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Issue Info: 
  • Year: 

    2024
  • Volume: 

    13
  • Issue: 

    25
  • Pages: 

    3-32
Measures: 
  • Citations: 

    0
  • Views: 

    15
  • Downloads: 

    0
Abstract: 

In this research, in order to investigate the effect of the piezoelectric patch which is used as a sensor or actuator in rotating flexible structures such as a helicopter blade, the free vibrations of the rotating Rectangular sheet with and without the piezoelectric patch have been presented. First-order shear deformation theory is considered for plate displacement and piezoelectric field. Considering the effect of Coriolis acceleration, centrifugal acceleration and centrifugal in-plane forces, the equations of motion are derived from Hamilton's principle and the electromechanical couple equation is obtained from Maxwell's equation. For piezoelectric, two electrical conditions, open circuit and closed circuit, which are used in sensors and actuators, respectively, have been considered. The equations are discretized with the help of the numerical method of generalized differential squares and the matrices of inertia mass, eccentricity, Coriolis and stiffness matrix are obtained. Natural frequency values for beam and rotating plate have been compared in Abaqus software. Also, the values obtained from the numerical solution in MATLAB have been verified with articles and ABAQUS, which have high accuracy. The effect of parameters such as hub radius, rotation speed, sheet thickness, aspect ratio, piezoelectric patch thickness and applied voltage on the natural frequency of the system has also been investigated.

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Author(s): 

RICHA GARG E.

Issue Info: 
  • Year: 

    2012
  • Volume: 

    25
  • Issue: 

    1 (TRANSACTIONS C: ASPECTS)
  • Pages: 

    39-44
Measures: 
  • Citations: 

    0
  • Views: 

    367
  • Downloads: 

    300
Abstract: 

A new design of Microsrtip patch fractal antenna for 2.5 GHz is proposed which possess an excellent size reduction possibility with good radiation performance for wireless applications like Wireless Local Area Network (WLAN). The design and simulation results of microstrip patch fractal antenna using An soft HFSS is presented which has S11<-10 dB (VSWR<2). The antenna is designed based on the transmission line model with the input impedance of 50 ohm. The fractal geometry for the conventional antenna is generated up to second iteration. The results show that size reduction of 51.9% can be achieved as compared to conventional patch antenna.

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Issue Info: 
  • Year: 

    2021
  • Volume: 

    11
  • Issue: 

    3
  • Pages: 

    439-449
Measures: 
  • Citations: 

    0
  • Views: 

    183
  • Downloads: 

    125
Abstract: 

Timely diagnosis is the most important parameter for the detection and hindrance with tissues (infected). Many conventional techniques are used for the determination of the chronic disease like MRI, X-ray, mammography, ultrasound and other diagnosing methods. Nevertheless, they have some limitations. We epitomize between 4 and 34 % of all carcinogenic tissues are lacking because of weak, in adequate malignant/benign cancer tissue on the contrary. So, an effective alternative method is the valid concern in the field of medical right now. Imaging with the help of patch antenna to detect chronic disease like breast cancer, oxidative stress syndrome etc. it has been proved to be a suitable potential method, and there are many works in this area. All materials have different conductivity and permittivity. With the help of these antennas, a 3D tissue structure which has different conductivity and permittivity is modelled in highfrequency structure simulator through finite element method which resolves electromagnetic field values and a microstrip patch antenna operation process. As compared with conventional antennas, micro strip patch antennas have enhanced benefits and better prospects. An integrated Antenna plays an important or crucial role for supporting many applications in biomedical, commercial and in military fields. The Antenna designed for these applications should be wideband, not sensitive to the human body. In this present review, the precise application of the Antenna in different biomedical aspects is considered. Furthermore, the author has also discussed the analytical results using simulation models and experimental results for some of the significantdisease.

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Issue Info: 
  • Year: 

    2007
  • Volume: 

    3
  • Issue: 

    3-4
  • Pages: 

    64-71
Measures: 
  • Citations: 

    0
  • Views: 

    320
  • Downloads: 

    114
Abstract: 

This paper presents a novel implementation of an electromagnetically coupled patch antenna using air gap filled substrates to achieve the maximum bandwidth. We also propose an efficient modeling technique using the FDTD method which can substantially reduce the simulation cost for modeling the structure. The simulated results have been compared with measurement to show the broadband behavior of the antenna and the accuracy of the proposed modeling technique. The measured results show a 16% of VSWR<2 bandwidth which is considerable considering the inherent bandwidth limitations in microstrip antenna technology.

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Issue Info: 
  • Year: 

    2007
  • Volume: 

    34
  • Issue: 

    1 (46) ELECTRICAL ENGINEERING
  • Pages: 

    83-88
Measures: 
  • Citations: 

    0
  • Views: 

    3293
  • Downloads: 

    0
Abstract: 

In this paper a circularly polarized single feed patch antenna has been optimized at the frequency of 2.45 GHz. A single stub is used in feed network to make the resonant frequency equal to circularly polarized frequency. Two different patch antennas fabricated on FR4 and RT/Duroid5870 substrates are implemented to investigate the effect of loss on antenna parameters. The measurement results confirm the integrity of simulation results.

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Issue Info: 
  • Year: 

    2022
  • Volume: 

    2
  • Issue: 

    1
  • Pages: 

    11-22
Measures: 
  • Citations: 

    0
  • Views: 

    219
  • Downloads: 

    0
Abstract: 

In this paper, a wideband high-gain microstip patch array antenna for high resolution synthetic aperture radar applications is presented. The antenna operation frequency is in the X-band and the antenna structure is a four-layer configuration consisting of radiating patches, slots, coupling cavities, and a corporate feeding network, which in turn is fed by a coaxial probe. The increased frequency bandwidth of the radiating patch is achieved by employing a square slot, which appears as a cavity for it, and improves the gain and impedance bandwidth of the antenna array by isolating the patch feeding slot and eliminating the mutual coupling effect. The whole antenna structure is fabricated by using a combination of the milling process and printed circuit technology. Measurement results show a relative gain bandwidth of more than 10%, in which the antenna gain is measured above 28. 8 dBi over the frequency band of more than 1 GHz. Moreover, the relative impedance bandwidth of the antenna for VSWR>2 is more than 16%.

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Author(s): 

GHAFOORZADEH YAZDY A.

Issue Info: 
  • Year: 

    2004
  • Volume: 

    -
  • Issue: 

    16
  • Pages: 

    97-112
Measures: 
  • Citations: 

    0
  • Views: 

    250
  • Downloads: 

    0
Abstract: 

In this paper, a generalized method for accurate full-wave analysis of shielded MIC's and the three-layer microstrip structure enclosed in a Rectangular cavity based on Mixed Potential Integral Equation (MPIE) derived in real space have been developed. Method of moments (MoM) with Galerkin technique has been used for the solution of the integral equation to obtain the surface electric currents distribution on the conductors. An accurate de-embedding procedure for the characterizing electric currents distribution and extracting S parameters based on pencil of matrix technique are employed. A new numerical technique for fast convergence of the double infinite series expansion of the MoM solution has been considered. A computer program implementing the analysis has been written in Fortran on a personal computer. Several types of microstrip discontinuities such as Open-end, bend, collinear Broadside Coupled Line (BCL) and crossover is analyzed and numerical results are presented and compared with both previously published data and the results found by HP-HFSS software.

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Issue Info: 
  • Year: 

    2005
  • Volume: 

    2
  • Issue: 

    5
  • Pages: 

    40-27
Measures: 
  • Citations: 

    0
  • Views: 

    342
  • Downloads: 

    190
Abstract: 

An aperture coupled circular microstrip patch antenna is analyzed. A full wave spectral domain method of moment along with a reciprocity analysis of a single aperture coupled microstrip element is applied. Both the electric surface current on the circular patch and the equivalent magnetic current on the aperture are considered. Results on effects of different feed line stub length, aperture length, different feed substrate permittivity and thickness on input impedance, resonant frequency and radiation pattern of the antenna and slot are provided

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Author(s): 

ROSTAMI Z. | NAJAFI M.

Journal: 

ELECTRONIC INDUSTRIES

Issue Info: 
  • Year: 

    2016
  • Volume: 

    7
  • Issue: 

    3
  • Pages: 

    49-55
Measures: 
  • Citations: 

    0
  • Views: 

    947
  • Downloads: 

    0
Abstract: 

Micro strip circular and square structural ring patch antenna because of most plasticity for receiving an transmitting the signals and also application to driver the active devices are used. An accurate modified wolfe model (MWM) is applied to compute the effective dynamic dielectric constant for determination of resonant frequency micro strip patch antenna circular and square ring without cover. The results obtained from (MWM) have been compared against the result of experimental and other theoretical methods which have very good agreement. Then accuracy of calculated resonant frequency by the (MWM) for dominant mode is about 0.5%. Moreover we calculate the supper strate effect on the resonant frequency dominant and higher order modes of circular and square ring, but the other methods dose not applicable for calculation of the supperstrate effects on the resonant frequency.

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Author(s): 

CHEN H.M. | SZE J.Y. | LIN Y.F.

Issue Info: 
  • Year: 

    2000
  • Volume: 

    27
  • Issue: 

    5
  • Pages: 

    369-370
Measures: 
  • Citations: 

    1
  • Views: 

    205
  • Downloads: 

    0
Keywords: 
Abstract: 

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