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The Different Between the Temperature of the Solar Burst at the Feed Point of the Log Periodic Dipole Antenna (LPDA) and the CALLISTO Spectrometer

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article attempts to analyze and compare the temperature of solar radio burst at the (i) feed point and antenna and (ii) at the receiver (CALLISTO spectrometer). The analysis is very important to evaluate the performance for a better observation of solar radio burst. We start our project by developing this antenna with 19 elements of different sizes covers from 45 − 870 MHz. We choose the National Space Agency (PAN), Sg. Lang, Banting, Selangor, Malaysia as our site seems this site has a very minimum of Radio Frequency Interference (RFI). The antenna, then connects to the low noise amplifier and the CALLISTO spectrometer as one complete system. Based on the results, it was found that the temperature of the at the feed point of the antenna and receiver is different up to 3.25 K. The average level burst level above background sky is about 0.41dB. It was found that the power of solar burst at the feed point of the antenna is equivalent to 2.6 x 10-18 W, but decreases to 2.3 x 10-18 W when detected by the CALLISTO spectrometer. These results show a better understanding of how does the system operate in terms of the process of analysis of the temperature of solar radio burst.
Rocznik
Strony
167--176
Opis fizyczny
Bibliogr. 27 poz., wz., zdj.
Twórcy
autor
  • School of Physics and Material Sciences, Faculty of Sciences, MARA University of Technology, 40450, Shah Alam, Selangor, Malaysia
  • Academy of Contemporary Islamic Studies (ACIS), MARA University of Technology,40450, Shah Alam, Selangor, Malaysia
autor
  • Institute of Astronomy, Wolfgang-Pauli-Strasse 27, Building HIT, Floor J, CH-8093 Zurich, Switzerland
Bibliografia
  • [1] R.H. DuHamel, D.E. IsBell, Broadband Logarithmically Periodic Antenna Structures, IRE national convention record, 1957, pp. 119-128.
  • [2] R.L. Carrel, Analysis and Design of the Log-Periodic Dipole Antenna, Elec. Eng. Dept., University of Illinois, 1961.
  • [3] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, C. Monstein, N. Shariff, International Journal of Fundamental Physical Sciences 2 (2012) 32-34.
  • [4] Z.S.Hamidi, Z.Z.Abidin, Z.A. Ibrahim, N.N.M. Shariff, Indication of radio frequency interference (RFI) sources for solar burst monitoring in Malaysia, AIP Conference Proceedings 1454 (2012) 43.
  • [5] Z.S.Hamidi, N.N.M.Shariff, Z.Z. Abidin, Z.A. Ibrahim, C.Monstein, Malaysian Journal of Science and Technology Studies 9 (2013) 15-22.
  • [6] Z.S. Hamidi, N. Shariff, Z. Abidin, Z. Ibrahim, C. Monstein, Middle-East Journal of Scientific Research 12 (2012) 6.
  • [7] Z.S. Hamidi, N.N.M. Shariff, C. Monstein, Z. Abidin, Z. Ibrahim, N. Hashim, R. Umar, N. Aziz, International Journal of Fundamental Physical Sciences 3 (2013) 57-63.
  • [8] Z.S.Hamidi, N.M.Anim, N. N.S.Hakimi, N.Hamzan, A.Mokhtar, N.Syukri, S.Rohizat, I.Sukma, Z.A. Ibrahim, Z.Z.Abidin, N.N.M.Shariff, C.Monstein, International Journal of Fundamental Physical Sciences 2 (2012) 4.
  • [9] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, C. Monstein, Observations of coronal mass ejections (CMEs) at low frequency radio region on 15th April 2012, in: R.Shukor (Ed.), PERFIK 2012, American Institute of Physics, Malaysia, 2013, pp. 5.
  • [10] Z.S. Hamidi, N. Anim, N.N.M. Shariff, Z.Z. Abidin, Z.A. Ibrahim, C. Monstein, Dynamical structure of solar radio burst type III as evidence of energy of solar flares, in: R.Shukor (Ed.), PERFIK 2012, American Institute of Physics, Malaysia, 2013, pp. 11-15.
  • [11] Z.S. Hamidi, Z. Ibrahim, Z. Abidin, M. Maulud, N. Radzin, N. Hamzan, N. Anim, N. Shariff, International Journal of Applied Physics and Mathematics 2 (2011) 3.
  • [12] W.L. Stutzman, G.A. Thiele, Antenna Theory and Design, 2nd ed., John Wiley and Sons, New York, 1998.
  • [13] R.L. Carrel, The Design of Log-Periodic Dipole Antennas, IRE Int. Conv. Rec., 1961, pp. 61-75.
  • [14] Z.S.Hamidi, Z. Abidin, Z. Ibrahim, N. Shariff, C. Monstein, International Journal of Engineering Research and Development 3 (2012) 36-39.
  • [15] Z.S. Hamidi, N.N.M.Shariff, International Letters of Chemistry, Physics and Astronomy 7 (2014) 21-29.
  • [16] Z.S. Hamidi, Z.Z. Abidin, Z.A. Ibrahim, N.N.M. Shariff, U.F.S.U. Ibrahim, R. Umar, Preliminary analysis of investigation Radio Frequency Interference (RFI) profile analysis at Universiti Teknologi MARA, IEEE, 2011, pp. 311-313.
  • [17] Z.S. Hamidi, N.N.M.Shariff, C.Monstein, International Letters of Natural Sciences 5 (2014) 10-17.
  • [18] Z.S. Hamidi, N.N.M. Shariff, Thermal Energy and Power Engineering 3 (2014) 181-184.
  • [19] Z.S. Hamidi, N.N.M.Shariff, International Letters of Chemistry, Physics and Astronomy 4 (2014) 29-36.
  • [20] Z.S. Hamidi, N.N.M. Shariff, M.F. Ali, C. Monstein, W.N.A.W. Zulkifli, M.B. Ibrahim, N.S. Arifin, N.A. Amran, International Letters of Chemistry, Physics and Astronomy 9 (2014) 84-92.
  • [21] Z.S. Hamidi, N.N.M.Shariff, C.Monstein, W.N.A.W. Zulkifli, M.B. Ibrahim, N.S. Arifin, N.A. Amran, International Letters of Chemistry, Physics and Astronomy 8 (2014) 13-19.
  • [22] Z.S. Hamidi, N.N.M.Shariff, C.Monstein, W.N.A.W. Zulkifli, M.B. Ibrahim, N.S. Arifin, N.A. Amran, International Letters of Chemistry, Physics and Astronomy 9 (2014) 8-12.
  • [23] Z.S. Hamidi, N.N.M.Shariff, International Letters of Chemistry, Physics and Astronomy 7 (2014) 30-36.
  • [24] Z.S. Hamidi, N.N.M.Shariff, International Letters of Chemistry, Physics and Astronomy 5 (2014) 32-42.
  • [25] Z.S. Hamidi, N.N.M.Shariff, C.Monstein, Z.A. Ibrahim, International Letters of Chemistry, Physics and Astronomy 7 (2014) 37-44.
  • [26] C.E. Smith, Log Periodic Antenna Design Handbook, 1st ed., Ohio, 1966.
  • [27] Z.S.Hamidi, S. Chumiran, A. Mohamad, N. Shariff, Z. Ibrahim, N. Radzin, N. Hamzan, N. Anim, A. Alias, American Journal of Modern Physics 2 (2013) 4.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-58d61178-80c4-40d8-9108-c1bdea668395
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