden via evidence informed services that contributes to regional and global health security that can end health disparities globally. Our effort will contribute to equity, equality and broad collective engagement that drive transformation to resilient and inclusive health services for all. </br></br>ENDRISK has three main objectives; (1) Community Impact of digital support to community health workers and community vigilance to reduce PRD, (2) Community-based studies and clinical trial on prevention, treatment and diagnosis of PRD, with TB and associated factors as model case, and (3) Improved Research Capacity for all partners.proved Research Capacity for all partners.)
- Energy Communities - paving the way for a participatory green transition + (Energy Communities med nabolag, sameie eller liknende * felles kapasitet i f.eks PV og batteri, * energy distribution across buildings (tgnenergy model) * common energy contracting Challenges * secondary transformator * seasonal effects)
- NGINO + (Enhance Participation of Norway in the Next Generation Internet (NGI) initiaties)
- Wiki update 2016 + (Enhancement of project pages, with focus on BasicInternet.org and IoTSec.no)
- Public Holidays + (Enjoy the holidays: Implement and test your application.)
- SCOTT:WP09 + (Ensuring a high level of comfort and simul … Ensuring a high level of comfort and simultaneously safety and security in facility areas (buildings, infrastructure objects, and installations) is one of the most challenging and ambitious directions of development in situation awareness systems. Modern buildings are strongly focused on providing user-oriented services in order to increase the human comfort and safety within the facility. It is hard to reconcile it with keeping high safety and security level at the same time due to the necessity of following the cumbersome security procedures. The goal of this use case is to simplify these procedures by introducing the self-aware wireless network of smart components for access control and facility monitoring with integrated identification and authorization capabilities. The main objectives are related to detection, identification and localization of different objects and their behaviour within facilities or areas of critical infrastructure. The other issue is extending the access control in physically separated locations with virtually defined areas with locally defined rules (e.g. customized area and behaviour definition, virtual fences etc.).</br>The business requirements (from the industry perspective) indicate an urgent need for easy deployment of systems that allows for precise monitoring and tracking of objects (people, vehicles, tools, equipment etc.) in virtually defined areas of an industrial facility in order to support its business operations and processes with respect to safety and security. Thus, the main objectives of this Use Case are:</br>* Increasing the security level of the critical infrastructure (e.g. fuel sector) and optimization of planning, managing and accounting overhauls and maintenance services in the industry installations (e.g. refinery).</br>* Increasing the reliability level of the security systems infrastructure by utilization of hot redundancy mechanisms and improvement of the maintenance service and minimization of breakdown/accident reaction time.</br>* Demonstration of self-aware Internet-of-Things (IoT) network capabilities in access control and safety critical applications, in order to increase its availability and reduce time of reaction for component failure as well as inaccessibility of its components.well as inaccessibility of its components.)
- UserDrivenNetwork + (Envisage the)
- DigiSudan + (Establish Wifi connectivity at Universities in Sudan, and enable student access)
- Civil-UAV + (Establish a project for the JU ECSEL, subm … Establish a project for the JU ECSEL, submission deadline in September, pre-proposal submission ??</br></br>The main objectives of the proposal are</br>* to pave the way for beyond line-of-sight (BLOS) operation</br>* to pave the way for beyond radio line-of-sight (BRLOS) operation</br>* to bring the application players together for a streamlined development</br>* to pave the way for certification of a long-endurance UAV for certification of a long-endurance UAV)
- Running SWRL rules on your ontology + (Establish rules for your own scenario and get them implemented)
- DigI:TC4.1 + (Establishing business opportunities for a combined energy and communication hot-spot in Mali)
- Empower the uptake of renewable energy in Africa + (Evaluate and analyse the potential of renewable energy systems in Africa using open available data)
- Mid4700 + (Evaluate the current course)
- End-to-end QoS + (Evaluate the performance of QoS-mechanisms based on active probing in a tactical MANET using IPSEC.)
- Managed Wireless for Internet and IoT + (Examples of managed wireless, and needs for Internet of Things (IoT) management)
- UNIKUM:Semantic MediaWiki for personal usage + (Explain the basics about the Semantic MediaWiki * Install and configuration * Extensions * Properties, templates, forms, categories * Result formats)
- Simulation of subsea communication networks + (FFI is involved in a research project focu … FFI is involved in a research project focusing on robust acoustic communication in underwater networks. The goal of the project is to establish an simulation tool for acoustical subsea communication, using four selected scenarios as target cases for demonstration. </br>Initial work is already performed and has indicated a set of protocols, parameters and models for subsea communication. First results indicate that a more-in-depth study is needed in order to</br>* identify the focus parameters to be addressed through simulations</br>* establish new simulations addressing the focus parameters</br>* evaluate the evaluations with respect to a.o. applicability and accuracy for the selected scenarios</br>* revisit the protocols and parameters to aim for enhanced performance</br>The main outcome of the thesis shall address the different network protocols for the various scenarios, and simulate the sensitivity of the parameters. Given the ongoing plans for real-life measurements, the study shall also address a comparison of the simulations with these measurements.f the simulations with these measurements.)
- Easter holidays :-) + (Feel FREE to enhance your ontologies)
- UNIKUM:Suffleboard + (First, have some dinner all together. After dinner, go to Tilt and play shuffleboard.)
- Connected Drones + (For a short overview, have a look at http://www.mn.uio.no/its/forskning/aktuelt/aktuelle-saker/2017/drones.html)
- Energy Consumption Database for the Digital Transformation (2/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Establish the low-power monitoring infrastructure in the home (1/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Establish the AI infrastructure for analysis of the electricity data (3/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Monitoring the home energy distribution - Feature extraction through AI (4/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Potential of contributions from private homes to energy stability (5/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Wireless control systems for home appliances to support the energy transition (6/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Security and privacy assessment of wireless in-house control systems for energy appliances (7/7) + (Future Homes have the opportunity to be ad … Future Homes have the opportunity to be adaptive to the quality of the electricity grid. By monitoring the energy consumption on fuse-level every 10 seconds, one can generate energy profiles of private homes. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services.</br>Given the size of the work, several theses can be performed on the topic:</br># Establish the low-power monitoring infrastructure in the home (Raspberry Pi/Arduino and ModBus to read from Power Taggs)</br># Create the public source database for energy consumption, combining high-resolution energy data with 3rd party information such as weather data</br># Establish the AI infrastructure for analysis of the electricity data</br># Monitoring the home energy distribution - Feature extraction through AI</br># Potential of contributions from private homes to energy stability</br># Wireless control systems for home appliances to support the energy transition</br># Security and privacy assessment of wireless in-house control systems for energy appliances</br>The assessment will be based on high-frequency consumption data from actual smart meters and power taggs by fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Semantic Modeling of a Smart Home Infrastructure + (Future Homes will have one or several gate … Future Homes will have one or several gateways to information on the Internet. Norway will introduce Smart Meters by 2019, giving the opportunity to develop new services on top of this infrastructure. The envisaged modeling of the Smart Home Infrastructure will be based on the planned infrastructure for Smart Meters, and extended towards future capabilities. Main focus is on security and privacy for the user.</br>The thesis is related to the http://IoTSec.no project.s related to the http://IoTSec.no project.)
- Novel Services through Consumption Monitoring + (Future Homes will have one or several gate … Future Homes will have one or several gateways to information on the Internet. Norway will introduce Smart Meters by 2019, giving the opportunity to develop new services on top of this infrastructure. Current regulations suggest a reading of power values 1/hour, or in maximum every 15 min. Given a high-frequency reading of power consumption (1/10s, 1/min) might give an opportunity to introduce new services. One of such services is the ''virtual fall sensor'', establishing a probability of an abnormal situation with the readings from e.g. power consumption. Such an analysis, comparing the habits/profile of the user with the actual consumption, is suggested to be performed in the home of the user, and thus preserve privacy.</br></br>The envisaged assessment of novel services will be based on high-frequency consumption data from actual smart meters, or even from fuse level, as well as modelling of services.e level, as well as modelling of services.)
- Network-aware traffic shaping + (Future Networks need to be application awa … Future Networks need to be application aware in order to provide an appropriate Quality of Service. As an example, 5G networks will start in cities with high-traffic, but people will use the 5G applications also in areas where mobile networks are weak. Given a traffic jam somewhere out in the forest, currently all traffic tries to achieve maximum throughput, without any form of prioritisation. </br></br>This thesis will analyse the traffic requirements of mobile applications (apps), will create a database containing the traffic characteristics, e.g. port number, encryption, url-specific content, communication protocol.</br></br>Based on the analysis, the thesis will suggest a method for prioritisation of traffic types, depending on the network characteristics, e.g. throughput. network characteristics, e.g. throughput.)
- Wireless Handover Simulations + (Get a programming tool for simulating the handover times between wireless and mobile networks. Establish scenarios for wireless to mobile, mobile to mobile and wireless to wireless; simulate the scenarios and discuss the results)
- Tutorial Web Protege + (Get hands-on experience with Web Protege)