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991.
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993.
Asymmetry, also known as domain bloom, is a systematic imperfection caused by the writing process in optical or magneto-optical recording. At the reading end of the system, asymmetry causes shifts of adjacent signal transitions in opposite directions. We present a simple nonlinear model for the replay signal in the presence of asymmetry. The model is specified by a single parameter, which is proportional to asymmetry, and its accuracy is demonstrated by application to replay signals from digital video disk drives. Based on the proposed model, a maximum-likelihood sequence detector is designed for replay signals with asymmetry. Simple modifications of the proposed detector lead to significant reductions in complexity, while the attainable performance, evaluated both analytically and through error-rate simulations, is superior to that of conventional techniques. 相似文献
994.
Carsey F.D. Argus S.A.D. Collins M.J. Holt B. Livingstone C.E. Tang C.L. 《Geoscience and Remote Sensing, IEEE Transactions on》1989,27(5):468-482
Ice observations, results, and conclusions are summarized for the March 1987 Labrador Ice Margin Experiment (LIMEX'87), an international oceanographic study conducted in the pack ice of the Grand Banks area off the coast of Newfoundland. Included are the ice extent, flow size and thickness, ice kinematics and rheology, ice microwave properties, oceanic properties under the ice, and penetration of swell into the ice 相似文献
995.
996.
997.
Bayne S.B. Tipton C.W. Griffin T. Scozzie C.J. Geil B. Agarwal A.K. Richmond J. 《Electron Device Letters, IEEE》2002,23(6):318-320
The high-temperature operation of a silicon carbide gate turn-off thyristor is evaluated for use in inductively loaded switching circuits. Compared to purely resistive load elements, inductive loads subject the switching device to higher internal power dissipation. The ability of silicon carbide components to operate at elevated temperatures and high power dissipations are important factors for their use in future power conversion/control systems. In this work, a maximum current density of 540 A/cm2 at 600 V was switched at a frequency of 2 kHz and at several case temperatures up to 150°C. The turn-off and turn-on characteristics of the thyristor are discussed 相似文献
998.
The flow and fracture behavior of Be-Al alloys were determined in tension with different levels of superimposed pressure.
The Be-Al alloys were prepared by Brush Wellman, Inc. (Cleveland, OH) from prealloyed powders processed to either a hot isostatically
pressed (“hipped”) or cold isostatically pressed and extruded condition. Significant effects of pressure on both the flow
and ductility have been observed at room temperature, with implications on the formability of these materials. The effects
of changes in processing conditions and stress state on the flow and fracture behavior are summarized in addition to both
optical and scanning electron microscopy (SEM) examination of the fracture surfaces. Separate other studies on the alloy constituents
(e.g., Al and Be) are also reported. The results are also compared to previous works on monolithic materials and composites tested
with high pressure. 相似文献
999.
In this paper, the nonlinear response of elastic membranes with arbitrary shape under partial and full ponding loads has
been analyzed. Large deflections are considered, which result from nonlinear kinematic relations. The problem is formulated
in terms of the displacements components and the three coupled nonlinear governing equations are solved using the analog equation
method (AEM). The membrane may be prestressed either by prescribed boundary displacements or tractions. Using the concept
of the analog equation the three coupled nonlinear equations are replaced by three uncoupled Poisson's equations with fictitious
sources under the same boundary conditions. Subsequently, the fictitious sources are established using a procedure based on
the BEM and the displacement components as well as the stress resultants at any point of the membrane are evaluated from their
integral representations. In addition to the geometrical nonlinearity, the ponding problem is itself nonlinear, because the
ponding load depends on the deflection surface that it produces. Iterative schemes are developed which converge to the equilibrium
state of the membrane under the ponding loads. Several membranes are analyzed which illustrate the method and demonstrate
its efficiency and accuracy. The method has all the advantages of the pure BEM, since the discretization and integration is
limited only to the boundary.
Received 28 July 2001 相似文献
1000.