Academic literature on the topic 'Portable electronic platform'

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Journal articles on the topic "Portable electronic platform"

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Zubir Suboh, Mohd, Muhyi Yaakop, Mohd Azlan Abu, et al. "Portable heart valve disease screening device using electronic stethoscope." Indonesian Journal of Electrical Engineering and Computer Science 15, no. 1 (2019): 122. http://dx.doi.org/10.11591/ijeecs.v15.i1.pp122-132.

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<p><em>Heart sound analysis has been a popular topic of studies since a few decades ago. Most of the studies are done in PC platform since embedding the complex algorithm into a simple small device such as microcontroller board seems to be very difficult due to limited processing speed and memory. This study classifies normal and abnormal heart sound signal from four categories of Heart Valve Disease. An automated system that consists of segmentation, feature extraction and classification of the heart sound signal is developed in PC and hardware platforms. A multimedia board completed with a single board computer, audio codec and graphic LCD is used to make a portable heart valve disease screening device with electronic stethoscope as the input for the system. Both system recorded 96.3% specificity. However, the portable device has only 77.78% sensitivity and 87.04% accuracy compared to PC platform that have sensitivity and accuracy of more than 90%.</em></p>
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Murru, Fabio, Francisco J. Romero, Roberto Sánchez-Mudarra, et al. "Portable Instrument for Hemoglobin Determination Using Room-Temperature Phosphorescent Carbon Dots." Nanomaterials 10, no. 5 (2020): 825. http://dx.doi.org/10.3390/nano10050825.

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A portable reconfigurable platform for hemoglobin determination based on inner filter quenching of room-temperature phosphorescent carbon dots (CDs) in the presence of H2O2 is described. The electronic setup consists of a light-emitting diode (LED) as the carbon dot optical exciter and a photodiode as a light-to-current converter integrated in the same instrument. The reconfigurable feature provides adaptability to use the platform as an analytical probe for CDs coming from different batches with some variations in luminescence characteristics. The variables of the reaction were optimized, such as pH, concentration of reagents, and response time; as well as the variables of the portable device, such as LED voltage, photodiode sensitivity, and adjustment of the measuring range by a reconfigurable electronic system. The portable device allowed the determination of hemoglobin with good sensitivity, with a detection limit of 6.2 nM and range up to 125 nM.
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Montes-Cebrián, Yaiza, Albert Álvarez-Carulla, Jordi Colomer-Farrarons, Manel Puig-Vidal, and Pere Ll Miribel-Català. "Self-Powered Portable Electronic Reader for Point-of-Care Amperometric Measurements." Sensors 19, no. 17 (2019): 3715. http://dx.doi.org/10.3390/s19173715.

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In this work, we present a self-powered electronic reader (e-reader) for point-of-care diagnostics based on the use of a fuel cell (FC) which works as a power source and as a sensor. The self-powered e-reader extracts the energy from the FC to supply the electronic components concomitantly, while performing the detection of the fuel concentration. The designed electronics rely on straightforward standards for low power consumption, resulting in a robust and low power device without needing an external power source. Besides, the custom electronic instrumentation platform can process and display fuel concentration without requiring any type of laboratory equipment. In this study, we present the electronics system in detail and describe all modules that make up the system. Furthermore, we validate the device’s operation with different emulated FCs and sensors presented in the literature. The e-reader can be adjusted to numerous current ranges up to 3 mA, with a 13 nA resolution and an uncertainty of 1.8%. Besides, it only consumes 900 µW in the low power mode of operation, and it can operate with a minimum voltage of 330 mV. This concept can be extended to a wide range of fields, from biomedical to environmental applications.
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García, Antonio, M. M. Erenas, Eugenio D. Marinetto, et al. "Mobile phone platform as portable chemical analyzer." Sensors and Actuators B: Chemical 156, no. 1 (2011): 350–59. http://dx.doi.org/10.1016/j.snb.2011.04.045.

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Aracil, Carmen, Francisco Perdigones, José Miguel Moreno, Antonio Luque, and José Manuel Quero. "Portable Lab-on-PCB platform for autonomous micromixing." Microelectronic Engineering 131 (January 2015): 13–18. http://dx.doi.org/10.1016/j.mee.2014.10.018.

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López-Luna, Ángel, Patricia Arroyo, Daniel Matatagui, Carlos Sánchez-Vicente, and Jesús Lozano. "A Versatile SAW Sensor-Based Modular and Portable Platform for a Multi-Sensor Device." Micromachines 16, no. 2 (2025): 170. https://doi.org/10.3390/mi16020170.

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This study presents the development and characterization of a novel electronic nose system based on customized surface acoustic wave (SAW) sensors. The system includes four sensors, customized with different custom polymer coatings, in order to detect volatile organic compounds (VOCs). The main innovation lies in the design of a robust and versatile switching electronics system that allows for the integration of the SAW sensors into portable systems, as well as interoperability with other gas sensor technologies. The system includes a modular architecture that allows multiple sensor arrays to be combined to improve the selectivity and discrimination of complex gas mixtures. To verify the proper performance of the system and the detection capability of the manufactured sensors, experimental laboratory tests have been carried out. Specifically, ethanol and acetone measurements up to a 2000 ppm concentration have been performed. These preliminary experimental results demonstrate the capability of the SAW sensors with different response patterns across the sensor array. In particular, the sensor made with the polyvinyl acetate polymer exhibits high sensitivity to both VOCs.
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Dudala, Sohan, Satish Kumar Dubey, Arshad Javed, Anasuya Ganguly, Suman Kapur, and Sanket Goel. "Portable Chemiluminescence Detection Platform and Its Application in Creatinine Detection." IEEE Sensors Journal 22, no. 7 (2022): 7177–84. http://dx.doi.org/10.1109/jsen.2022.3151694.

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Hui, S. Y. R., and W. W. C. Ho. "A New Generation of Universal Contactless Battery Charging Platform for Portable Consumer Electronic Equipment." IEEE Transactions on Power Electronics 20, no. 3 (2005): 620–27. http://dx.doi.org/10.1109/tpel.2005.846550.

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Wen-Chung Kao, Wei-Hsin Chen, Chun-Kuo Yu, Chin-Ming Hong, and Sheng-Yuan Lin. "Portable real-time homecare system design with digital camera platform." IEEE Transactions on Consumer Electronics 51, no. 4 (2005): 1035–41. http://dx.doi.org/10.1109/tce.2005.1561822.

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Tomizawa, Tetsuo, Masato Shibuya, Ryodo Tanaka, and Takeshi Nishida. "Developing a Remotely Operated Portable Mobile Robot." Journal of Robotics and Mechatronics 30, no. 4 (2018): 584–90. http://dx.doi.org/10.20965/jrm.2018.p0584.

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The Tsukuba Challenge is one of the few technical events where it is permitted to conduct demonstrations of autonomous mobile robots on a public road in a city. Thus, when limited trial runs are available several times per year, domestic and foreign teams must bring robots to the venue and conduct experiments using robots and observation instruments. For a team located far away from the venue, the cost of transporting equipment and staff each time becomes prohibitive. In this research, to reduce the cost of transporting robots and personnel, we design and develop a mobile robot platform that is easy to transport and deploy. Additionally, to allow remote experts to generate maps and routes without visiting the site, we construct a remote operating system that operates over the internet. In this paper, we describe the portable mobile robot platform and the software configuration needed for remote operation. Then, we report the results of our verification test.
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Dissertations / Theses on the topic "Portable electronic platform"

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Wallin, Herlöfsson Simon. "Improvement and evaluation of the Integrated Biosensor Platform." Thesis, Linköpings universitet, Biosensorer och bioelektronik, 2016. http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-133173.

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With a rising demand for low cost solutions to healthcare services, analysis, and toxicology, the Integrated Biosensor Platform developed by Acreo Swedish ICT and Linköping University, fills the gap where conventional sensors are not suitable. This report focuses the update of hardware and software in order to increase stability, introduce new sensors, and allow for wireless communication through NFC. Positive result and increased stability is presented, when measuring with a stable reference potential. The potential of NFC is shown in a breadboard setup and problems when printing an antenna is elaborated in terms of coil turns and size. An ethanol sensor is introduced to the platform and discussion manly focuses on characterization of the sensor. A potentiometric setup is also tested with low results and the problems of the current platform as a potentiometric sensor is discussed. From the collective results and a broader look at society is the justification of the platform existence evaluated. The need for the platform, especially as a mean to solve health problems in development countries, is argued to justify the environmental footprint of a disposable platform.<br>Med en ökad efterfrågan på tjänster inom hälsovård, analys, och toxikologi är målet för Integrated Biosensor Platform från Acreo Swedish ICT och Linköpings Universitet, att fylla gapet där konventionella sensorer inte är brukliga. Den här rapporten fokuserar på uppdateringen av hård och mjukvara för att öka stabiliteten, introduktionen av nya sensorer samt möjligheten till trådlös kommunikation genom NFC. Positiva resultat och ökad stabilitet presenteras med introduktionen av en stabil referens spänning. NFC och dess möjligheter testas i utvecklingsmiljö och problem diskuteras i samband med tryckta antenner utifrån storlek och design. En ethanolsensor inkluderas till plattformen och resultatet utvärderas främst från användningsområden och karaktärisering av sensorn. En potentiometrisk konfiguration av plattformen testas med lågt resultat och problemen med den nuvarande plattformen som potentiometrisk sensor presenteras. En samlad utvärdering av plattformens existensberättigande görs från både resultat som rapporten presenterat och en omvärldsanalys. Behovet av plattformen är, framför allt som en lösning till hälsovård i utvecklingsländer, ansett att rättfärdiga dess negativa miljöpåverkan som en "engångssensor".
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Books on the topic "Portable electronic platform"

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Sams teach yourself iOS application development in 24 hours. Sams Pub., 2012.

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Trepulė, Elena, Airina Volungevičienė, Margarita Teresevičienė, et al. Guidelines for open and online learning assessment and recognition with reference to the National and European qualification framework: micro-credentials as a proposal for tuning and transparency. Vytauto Didžiojo universitetas, 2021. http://dx.doi.org/10.7220/9786094674792.

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These Guidelines are one of the results of the four-year research project “Open Online Learning for Digital and Networked Society” (2017-2021). The project objective was to enable university teachers to design open and online learning through open and online learning curriculum and environment applying learning analytics as a metacognitive tool and creating open and online learning assessment and recognition practices, responding to the needs of digital and networked society. The research of the project resulted in 10 scientific publications and 2 studies prepared by Vytautas Magnus university Institute of Innovative Studies research team in collaboration with their international research partners from Germany, Spain and Portugal. The final stage of the research attempted creating open and online learning assessment and recognition practices, responding to the learner needs in contemporary digital and networked society. The need for open learning recognition has been increasing during the recent decade while the developments of open learning related to the Covid 19 pandemics have dramatically increased the need for systematic and high-quality assessment and recognition of learning acquired online. The given time also relates to the increased need to offer micro-credentials to learners, as well as a rising need for universities to prepare for micro-credentialization and issue new digital credentials to learners who are regular students, as well as adult learners joining for single courses. The increased need of all labour - market participants for frequent and fast renewal of competences requires a well working and easy to use system of open learning assessment and recognition. For learners, it is critical that the micro-credentials are well linked to national and European qualification frameworks, as well as European digital credential infrastructures (e.g., Europass and similar). For employers, it is important to receive requested quality information that is encrypted in the metadata of the credential. While for universities, there is the need to properly prepare institutional digital infrastructure, organizational procedures, descriptions of open learning opportunities and virtual learning environments to share, import and export the meta-data easily and seamlessly through European Digital Hub service infrastructures, as well as ensure that academic and administrative staff has digital competencies to design, issue and recognise open learning through digital and micro-credentials. The first chapter of the Guidelines provides a background view of the European Qualification Framework and National Qualification frameworks for the further system of gaining, stacking and modelling further qualifications through open online learning. The second chapter suggests the review of current European policy papers and consultations on the establishment of micro-credentials in European higher education. The findings of the report of micro-credentials higher education consultation group “European Approach to Micro-credentials” is shortly introduced, as well as important policy discussions taking place. Responding to the Rome Bologna Comunique 2020, where the ministers responsible for higher education agreed to support lifelong learning through issuing micro-credentials, a joint endeavour of DG Employment, Social Affairs and Inclusion and DG Research and Innovation resulted in one of the most important political documents highlighting the potential of micro-credentials towards economic, social and education innovations. The consultation group of experts from the Member States defined the approach to micro-credentials to facilitate their validation, recognition and portability, as well as to foster a larger uptake to support individual learning in any subject area and at any stage of life or career. The Consultation Group also suggested further urgent topics to be discussed, including the storage, data exchange, portability, and data standards of micro-credentials and proposed EU Standard of constitutive elements of micro-credentials. The third chapter is devoted to the institutional readiness to issue and to recognize digital and micro-credentials. Universities need strategic decisions and procedures ready to be enacted for assessment of open learning and issuing micro-credentials. The administrative and academic staff needs to be aware and confident to follow these procedures while keeping the quality assurance procedures in place, as well. The process needs to include increasing teacher awareness in the processes of open learning assessment and the role of micro-credentials for the competitiveness of lifelong learners in general. When the strategic documents and procedures to assess open learning are in place and the staff is ready and well aware of the processes, the description of the courses and the virtual learning environment needs to be prepared to provide the necessary metadata for the assessment of open learning and issuing of micro-credentials. Different innovation-driven projects offer solutions: OEPass developed a pilot Learning Passport, based on European Diploma Supplement, MicroHE developed a portal Credentify for displaying, verifying and sharing micro-credential data. Credentify platform is using Blockchain technology and is developed to comply with European Qualifications Framework. Institutions, willing to join Credentify platform, should make strategic discussions to apply micro-credential metadata standards. The ECCOE project building on outcomes of OEPass and MicroHE offers an all-encompassing set of quality descriptors for credentials and the descriptions of learning opportunities in higher education. The third chapter also describes the requirements for university structures to interact with the Europass digital credentials infrastructure. In 2020, European Commission launched a new Europass platform with Digital Credential Infrastructure in place. Higher education institutions issuing micro-credentials linked to Europass digital credentials infrastructure may offer added value for the learners and can increase reliability and fraud-resistant information for the employers. However, before using Europass Digital Credentials, universities should fulfil the necessary preconditions that include obtaining a qualified electronic seal, installing additional software and preparing the necessary data templates. Moreover, the virtual learning environment needs to be prepared to export learning outcomes to a digital credential, maintaining and securing learner authentication. Open learning opportunity descriptions also need to be adjusted to transfer and match information for the credential meta-data. The Fourth chapter illustrates how digital badges as a type of micro-credentials in open online learning assessment may be used in higher education to create added value for the learners and employers. An adequately provided metadata allows using digital badges as a valuable tool for recognition in all learning settings, including formal, non-formal and informal.
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Book chapters on the topic "Portable electronic platform"

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Piedimonte, Paola. "Electronic Bio-Reconfigurable Impedance Platform for High Sensitivity Detection of Target Analytes." In Special Topics in Information Technology. Springer Nature Switzerland, 2024. http://dx.doi.org/10.1007/978-3-031-51500-2_5.

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AbstractThe present research presents a portable bioelectronic platform for multiplex detection to read biosensor chips with several sensing sites for real-time analyte capture. The technique is based on Differential Impedance Sensing (DIS) of the target through functionalized nanoparticle amplification. Gold-interdigitated microelectrodes are the core of the biosensing system. They are designed in a differential configuration, reference and active sensor, to counteract all possible mismatches such as temperature fluctuations and variations in the ion content of the solution. The surface of the sensor is biochemically functionalized with a synthetic probe specifically developed for the selected target. The successful combination of all of these elements allowed the system to detect IgG antibodies spiked in buffer with a limit of detection of below 100 pg/mL. In a real case study for viral infection diagnosis, the system has been challenged with infected human serum samples for digital counts of anti-dengue virus antibodies, achieving the detection of clinically relevant target concentrations. Also, the bio-reconfigurability of the system has been successfully tested with oligonucleotide detection down to pM target concentration. To allow the portability of the entire measurement setup, the setup has been equipped with a custom electronic board based on an FPGA module allowing a multiplexing approach for the parallel reading of several electrodes. The final system provides simple and effective bio-reconfigurability, exploiting advances in bio-recognition through proper probe selection and boosting the possible use of multiplex sensing to a broad spectrum of needs.
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Blobel Bernd. "Architecture and Tools for Open, Interoperable and Portable EHRs." In Studies in Health Technology and Informatics. IOS Press, 2003. https://doi.org/10.3233/978-1-60750-941-7-25.

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Electronic Health Record (EHR) Systems provide the kernel application of health information Systems and health networks which should be independent of complexity, localisation constraints, platforms, protocols, etc. Based on shared care information Systems&amp;apos; requirements for high level interoperability, a generic component architecture has been introduced. For implementing, running and maintaining acceptable and useable health information Systems components, all views of the ISO Reference Model &amp;ndash; Open Distributed Processing have to be considered. Following the Model Driven Architecture paradigm, a reference model as well as concept-representing domain models both independent of platforms must be specified, which are combined and harmonised as well as automatically transferred into platform-specific models using appropriate tools.
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Blobel Bernd and Pharow Peter. "Implementing MDA-based Distributed, Interoperable, Flexible, Scalable, Portable, and Secure EHR Systems." In Studies in Health Technology and Informatics. IOS Press, 2004. https://doi.org/10.3233/978-1-60750-946-2-394.

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Electronic Health Record (EHR) systems provide the kernel application of health information systems and health networks which should be independent of complexity, localisation constraints, platforms, protocols, etc. Based on shared care information systems&amp;apos; requirements for high level interoperability, a generic component architecture has been introduced. For implementing, running and maintaining acceptable and useable health information systems components, all views of the ISO Reference Model &amp;ndash; Open Distributed Processing have to be considered. Following the Model Driven Architecture paradigm, a reference model as well as concept-representing domain models both independent of platforms must be specified, which are combined and harmonised as well as automatically transferred into platform-specific models using appropriate tools.
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Giannakopoulou, Olympia, Petros Toumpaniaris, Ioannis Kouris, et al. "A Platform for Health Record Management of the Conscripts in the Hellenic Navy." In Studies in Health Technology and Informatics. IOS Press, 2021. http://dx.doi.org/10.3233/shti210181.

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eMass project aims to digitalize the medical examination procedure of recruitment phase of conscripts in the Hellenic Navy. eMass integrates recruits’ Electronic Health Record (EHR), while allows a pre-screening test, through portable telemedicine equipment. The data will be exploited to assess the individual’s cardiovascular risk through appropriate digital tools and algorithms. The eMass digital platform, will be accessible to health experts involved in the recruitment procedure for further assessment and processing. Recruits’ personal data is stored in the database encrypted using Advanced Encryption Standard (AES). eMass solution contributes to beneficial management and medical data analysis, preventing inessential physical or medical examinations minimizing danger of possible errors and reducing time-consuming processes. Moreover, eMass exploits Electronic Health Record data through a machine-learning based cardiovascular risk assessment tool.
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Gobbi, Maria Cristina, and Francisco Machado Filho. "Digital Revolution in Latin America beyond Technologies." In Advances in Electronic Government, Digital Divide, and Regional Development. IGI Global, 2016. http://dx.doi.org/10.4018/978-1-4666-8740-0.ch024.

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The challenge of interactive digital television (iDTV) in Latin America is to give opportunity of technological access and participation to a significant parcel of the population whose main information source is (still analog) television. The increase in connected device possession and system digitalization has been modifying consumption habits of audiovisual content. Television is still the home center, but now it divides the attention with mobile phones, smartphones, tablets and laptops, delineating a consumption that is multitasking, portable, mobile etc., but not always linked (independent devices use), there are multi-platform services and products that allow this interaction, though. Several externalities must be considered, either the different stages of digital signal development and application, or the cultural diversity, laws, technological unfolding, education, and even the economic aspects of each country. The paper aims to provide demands of how to digitally include these millions of citizens who don't have internet access.
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Elkhodr, Mahmoud, Seyed Shahrestani, and Hon Cheung. "Preserving the Privacy of Patient Records in Health Monitoring Systems." In Theory and Practice of Cryptography Solutions for Secure Information Systems. IGI Global, 2013. http://dx.doi.org/10.4018/978-1-4666-4030-6.ch019.

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The goal of this chapter is to discuss the challenges of generic security protocols and platforms for securing Electronic Health Records (EHR) in general and for their adoption in shared care environments in particular. The chapter introduces various methods and security solutions based on existing protocols, discusses their potentials, and describes some experiences with their implementations. Amongst the main challenges that e-health technology faces, security is considered as one of the major obstacles to its deployment. The chapter proposes an authentication approach, referred to as Ubiquitous Health Trust Protocol (UHTP), which aims at minimizing the security risk associated with the remote access of EHRs using portable devices. In particular, the proposed approach has been used to create ways for secure collaboration providing a set of generic services such as read/write, authentication, and trust management, as well as advanced functionality for mobile access. The experience in adopting the approach using Java on the Android platform is described.
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Lamantia, Joe. "Creating Successful Portals with a Design Framework." In Electronic Services. IGI Global, 2010. http://dx.doi.org/10.4018/978-1-61520-967-5.ch012.

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Portal designers and managers face the difficulties of creating effective information architectures for portals, dashboards, and tile-based platforms for delivering business information and functionality using only flat portlets. This article introduces the idea of a system of standardized building blocks that can simplifies portal design and management, and effectively support growth in content, functionality, and users over time. In enterprise and other large scale social settings, using standardized components allows for the creation of a library of tiles that can be shared across communities of users. It then outlines the design principles underlying the building block system, and the simple guidelines for combining blocks together to create any type of tile-based environment.
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Maheshwari, Bharat, Vinod Kumar, Uma Kumar, and Vedmani Sharan. "A Framework for E-Government Portal Development." In E-Government Development and Diffusion. IGI Global, 2009. http://dx.doi.org/10.4018/978-1-60566-713-3.ch001.

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Electronic government (E-government) portals are considered one of the most popular conduits for offering government services online. Successful e-government portal development projects have been lauded in several academic and practitioner papers. These projects have concentrated on integrating government agencies by working to break the traditional silo-based view of the government and providing seamless integrated online services to citizens. However, the rate of adoption for e-government portals by citizens has been much lower than expected. A major reason identified in the literature for this is a lack of understanding of managerial considerations that affect portal development and subsequent adoption. In this chapter, we present a framework of managerial considerations for the development of e-government portals. The framework builds upon available literature in the field of e-government and public administration. It consists of eight key front-office and back-office considerations that contribute to successful development of an e-government portal. It provides an excellent platform for future research on e-government portals. The framework can also be extended to managers as a useful tool for ascertaining the effectiveness of their government portal development.
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Mane, Manisha B., and Bhausaheb Panage. "University Library Portal." In Library Science and Administration. IGI Global, 2018. http://dx.doi.org/10.4018/978-1-5225-3914-8.ch025.

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In today's modern digital information environment, a well-defined e-platform is needed to organize, store, retrieve and dissemination of information effectively. A library portal is highly beneficial tool for web-enabled information services. Most of the university libraries are adding e-resources to their collection. The utility of these e-resources will be limited in the absence of an effective library portal that facilitates the users to exploit these to the maximum extent. Web portals are the tools that enhance access to the e-resources by providing visibility to various e-resources. This paper highlights the role of a library portal in providing effective library services in electronic environment. An attempt has been made to explain the term ‘library portal', need of university library portal, Role of Librarian in designing library portal and development of library portal literature study at national and international level.
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Mane, Manisha B., and Bhausaheb Panage. "University Library Portal." In E-Discovery Tools and Applications in Modern Libraries. IGI Global, 2016. http://dx.doi.org/10.4018/978-1-5225-0474-0.ch004.

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ABSTRACT: In today's modern digital information environment, a well-defined e-platform is needed to organize, store, retrieve and dissemination of information effectively. A library portal is highly beneficial tool for web-enabled information services. Most of the university libraries are adding e-resources to their collection. The utility of these e-resources will be limited in the absence of an effective library portal that facilitates the users to exploit these to the maximum extent. Web portals are the tools that enhance access to the e-resources by providing visibility to various e-resources. This paper highlights the role of a library portal in providing effective library services in electronic environment. An attempt has been made to explain the term ‘library portal', need of university library portal, Role of Librarian in designing library portal and development of library portal literature study at national and international level.
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Conference papers on the topic "Portable electronic platform"

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Wang, Yao, Yezhi Zhai, Linxin Luo, and Meixia Dong. "A Multi-Modal Portable Guide System Based on The Raspberry Pi Platform." In 2025 6th International Conference on Electrical, Electronic Information and Communication Engineering (EEICE). IEEE, 2025. https://doi.org/10.1109/eeice65049.2025.11033700.

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Stanzione, Kaydon. "Airborne Flight Reporting System." In Vertical Flight Society 71st Annual Forum & Technology Display. The Vertical Flight Society, 2015. http://dx.doi.org/10.4050/f-0071-2015-10221.

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This paper addresses the design, development, and operations of a portable wireless flight reporting system applicable for the unique characteristics of vertical flight aircraft. The Airborne Flight Reporting System™ (AFRS) provides an affordable, yet robust and FAA-compliant "black box" for a wide range of air vehicle platforms. AFRS provides mission-critical in-flight information to air and ground crews and posts enroute flight information useful to individuals vested in passenger and cargo transit. AFRS is also applicable to Unmanned Aerial Vehicles (UAVs) and the FAA's NextGen and the First Responder Network Authority (FirstNet) programs. AFRS is a Portable Electronic Device (PED) which is experiencing increased market expansion since the Federal Aviation Administration (FAA) has determined that airlines can safely expand passenger use of PEDs in airplane mode during all phases of flight. AFRS incorporates advancements in Global Positioning Systems, wireless sensors, and multi-modal communications, making it possible for all categories of general and corporate aircraft to have many of the features and advantages typically found in large commercial aircraft. The benefits of AFRS include improvements in flight safety, air-to-ground communications, early warning, evaluation of crew performance, and flight and maintenance transaction logs.
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La Rosa, M., G. Coppola, P. Dardano, et al. "An all-organic technology platform for electronic devices manufacturing." In 2008 IEEE Interdisciplinary Conf on Portable Info Devices (PORTABLE) - Polytronic 2008 IEEE Conf on Polymers and Adhesives in Microelectronics and Photonics. IEEE, 2008. http://dx.doi.org/10.1109/portable-polytronic.2008.4681289.

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Siham Sayeed, Taskin Md, Md Tamjid Rayhan, and Sabuj Chowdhury. "Bluetooth Low Energy (BLE) based portable medical sensor kit platform with cloud connectivity." In 2018 International Conference on Computer, Communication, Chemical, Material and Electronic Engineering (IC4ME2). IEEE, 2018. http://dx.doi.org/10.1109/ic4me2.2018.8465645.

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Dasgupta, Saumyadeb, Ravi Chavali, Naga Siva Kumar Gunda, and Sushanta Kumar Mitra. "Evaluating the Efficacy of Hollow Fiber Pre-Concentrator for Water Quality Monitoring." In ASME 2015 13th International Conference on Nanochannels, Microchannels, and Minichannels collocated with the ASME 2015 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems. American Society of Mechanical Engineers, 2015. http://dx.doi.org/10.1115/icnmm2015-48192.

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Simple, efficient and compact concentrating systems are of prime importance to the development of portable biosensor based testing solutions for bacterial contamination in potable water. Bacteria are non-uniformly distributed in drinking water and hence testing with small sample volumes does not provide an accurate estimation. Hence bacteria have to be concentrated from large volumes of water of the order of 100 mL as recommended by United States Environmental Protection Agency (USEPA) to a few hundred microliters to accommodate within portable biosensor platforms like Lab on a Chip (LOC), paper microfluidics and micro-cantilever systems. In the present work, we have developed a simplified, rapid, handheld and field deployable concentrating module which involves filtration of contaminated water through a hollow fiber filter using tangential flow filtration and a subsequent elution step to facilitate the transfer of the concentrated mixture on to a portable biosensor platform. The process involves the collection of water sample in a 5 mL syringe. With the aid of two other syringes, the sample volume is concentrated by passing it through the hollow fiber a couple of times. For improved efficiency, bacteria recovery is performed using 1 mL of a non-ionic surfactant (Tween 20) solution as an elution fluid which is administered by another syringe. The bacteria along with the elution fluid form the required concentrated mixture. This elution strategy was found to be very efficient and the product recovery was close to 85%. With further modification to the current configuration, the system can be developed into a highly efficient pre-concentrating module compatible with any microfluidics based platform.
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Marques, Maria, Fabio Lopes, Ruben Costa, Carlos Agostinho, Pedro Oliveira, and Ricardo Jardim-Goncalves. "Innovative Product/Service for Personalized Health Management." In ASME 2019 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/imece2019-11711.

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Abstract Smart4Health project is a European project aiming to empower citizens with electronic health(care) record exchange, personal connected health services, and the ability of data donorship to the scientific community. The Smart4Health platform will enable citizens to manage, collect, store, access and share own health and healthcare data, at international level, through an easy-to-use, secure, constantly accessible and portable health data and services prototype within the EU and beyond. This shall also comprise self-quantified and citizen-generated data through IoT and wearables (e.g. smart watches, smart devices/textiles/shoes). Therefore, the citizen will not only be able to access data produced in the context of health systems, but become important contributor of health data more generally speaking. The information to be collected will feed the Smart4Health platform (4HealthPlatform – 4HP), enabling the Smart4Health user portal (4HealthNavigator – 4HN) services and applications to provide advanced personalised health services accessible whenever and wherever. In this paper we explore the work being developed for data integration coming from different smart devices aiming at enriching the citizen health and personal data as well as providing insight about citizen behaviour and support on how to modify/adapt postures and habits that may contribute for better health and wellbeing.
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Brushett, Fikile R., Adam S. Hollinger, Larry J. Markoski, and Paul J. A. Kenis. "Microfluidic Fuel Cells as Microscale Power Sources and Analytical Platforms." In ASME 2009 Second International Conference on Micro/Nanoscale Heat and Mass Transfer. ASMEDC, 2009. http://dx.doi.org/10.1115/mnhmt2009-18007.

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A continuously growing need for high energy density miniaturized power sources for portable electronic applications has spurred the development of a variety of microscale fuel cells. For portable applications, membrane-based fuel cells using small organic fuels (i.e., methanol, formic acid) are among the most promising configurations as they benefit from the high energy density and easy storage of the liquid fuels. Unfortunately, the performance of these fuel cells is often hindered by membrane-related issues such as water management (i.e., electrode dry-out / flooding) and fuel crossover. Furthermore, high costs of, for example, catalysts and membranes as well as durability concerns still hinder commercialization efforts. To address these challenges we have developed membraneless laminar flow-based fuel cells (LFFCs), which exploit microscale transport phenomena (laminar flow) to compartmentalize streams within a single microchannel. The properties of various fuel and media flexible LFFCs will be presented and novel strategies for improving fuel utilization and power density will be discussed. Furthermore, the performance of a scaled-out 14-channel LFFC prototype is presented. We have also developed a microfluidic fuel cell as a powerful analytical platform to investigate and optimize the complex processes that govern the performance of catalysts and electrodes in an operating fuel cell. This platform bridges the gap between a conventional 3-electrode electrochemical cell and a fuel cell, as it allows for standard electrochemical analysis (e.g., CV, CA, EIS) as well as fuel cell analysis (e.g., IV curves).
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Arun, P., Anto Manuel, Dana Fathima, Elias K. Philip, Maria Shaju, and P. Suryadeep. "Design and Development of an Automated Electronic System for Intravenous Infusion Control, Monitoring and Alerting." In 2nd International Conference on Modern Trends in Engineering Technology and Management. AIJR Publisher, 2023. http://dx.doi.org/10.21467/proceedings.160.25.

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Intravenous simply means “within a vein.” People of all ages who are ill, hurt, dehydrated, or going through surgery use it. Compared to conventional manual techniques, automated IV infusion systems may provide improved accuracy, consistency, efficiency, flexibility, and monitoring increase patient safety, and raise the standard of care delivered by medical professionals. The project’s objective was to design and implement a fully automated low-cost user-friendly portable embedded-based system for monitoring, ceasing, and alerting intravenous infusion. This can be installed in hospitals, clinics, medical offices, ambulatory surgical centers, dialysis centers, nursing homes, and mental health and addiction treatment centers to monitor, cease and alert IV status to medical assistants. Successful design and implementation of an automated system that controls the intravenous infusion, stop the infusion when there’s no fluid inside, sends an alert to the smart device in the nursing room, and continuously updates the intravenous infusion status. Arduino Uno was considered the heart of the device, as it controls all the functions of the device. For connecting the device to the cloud, the ESP826601 WiFi module was used. Blynk was the IoT platform used to display the status of IV infusions. User can enter their username and password using a 4x4 matrix keypad and displays the details via a 16x2 LCD. Based on that, the system was expected to validate the entered user credentials and BMI details to automatically stop the IV infusion and alert medical professionals by monitoring the IV drip infusion. The system’s design and development increased patient safety while decreasing risk elements during infusion. The proposed system can be used to monitor the drip infusion of several patients from the nurse station.
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Ahmed, Ashir, Muhammad Asyraf Danial Bin Karim, Rafiqul Islam, Mostafa Taufiq Ahmed, and Naoki Nakashima. "An Affordable and Standard Digital Healthcare management as a Service (HaaS) for Small Clinics in Developing Countries." In 8th International Conference on Human Interaction and Emerging Technologies. AHFE International, 2022. http://dx.doi.org/10.54941/ahfe1002786.

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Millions of clinics in developing countries are using paper-based health records in their daily operations. Health information is archived in papers, patients use these paper records which are hard to manage. These clinics do not have the technical expertise to deploy electronic health record systems neither can they maintain these systems on their own. Some health data management systems are freely available, but they are not used by these small clinics. Standards such as Health Level Seven (HL7), openEHR, Systematized Nomenclature of Medicine (SNOMED) Clinical Terms, International Classification of Diseases (ICD-11) etc. are becoming more reliable and usable yet they do not reach these clinics.In this study, we propose, design, and implement a Healthcare management as a Service (HaaS) to support such small clinics. HaaS consists of a standards compliant electronic health record system that follows FHIR (Fast Healthcare Interoperability Resources) and openEHR open standards. It provides lightweight, simple, and low-cost front-end applications for small clinics that make the service usable by authorized users without needing technical expertise to store and manage health data. The applications also allow individual patients to store and view their own health data independently. Aside from clinical usage, the platform also supports secondary use of stored health data for medical research purpose. To maintain privacy protection, patients can give different level of health data sharing consent, and only anonymized and consented data are shared to researchers through the platform. To add another layer of privacy protection, clinical data is stored and managed separately by an openEHR compliant server in the platform. Personal and demographic data are stored in a FHIR compliant server.For the implementation, we used open-source software for all components of the platform and deployed the platform using Docker on a local computer. We prepared three applications that can register new patients, record health data, and store them respectively. An application that transforms and stores non-standard compliant health data is also prepared. We prepared an application that displays consented health data. We tested three functions, whether (a) obtained personal and clinical data are separately stored at FHIR and openEHR servers, (b) non-standard compliant data can be fetched and stored to HaaS, and (c) patients’ data privacy are maintained. We manually checked that all data are stored as designed, confirmed the data transfer was made successfully and the privacy was maintained. We transformed and stored 43,835 patient records from Portable Health Clinic system to the platform using the data transformer application. Three dummy patients with a healthcare service provider and 1 independent patient records are also stored to the platform using the three applications. All patient records include personal, demographic, and clinical data. We made a query using the prepared application and checked the result. The result showed that the platform works as designed and is configurable to fit different local needs while maintaining privacy. Future tasks include testing the platform with different small clinics and collect their views to evaluate the effectiveness of the system.
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Ruch, Patrick W., Rui Hu, Luca Capua, et al. "A portable potentiometric electronic tongue leveraging smartphone and cloud platforms." In 2019 IEEE International Symposium on Olfaction and Electronic Nose (ISOEN). IEEE, 2019. http://dx.doi.org/10.1109/isoen.2019.8823244.

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