997 resultados para DC cable dynamics
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The electrical conduction in insulating materials is a complex process and several theories have been suggested in the literature. Many phenomenological empirical models are in use in the DC cable literature. However, the impact of using different models for cable insulation has not been investigated until now, but for the claims of relative accuracy. The steady state electric field in the DC cable insulation is known to be a strong function of DC conductivity. The DC conductivity, in turn, is a complex function of electric field and temperature. As a result, under certain conditions, the stress at cable screen is higher than that at the conductor boundary. The paper presents detailed investigations on using different empirical conductivity models suggested in the literature for HV DC cable applications. It has been expressly shown that certain models give rise to erroneous results in electric field and temperature computations. It is pointed out that the use of these models in the design or evaluation of cables will lead to errors.
Adaptive backstepping droop controller design for multi-terminal high-voltage direct current systems
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Wind power is one of the most developed renewable energy resources worldwide. To integrate offshore wind farms to onshore grids, the high-voltage direct current (HVDC) transmission cables interfaced with voltage source converters (VSCs) are considered to be a better solution than conventional approaches. Proper DC voltage indicates successive power transfer. To connect more than one onshore grid, the DC voltage droop control is one of the most popular methods to share the control burden between different terminals. However, the challenges are that small droop gains will cause voltage deviations, while higher droop gain settings will cause large oscillations. This study aims to enhance the performance of the traditional droop controller by considering the DC cable dynamics. Based on the backstepping control concept, DC cables are modelled with a series of capacitors and inductors. The final droop control law is deduced step-by-step from the original remote side. At each step the control error from the previous step is considered. Simulation results show that both the voltage deviations and oscillations can be effectively reduced using the proposed method. Further, power sharing between different terminals can be effectively simplified such that it correlates linearly with the droop gains, thus enabling simple yet accurate system operation and control.
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A computational scheme for determining the dynamic stiffness coefficients of a linear, inclined, translating and viscously/hysteretically damped cable element is outlined. Also taken into account is the coupling between inplane transverse and longitudinal forms of cable vibration. The scheme is based on conversion of the governing set of quasistatic boundary value problems into a larger equivalent set of initial value problems, which are subsequently numerically integrated in a spatial domain using marching algorithms. Numerical results which bring out the nature of the dynamic stiffness coefficients are presented. A specific example of random vibration analysis of a long span cable subjected to earthquake support motions modeled as vector gaussian random processes is also discussed. The approach presented is versatile and capable of handling many complicating effects in cable dynamics in a unified manner.
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This paper analyzes the behavior of a Voltage Source Converter Based HVDC system under DC cable fault conditions. The behavior of the HVDC system during a permanent line-to-earth fault is analyzed, outlining the systems configuration and behavior at each stage of the fault timeline. Operation of the proposed system under a single earthing configurations i.e. Converter (solid) earthed/AC transformer unearthed, was analyzed and simulated, with particular attention paid to the converters operation. It was observed that the development of potential earth loops within the system as a result of DC line- toearth faults leads to substantial overcurrent and results in system configuration oscillation.
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The application of high-power voltage-source converters (VSCs) to multiterminal dc networks is attracting research interest. The development of VSC-based dc networks is constrained by the lack of operational experience, the immaturity of appropriate protective devices, and the lack of appropriate fault analysis techniques. VSCs are vulnerable to dc-cable short-circuit and ground faults due to the high discharge current from the dc-link capacitance. However, faults occurring along the interconnecting dc cables are most likely to threaten system operation. In this paper, cable faults in VSC-based dc networks are analyzed in detail with the identification and definition of the most serious stages of the fault that need to be avoided. A fault location method is proposed because this is a prerequisite for an effective design of a fault protection scheme. It is demonstrated that it is relatively easy to evaluate the distance to a short-circuit fault using voltage reference comparison. For the more difficult challenge of locating ground faults, a method of estimating both the ground resistance and the distance to the fault is proposed by analyzing the initial stage of the fault transient. Analysis of the proposed method is provided and is based on simulation results, with a range of fault resistances, distances, and operational conditions considered.
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The insulation in a dc cable is subjected to both thermal and electric stress at the same time. While the electric stress is generic to the cable, the temperature rise in the insulation is, by and large, due to the Ohmic losses in the conductor. The consequence of this synergic effect is to reduce the maximum operating voltage and causes a premature failure of the cable. The authors examine this subject in some detail and propose a comprehensive theoretical formulation relating the maximum thermal voltage (MTV) to the physical and geometrical parameters of the insulation. The heat flow patterns and boundary conditions considered by the authors here and those found in earlier literature are provided. The MTV of a dc cable is shown to be a function of the load current apart from the resistance of the insulation. The results obtained using the expressions, developed by the authors, are compared with relevant results published in the literature and found to be in close conformity.
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Dissertação elaborada para a obtenção do grau de Mestre em Engenharia Civil na Área de Especialização de Estruturas
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La dérégulation du compartiment B est une conséquence importante de l’infection par le virus de l’immunodéficience humaine (VIH), qui peut mener à des manifestations autoimmunes et ultimement à des lymphomes B. Parmi les premières anomalies détectées, on dénote l’activation polyclonale, reflétée par la présence d’hyperglobulinémie (hyper-Ig) et des titres élevés d’autoanticorps chez les patients. On observe également une altération des dynamiques des populations, notamment une expansion de la population des cellules matures activées. De plus, les patients évoluent vers l’incapacité de générer une réponse humorale efficace, et sont sujets à une perte de la mémoire immunologique en phase chronique, caractérisée par une diminution de la population des cellules mémoires et par l’épuisement cellulaire. Toutefois, on connaît très peu les mécanismes impliqués dans de telles altérations. Les cellules dendritiques (DC) sont parmi les premières populations cellulaires à rencontrer et à propager le VIH lors d’une infection, et s’en trouvent affectées directement et indirectement, par le virus et ses composantes. On retrouve en effet une diminution des fréquences de DC dans le sang, les muqueuses et les organes lymphoïdes de patients infectés par le VIH, ainsi qu’un blocage au niveau de la maturation cellulaire. Toutefois, un débat perdure quant à l’apparition de ces altérations durant la phase aigüe de l’infection, et à la restauration des fréquences et des fonctions des DC chez les patients sous traitement. Cette controverse est due à la rareté des études longitudinales incluant des suivis qui s’échelonnent de la phase aigüe à la phase chronique de l’infection. Les DC jouent un rôle important dans le développement, la survie et l’activation des lymphocytes B, de façon T-dépendante et T-indépendante, notamment via des facteurs de croissance tel que BLyS (B lymphocyte stimulator). Par conséquent, nous formulons l’hypothèse que dans le cadre d’une infection VIH, les altérations observées au niveau des cellules B sont modulées par les DC. L’objectif majeur de cette étude est donc d’évaluer l’implication potentielle des DC dans les altérations des cellules B au cours de l’infection par le VIH. Pour ce faire, nous avons d’abord caractérisé de façon longitudinale le statut des populations de DC du sang périphérique de patients infectés au VIH et présentant différents types de progression de la maladie. Cela nous a permis d’évaluer la présence d’une corrélation entre les dynamiques de DC et le type de progression. Par la suite, nous avons évalué la capacité des DC à exprimer BLyS, puis mesuré sa concentration ainsi que celles d’autres facteurs de croissance des cellules B dans le plasma des patients. Enfin, nous avons caractérisé le statut des lymphocytes B, en fonction du stade de l’infection et du taux de progression clinique des patients. Cette étude démontre une diminution de la fréquence des populations de DC myéloïdes (mDC) dans le sang de patients infectés par le VIH sujets à une progression clinique. Cette diminution est observée dès le stade aigu de l’infection et au-delà du traitement antirétroviral (ART). Des concentrations élevées de MCP-1 (monocyte chemotactic protein), MIP (macrophage inflammatory protein) -3α et MIP-3β suggèrent la possibilité d’un drainage vers des sites périphériques. Nous observons également des niveaux supérieurs à la normale de précurseurs CD11c+CD14+CD16- en phase chronique, possiblement liés à une tendence de régénération des DC. Les patients en phase chronique présentent de hautes concentrations plasmatiques de BLyS, reflétée par un haut taux d’expression de cette cytokine par les mDC et leurs précurseurs. Parallèlement, nous observons une expansion des cellules B matures activées ainsi que des taux élevés d’IgG et IgA dans le sang de ces patients. De plus, nous constatons l’expansion d’une population de cellules B qui présente à la fois des caractéristiques de cellules B immatures transitionnelles (TI, transitional immature), et de cellules B recirculantes activées de la zone marginale (MZ, marginal zone), considérées ici comme des «précurseurs/activées de la MZ». Cette étude démontre aussi, chez les progresseurs lents, une meilleure préservation du compartiment des DC du sang périphérique, accompagnée d’une augmentation de précurseurs des DC de phénotype CD11c+CD14+CD16+, ainsi que des concentrations plasmatiques et niveaux d’expression normaux de BLyS. Conséquemment, nous n’avons pas observé d’augmentation des cellules B matures activées et des cellules B précurseurs/activées de la MZ. Toutefois, la fréquence des cellules B matures de la MZ est diminuée, reflétant possiblement leur recrutement vers des sites périphériques et leur contribution à un mécanisme actif de contrôle de la progression de la maladie. L’ensemble de ce travail suggère que dans le cadre d’une infection au VIH, les altérations observées au niveau des DC modulent les anomalies des cellules B. Par conséquent, le maintien de l’équilibre des fonctions DC, notamment les fonctions noninflammatoires, pourrait avoir un impact important dans la prévention de la progression de maladies associées aux altérations du compartiment des cellules B.
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In this paper, an application is considered of both active and passive controls, to suppression of chaotic behavior of a simple portal frame, under the excitation of an unbalanced DC motor, with limited power supply (non-ideal problem). The adopted active control strategy consists of two controls: the nonlinear (feedforward) in order to keep the controlled system in a desirable orbit, and the feedback control, which may be obtained by considering state-dependent Riccati equation control to bringing the system into the desired orbit using a magneto rheological (MR) damper. To control the electric current applied in control of the MR damper the Bouc-Wen mathematical model was used to the MR damper. The passive control was obtained by means of a nonlinear sub-structure with properties of nonlinear energy sink. Simulations showed the efficiency of both the passive control (energy pumping) and active control strategies in the suppression of the chaotic behavior. © The Author(s) 2012.
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Nanosecond dynamics of two separated discharge cycles in an asymmetric dielectric barrier discharge is studied using time-resolved current and voltage measurements synchronized with high-speed (∼5 ns) optical imaging. Nanosecond dc pulses with tailored raise and fall times are used to generate solitary filamentary structures (SFSs) during the first cycle and a uniform glow during the second. The SFSs feature ∼1.5 mm thickness, ∼1.9 A peak current, and a lifetime of several hundred nanoseconds, at least an order of magnitude larger than in common microdischarges. This can be used in alternating localized and uniform high-current plasma treatments in various applications.
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This paper presents the programming an FPGA (Field Programmable Gate Array) to emulate the dynamics of DC machines. FPGA allows high speed real time simulation with high precision. The described design includes block diagram representation of DC machine, which contain all arithmetic and logical operations. The real time simulation of the machine in FPGA is controlled by user interfaces they are Keypad interface, LCD display on-line and digital to analog converter. This approach provides emulation of electrical machine by changing the parameters. Separately Exited DC machine implemented and experimental results are presented.
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We analyze new results on a magnetically levitated body (a block including a magnet whose bottom pole is set in such a way as to repel the upper pole of a magnetic base) excited by a non-ideal energy source (an unbalanced electric motor of limited power supply). These new results are related to the jump phenomena and increase of power required of such sources near resonance are manifestations of a non-ideal system and they are referred as the Sommerfeld effect, which emulates an energy sink. In this work, we also discuss control strategies to be applied to this system, in resonance conditions, in order to decrease its vibration amplitude and avoiding this apparent energy sink.
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"June 1971."
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"November 1970."