944 resultados para multiple power sums


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For hybrid electric vehicles the batteries and the drive dc-link may be at different voltages. The batteries are at low voltage to obtain higher volumetric efficiencies and the dc-link is at higher voltage to have higher efficiency on the motor side. Therefore a power interface between the batteries and the drive's dc-link is essential. This power interface should handle power flow from battery to motor, motor to battery, external genset to battery and grid to battery. This paper proposes a multi power port topology which is capable of handling multiple power sources and still maintains simplicity and features like obtaining any gain, wide load variations, lower output current ripple and capability of parallel battery energy due to the modular structure. The development and testing of a bi-directional fly-back DC-DC converter for hybrid electric vehicle is described in this paper. Simple hysteresis voltage control is used for DC link voltage regulation. The experimental results are presented to show the working of the proposed converter.

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This work focuses on the design of high-efficient DC-DC converters based on WBG power devices. The first objective is the development of an isolated bidirectional converter for the distribution network of future electrical aircrafts. A SiC-based Dual Active Bridge converter is designed and fabricated. Control strategies for individual and parallel operations are investigated and implemented into a FPGA platform. Experimental results on 1.2kW 270V/28V prototype are presented to confirm the proper behavior of the proposed solution. The second project belongs to the field of photovoltaic systems and aims to develop a three-port converter with multiple power elements interfacing capability. A GaN-based Triple Active Bridge has been designed, regarding both the controller and the hardware realization.

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Cette recherche s’intéresse aux formes et à la capacité des associations patronales à façonner les règles du travail au niveau sectoriel, plus précisément dans le secteur de l’hôtellerie au Québec. Elle vise également à mieux comprendre comment ces règles contribuent à modifier les pratiques locales en relations industrielles de leurs entreprises membres. Notre première question de recherche vise donc à cerner l’impact des logiques de représentation et d’action des associations patronales sur les pratiques en relations industrielles. Pour certains auteurs, notamment Behrens et Traxler (2004 et 2007), Carley et al. (2010), Charest, Laroche et Hickey (à paraître), les logiques de représentation et d’action chez les acteurs patronaux se distinguent l’une de l’autre et influencent de manière différente les pratiques en relations industrielles. Ainsi, la présence, la forme et le rôle d’une association patronale auront un impact significatif sur les pratiques en relations industrielles, car les membres peuvent être influencés par les orientations de leurs associations. Notre seconde question de recherche aborde la manière dont les entreprises membres utilisent leurs ressources de pouvoir afin d’influencer les actions des associations patronales. La littérature existante à ce sujet mentionne que les acteurs patronaux détenant plusieurs ressources de pouvoir, qu’elles soient internes ou externes (Charest, Laroche et Hickey, à paraître; Laroche et Hickey, à paraître), sont en mesure d’exercer une influence dans les institutions politiques. Nous tenterons donc de vérifier si, plus une association patronale sera en mesure de mobiliser ses ressources de pouvoir, plus elle sera apte à influencer le contexte institutionnel dans lequel elle agit. Au plan théorique, cette recherche s’appuie sur les idées développées par les théories néo-institutionnalistes. D’une part, nous reconnaissons que les acteurs doivent réagir et s’adapter aux changements qui s’opèrent au sein de leur environnement. Ils développeront donc des stratégies diverses, autant en matière de coordination des actions patronales que de relations du travail au niveau local, en fonction de leur interprétation de ces transformations (Traxler et Huemer, 2007). D’autre part, nous reconnaissons que les acteurs sont aussi en mesure de mobiliser leurs ressources de pouvoir pour déployer des initiatives stratégiques qui seront susceptibles de provoquer en retour des changements au sein de leur environnement (Crouch, 2005). Ces entrepreneurs institutionnels sont ainsi à la recherche active d’opportunités et de leviers de pouvoir à utiliser pour maximiser leurs intérêts respectifs et, par le fait même, réduire les incertitudes issues de leur environnement (Campbell, 2004; Streeck et Thelen, 2005; Crouch, 2005). Notre recherche reconnaît également que les acteurs qui détiennent le plus grand pouvoir au sein d’un groupe, soient les porteurs de projets, vont être en mesure de façonner les institutions en fonction de leurs intérêts spécifiques (Thelen, 2003). C’est d’ailleurs sur ce plan que notre recherche veut se démarquer des travaux plus larges dans laquelle elle s’insère. Au plan empirique, cette recherche étudie l’acteur patronal dans l’industrie de l’hôtellerie au Québec et vise trois objectifs : 1) faire la cartographie des associations patronales dans le secteur de l’hôtellerie au Québec (formes, structures, activités, missions, etc.); 2) analyser l’impact des règles issues du processus de régulation au niveau sectoriel sur les pratiques de relations du travail locales; et 3) identifier les employeurs dominants au sein du secteur et analyser de quelle manière ils parviennent à modifier les institutions et l’environnement dans lequel ils agissent. Pour atteindre nos objectifs de recherche, nous avons utilisé une méthodologie qualitative de recherche, et plus particulièrement l’étude de cas. Cette dernière a été conduite en trois étapes : la préparation, la collecte des données et l’interprétation (Merriam, 1998). Les données de cette étude ont été recueillies à l’automne 2011, par le biais d’entrevues semi-dirigées auprès de gestionnaires d’hôtels et d’associations hôtelières dans les régions de Québec et de Montréal. Une analyse qualitative du contenu de ces entrevues a été effectuée en lien avec la revue de littérature et nos propositions de recherche. À cette fin, nous avons utilisé la technique de l’appariement logique de Yin (1994), ce qui nous a permis de comparer nos observations à nos propositions de recherche. Il est à noter que puisque cette recherche est une étude de cas, cette dernière présente des limites méthodologiques surtout liées à la généralisation des résultats. Ainsi, il est très difficile d’affirmer que les résultats de cette microanalyse soient généralisables. En contrepartie, les analyses ont servi à consolider le modèle pour utilisation dans des études futures.

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In this paper, we investigate the effect of of the primary network on the secondary network when harvesting energy in cognitive radio in the presence of multiple power beacons and multiple secondary transmitters. In particular, the influence of the primary transmitter's transmit power on the energy harvesting secondary network is examined by studying two scenarios of primary transmitter's location, i.e., the primary transmitter's location is near to the secondary network and the primary transmitter's location is far from the secondary network. In the scenario where the primary transmitter locates near to the secondary network, although secondary transmitter can be benefit from the harvested energy from the primary transmitter, the interference caused by the primary transmitter suppresses the secondary network performance. Meanwhile, in both scenarios, despite the fact that the transmit power of the secondary transmitter can be improved by the support of powerful power beacons, the peak interference constraint at the primary receiver limits this advantage. In addition, the deployment of multiple power beacons and multiple secondary transmitters can improve the performance of the secondary network. The analytical expressions of the outage probability of the secondary network in the two scenarios are also provided and verified by numerical simulations.

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The potential of distributed reactive power control to improve the voltage profile of radial distribution feeders has been reported in literature by few authors. However, the multiple inverters injecting or absorbing reactive power across a distribution feeder may introduce control interactions and/or voltage instability. Such controller interactions can be alleviated if the inverters are allowed to operate on voltage droop. First, the paper demonstrates that a linear shallow droop line can maintain the steady state voltage profile close to reference, up to a certain level of loading. Then, impacts of the shallow droop line control on line losses and line power factors are examined. Finally, a piecewise linear droop line which can achieve reduced line losses and close to unity power factor at the feeder source is proposed.

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Many wireless applications demand a fast mechanism to detect the packet from a node with the highest priority ("best node") only, while packets from nodes with lower priority are irrelevant. In this paper, we introduce an extremely fast contention-based multiple access algorithm that selects the best node and requires only local information of the priorities of the nodes. The algorithm, which we call Variable Power Multiple Access Selection (VP-MAS), uses the local channel state information from the accessing nodes to the receiver, and maps the priorities onto the receive power. It is based on a key result that shows that mapping onto a set of discrete receive power levels is optimal, when the power levels are chosen to exploit packet capture that inherently occurs in a wireless physical layer. The VP-MAS algorithm adjusts the expected number of users that contend in each step and their respective transmission powers, depending on whether previous transmission attempts resulted in capture, idle channel, or collision. We also show how reliable information regarding the total received power at the receiver can be used to improve the algorithm by enhancing the feedback mechanism. The algorithm detects the packet from the best node in 1.5 to 2.1 slots, which is considerably lower than the 2.43 slot average achieved by the best algorithm known to date.

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Contention-based multiple access is a crucial component of many wireless systems. Multiple-packet reception (MPR) schemes that use interference cancellation techniques to receive and decode multiple packets that arrive simultaneously are known to be very efficient. However, the MPR schemes proposed in the literature require complex receivers capable of performing advanced signal processing over significant amounts of soft undecodable information received over multiple contention steps. In this paper, we show that local channel knowledge and elementary received signal strength measurements, which are available to many receivers today, can actively facilitate multipacket reception and even simplify the interference canceling receiver¿s design. We introduce two variants of a simple algorithm called Dual Power Multiple Access (DPMA) that use local channel knowledge to limit the receive power levels to two values that facilitate successive interference cancellation. The resulting receiver structure is markedly simpler, as it needs to process only the immediate received signal without having to store and process signals received previously. Remarkably, using a set of three feedback messages, the first variant, DPMA-Lite, achieves a stable throughput of 0.6865 packets per slot. Using four possible feedback messages, the second variant, Turbo-DPMA, achieves a stable throughput of 0.793 packets per slot, which is better than all contention algorithms known to date.

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We study power dissipation for systems of multiple quantum wires meeting at a junction, in terms of a current splitting matrix (M) describing the junction. We present a unified framework for studying dissipation for wires with either interacting electrons (i.e., Tomonaga-Luttinger liquid wires with Fermi-liquid leads) or noninteracting electrons. We show that for a given matrix M, the eigenvalues of (MM)-M-T characterize the dissipation, and the eigenvectors identify the combinations of bias voltages which need to be applied to the different wires in order to maximize the dissipation associated with the junction. We use our analysis to propose and study some microscopic models of a dissipative junction which employ the edge states of a quantum Hall liquid. These models realize some specific forms of the M matrix whose entries depends on the tunneling amplitudes between the different edges.

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In many wireless applications, it is highly desirable to have a fast mechanism to resolve or select the packet from the user with the highest priority. Furthermore, individual priorities are often known only locally at the users. In this paper we introduce an extremely fast, local-information-based multiple access algorithm that selects the best node in 1.8 to 2.1 slots,which is much lower than the 2.43 slot average achieved by the best algorithm known to date. The algorithm, which we call Variable Power Multiple Access Selection (VP-MAS), uses the local channel state information from the accessing nodes to the receiver, and maps the priorities into the receive power.It is inherently distributed and scales well with the number of users. We show that mapping onto a discrete set of receive power levels is optimal, and provide a complete characterization for it. The power levels are chosen to exploit packet capture that inherently occurs in a wireless physical layer. The VP-MAS algorithm adjusts the expected number of users that contend in each step and their respective transmission powers, depending on whether previous transmission attempts resulted in capture,idle channel, or collision.

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We demonstrate the use of resonant bandfilling nonlinearity in an InGaAsP/InGaAsP Multiple Quantum Well (MQW) waveguide due to photogenerated carriers to obtain switching at pulse powers, which can readily be obtained from an erbium amplified diode laser source. In order to produce gating a polarisation rotation gate was used, which relies on an asymmetry in the nonlinear refraction on the principle axes of the waveguide.