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A Study on A Series Grid Interconnection Module for Distributed Energy ResourcesXiau, Ying-Chieh 13 July 2006 (has links)
This thesis presents the applications of a series interconnection scheme for small distributed generation (DG) systems in distribution networks. The concept uses one set of voltage source converter (VSC) to control the injected voltage magnitude and phase angle for power injection and voltage sag mitigation. Through an energy storage device and the VSC, DG outputs vary concurrently with the line loading and provide load leveling functions. Under voltage sag situations, it provides missing voltages to effectively deal with power quality problems. Due to its series connection characteristic, it is convenient in preventing islanding operation and good for fault current limiting. The concept is suitable for locations where the voltage phase shift is not a major concern. Due to the use of only one set of converter, it is economic for customer site distributed energy resource applications and its control strategy would depend on the types of load connected.
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Circuit breaker transient recovery voltage analysis with shunt capacitor bank configurationsGuha, Anirudh 21 February 2011 (has links)
Transient Recovery Voltage (TRV) is an important consideration in the selection and installation of circuit breakers with appropriate ratings. Capacitor banks with inrush current limiting reactors are an integral part of the
power system. Capacitor banks with inrush reactors on the load side terminal of the capacitor breaker alter the TRV seen across the breaker and it is critical to carry out the TRV analysis to prevent circuit breaker failure. TRV analysis has been performed for various capacitor bank - inrush reactor configurations,
with the fault occurring at different terminals on the load side. Analytical solutions have been presented for both single-phase and three-phase ungrounded
capacitor banks. Neutral displacement voltage of three-phase ungrounded capacitor banks result in increased stress across the breaker. Results have been
validated with PSCAD simulation and MATLAB plots. / text
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Current Limiting and Recovery Characteristics of 2 MVA Class Superconducting Fault Current Limiting Transformer (SFCLT)Okubo, Hitoshi, Hanai, Masahiro, Hayakawa, Naoki, Kito, Toyoaki, Kotari, Masashi, Kojima, Hiroki 06 1900 (has links)
No description available.
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[en] SERIES LIMITING CURRENT REACTOR FOR ARC FURNACES / [pt] REATOR SÉRIE LIMITADOR DE CORRENTE PARA FORNOS A ARCOSERGIO CORDEIRO SOBRAL 29 December 2006 (has links)
[pt] Esta tese apresenta os principais fenômenos
eletromecânicos, que ocorrem durante a operação do forno a
arco, com ênfase especial nos fenômenos elétricos e
magnéticos envolvidos. Apresenta também uma simulação
computacional, que tem por objetivo verificar que a
utilização de um reator série limitador de corrente no
circuito de alimentação do forno, visando estabilizar o
arco, não reduz significativamente a potência operacional
do mesmo à 60Hz.
A tese apresenta ainda os resultados de uma
simulação analógica, que permite verificar que a
impedância do reator série limitador, vista pelo circuito
do forno, é pequena à 60 Hz e relativamente elevada em
outras freqüências. Desta forma, tem-se um efetivo
amortecimento das flutuações de corrente e tensão,
causadas pela operação do forno, sem restringir a potência
operacional do mesmo. / [en] This thesis presents the main electromechanical phenomena,
occuring during the operating of an arc furnace, focusing
the electric and magnetic ones. It also presents a digital
simulation aiming to verify that the utilization of a
series limiting current reactor included into the furnace
feeding circuit, for arc stabilization purposes, does not
reduce its operational capacity at 60 Hz.
It is also presented the results of an analogic
simulation, which shows that the reactor impedance seen by
the furnace circuit is small at 60 Hz and relatively large
at other frequencies. Hence, an effective damping of the
current and voltage variations, caused by the furnace
operation, can be achieved.
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Smart Power Module for Distributed Sensor Power Network of an Unmanned Ground VehicleRoa, Christian Raphael 25 July 2014 (has links)
Energy efficiency is a driving factor in modern electronic design particularly in power conversion where conversion losses directly set the upper limit of system efficiency. A wide variety of commercially available DC-DC conversion elements have inefficiencies in the 90-97% range. The efficiency range of most common commercial-off-the-shelf (COTS) power supplies is 75-85%, highlighting the fact that COTS power supplies have not kept pace with efficiency improvements of modern conversion elements.
Unmanned ground vehicles (UGVs) is an application where efficiency can be crucial in extending tight power budgets. In autonomous ground vehicles, geographic diversity with regard to sensor location is inherent because sensor orientation and placement are crucial to performance. Sensor power, therefore, is also distributed by nature of the devices being supplied.
This thesis presents the design and evaluation of a smart power module used to implement a distributed power network in an autonomous ground vehicle. The module conversion element demonstrated an average efficiency of 96.7% for loads from 1-4A. Current monitoring and an adjustable output current limit were provided through a second circuit board within the same module enclosure. The module processing element sends periodic updates and receives commands over a CAN bus. The smart power modules successfully supply critical sensing and communication components in an operational autonomous ground vehicle. / Master of Science
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高温超伝導バルク導体を用いた超伝導限流変圧器の開発に関する研究早川, 直樹, 大久保, 仁, 加藤, 克巳, Juengst, Klaus-Peter 03 1900 (has links)
科学研究費補助金 研究種目:基盤研究(A)(2) 課題番号:14205040 研究代表者:早川 直樹 研究期間:2002-2003年度
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