979 resultados para Correlation matching techniques


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The primary purpose of this thesis was to present a theoretical large-signal analysis to study the power gain and efficiency of a microwave power amplifier for LS-band communications using software simulation. Power gain, efficiency, reliability, and stability are important characteristics in the power amplifier design process. These characteristics affect advance wireless systems, which require low-cost device amplification without sacrificing system performance. Large-signal modeling and input and output matching components are used for this thesis. Motorola's Electro Thermal LDMOS model is a new transistor model that includes self-heating affects and is capable of small-large signal simulations. It allows for most of the design considerations to be on stability, power gain, bandwidth, and DC requirements. The matching technique allows for the gain to be maximized at a specific target frequency. Calculations and simulations for the microwave power amplifier design were performed using Matlab and Microwave Office respectively. Microwave Office is the simulation software used in this thesis. The study demonstrated that Motorola's Electro Thermal LDMOS transistor in microwave power amplifier design process is a viable solution for common-source amplifier applications in high power base stations. The MET-LDMOS met the stability requirements for the specified frequency range without a stability-improvement model. The power gain of the amplifier circuit was improved through proper microwave matching design using input/output-matching techniques. The gain and efficiency of the amplifier improve approximately 4dB and 7.27% respectively. The gain value is roughly .89 dB higher than the maximum gain specified by the MRF21010 data sheet specifications. This work can lead to efficient modeling and development of high power LDMOS transistor implementations in commercial and industry applications.

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Les maladies cardiovasculaires ont un impact considérable sur la vie des Canadiens, et de nombreux efforts ont permis d’identifier différents facteurs de risque associés à cette condition. L’hypertension artérielle représente un de ces facteurs modifiables les plus importants. Quoique l’hypertension est définie à l’aide de mesures de pression artérielle en périphérie, il devient de plus en plus apparent que la mesure de pression centrale et de ses composantes auraient des avantages au niveau de la prédiction de la survenue d’événements cardiovasculaires. Le présent mémoire vise à mieux caractériser deux déterminants de cette pression centrale, le traitement antihypertenseur à base de bêtabloqueurs et l’insuffisance rénale chronique précoce. En utilisant les données recueillies dans la banque de données populationnelle CARTaGENE, il a été possible à l’aide d’analyses statistiques par appariement basé sur le coefficient de propension de démontrer que l’utilisation d’agents antihypertensifs de type bêtabloqueurs était associée à un profil hémodynamique central défavorable. Ainsi, les individus recevant ces agents avaient une pression centrale et une amplification artérielle plus élevées que des individus du groupe contrôle apparié et ce, malgré une pression périphérique identique. Cet effet semblait être incomplètement expliqué par la réduction du rythme cardiaque associé à l’utilisation de bêtabloqueurs. Aussi, il a été démontré que l’insuffisance rénale chronique de stade 3 (débit de filtration glomérulaire estimé entre 30 et 60 mL/min/1.73m2) n’était pas associée à une élévation des paramètres hémodynamiques centraux, contrairement à ce qui avait déjà été décrit chez des individus avec insuffisance rénale chronique plus avancée. De plus, le niveau d’albuminurie ne serait également pas associé à un changement du profil central dans un sous-groupe de la cohorte CARTaGENE.

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Les maladies cardiovasculaires ont un impact considérable sur la vie des Canadiens, et de nombreux efforts ont permis d’identifier différents facteurs de risque associés à cette condition. L’hypertension artérielle représente un de ces facteurs modifiables les plus importants. Quoique l’hypertension est définie à l’aide de mesures de pression artérielle en périphérie, il devient de plus en plus apparent que la mesure de pression centrale et de ses composantes auraient des avantages au niveau de la prédiction de la survenue d’événements cardiovasculaires. Le présent mémoire vise à mieux caractériser deux déterminants de cette pression centrale, le traitement antihypertenseur à base de bêtabloqueurs et l’insuffisance rénale chronique précoce. En utilisant les données recueillies dans la banque de données populationnelle CARTaGENE, il a été possible à l’aide d’analyses statistiques par appariement basé sur le coefficient de propension de démontrer que l’utilisation d’agents antihypertensifs de type bêtabloqueurs était associée à un profil hémodynamique central défavorable. Ainsi, les individus recevant ces agents avaient une pression centrale et une amplification artérielle plus élevées que des individus du groupe contrôle apparié et ce, malgré une pression périphérique identique. Cet effet semblait être incomplètement expliqué par la réduction du rythme cardiaque associé à l’utilisation de bêtabloqueurs. Aussi, il a été démontré que l’insuffisance rénale chronique de stade 3 (débit de filtration glomérulaire estimé entre 30 et 60 mL/min/1.73m2) n’était pas associée à une élévation des paramètres hémodynamiques centraux, contrairement à ce qui avait déjà été décrit chez des individus avec insuffisance rénale chronique plus avancée. De plus, le niveau d’albuminurie ne serait également pas associé à un changement du profil central dans un sous-groupe de la cohorte CARTaGENE.

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This paper presents a kernel density correlation based nonrigid point set matching method and shows its application in statistical model based 2D/3D reconstruction of a scaled, patient-specific model from an un-calibrated x-ray radiograph. In this method, both the reference point set and the floating point set are first represented using kernel density estimates. A correlation measure between these two kernel density estimates is then optimized to find a displacement field such that the floating point set is moved to the reference point set. Regularizations based on the overall deformation energy and the motion smoothness energy are used to constraint the displacement field for a robust point set matching. Incorporating this non-rigid point set matching method into a statistical model based 2D/3D reconstruction framework, we can reconstruct a scaled, patient-specific model from noisy edge points that are extracted directly from the x-ray radiograph by an edge detector. Our experiment conducted on datasets of two patients and six cadavers demonstrates a mean reconstruction error of 1.9 mm

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"Technical memorandum 7668-TM-2"

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Thesis (Ph.D.)--University of Washington, 2016-06

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This paper aims to determinate the water flowrate using Time Transient and Cross-Correlation techniques. The detection system uses two NaI(Tl) detectors adequately positioned on the outside of pipe and a gamma-ray source (82Br radiotracer). The water flowrate measurements using Time Transient and Cross-Correlation techniques were compared to invasive conventional measurements of the flowmeter previously installed in pipeline. Discrepancies between Time Transient and Cross-Correlation techniques flowrate values were found to be less than 3% in relation to conventional ones.

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This paper outlines the development of a crosscorrelation algorithm and a spiking neural network (SNN) for sound localisation based on real sound recorded in a noisy and dynamic environment by a mobile robot. The SNN architecture aims to simulate the sound localisation ability of the mammalian auditory pathways by exploiting the binaural cue of interaural time difference (ITD). The medial superior olive was the inspiration for the SNN architecture which required the integration of an encoding layer which produced biologically realistic spike trains, a model of the bushy cells found in the cochlear nucleus and a supervised learning algorithm. The experimental results demonstrate that biologically inspired sound localisation achieved using a SNN can compare favourably to the more classical technique of cross-correlation.

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The aim of this investigation was to compare the skeletal stability of three different rigid fixation methods after mandibular advancement. Fifty-five class II malocclusion patients treated with the use of bilateral sagittal split ramus osteotomy and mandibular advancement were selected for this retrospective study. Group 1 (n = 17) had miniplates with monocortical screws, Group 2 (n = 16) had bicortical screws and Group 3 (n = 22) had the osteotomy fixed by means of the hybrid technique. Cephalograms were taken preoperatively, 1 week within the postoperative care period, and 6 months after the orthognathic surgery. Linear and angular changes of the cephalometric landmarks of the chin region were measured at each period, and the changes at each cephalometric landmark were determined for the time gaps. Postoperative changes in the mandibular shape were analyzed to determine the stability of fixation methods. There was minimum difference in the relapse of the mandibular advancement among the three groups. Statistical analysis showed no significant difference in postoperative stability. However, a positive correlation between the amount of advancement and the amount of postoperative relapse was demonstrated by the linear multiple regression test (p < 0.05). It can be concluded that all techniques can be used to obtain stable postoperative results in mandibular advancement after 6 months.

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Abstract The aim of this study was to evaluate three transfer techniques used to obtain working casts of implant-supported prostheses through the marginal misfit and strain induced to metallic framework. Thirty working casts were obtained from a metallic master cast, each one containing two implant analogues simulating a clinical situation of three-unit implant-supported fixed prostheses, according to the following transfer impression techniques: Group A, squared transfers splinted with dental floss and acrylic resin, sectioned and re-splinted; Group B, squared transfers splinted with dental floss and bis-acrylic resin; and Group N, squared transfers not splinted. A metallic framework was made for marginal misfit and strain measurements from the metallic master cast. The misfit between metallic framework and the working casts was evaluated with an optical microscope following the single-screw test protocol. In the same conditions, the strain was evaluated using strain gauges placed on the metallic framework. The data was submitted to one-way ANOVA followed by the Tukey's test (α=5%). For both marginal misfit and strain, there were statistically significant differences between Groups A and N (p<0.01) and Groups B and N (p<0.01), with greater values for the Group N. According to the Pearson's test, there was a positive correlation between the variables misfit and strain (r=0.5642). The results of this study showed that the impression techniques with splinted transfers promoted better accuracy than non-splinted one, regardless of the splinting material utilized.

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One of the most important properties of quantum dots (QDs) is their size. Their size will determine optical properties and in a colloidal medium their range of interaction. The most common techniques used to measure QD size are transmission electron microscopy (TEM) and X-ray diffraction. However, these techniques demand the sample to be dried and under a vacuum. This way any hydrodynamic information is excluded and the preparation process may alter even the size of the QDs. Fluorescence correlation spectroscopy (FCS) is an optical technique with single molecule sensitivity capable of extracting the hydrodynamic radius (HR) of the QDs. The main drawback of FCS is the blinking phenomenon that alters the correlation function implicating in a QD apparent size smaller than it really is. In this work, we developed a method to exclude blinking of the FCS and measured the HR of colloidal QDs. We compared our results with TEM images, and the HR obtained by FCS is higher than the radius measured by TEM. We attribute this difference to the cap layer of the QD that cannot be seen in the TEM images.