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showing 10 items of 1034 documents

Variance-based sensitivity analysis for wastewater treatment plant modelling.

2014

Global sensitivity analysis (GSA) is a valuable tool to support the use of mathematical models that characterise technical or natural systems. In the field of wastewater modelling, most of the recent applications of GSA use either regression-based methods, which require close to linear relationships between the model outputs and model factors, or screening methods, which only yield qualitative results. However, due to the characteristics of membrane bioreactors (MBR) (non-linear kinetics, complexity, etc.) there is an interest to adequately quantify the effects of non-linearity and interactions. This can be achieved with variance-based sensitivity analysis methods. In this paper, the Extend…

EngineeringEnvironmental EngineeringMathematical modelSewagebusiness.industryEnvironmental engineeringActivated sludge modelVariance (accounting)Models TheoreticalWastewaterMembrane bioreactorPollutionWaste Disposal FluidFourier amplitude sensitivity testingVariance decomposition of forecast errorsEnvironmental ChemistrySensitivity (control systems)businessVariance-based sensitivity analysisBiological systemWaste Management and DisposalThe Science of the total environment
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Global sensitivity analysis in wastewater applications: A comprehensive comparison of different methods

2013

Three global sensitivity analysis (GSA) methods are applied and compared to assess the most relevant processes occurring in wastewater treatment systems. In particular, the Standardised Regression Coefficients, Morris Screening and Extended-FAST methods are applied to a complex integrated membrane bioreactor (MBR) model considering 21 model outputs and 79 model factors. The three methods are applied with numerical settings as suggested in literature. The main objective considered is to classify important factors (factors prioritisation) as well as non-influential factors (factors fixing). The performance is assessed by comparing the most reliable method (Extended-FAST), by means of proposed…

EngineeringEnvironmental EngineeringSettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryCalibration (statistics)MBR modellingEcological ModelingWastewater treatmentGlobal sensitivity analysicomputer.software_genreSimilarity (network science)RankingGlobal sensitivity analysisCalibrationLinear regressionRange (statistics)Variance decomposition of forecast errorsData miningSensitivity (control systems)businesscomputerSoftwareEnvironmental Modelling & Software
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Evaluation of the apparent losses caused by water meter under-registration in intermittent water supply

2009

Apparent losses are usually caused by water theft, billing errors, or revenue meter under-registration. While the first two causes are directly related to water utility management and may be reduced by improving company procedures, water meter inaccuracies are considered to be the most significant and hardest to quantify. Water meter errors are amplified in networks subjected to water scarcity, where users adopt private storage tanks to cope with the intermittent water supply. The aim of this paper is to analyse the role of two variables influencing the apparent losses: water meter age and the private storage tank effect on meter performance. The study was carried out in Palermo (Italy). Th…

EngineeringEnvironmental EngineeringTime FactorsWater supplywater meter under-registrationSanitary engineeringWater scarcityFloat (money supply)Water SupplyMetreRevenueComputer SimulationApparent lossewater meter error curveWater Science and TechnologyHydrologybusiness.industrySettore ICAR/02 - Costruzioni Idrauliche E Marittime E IdrologiaEnvironmental engineeringwater scarcityField monitoringprivate storage tankModels EconomicItalyStorage tankHousingSanitary EngineeringbusinessMonte Carlo Method
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A systematic approach for fine-tuning of fuzzy controllers applied to WWTPs

2010

A systematic approach for fine-tuning fuzzy controllers has been developed and evaluated for an aeration control system implemented in a WWTP. The challenge with the application of fuzzy controllers to WWTPs is simply that they contain many parameters, which need to be adjusted for different WWTP applications. To this end, a methodology based on model simulations is used that employs three statistical methods: (i) Monte-Carlo procedure: to find proper initial conditions, (ii) Identifiability analysis: to find an identifiable parameter subset of the fuzzy controller and (iii) minimization algorithm: to fine-tune the identifiable parameter subset of the controller. Indeed, the initial locatio…

EngineeringFine-tuningMathematical optimizationEnvironmental Engineeringbusiness.industryEcological ModelingControl variableTrial and errorFuzzy logicLatin hypercube samplingControl theoryControl systemIdentifiabilitybusinessSoftwareEnvironmental Modelling & Software
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A novel approach to current transformer characterization in the presence of harmonic distortion

2009

The current transformer (CT) performance under distorted waveform conditions is usually characterized by means of the frequency-response test. In this paper, a new way to characterize CTs, closer to real operation conditions, is proposed. The harmonic phase-angle and ratio errors are measured using a nonsinusoidal current composed of fundamental and one harmonic with adjustable phase shift. The new method was tested by determining the performance of two metering class CTs commonly used by the Italian power company. The errors measured using the proposed approach are larger than the ones obtained with the frequency response. This result suggests that the frequency-response approach for the e…

EngineeringFrequency responseElectric current measurementAcousticsElectric transformer testingErrorsElectric utilitiesOperation conditionsHarmonic distortionPower companiesHarmonic analysisElectric power transmission networksFrequency responsePower electronicsWaveformMetering modeCurrent transformer (CT)Electrical and Electronic EngineeringInstrumentationNon-sinusoidal currentsPiezoelectric transducersTotal harmonic distortionbusiness.industryElectric power distributioncurrent transformer frequency response harmonic distortion power system harmonics transducersCurrent transformerRatio errorsTransducerElectric instrument transformersHarmonicPower system harmonicsCurrent (fluid)businessPower transmissionSettore ING-INF/07 - Misure Elettriche E ElettronicheDistorted waveforms
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A new methodology for distribution systems faults identification, location and characterization

2005

PurposeIdentify a new methodology for fault characterization, identification and location in electrical distribution systems, based on the use of matrix algebra.Design/methodology/approachThe developed diagnostic methodology is based on a high precision analytical model of the network using a distributed parameters representation.FindingsTest results have proved the approach to be efficient and precise, while providing a generalized quadripolar model of a line affected by the most common kinds of fault.Research limitations/implicationsGeneralization to a greater number of fault cases, experimental tests.Practical implicationsUtilities are quite interested in such items, since the new requir…

EngineeringGeneralizationbusiness.industryApplied Mathematicsmedia_common.quotation_subjectElectric power system Electrical fault Error analysisFault (power engineering)Computer Science ApplicationsReliability engineeringCharacterization (materials science)Distribution systemSettore ING-IND/33 - Sistemi Elettrici Per L'EnergiaMatrix (mathematics)Identification (information)Settore ING-IND/31 - ElettrotecnicaComputational Theory and MathematicsLine (geometry)Electronic engineeringQuality (business)Electrical and Electronic Engineeringbusinessmedia_common
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Assessment of data and parameter uncertainties in integrated water-quality model

2011

In integrated urban drainage water quality models, due to the fact that integrated approaches are basically a cascade of sub-models (simulating sewer system, wastewater treatment plant and receiving water body), uncertainty produced in one sub-model propagates to the following ones depending on the model structure, the estimation of parameters and the availability and uncertainty of measurements in the different parts of the system. Uncertainty basically propagates throughout a chain of models in which simulation output from upstream models is transferred to the downstream ones as input. The overall uncertainty can differ from the simple sum of uncertainties generated in each sub-model, dep…

EngineeringMathematical optimizationEnvironmental EngineeringWaste Disposal FluidWater MovementsDecomposition (computer science)Sensitivity analysisUpstream (networking)Citiesreceiving water bodywastewater treatment plantUncertainty analysisWater Science and TechnologyPropagation of uncertaintySettore ICAR/03 - Ingegneria Sanitaria-Ambientalebusiness.industryenvironmental modellingUncertaintyWaterintegrated urban drainage systemModels TheoreticalItalyCascadeVariance decomposition of forecast errorsSanitary Engineeringuncertainty analysibusinessEnvironmental MonitoringWaste disposalWater Science and Technology
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Video-Based Heartbeat Rate Measuring Method Using Ballistocardiography

2017

International audience; Video-based heartbeat rate measurement is a rapidly growing application in remote health monitoring. Video-based heartbeat rate measuring methods operate mainly by estimating photoplethysmography or ballistocardiography signals. These methods operate by estimating the microscopic color change in the face or by estimating the microscopic rigid motion of the head/facial skin. However, the robustness to motion artifacts caused by illumination variance and motion variance of the subject poses main challenge. We present a video-based heartbeat rate measuring framework to overcome these problems by using the principle of ballistocardiography. In this paper, we proposed a b…

EngineeringMean squared errorvideo analyticsComputingMethodologies_IMAGEPROCESSINGANDCOMPUTERVISION02 engineering and technology01 natural sciencesStandard deviationphotoplethysmography and ballistocardiographysymbols.namesakeFacial videoRobustness (computer science)Photoplethysmogram0202 electrical engineering electronic engineering information engineeringmedicineComputer vision[PHYS.PHYS.PHYS-INS-DET]Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Electrical and Electronic EngineeringNoncontact[ PHYS.PHYS.PHYS-INS-DET ] Physics [physics]/Physics [physics]/Instrumentation and Detectors [physics.ins-det]Instrumentationmedicine.diagnostic_testbusiness.industry010401 analytical chemistryPearson product-moment correlation coefficient3. Good health0104 chemical sciencesRemote health monitoringnon-contactFeature (computer vision)BallistocardiographyFace (geometry)symbols020201 artificial intelligence & image processingArtificial intelligencebusinessIEEE Sensors Journal
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A composite indicator for water meter replacement in an urban distribution network

2012

In water supply management, volumetric water meter are typically used to measure users' consumption. With water meters, utilities can collect useful data for billing, assess the water balance of the system, and identify failures in the network, water theft and anomalous user behaviour. Despite their importance, these instruments are characterised by intrinsic errors that cause so-called apparent losses. The complexity of the physical phenomena associated with metering errors in aging water meters does not allow meter replacement to be guided by single parameters, such as the meter age or the total volume passed through the meter. This paper presents a meter replacement strategy based on a c…

EngineeringMeasure (data warehouse)business.industryComputingMethodologies_MISCELLANEOUSGeography Planning and DevelopmentWater supplycomposite indicatorReliability engineeringWater balanceapparent lossewater meterHardware_GENERALRobustness (computer science)MetreMetering modebusinessuncertainty analysismetering errorReliability (statistics)Uncertainty analysisSimulationWater Science and TechnologyUrban Water Journal
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Application of the Morris method for screening the influential parameters of fuzzy controllers applied to wastewater treatment plants

2011

In this paper,we evaluate the application of a sensitivity analysis to help fine-tuning a fuzzy controller for a biological nitrogen and phosphorus removal (BNPR) plant. TheMorris Screeningmethod is proposed and evaluated as a prior step to obtain the parameter significance ranking. First, an iterative procedure has been performed in order to find out the proper repetition number of the elementary effects (r) of the method. The optimal repetition number found in this study (r = 60) is in direct contrast to previous applications of the Morris method, which usually use low repetition number, e.g. r = 10 ~ 20. Working with a non-proper repetition number (r) could lead to Type I error (identify…

EngineeringParameterFuzzy controllersWastewater treatmentWastewaterScreening methodChemicals removal (water treatment)Parameter significance rankingWaste ManagementWastewater treatment plantsStatisticsWater treatmentFalse positiveControl systemWater Science and TechnologyControllersPhosphorusMorris methodFine-tuningError analysisPollutant removalFuzzy mathematicsCalibrationFalse negativesScreeningSensitivity analysisType I and type II errorsOptimizationWastewater treatment plant (WWTP)Environmental EngineeringWaste water treatment plantNitrogenIterative proceduresNumerical methodRepetition NumberFuzzy logicSewage pumping plantsArticleFalse positive resultFuzzy LogicControl theoryMorris methodSensitivity (control systems)Water treatment plantsBiological water treatmentFalse negative resultTECNOLOGIA DEL MEDIO AMBIENTEBiological nitrogen and phosphorus removalType II errorToxicitybusiness.industryNitrogen removalFuzzy mathematicsRankingFuzzy controllerType-I errorbusiness
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