Pregui{\c c}a, Nuno, Rodrigo Rodrigues, Cristóvão Honorato, and João Louren{\c c}o. "
Byzantium: Byzantine-fault-tolerant database replication providing snapshot isolation."
Proceedings of the Fourth conference on Hot topics in system dependability. HotDep’08. Berkeley, CA, USA: USENIX Association, 2008. 9.
AbstractDatabase systems are a key component behind many of today’s computer systems. As a consequence, it is crucial that database systems provide correct and continuous service despite unpredictable circumstances, such as software bugs or attacks. This paper presents the design of Byzantium, a Byzantine fault-tolerant database replication middleware that provides snapshot isolation (SI) semantics. SI is very popular because it allows increased concurrency when compared to serializability, while providing similar behavior for typical workloads. Thus, Byzantium improves on existing proposals by allowing increased concurrency and not relying on any centralized component. Our middleware can be used with off-the-shelf database systems and it is built on top of an existing BFT library.
Martins, Rui M. S., N. Schell, H. Reuther, L. Pereira, R. J. C. Silva, K. K. Mahesh, Braz F. M. Fernandes, AT Marques, AF Silva, APM Baptista, C. Sa, FJLA Alves, LF Malheiros, and M. Vieira. "
Characterization of Ni-Ti (Shape Memory Alloy) Thin Film by in-situ XRD and Complementary ex-situ Techniques."
Advanced Materials Forum Iv. Vol. 587-588. 2008. 672-676.
Abstractn/a
Inácio, S., D. Inácio, J. M. Pina, Stanimir Valtchev, M. V. Neves, and A. L. Rodrigues. "
An electrical gearbox by means of pole variation for induction and superconducting disc motor."
Journal of Physics: Conference Series. 97 (2008): 012221.
AbstractIn this paper, a poly-phase disc motor innovative feeding and control strategy, based on a variable poles approach, and its application to a HTS disc motor, are presented. The stator windings may be electronically commutated to implement a 2, 4, 6 or 8 poles winding, thus changing the motor's torque?speed characteristics. The motor may be a conventional induction motor with a conductive disc rotor, or a new HTS disc motor, with conventional copper windings at its two iron semi-stators, and a HTS disc as a rotor. The conventional induction motor's operation principle is related with the induced electromotive forces in the conductive rotor. Its behaviour, characteristics (namely their torque?speed characteristics for different number of pole pairs) and modelling through Steinmetz and others theories are well known. The operation principle of the motor with HTS rotor, however, is rather different and is related with vortices' dynamics and pinning characteristics; this is a much more complex process than induction, and its modelling is quite complicated. In this paper, the operation was simulated through finite-elements commercial software, whereas superconductivity was simulated by the E-J power law. The Electromechanical performances of both motors where computed and are presented and compared. Considerations about the systems overall efficiency, including cryogenics, are also discussed.
Fortunato, E., L. Raniero, L. Silva, A. Gonçalves, A. Pimentel, P. Barquinha, H. Aguas, L. Pereira, G. Gonçalves, and I. Ferreira. "
Highly stable transparent and conducting gallium-doped zinc oxide thin films for photovoltaic applications."
Solar Energy Materials and Solar Cells. 92.12 (2008): 1605-1610.
Abstractn/a
Pereira, P., S. Valtchev, J. Pina, A. Gonçalves, Ventim M. Neves, and A. L. Rodrigues. "
Power electronics performance in cryogenic environment: evaluation for use in HTS power devices."
Journal of Physics: Conference Series. 97 (2008): 012219.
AbstractPower electronics (PE) plays a major role in electrical devices and systems, namely in electromechanical drives, in motor and generator controllers, and in power grids, including high-voltage DC (HVDC) power transmission. PE is also used in devices for the protection against grid disturbances, like voltage sags or power breakdowns. To cope with these disturbances, back-up energy storage devices are used, like uninterruptible power supplies (UPS) and flywheels. Some of these devices may use superconductivity. Commercial PE semiconductor devices (power diodes, power MOSFETs, IGBTs, power Darlington transistors and others) are rarely (or never) experimented for cryogenic temperatures, even when designed for military applications. This means that its integration with HTS power devices is usually done in the hot environment, raising several implementation restrictions. These reasons led to the natural desire of characterising PE under extreme conditions, e. g. at liquid nitrogen temperatures, for use in HTS devices. Some researchers expect that cryogenic temperatures may increase power electronics' performance when compared with room-temperature operation, namely reducing conduction losses and switching time. Also the overall system efficiency may increase due to improved properties of semiconductor materials at low temperatures, reduced losses, and removal of dissipation elements. In this work, steady state operation of commercial PE semiconductors and devices were investigated at liquid nitrogen and room temperatures. Performances in cryogenic and room temperatures are compared. Results help to decide which environment is to be used for different power HTS applications.