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Remote sensing of environment research has explored the benefits of using synthetic aperture radar imagery systems for a wide range of land and marine applications since these systems are not affected by weather conditions and therefore are operable both daytime and nighttime. The design of image processing techniques for  synthetic aperture radar applications requires tests and validation on real and synthetic images. The GRSS benchmark database supports the desing and analysis of algorithms to deal with SAR and PolSAR data.

Last Updated On: 
Tue, 02/08/2022 - 17:46
Citation Author(s): 
Nobre, R. H.; Rodrigues, F. A. A.; Rosa, R.; Medeiros, F.N.; Feitosa, R., Estevão, A.A., Barros, A.S.

The distributed generation, along with the deregulation of the Smart Grid, have created a great concern on Power Quality (PQ), as it has a direct impact on utilities and customers, as well as effects on the sinusoidal signal of the power line. The a priori unknown features of the distributed energy resources (DER) introduce non-linear behaviours in loads associated to a variety of PQ disturbances.

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Accurately obtaining the position of active transmitters within an indoor wireless network has promising applications in future wireless networks. However, due to the complex propagation phenomena experienced by signals indoors, classical model-based localization techniques present poor accuracy, and machine learning (ML) based positioning has a promising potential to deliver high accuracy localization services indoors.

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Astrictive-type grippers, which generate gripping forces from adhesive forces at the contact surface such as suction cup, are popular end-effectors as picking solutions because of their simplicity and small working space. However, the adhesive force of the astrictive gripper decreases with increasing complexity of the object surface; thus, its application has been restricted to simple picking of objects with a flat surface. Here, we present an all-round honeycomb astrictive gripper that has an orthotropic surface tension for grasping highly irregular shaped objects with an uneven surface.

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This appendix discribes how the elements of a Mason-circuit-based dynamic model is formed. 

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the zip file ''matlabcodeforallfigures'' contains the Matlab code for all figures and one table. Within which, the data for Figure 5, Figure 7 as well as Figure 9 are generated by the C ++ script in the zip file ''CsciptforFigure57and9'' and its correlated data collected in the zip file ''collecteddataforFigure57and9''.

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This is the result file of the simulation

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SSCI data on cultural heritage tourism

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Current quantum systems that are based on spin qubits are controlled by classical electronics located outside the cryostat at room temperature. This approach creates a major wiring bottleneck, which is one of the main roadblocks toward truly scalable quantum computers. Thus, we propose a scalable memristor-based programmable DC source that can be used to perform biasing of quantum dots inside the cryostat (i.e., in-situ).

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1110612_PKGstrip_10cm_100pH_2xthru.s2p  -- The S parameters of the 2x-thru standard, solved by Ansys Q2D+Designer.

1110612_PKGstrip_20cm_100pH_FDUT.s2p  -- The S parameters of the fixtured DUT, solved by Q2D+Designer.

1110612_PKGstrip_10cm_DUT.s2p  --  The S parameters of DUT (without fixture), solved by Q2D.

The DUT is 10cm strip line. The fixture contains a 100pH series inductor and 5cm strip line.

Fixture A and fixture B are symmetric.

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