Zobrazeno 1 - 10
of 17
pro vyhledávání: '"H. M. Hizan"'
Autor:
Razali Ngah, Mohd Zulfadli Mohamed Yusoff, H. M. Hizan, Azmi Ibrahim, Zulkifli Ambak, Ahmad Ismat Abdul Rahim, Syamsuri Yaakob
Publikováno v:
Research Journal of Applied Sciences, Engineering and Technology. 15:40-46
This study presents design approach for realizing miniaturized Substrate Integrated Waveguide (SIW) Band Pass Filter (BPF) using Low Temperature Co-fired Ceramic (LTCC) technology at TMRND's LTCC Lab. Design method for the SIW BPF is based on the cir
Publikováno v:
Communications and Network. :193-203
Traditionally, allocating of Ethernet Passive Optical Network (EPON) bandwidth schemes relied on a centralized architecture where their Optical Line Terminal (OLT) is the sole intelligent device with the capability for the arbitration of bandwidth ba
Publikováno v:
2018 IEEE International RF and Microwave Conference (RFM).
In this paper a new design of multilayer SIW diplexer integrated with microstrip antenna is presented. The design process started with the network synthesis of the SIW diplexer integrated with patch antenna using lumped lowpass prototype networks. Th
Publikováno v:
2018 IEEE International RF and Microwave Conference (RFM).
The Photonic Crystal Cavity (PCC) as a substrate of microstrip patch antenna in Terahertz (THz) frequency has been simulated and analyzed. The objectives are to simulate and analyze the performances changes when the parameters of PCC are varied. THz
Publikováno v:
ITNAC
In order to effectively extend the coverage of an eNodeB (eNB), a simple relay node (RN) is the efficient solution with fiber-wireless connectivity as the interface between eNB and RN. The optimum coverage enhancement can be achieved by connecting ma
Autor:
Thavamaran Kanesan, Sajaa Kh. Sadon, H. M. Hizan, A. Yusof, R. Sanusi, Asif Ibrahim, Mohd Azmi Ismail, S. M. Mohd Hassan, F. Maskuriy, S. M. Ibrahim Mitani
Publikováno v:
2016 IEEE Asia-Pacific Conference on Applied Electromagnetics (APACE).
This paper presents a testbed design by using Software Defined Radio (SDR) and Radio-over-fiber (RoF) platforms for the next generation wireless access network. The proposed testbed supports concurrent multiservice transmissions, in which a heterogen
Publikováno v:
Theory and Applications of Applied Electromagnetics ISBN: 9783319301167
This paper describes the application of a Substrate Integrated Waveguide (SIW) for the design of a microstrip diplexer. The diplexer is composed of two SIW circular cavity filters designed individually and combined together using a T-junction with ce
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::3c0372a32c055b12059091cde4eea7a4
https://doi.org/10.1007/978-3-319-30117-4_7
https://doi.org/10.1007/978-3-319-30117-4_7
Autor:
Ahmad Ismat Abdul Rahim, Azmi Ibrahim, H. M. Hizan, Zulkifli Ambak, Razali Ngah, Mohd Zulfadli Mohamed Yusoff
Publikováno v:
Indonesian Journal of Electrical Engineering and Computer Science. 10:980
This paper presents design approach for realizing multilayer End Coupled Bandpass Filter (ECBPF) using low temperature co-fired ceramic (LTCC) technology at TMRND's LTCC Lab. Design method for the ECBPF is based on the coupled-resonator filter which
Publikováno v:
2015 IEEE International RF and Microwave Conference (RFM).
A design of Substrate Integrated Waveguide (SIW) diplexer is proposed. The diplexer is formed using two SIW circular cavity resonators designed individually and combined through a T-junction. The circular cavity structure using TM 010 mode is employe
Autor:
Gee-Kong Chang, Wai Pang Ng, Paul Anthony Haigh, Sujan Rajbhandari, H. M. Hizan, Thavamaran Kanesan, Romli Mohamad, S. M. Mitani, Zabih Ghassemlooy
In this letter, a large scale investigation is carried out, utilizing several spectral shapes as the source for direct modulation based frequency dithering (DMFD). DMFD mitigates the nonlinear effect of long term evolution (LTE) radio-over-fiber (RoF
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::838663f33ed6e2ec929f9a7a3ede50f7