Search Results(14024)

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PIER
Vol. 23, 277-300
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PIER
Vol. 23, 221-237
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PIER
Vol. 22, 181-195
Pattern Nulling by Iterative Phase Perturbation
M. J. Mismar and Taisir Ismail
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PIER
Vol. 22, 51-84
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PIER
Vol. 20, 179-211
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PIER
Vol. 20, 153-178
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PIER
Vol. 19, 129-145
A Segmented Approach for Computing the Electromagnetic Scattering of Large and Deep Cavities
Fernando Obelleiro , J. Campos-Nino , Jose Luis Rodriguez and Antonio Garcia-Pino
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PIER
Vol. 16, 227-267
Comparison Between the Performance of Ti:Linbo3 and h :Linbo3 Rotated Optical Axis Waveguides
Francesco Prudenzano , A. D'Orazio , Vincenzo Petruzzelli and Marco De Sario
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PIER
Vol. 16, 153-173
Wideband Electromagnetic Analysis of Finite-Conductivity Cylinder
Tapan Kumar Sarkar and Antonije R. Djordjevic
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PIER
Vol. 15, 63-85
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PIER
Vol. 14, 1-36
Polarimetric Scattering Theory for High Slope Rough Surface
Akira Ishimaru , Calvin Le , Yasuo Kuga , Lynn Ailes-Sengers and T. K. Chan
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PIER
Vol. 13, 149-168
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PIER
Vol. 120, 403-421
FETD Computation of the Temperature Distribution Induced into a Human Eye by a Pulsed Laser
Mario Cvetković , Dragan Poljak and Andres Peratta
In this paper we present the three-dimensional finite element time domain model of the human eye exposed to pulsed holmium: YAG laser radiation used in thermokeratoplasty procedure. The model is based on the Pennes' bioheat transfer equation and takes into account the focusing action of the lens. The absorption of laser energy inside the eye tissues is modeled using the Lambert-Beer's law. Model takes into account the pulse temporal profile. The maximum temperature values obtained from steady state and transient analysis are compared against those reported from other papers. Finally, sensitivity analysis of several parameters on the calculated temperature field is carried out.
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PIER Letters
Vol. 12, 183-189
A Low-Loss Patch LTCC BPF for 60 GHz System-on-Package (Sop) Applications
Young Chul Lee and Tae Wan Kim
In this paper, a three-dimensional (3-D) low-loss and wideband BPF based on lowtemperature co-fired ceramic (LTCC) has been presented for 60 GHz wireless communication applications. Via pads in the vertical via transitions are designed as an additional resonator for lowloss and wide-bandwidth of the BPF. The proposed BPF has been designed by investigating its characteristics as a function of dimensions of the resonators such as a single-mode patch and via pads and also a length of feed lines are optimized for effective coupling. The designed BPF was fabricated in a 6-layer LTCC dielectric. The fabricated BPF shows a centre frequency (fc) of 61.46 GHz and a 3dB bandwidth of 10.5% from 58.2 to 64.7 GHz (6.47 GHz). An insertion loss of -2.88 dB at fc and return losses below -10 dB are achieved. Its whole size is 4.72 × 1.7 × 0.684 mm3.
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PIER
Vol. 12, 159-176
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PIER
Vol. 11, 103-141
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PIER B
Vol. 1, 135-145
Performance Improvement in Amplitude Synthesis of Unequally Spaced Array Using Least Mean Square Method
S. Kazemi , Hamid Reza Hassani , Gholamreza R. Dadashzadeh and Fatemeh Gharakhili
In this paper, an efficient method to obtain the elements current distribution for a non uniformly spaced array is presented. For a given far field pattern, after sampling the array factor the proposed method uses the least mean square error technique to solve the system ofequations rather than solving the previously published Legendre function method. It's shown that the average side lob level obtained by this proposed method is some 5 dB lower in comparison with the existing Legendre function method ofsolution. Ifthe Legendre function method published in the literature is to be used to solve for the current distribution, in the final part ofthis paper, a criteria on how to choose suitable vectors that would result in a 3 dB lower side lobe level performance will be provided.
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PIER C
Vol. 1, 113-122
A Multimode Interference Coupler with Exponentially Tapered Waveguide
Ji-Jiang Wu
An exponentially tapered structure is introduced into multimode interference (MMI) devices. Compared with a parabolically tapered structure,which has been successfully used in MMI devices, this structure can further reduce the length of these devices. The performances of the 1 × 2 MMI coupler with exponentially tapered structure,such as the optical transmission,the wavelength response and the fabrication tolerance,are investigated by the 2D finite difference beam propagation method. Results show that the exponentially tapered MMI coupler exhibits a similar property to that with a parabolically tapered structure.
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PIER
Vol. 09, 351-397
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PIER
Vol. 09, 181-218