89 resultados para pacs: personal applications of it


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Maintaining reliability and stability of a power systems in transmission and distribution level becomes a big challenge in present scenario. Grid operators are always responsible to maintain equilibrium between available power generation and demand of end users. Maintaining grid balance is a bigger issue, in case of any unexpected generation shortage or grid disturbance or integration of any renewable energy sources like wind and solar power in the energy mix. In order to compensate such imbalance and to facilitate more renewable energy sources with the grid, energy storage system (ESS) started to be playing an important role with the advancement of the state of the art technology. ESS can also help to get reduction in greenhouse gas (GHG) emission by means of integrating more renewable energy sources to the grid. There are various types of Energy Storage (ES) technologies which are being used in power systems network from large scale (above 50MW) to small scale (up to 100KW). Based on the characteristics, each storage technology has their own merits and demerits. This paper carried out extensive review study and verifies merits and demerits of each storage technology and identifies the suitable technology for the future. This paper also has conducted feasibility study with the aid of E-SelectTM tool for various ES technologies in applications point of view at different grid locations. This review study helps to evaluate feasible ES technology for a particular electrical application and also helps to develop smart hybrid storage system for grid applications in efficient way.

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 This thesis presents a number of applications of symbolic computing to the study of differential equations. In particular, three packages have been produced for the computer algebra system MAPLE and used to find a variety of symmetries (and corresponding invariant solutions) for a range of differential systems.

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An overview is given of the design and implementation of a platform for fast external sensor integration in an industrial robot system called ABB S4CPlus. As an application and motivating example, the implementation of force-controlled grinding and deburring within the AUTOFETT-project is discussed. Experiences from industrial usage of the fully developed prototype confirms the appropriateness of the design choices, thus also confirming the fact that control and software need to be tightly integrated. The new sensor can be used for the prototyping and development of a wide variety of new applications

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Protein fibre wastes from animal hairs, feathers and insect secreted filaments can be aptly utilized by converting them into ultra-fine particles. Particles from animal protein fibres present large surface-to-weight ratio and significantly enhanced surface reactivity, that have opened up novel applications in both textile and non-textile fields. This review article summarizes the state-of-the-art routes to fabricate ultrafine particles from animal protein fibres, including direct route of mechanical milling of fibres and indirect route from fibre proteins. Ongoing research trends in novel applications of protein fibre particles in various fields, such as biomedical science, environmental protection and composite structures are presented. © 2014 The Korean Fiber Society and Springer Science+Business Media Dordrecht.

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The goal of our study is to investigate the longitudinal effects of one intervention program for schoolgirls in the Information Technology (IT) field. This bi-annual event has been conducted regularly since 2006 with the aim of confronting a decline in the interest among girls to study IT and promoting study and work opportunities in the field. Each event has been evaluated with pre- and post-event surveys. Longitudinally, both students and teachers have also been surveyed three to four years after the event in which they participated. Results from the 2006 cohort surveyed in 2009-2010 are reported on in this paper. The main conclusion is that, unfortunately, any increase in the uptake of IT in schools that occurred as a result of attending the event was transitory. Therefore, it is crucial that inspiring, engaging, and empowering computing classes are being offered continuously at all secondary schools.

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Researchers and decision makers in healthcare are taking great interest in clinical practices where there is a high potential to improve healthcare outcomes and reduce costs by incorporating a myriad of technology solutions. However, to date very few, if any of these IS/IT (information systems/information technology) solutions have realised the expected improvements to quality care with the expected cost reductions. This makes the need to evaluate the impact of IT on overall performance of clinical practices i.e. business value of IT a key strategic imperative in healthcare. To address this key need, we propose a comprehensive framework that conceptualises business value of IT in healthcare in different layers. To illustrate the proposed framework, a case study is used, which serves to examine the proposed conceptual model. The exemplar case study is an Australian-made nursing documentation system; an enterprise system that caters for multiple clinical users in acute healthcare contexts and hence provides appropriate richness to validate the proposed model.

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Advanced high-strength steels (AHSS) are a class of steel used primarily in sheet form for automotive structures. The microstructures of the types of steel in this classification were initially multiphase, with ferrite as the dominant phase; however, grades introduced more recently have been fully martensitic or based on austenite. This chapter initially introduces the requirements of an automotive body structure, then the different classes of AHSS that have been used in the automotive industry and their typical characteristic tensile properties. The specific properties that are required for steel used in automotive body structures are subsequently described, including formability and crash behaviour. Finally, some of the current and future trends in the development of new steel grades are discussed.

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Modern research has focused on the microbial transformation of a huge variety of organic compounds to obtain compounds of therapeutic and/or industrial interest. Microbial transformation is a useful tool for producing new compounds, as a consequence of the variety of reactions for natural products. This article describes the production of many important compounds by biotransformation. Emphasis is placed on reporting the metabolites that may be of special interest to the pharmaceutical and biotechnological industries, as well as the practical aspects of this work in the field of microbial transformations.

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Digitizing the core processes of healthcare delivery is looked at as a solution to control the escalating costs without compromising quality or patient outcomes. However, to date the business value of such IT solutions remains elusive, especially in view of the high failure rate of many solutions coupled with the high user resistance. The uniqueness of the healthcare industry makes measuring the business value of IT a complex missions, yet it is the thesis of this research that such an activity is an essential first step if we are to realise the full potential of IT in healthcare. The role IT governance can play is of high importance to generate business value from IT investments in healthcare. This is investigated using an integrative model that is proffered to conceptualise the business value of IT in healthcare. This conceptual model is then used to guide an exploratory case study based at a leading private healthcare provider in Melbourne-Australia.

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In recent decades, electrospinning of nanofibers has progressed very rapidly in both scientific and technological aspects, and electrospun nanofibers have shown enormous potential for various applications. In particular, electrospun nanofibers have significantly enhanced the application performance of many electronic devices, such as solar cells, mechanical-to-electric energy harvesters, rechargeable batteries, supercapacitors, sensors, field-effect transistors, diodes, photodetectors, and electrochromic devices. This chapter provides a comprehensive summary on the recent progress in the application of electrospun nanofibers in electronic devices.