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Institution

École Polytechnique de Montréal

EducationMontreal, Quebec, Canada
About: École Polytechnique de Montréal is a education organization based out in Montreal, Quebec, Canada. It is known for research contribution in the topics: Finite element method & Computer science. The organization has 8015 authors who have published 18390 publications receiving 494372 citations.


Papers
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Journal ArticleDOI
TL;DR: In this paper, the authors present experimental results of atmospheric pressure glow discharges (APGD) in a dielectric barrier discharge reactor under varying experimental conditions (frequency f, gap length d; and electric field intensity E).
Abstract: We present experimental results of atmospheric pressure glow discharges (APGD) in a dielectric barrier discharge reactor. These are examined in different noble gases and in the N/sub 2//O/sub 2/ system (air and pure N/sub 2/), under varying experimental conditions (frequency f; gap length d; and electric field intensity E). Discharge diagnostics have been carried out using ultrahigh speed imaging, and synchronous dual-detection of light emission and current-voltage measurements, the former using a photomultiplier . The time evolutions of the discharges and of columnar patterns in regular geometric arrangements at atmospheric pressure under different experimental conditions are reported for all of the noble gases studied here. We present evidence that columnar patterns and APGD are manifestations of the same discharge physics, which is discussed with reference to recent work reported by others.

132 citations

Journal ArticleDOI
TL;DR: A two-level generative model that applies the Gaussian mixture model to regroup passengers based on their temporal habits in their public transportation usage to demonstrate the efficiency of this approach in identifying a reduced set of passenger clusters linked to their fare types.
Abstract: In recent years, there has been increased interest in using completely anonymized data from smart card collection systems to better understand the behavioural habits of public transport passengers. Such an understanding can benefit urban transport planners as well as urban modelling by providing simulation models with realistic mobility patterns of transit networks. In particular, the study of temporal activities has elicited substantial interest. In this regard, a number of methods have been developed in the literature for this type of analysis, most using clustering approaches. This paper presents a two-level generative model that applies the Gaussian mixture model to regroup passengers based on their temporal habits in their public transportation usage. The strength of the proposed methodology is that it can model a continuous representation of time instead of having to employ discrete time bins. For each cluster, the approach provides typical temporal patterns that enable easy interpretation. The experiments are performed on five years of data collected by the Societe de transport de l’Outaouais. The results demonstrate the efficiency of the proposed approach in identifying a reduced set of passenger clusters linked to their fare types. A five-year longitudinal analysis also shows the relative stability of public transport usage.

132 citations

Journal ArticleDOI
TL;DR: In this paper, an electrothermal model for RF power amplifiers was proposed to investigate, model, and quantify the contributions of electrical nonlinearity effects and thermal memory effects to a PA's distortion generation, as well as how to compensate for these effects in designing baseband predistortion schemes.
Abstract: Memory effects, which influence the performance of RF power amplifiers (PAs) and predistortion-based linearizers, become more significant and critical in designing these circuits as the modulation signal bandwidth and operation power increase. This paper reports on an attempt to investigate, model, and quantify the contributions of the electrical nonlinearity effects and the thermal memory effects to a PA's distortion generation, as well as how to compensate for these effects in designing baseband predistortion schemes. The first part of this paper reports on the development of an accurate dynamic expression of the instantaneous junction temperature as a function of the instantaneous dissipated power. This expression has been used in the construction of an electrothermal model for the PA. Parameters for the new proposed behavior model were determined from the PA measurements obtained under different excitation conditions (e.g., small-signal and pulsed RF tests). This study led us to conclude that the effects of the transistor self-heating phenomenon are more important under narrow-band signal (e.g., enhanced data for global evolution of global system for mobile communications) than for signals with wide modulation bandwidth (CDMA2000, Universal Mobile Telecommunications System). In the second part of this paper, the newly developed model has also been used to design a temperature-compensated predistortion function to compensate for these effects. The linearized PA output spectrum and error vector magnitude show a significant performance improvement in the temperature-compensated predistortion function over a memoryless predistortion. The results of these measurements that have been conducted on a 90-W peak lateral double-diffused metal-oxide-semiconductor PA are in agreement with those obtained from simulations using the developed PA and the predistorter models implemented in an ADS environment.

132 citations

Journal ArticleDOI
TL;DR: In this article, three analytical solutions to transient heat transfer in the vicinity of geothermal boreholes are presented, referred to as the infinite line source (ILS), the infinite cylindrical source (ICS) and the finite line sources (FLS), which vary in complexity and are based on simplifications of the borehole geometry.

132 citations

Journal ArticleDOI
TL;DR: Friction tests between cancellous bone cubes and porous-surfaced metal plates were conducted in order to determine the mechanical properties of the interface in a knee porous-Surfaced metal implant and show that the friction curve is highly nonlinear.
Abstract: Friction tests between cancellous bone cubes and porous-surfaced metal plates were conducted in order to determine the mechanical properties of the interface in a knee porous-surfaced metal implant. Bone specimens were obtained from fresh frozen amputated tibiae and three metal plates were chosen: titanium bead porous-surfaced, titanium fiber mesh porous-surfaced, and smooth stainless steel. Results show that the friction curve is highly nonlinear. Friction coefficients measured vary between 0.3 and 1.3. The friction coefficient of the interface is independent of the excision site of the bone cubes and of the magnitude of the rate of relative displacement at the interface. The friction coefficient appears to vary slightly with the normal contact pressure for all the metal surfaces. Both porous surfaces have statistically a higher friction coefficient than the smooth surface. This is likely due to the presence of surface asperities whereby the metal ploughs the bone surface. However, no significant differences is observed between bead and fiber mesh types.

132 citations


Authors

Showing all 8139 results

NameH-indexPapersCitations
Yoshua Bengio2021033420313
Claude Leroy135117088604
Lucie Gauthier13267964794
Reyhaneh Rezvani12063861776
M. Giunta11560866189
Alain Dufresne11135845904
David Brown105125746827
Pierre Legendre9836682995
Michel Bouvier9739631267
Aharon Gedanken9686138974
Michel Gendreau9445636253
Frederick Dallaire9347531049
Pierre Savard9342742186
Nader Engheta8961935204
Ke Wu87124233226
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202340
2022276
20211,275
20201,207
20191,140
20181,102