964 resultados para optical measuring system


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This work had two primary objectives: 1) to produce a working prototype for automated printability assessment and 2) to perform a study of available machine vision and other necessary hardware solutions. The three printability testing methods, IGT Picking,He¬liotest, and mottling, considered in this work have several different requirements and the task was to produce a single automated testing system suitable for all methods. A system was designed and built and its performance was tested using the Heliotest. Working proto¬types are important tools for implementing theoretical methods into practical systems and testing and demonstrating the methodsin real life conditions. The system was found to be sufficient for the Heliotest method. Further testing and possible modifications related to other two test methods were left for future works. A short study of available systems and solutions concerning image acquisition of machine vision was performed. The theoretical part of this study includes lighting systems, optical systems and image acquisition tools, mainly cameras and the underlying physical aspects for each portion.

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Tutkimuksen tavoitteena oli määrittää hyötyjä, joita Stora Enso on saavuttanut ottamalla käyttöön extranet-järjestelmän, jonka avulla asiakkaat voivat seurata toimitusketjuaan. Tässä tutkimuksessa keskityttiin taloudellisten hyötyjen määrittämiseen ja aineettomien hyötyjen tutkiminen rajattiintyön ulkopuolelle. Samalla tuli kehittää mittarit itsepalveluasteiden laskemiseksi tietyille toiminnoille, joita asiakkaat voivat hyödyntää järjestelmässä. Myös toiminnot, joita järjestelmässä pääasiassa käytetään, tuli määrittää kvantitatiivisen tutkimuksen avulla. Myyntihenkilöstön haastattelut toimivat apuna laskettaessa taloudellisia hyötyjä. Teoriaosuudessa käsitellään yleisesti sähköisiä palveluita erityisesti yritysten välistä kaupankäyntiä koskevalla alueella. Myös toimitusketjua ja tunnusluku mittareiden rakentamista on esitelty yleisellä tasolla teoriaosassa. Työn keskeisimmät tulokset ovat itsepalveluasteiden mittarit, niiden avulla lasketut itsepalveluasteet sekä taloudelliset hyödyt, joita yrityson saavuttanut järjestelmän käyttöönoton jälkeen.

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Diplomityön tutkimusfunktio käsittelee toimeksiantajan, Stora Enso Timber Oy Ltd Kotkan sahan, sahalinjan optimointikokonaisuuden relevanttia ongelmakenttää. Tutkimuksen alussa profiloivan sahalinjan tukinpyörityksen, pelkan sivuttaissiirron tai sivulautaoptimoinnin toimivuudesta ei ollut varmuutta. Työn painopistealue on sivulautaoptimointi, jonka toimivuus tutkimuksen alussa on hyvin kyseenalaista tuotantoajossa. Työn tavoitteet kiteytyvät paremman raaka-aineen käyttösuhteen saavuttamiselle, jolloin pitkän aikajänteen kannattavuus on realistisempaa saavuttaa. Kotkan sahalinjan optimointijärjestelmässä on kokonaisuudessaan saavutettu tuotantoajoon hyväksyttävä taso. Tukinpyörityksen tarkkuudessa saavutettiin asetettu tavoite, eli 90 % pyöritystuloksista menee virheikkunaan ± 10° , sekä virheen keskiarvon itseisarvo jasen ympärillä olevan hajonnan summa on maksimissaan 10° . Pelkan sivuttaissiirto todettiin tutkimuksessa sekundääriseksi optimointijärjestelmäksi. Ohjaus perustuu tukkimittarin mittaamaan dataan, jolloin tukinpyörityksen hajonta aiheuttaa epätarkkuutta pelkan suuntauksessa. Pelkan sivuttaisiirron käyttäminen vaatii lisämittauksia, jolloin voidaan varmistua pelkan suuntauksen optimoinnin toimivuudesta. Sivulautaoptimoinnin toimivuuden kehittämisessä saavutettiin se taso, missä todellista kehitystyötä voidaan tehdä. Koeajoissa ja optimointiohjelman tarkastamisessa havaittiin periaatteellisia virheitä, jotka korjattiin. Toimivan sivulautaoptimoinnin myötä on mahdollista hallita paremmin tuotannonohjaus, jolloin tuotanto voidaan etenkin sivulautojen osalta kohdentaa paremmin vastaamaan kysyntää sekä asete-erän hyvää käyttösuhdetta. Raaka-aineen käyttösuhde on parantunut. Yksittäisten asetevertailujen sekä esimerkkilaskelmien perusteella tuottopotentiaali tukinpyörityksen ja sivulautaoptimoinnin osalta on 0,6...1,5 MEUR Välillinen tuottopotentiaali on suurempi, koska tuotantoprosessi sahauksen osalta on erittäin joustava markkinoiden tarpeen muutoksille. Sahalinjalla on mahdollista tuottaa helposti laajalla tukkisumalla laajaa tuotematriisia, jossa sivulautaoptimoinnilla on avainrooli. Tuotannonsuunnittelufunktiota tulee kehittää vastaamaan mahdollisuuksiin,joita sivulautaoptimointi tarjoaa. Tuotematriisi ja sitä vastaavat asetteet lankeavalla tukkisumalla tulee rakentaa uudestaan niiltä osin, joihin sivulautaoptimointi antaa variaatiomahdollisuuksia.

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Quality inspection and assurance is a veryimportant step when today's products are sold to markets. As products are produced in vast quantities, the interest to automate quality inspection tasks has increased correspondingly. Quality inspection tasks usuallyrequire the detection of deficiencies, defined as irregularities in this thesis. Objects containing regular patterns appear quite frequently on certain industries and science, e.g. half-tone raster patterns in the printing industry, crystal lattice structures in solid state physics and solder joints and components in the electronics industry. In this thesis, the problem of regular patterns and irregularities is described in analytical form and three different detection methods are proposed. All the methods are based on characteristics of Fourier transform to represent regular information compactly. Fourier transform enables the separation of regular and irregular parts of an image but the three methods presented are shown to differ in generality and computational complexity. Need to detect fine and sparse details is common in quality inspection tasks, e.g., locating smallfractures in components in the electronics industry or detecting tearing from paper samples in the printing industry. In this thesis, a general definition of such details is given by defining sufficient statistical properties in the histogram domain. The analytical definition allowsa quantitative comparison of methods designed for detail detection. Based on the definition, the utilisation of existing thresholding methodsis shown to be well motivated. Comparison of thresholding methods shows that minimum error thresholding outperforms other standard methods. The results are successfully applied to a paper printability and runnability inspection setup. Missing dots from a repeating raster pattern are detected from Heliotest strips and small surface defects from IGT picking papers.

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Globalization and new information technologies mean that organizations have to face world-wide competition in rapidly transforming, unpredictable environments, and thus the ability to constantly generate novel and improved products, services and processes has become quintessential for organizational success. Performance in turbulent environments is, above all, influenced by the organization's capability for renewal. Renewal capability consists of the ability of the organization to replicate, adapt, develop and change its assets, capabilities and strategies. An organization with a high renewal capability can sustain its current success factors while at the same time building new strengths for the future. This capability does not only mean that the organization is able to respond to today's challenges and to keep up with the changes in its environment, but also that it can actas a forerunner by creating innovations, both at the tactical and strategic levels of operation and thereby change the rules of the market. However, even though it is widely agreed that the dynamic capability for continuous learning, development and renewal is a major source of competitive advantage, there is no widely shared view on how organizational renewal capability should be defined, and the field is characterized by a plethora of concepts and definitions. Furthermore,there is a lack of methods for systematically assessing organizational renewal capability. The dissertation aims to bridge these gaps in the existing research by constructing an integrative theoretical framework for organizational renewal capability and by presenting a method for modeling and measuring this capability. The viability of the measurement tool is demonstrated in several contexts, andthe framework is also applied to assess renewal in inter-organizational networks. In this dissertation, organizational renewal capability is examined by drawing on three complimentary theoretical perspectives: knowledge management, strategic management and intellectual capital. The knowledge management perspective considers knowledge as inherently social and activity-based, and focuses on the organizational processes associated with its application and development. Within this framework, organizational renewal capability is understood as the capacity for flexible knowledge integration and creation. The strategic management perspective, on the other hand, approaches knowledge in organizations from the standpoint of its implications for the creation of competitive advantage. In this approach, organizational renewal is framed as the dynamic capability of firms. The intellectual capital perspective is focused on exploring how intangible assets can be measured, reported and communicated. From this vantage point, renewal capability is comprehended as the dynamic dimension of intellectual capital, which consists of the capability to maintain, modify and create knowledge assets. Each of the perspectives significantly contributes to the understanding of organizationalrenewal capability, and the integrative approach presented in this dissertationcontributes to the individual perspectives as well as to the understanding of organizational renewal capability as a whole.

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This paper describes a mesurement system designed to register the displacement of the legs using a two-dimensional laser range sensor with a scanning plane parallel to the ground and extract gait parameters. In the proposed methodology, the position of the legs is estimated by fitting two circles with the laser points that define their contour and the gait parameters are extracted applying a step-line model to the estimated displacement of the legs to reduce uncertainty in the determination of the stand and swing phase of the gait. Results obtained in a range up to 8 m shows that the systematic error in the location of one static leg is lower than 10 mm with and standard deviation lower than 8 mm; this deviation increases to 11 mm in the case of a moving leg. The proposed measurement system has been applied to estimate the gait parameters of six volunteers in a preliminary walking experiment.

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This work describes the analysis of different walking paths registered using a Light Detection And Ranging (LIDAR) laser range sensor in order to measure oscillating trajectories during unsupervised walking. The estimate of the gait and trajectory parameters were obtained with a terrestrial LIDAR placed 100 mm above the ground with the scanning plane parallel to the floor to measure the trajectory of the legs without attaching any markers or modifying the floor. Three different large walking experiments were performed to test the proposed measurement system with straight and oscillating trajectories. The main advantages of the proposed system are the possibility to measure several steps and obtain average gait parameters and the minimum infrastructure required. This measurement system enables the development of new ambulatory applications based on the analysis of the gait and the trajectory during a walk.

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We evaluated the performance of an optical camera based prospective motion correction (PMC) system in improving the quality of 3D echo-planar imaging functional MRI data. An optical camera and external marker were used to dynamically track the head movement of subjects during fMRI scanning. PMC was performed by using the motion information to dynamically update the sequence's RF excitation and gradient waveforms such that the field-of-view was realigned to match the subject's head movement. Task-free fMRI experiments on five healthy volunteers followed a 2×2×3 factorial design with the following factors: PMC on or off; 3.0mm or 1.5mm isotropic resolution; and no, slow, or fast head movements. Visual and motor fMRI experiments were additionally performed on one of the volunteers at 1.5mm resolution comparing PMC on vs PMC off for no and slow head movements. Metrics were developed to quantify the amount of motion as it occurred relative to k-space data acquisition. The motion quantification metric collapsed the very rich camera tracking data into one scalar value for each image volume that was strongly predictive of motion-induced artifacts. The PMC system did not introduce extraneous artifacts for the no motion conditions and improved the time series temporal signal-to-noise by 30% to 40% for all combinations of low/high resolution and slow/fast head movement relative to the standard acquisition with no prospective correction. The numbers of activated voxels (p<0.001, uncorrected) in both task-based experiments were comparable for the no motion cases and increased by 78% and 330%, respectively, for PMC on versus PMC off in the slow motion cases. The PMC system is a robust solution to decrease the motion sensitivity of multi-shot 3D EPI sequences and thereby overcome one of the main roadblocks to their widespread use in fMRI studies.

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Työn tarkoituksena on tarkastella ERP-järjestelmän käyttöönottoa ja tarjota ohjekartta kuinka tehdä se menestyksekkäästi. Lisäksi työ kartoittaa Konecranesin saamia etuja ja hyötyjä yrityksen ottaessa ERP-järjestelmä käyttöön. Käyttöönottoprojekti, sen vaiheet ja muut merkittävät ERP-projekteihin liittyvät vaiheet on kuvattu työssä yksityiskohtaisesti. Ensiksi ERP-järjestelmän käyttöönottoa tarkastellaan kirjallisuuteen perustuen. Myöhemmin sitä tarkastellaan perustuen kirjoittajan kokemuksiin ja havaintoihin ERP-järjestelmän käyttöönotosta, ja vertaillaan käytännön suhdetta teoriaan.ERP-järjestemät ovat kalliita ja niiden käyttöön ottaminen on aikaa vievää. Viimeisen vuosikymmenen aikana yritykset ovat enenevissä määrin alkaneet ottamaan ERP-järjestelmiä käyttöön. ERP-järjestelmät ovat saavuttaneet kasvavaa suosiota mm. niiden operaatioita integroivan ja tehostavan luonteesta ansiosta sekä niiden kyvystä tarjota päivitettyä tietoa reaaliajassa.Myös menestyksekkäissä ERP-projekteissa on parantamisen varaa. Mitattaessa ERP- projektin menestyksellisyyttä pitäisi käyttää sekä määrällisiä että laadullisia mittareita. On helppoa käyttää ainoastaan määrällisiä mittareita. Usein kuitenkin laadulliset asiat ovat tärkeämpiä. Ihmiset on saatava sitoutumaan yhteiseen tavoitteeseen kommunikaation avulla. Huonoja ensivaikutelmia on vaikea muuttaa. Vaikka vaikuttaisikin siltä, että ERP-projekti on onnistunut, kun kaikki näyttää hyvältä ”paperilla”, loppujen lopuksi systeemiä käyttävät ihmiset päättävät projektin menestyksellisyydestä. Järjestelmän käyttöönottohetkeä on pidettävä ERP-projektin ensimmäisenä vaiheena.

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We present a dual-trap optical tweezers setup which directly measures forces using linear momentum conservation. The setup uses a counter-propagating geometry, which allows momentum measurement on each beam separately. The experimental advantages of this setup include low drift due to all-optical manipulation, and a robust calibration (independent of the features of the trapped object or buffer medium) due to the force measurement method. Although this design does not attain the high-resolution of some co-propagating setups, we show that it can be used to perform different single molecule measurements: fluctuation-based molecular stiffness characterization at different forces and hopping experiments on molecular hairpins. Remarkably, in our setup it is possible to manipulate very short tethers (such as molecular hairpins with short handles) down to the limit where beads are almost in contact. The setup is used to illustrate a novel method for measuring the stiffness of optical traps and tethers on the basis of equilibrium force fluctuations, i.e., without the need of measuring the force vs molecular extension curve. This method is of general interest for dual trap optical tweezers setups and can be extended to setups which do not directly measure forces.

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In recent years there has been growing interest in composite indicators as an efficient tool of analysis and a method of prioritizing policies. This paper presents a composite index of intermediary determinants of child health using a multivariate statistical approach. The index shows how specific determinants of child health vary across Colombian departments (administrative subdivisions). We used data collected from the 2010 Colombian Demographic and Health Survey (DHS) for 32 departments and the capital city, Bogotá. Adapting the conceptual framework of Commission on Social Determinants of Health (CSDH), five dimensions related to child health are represented in the index: material circumstances, behavioural factors, psychosocial factors, biological factors and the health system. In order to generate the weight of the variables, and taking into account the discrete nature of the data, principal component analysis (PCA) using polychoric correlations was employed in constructing the index. From this method five principal components were selected. The index was estimated using a weighted average of the retained components. A hierarchical cluster analysis was also carried out. The results show that the biggest differences in intermediary determinants of child health are associated with health care before and during delivery.

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This review presents the evolution of steroid analytical techniques, including gas chromatography coupled to mass spectrometry (GC-MS), immunoassay (IA) and targeted liquid chromatography coupled to mass spectrometry (LC-MS), and it evaluates the potential of extended steroid profiles by a metabolomics-based approach, namely steroidomics. Steroids regulate essential biological functions including growth and reproduction, and perturbations of the steroid homeostasis can generate serious physiological issues; therefore, specific and sensitive methods have been developed to measure steroid concentrations. GC-MS measuring several steroids simultaneously was considered the first historical standard method for analysis. Steroids were then quantified by immunoassay, allowing a higher throughput; however, major drawbacks included the measurement of a single compound instead of a panel and cross-reactivity reactions. Targeted LC-MS methods with selected reaction monitoring (SRM) were then introduced for quantifying a small steroid subset without the problems of cross-reactivity. The next step was the integration of metabolomic approaches in the context of steroid analyses. As metabolomics tends to identify and quantify all the metabolites (i.e., the metabolome) in a specific system, appropriate strategies were proposed for discovering new biomarkers. Steroidomics, defined as the untargeted analysis of the steroid content in a sample, was implemented in several fields, including doping analysis, clinical studies, in vivo or in vitro toxicology assays, and more. This review discusses the current analytical methods for assessing steroid changes and compares them to steroidomics. Steroids, their pathways, their implications in diseases and the biological matrices in which they are analysed will first be described. Then, the different analytical strategies will be presented with a focus on their ability to obtain relevant information on the steroid pattern. The future technical requirements for improving steroid analysis will also be presented.

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This paper presents a composite index of early childhood health using a multivariate statistical approach. The index shows how child health varies across Colombian departments, -administrative subdivisions-. In recent years there has been growing interest in composite indicators as an efficient analysis tool and a way of prioritizing policies. These indicators not only enable multi-dimensional phenomena to be simplified but also make it easier to measure, visualize, monitor and compare a country’s performance in particular issues. We used data collected from the Colombian Demographic and Health Survey, DHS, for 32 departments and the capital city, Bogotá, in 2005 and 2010. The variables included in the index provide a measure of three dimensions related to child health: health status, health determinants and the health system. In order to generate the weight of the variables and take into account the discrete nature of the data, we employed a principal component analysis, PCA, using polychoric correlation. From this method, five principal components were selected. The index was estimated using a weighted average of the components retained. A hierarchical cluster analysis was also carried out. We observed that the departments ranking in the lowest positions are located on the Colombian periphery. They are departments with low per capita incomes and they present critical social indicators. The results suggest that the regional disparities in child health may be associated with differences in parental characteristics, household conditions and economic development levels, which makes clear the importance of context in the study of child health in Colombia.

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A photonic system has been developed that enables sensitive quantitative determination of reactive oxygen species (ROS) - mainly hydrogen peroxide (H2O2) - in aerosol samples such as airborne nanoparticles and exhaled air from patients. The detection principle relies on the amplification of the absorbance under multiple scattering conditions due to optical path lengthening [1] and [2]. In this study, the presence of cellulose membrane that acts as random medium into the glass optical cell considerably improved the sensitivity of the detection based on colorimetric FOX assay (FeII/orange xylenol). Despite the loss of assay volume (cellulose occupies 75% of cell volume) the limit of detection is enhanced by one order of magnitude reaching the value of 9 nM (H2O2 equivalents). Spectral analysis is performed automatically with a periodicity of 5 to 15 s, giving rise to real-time ROS measurements. Moreover, the elution of air sample into the collection chamber via a micro-diffuser (impinger) enables quantitative determination of ROS contained in or generated from airborne samples. As proof-of-concept the photonic ROS detection system was used in the determination of both ROS generated from traffic pollution and ROS contained in the exhaled breath as lung inflammation biomarkers.

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Improving educational quality is an important public policy goal. However, its success requires identifying factors associated with student achievement. At the core of these proposals lies the principle that increased public school quality can make school system more efficient, resulting in correspondingly stronger performance by students. Nevertheless, the public educational system is not devoid of competition which arises, among other factors, through the efficiency of management and the geographical location of schools. Moreover, families in Spain appear to choose a school on the grounds of location. In this environment, the objective of this paper is to analyze whether geographical space has an impact on the relationship between the level of technical quality of public schools (measured by the efficiency score) and the school demand index. To do this, an empirical application is performed on a sample of 1,695 public schools in the region of Catalonia (Spain). This application shows the effects of spatial autocorrelation on the estimation of the parameters and how these problems are addressed through spatial econometrics models. The results confirm that space has a moderating effect on the relationship between efficiency and school demand, although only in urban municipalities.