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Search: WFRF:(Amin N) > University of Gävle

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1.
  • Al Amin, A., et al. (author)
  • Design and performance analysis of 3.4 ghz rectangular microstrip patch antenna for wireless communication systems
  • 2017
  • In: International Journal on Communications Antenna and Propagation. - : Praise Worthy Prize. - 2039-5086 .- 2039-5094. ; 7:1, s. 80-86
  • Journal article (peer-reviewed)abstract
    • Wireless communication provides low-cost, high-speed and flexible communication in present days. Hence antenna plays a vital role in the wireless communication sector. The main concern of this paper is therefore to design a 3.4 GHz rectangular Microstrip patch antenna. Moreover, the feed probe based rectangular patch antenna will be designed. The performance of the designed rectangular patch antenna will be evaluated by analysing the major parameters of the simulation results. Hence the radiation pattern, gain, impedance matching and reflection coefficient or return loss calculation will be executed by the HFSS software to evaluate the performance of the antenna. 
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2.
  • Amin, Shoaib, et al. (author)
  • 2D Extended envelope memory polynomial model for concurrent dual-band RF transmitters
  • 2017
  • In: International journal of microwave and wireless technologies. - : Cambridge University Press. - 1759-0795 .- 1759-0787. ; 9:8, s. 1619-1627
  • Journal article (peer-reviewed)abstract
    • The paper presents a 2D extended envelope memory polynomial (2D-EEMP) model for concurrent dual-band radio frequency (RF) power amplifiers (PAs). The model is derived based on the physical knowledge of a dual-band RF PA. The derived model contains cross-modulation terms not included in previously published models; these terms are found to be of importance for both behavioral modeling and digital pre-distortion (DPD). The performance of the derived model is evaluated both as the behavioral model and DPD, and the performance is compared with state-of-the-art2D-DPD and dual-band generalized memory polynomial (DB-GMP) models. Experimental result shows that the proposed model resulted in normalized mean square error (NMSE) of -51.7/-51.6dB and adjacent channel error power ratio (ACEPR) of -63.1/-63.4 dB, for channel 1/2, whereas the 2D-DPD resulted in the largest model error and DB-GMP resulted in model parameters that are 3 times more than those resulted with the proposed model with the same performance. As pre-distorter, the proposed model resulted in adjacent channel power ratio (ACPR) of -55.8/ -54.6 dB for channel 1/2 and is 7-10 dB lower than those resulted with the 2D-DPD model and2-4 dB lower compared to the DB-GMP model.
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  • Result 1-2 of 2
Type of publication
journal article (2)
Type of content
peer-reviewed (2)
Author/Editor
Rönnow, Daniel (1)
Islam, M (1)
Händel, Peter, 1962- (1)
Al Amin, A. (1)
Masud, M. A. (1)
Khan, N. H. (1)
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Zavala, J. W. A. (1)
Minhaz-Ul-Islam, Moh ... (1)
Amin, Shoaib (1)
Landin, Per N. (1)
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University
Royal Institute of Technology (1)
Language
English (2)
Research subject (UKÄ/SCB)
Engineering and Technology (2)
Year

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