Example of IEEE Transactions on Antennas and Propagation format
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Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format
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Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format Example of IEEE Transactions on Antennas and Propagation format
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IEEE Transactions on Antennas and Propagation — Template for authors

Publisher: IEEE
Categories Rank Trend in last 3 yrs
Electrical and Electronic Engineering #59 of 693 -
journal-quality-icon Journal quality:
High
calendar-icon Last 4 years overview: 3407 Published Papers | 33123 Citations
indexed-in-icon Indexed in: Scopus
last-updated-icon Last updated: 13/07/2020
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Related Journals

open access Open Access

IEEE

Quality:  
High
CiteRatio: 6.4
SJR: 0.786
SNIP: 2.027
open access Open Access

IEEE

Quality:  
High
CiteRatio: 3.7
SJR: 0.396
SNIP: 1.133
open access Open Access
recommended Recommended

IEEE

Quality:  
High
CiteRatio: 10.2
SJR: 1.293
SNIP: 2.448

Journal Performance & Insights

Impact Factor

CiteRatio

Determines the importance of a journal by taking a measure of frequency with which the average article in a journal has been cited in a particular year.

A measure of average citations received per peer-reviewed paper published in the journal.

4.371

1% from 2018

Impact factor for IEEE Transactions on Antennas and Propagation from 2016 - 2019
Year Value
2019 4.371
2018 4.435
2017 4.13
2016 2.957
graph view Graph view
table view Table view

9.7

10% from 2019

CiteRatio for IEEE Transactions on Antennas and Propagation from 2016 - 2020
Year Value
2020 9.7
2019 8.8
2018 7.6
2017 6.8
2016 6.6
graph view Graph view
table view Table view

insights Insights

  • Impact factor of this journal has decreased by 1% in last year.
  • This journal’s impact factor is in the top 10 percentile category.

insights Insights

  • CiteRatio of this journal has increased by 10% in last years.
  • This journal’s CiteRatio is in the top 10 percentile category.

SCImago Journal Rank (SJR)

Source Normalized Impact per Paper (SNIP)

Measures weighted citations received by the journal. Citation weighting depends on the categories and prestige of the citing journal.

Measures actual citations received relative to citations expected for the journal's category.

1.652

3% from 2019

SJR for IEEE Transactions on Antennas and Propagation from 2016 - 2020
Year Value
2020 1.652
2019 1.697
2018 1.507
2017 1.309
2016 1.226
graph view Graph view
table view Table view

1.947

10% from 2019

SNIP for IEEE Transactions on Antennas and Propagation from 2016 - 2020
Year Value
2020 1.947
2019 2.152
2018 2.636
2017 2.295
2016 2.027
graph view Graph view
table view Table view

insights Insights

  • SJR of this journal has decreased by 3% in last years.
  • This journal’s SJR is in the top 10 percentile category.

insights Insights

  • SNIP of this journal has decreased by 10% in last years.
  • This journal’s SNIP is in the top 10 percentile category.

IEEE Transactions on Antennas and Propagation

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IEEE

IEEE Transactions on Antennas and Propagation

IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applicatio...... Read More

Engineering

i
Last updated on
12 Jul 2020
i
ISSN
0018-926X
i
Impact Factor
High - 2.225
i
Open Access
No
i
Sherpa RoMEO Archiving Policy
Green faq
i
Plagiarism Check
Available via Turnitin
i
Endnote Style
Download Available
i
Bibliography Name
IEEEtran
i
Citation Type
Numbered
[25]
i
Bibliography Example
C. W. J. Beenakker, “Specular andreev reflection in graphene,” Phys. Rev. Lett., vol. 97, no. 6, p.

Top papers written in this journal

Journal Article DOI: 10.1109/TAP.1966.1138693
Numerical solution of initial boundary value problems involving maxwell's equations in isotropic media
Kane Yee1

Abstract:

Maxwell's equations are replaced by a set of finite difference equations. It is shown that if one chooses the field points appropriately, the set of finite difference equations is applicable for a boundary condition involving perfectly conducting surfaces. An example is given of the scattering of an electromagnetic pulse by a... Maxwell's equations are replaced by a set of finite difference equations. It is shown that if one chooses the field points appropriately, the set of finite difference equations is applicable for a boundary condition involving perfectly conducting surfaces. An example is given of the scattering of an electromagnetic pulse by a perfectly conducting cylinder. read more read less

Topics:

Inhomogeneous electromagnetic wave equation (64%)64% related to the paper, Electromagnetic field solver (64%)64% related to the paper, Numerical partial differential equations (62%)62% related to the paper, Simultaneous equations (61%)61% related to the paper, Maxwell's equations (61%)61% related to the paper
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14,070 Citations
Journal Article DOI: 10.1109/TAP.1986.1143830
Multiple emitter location and signal parameter estimation

Abstract:

Processing the signals received on an array of sensors for the location of the emitter is of great enough interest to have been treated under many special case assumptions. The general problem considers sensors with arbitrary locations and arbitrary directional characteristics (gain/phase/polarization) in a noise/interference... Processing the signals received on an array of sensors for the location of the emitter is of great enough interest to have been treated under many special case assumptions. The general problem considers sensors with arbitrary locations and arbitrary directional characteristics (gain/phase/polarization) in a noise/interference environment of arbitrary covariance matrix. This report is concerned first with the multiple emitter aspect of this problem and second with the generality of solution. A description is given of the multiple signal classification (MUSIC) algorithm, which provides asymptotically unbiased estimates of 1) number of incident wavefronts present; 2) directions of arrival (DOA) (or emitter locations); 3) strengths and cross correlations among the incident waveforms; 4) noise/interference strength. Examples and comparisons with methods based on maximum likelihood (ML) and maximum entropy (ME), as well as conventional beamforming are included. An example of its use as a multiple frequency estimator operating on time series is included. read more read less

Topics:

Direction of arrival (56%)56% related to the paper, Estimation theory (56%)56% related to the paper, Array processing (55%)55% related to the paper, Beamforming (54%)54% related to the paper, Angle of arrival (53%)53% related to the paper
12,446 Citations
Journal Article DOI: 10.1109/TAP.1982.1142818
Electromagnetic scattering by surfaces of arbitrary shape
Sadasiva M. Rao1, Donald R. Wilton2, Allen W. Glisson2

Abstract:

The electric field integral equation (EFIE) is used with the moment method to develop a simple and efficient numerical procedure for treating problems of scattering by arbitrarily shaped objects. For numerical purposes, the objects are modeled using planar triangular surfaces patches. Because the EFIE formulation is used, the... The electric field integral equation (EFIE) is used with the moment method to develop a simple and efficient numerical procedure for treating problems of scattering by arbitrarily shaped objects. For numerical purposes, the objects are modeled using planar triangular surfaces patches. Because the EFIE formulation is used, the procedure is applicable to both open and closed surfaces. Crucial to the numerical formulation is the development of a set of special subdomain-type basis functions which are defined on pairs of adjacent triangular patches and yield a current representation free of line or point charges at subdomain boundaries. The method is applied to the scattering problems of a plane wave illuminated flat square plate, bent square plate, circular disk, and sphere. Excellent correspondence between the surface current computed via the present method and that obtained via earlier approaches or exact formulations is demonstrated in each case. read more read less

Topics:

Electric-field integral equation (55%)55% related to the paper, Galerkin method (53%)53% related to the paper, Surface (mathematics) (53%)53% related to the paper, Multilevel fast multipole method (53%)53% related to the paper, Integral equation (52%)52% related to the paper
4,835 Citations
Journal Article DOI: 10.1109/TAP.2004.823969
Particle swarm optimization in electromagnetics
Jacob T. Robinson1, Yahya Rahmat-Samii1

Abstract:

The particle swarm optimization (PSO), new to the electromagnetics community, is a robust stochastic evolutionary computation technique based on the movement and intelligence of swarms. This paper introduces a conceptual overview and detailed explanation of the PSO algorithm, as well as how it can be used for electromagnetic ... The particle swarm optimization (PSO), new to the electromagnetics community, is a robust stochastic evolutionary computation technique based on the movement and intelligence of swarms. This paper introduces a conceptual overview and detailed explanation of the PSO algorithm, as well as how it can be used for electromagnetic optimizations. This paper also presents several results illustrating the swarm behavior in a PSO algorithm developed by the authors at UCLA specifically for engineering optimizations (UCLA-PSO). Also discussed is recent progress in the development of the PSO and the special considerations needed for engineering implementation including suggestions for the selection of parameter values. Additionally, a study of boundary conditions is presented indicating the invisible wall technique outperforms absorbing and reflecting wall techniques. These concepts are then integrated into a representative example of optimization of a profiled corrugated horn antenna. read more read less

Topics:

Multi-swarm optimization (64%)64% related to the paper, Electromagnetics (60%)60% related to the paper, Metaheuristic (59%)59% related to the paper, Imperialist competitive algorithm (59%)59% related to the paper, Particle swarm optimization (58%)58% related to the paper
2,165 Citations
Journal Article DOI: 10.1109/TAP.1982.1142739
An alternative approach to linearly constrained adaptive beamforming
L.J. Griffiths1, C. Jim1

Abstract:

A beamforming structure is presented which can be used to implement a wide variety of linearly constrained adaptive array processors. The structure is designed for use with arrays which have been time-delay steered such that the desired signal of interest appears approximately in phase at the steered outputs. One major advant... A beamforming structure is presented which can be used to implement a wide variety of linearly constrained adaptive array processors. The structure is designed for use with arrays which have been time-delay steered such that the desired signal of interest appears approximately in phase at the steered outputs. One major advantage of the new structure is the constraints can be implemented using simple hardware differencing amplifiers. The structure is shown to incorporate algorithms which have been suggested previously for use in adaptive beamforming as well as to include new approaches. It is also particularly useful for studying the effects of steering errors on array performance. Numerical examples illustrating the performance of the structure are presented. read more read less

Topics:

Beamforming (61%)61% related to the paper, Adaptive beamformer (59%)59% related to the paper, Adaptive control (53%)53% related to the paper, Signal processing (50%)50% related to the paper
1,923 Citations
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Frequently asked questions

1. Can I write IEEE Transactions on Antennas and Propagation in LaTeX?

Absolutely not! Our tool has been designed to help you focus on writing. You can write your entire paper as per the IEEE Transactions on Antennas and Propagation guidelines and auto format it.

2. Do you follow the IEEE Transactions on Antennas and Propagation guidelines?

Yes, the template is compliant with the IEEE Transactions on Antennas and Propagation guidelines. Our experts at SciSpace ensure that. If there are any changes to the journal's guidelines, we'll change our algorithm accordingly.

3. Can I cite my article in multiple styles in IEEE Transactions on Antennas and Propagation?

Of course! We support all the top citation styles, such as APA style, MLA style, Vancouver style, Harvard style, and Chicago style. For example, when you write your paper and hit autoformat, our system will automatically update your article as per the IEEE Transactions on Antennas and Propagation citation style.

4. Can I use the IEEE Transactions on Antennas and Propagation templates for free?

Sign up for our free trial, and you'll be able to use all our features for seven days. You'll see how helpful they are and how inexpensive they are compared to other options, Especially for IEEE Transactions on Antennas and Propagation.

5. Can I use a manuscript in IEEE Transactions on Antennas and Propagation that I have written in MS Word?

Yes. You can choose the right template, copy-paste the contents from the word document, and click on auto-format. Once you're done, you'll have a publish-ready paper IEEE Transactions on Antennas and Propagation that you can download at the end.

6. How long does it usually take you to format my papers in IEEE Transactions on Antennas and Propagation?

It only takes a matter of seconds to edit your manuscript. Besides that, our intuitive editor saves you from writing and formatting it in IEEE Transactions on Antennas and Propagation.

7. Where can I find the template for the IEEE Transactions on Antennas and Propagation?

It is possible to find the Word template for any journal on Google. However, why use a template when you can write your entire manuscript on SciSpace , auto format it as per IEEE Transactions on Antennas and Propagation's guidelines and download the same in Word, PDF and LaTeX formats? Give us a try!.

8. Can I reformat my paper to fit the IEEE Transactions on Antennas and Propagation's guidelines?

Of course! You can do this using our intuitive editor. It's very easy. If you need help, our support team is always ready to assist you.

9. IEEE Transactions on Antennas and Propagation an online tool or is there a desktop version?

SciSpace's IEEE Transactions on Antennas and Propagation is currently available as an online tool. We're developing a desktop version, too. You can request (or upvote) any features that you think would be helpful for you and other researchers in the "feature request" section of your account once you've signed up with us.

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After writing your paper autoformatting in IEEE Transactions on Antennas and Propagation, you can download it in multiple formats, viz., PDF, Docx, and LaTeX.

12. Is IEEE Transactions on Antennas and Propagation's impact factor high enough that I should try publishing my article there?

To be honest, the answer is no. The impact factor is one of the many elements that determine the quality of a journal. Few of these factors include review board, rejection rates, frequency of inclusion in indexes, and Eigenfactor. You need to assess all these factors before you make your final call.

13. What is Sherpa RoMEO Archiving Policy for IEEE Transactions on Antennas and Propagation?

SHERPA/RoMEO Database

We extracted this data from Sherpa Romeo to help researchers understand the access level of this journal in accordance with the Sherpa Romeo Archiving Policy for IEEE Transactions on Antennas and Propagation. The table below indicates the level of access a journal has as per Sherpa Romeo's archiving policy.

RoMEO Colour Archiving policy
Green Can archive pre-print and post-print or publisher's version/PDF
Blue Can archive post-print (ie final draft post-refereeing) or publisher's version/PDF
Yellow Can archive pre-print (ie pre-refereeing)
White Archiving not formally supported
FYI:
  1. Pre-prints as being the version of the paper before peer review and
  2. Post-prints as being the version of the paper after peer-review, with revisions having been made.

14. What are the most common citation types In IEEE Transactions on Antennas and Propagation?

The 5 most common citation types in order of usage for IEEE Transactions on Antennas and Propagation are:.

S. No. Citation Style Type
1. Author Year
2. Numbered
3. Numbered (Superscripted)
4. Author Year (Cited Pages)
5. Footnote

15. How do I submit my article to the IEEE Transactions on Antennas and Propagation?

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16. Can I download IEEE Transactions on Antennas and Propagation in Endnote format?

Yes, SciSpace provides this functionality. After signing up, you would need to import your existing references from Word or Bib file to SciSpace. Then SciSpace would allow you to download your references in IEEE Transactions on Antennas and Propagation Endnote style according to Elsevier guidelines.

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