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Ahmed E. Farghal

dblp:169/6259 · also Ahmed E. A. Farghal · DBLP profile ↗
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2ranked-venue papers
2as first author
0since 2021 · last 2016
0000-0003-4814-8840ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Computer networks · 2 · 2 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Computer networks
2 papers
Physical-layer communications · 48% Optical networks · 25% Network optimization and economics · 13%

Topics — the 7 heaviest of 7, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Optical networks
optical code-division multiple access
0.522016
Performance Analysis of Multicode OCDM Networks Supporting Elastic Transmission With QoS Differentiation · IEEE Trans. Commun. 2016
Optical Code-Division Multiplexing (OCDM) Networks Adopting Code-Shift Keying/Overlapping PPM Signaling: Proposal and Performance Analysis · IEEE Trans. Commun. 2015
Cellular and mobile networks › radio resource management
code assignment
0.212016
Performance Analysis of Multicode OCDM Networks Supporting Elastic Transmission With QoS Differentiation · IEEE Trans. Commun. 2016
Physical-layer communications › code-division multiple access
multicode transmission
0.212016
Performance Analysis of Multicode OCDM Networks Supporting Elastic Transmission With QoS Differentiation · IEEE Trans. Commun. 2016
Network optimization and economics
resource allocation
0.212016
Performance Analysis of Multicode OCDM Networks Supporting Elastic Transmission With QoS Differentiation · IEEE Trans. Commun. 2016
Physical-layer communications
modulation
0.212015
Optical Code-Division Multiplexing (OCDM) Networks Adopting Code-Shift Keying/Overlapping PPM Signaling: Proposal and Performance Analysis · IEEE Trans. Commun. 2015
Physical-layer communications › modulation › pulse position modulation
overlapping PPM
0.212015
Optical Code-Division Multiplexing (OCDM) Networks Adopting Code-Shift Keying/Overlapping PPM Signaling: Proposal and Performance Analysis · IEEE Trans. Commun. 2015
Physical-layer communications › modulation
pulse position modulation
0.212015
Optical Code-Division Multiplexing (OCDM) Networks Adopting Code-Shift Keying/Overlapping PPM Signaling: Proposal and Performance Analysis · IEEE Trans. Commun. 2015

Methods — techniques the papers use, named apart from their topics

call admission control · 0.2blocking probability analysis · 0.2code-shift keying · 0.2bit error probability analysis · 0.2
YearPublicationVenuePosition
2016 Performance Analysis of Multicode OCDM Networks Supporting Elastic Transmission With QoS Differentiation
abstract
A multicode optical code-division multiplexing (OCDM) is proposed to support the dynamic changes in the requested traffic demand in OCDM networks by adapting the number of allocated codes according to the requested transmission rate. In order to support time-variant data rates and multiservice transmissions; a multicode variable-weight 2D one-coincidence frequency hopping code/optical orthogonal code (OCFHC/OOC) is employed as the signature code in the proposed system. Two multicode assignment methods, namely, random multicode assignment (RMA) policy and uniform multicode assignment (UMA) policy, are presented. For each code assignment method, we drive the probability density function (pdf) of the number of active codes in each wavelength group. The bit error probability (BEP), the probability of degradation, and the blocking probability are derived as network performance key parameters. The proposed system has a simplified routing and code assignment process with a lower blocking probability. Our numerical results indicate that the network teletraffic capacity and blocking probability can be improved significantly using UMA policy and call admission control.
Ahmed E. Farghal, Hossam M. H. Shalaby, Kazutoshi Kato, Ramesh K. Pokharel
IEEE Trans. Commun.1
2015 Optical Code-Division Multiplexing (OCDM) Networks Adopting Code-Shift Keying/Overlapping PPM Signaling: Proposal and Performance Analysis
abstract
Optical code-division multiplexing (OCDM) systems use short pulses compared with bit-duration to achieve high transmission rate. The use of short pulses poses several problems as a result of group velocity dispersion (GVD), intersymbol interference (ISI) (due to avalanche photodiode (APD) buildup time), and receivers limited bandwidth. In this paper, an OCDM system employing code-shift keying (CSK) and overlapping pulse-position modulation (OPPM) signaling is proposed and theoretically investigated. By using CSK while maintaining same data rate, the chip duration can be increased to counteract the GVD effect in 2D OCDM systems. Moreover, by increasing the chip duration, the chip rate is decreased and the stringent requirement on receiver bandwidth is relaxed. In addition, using overlapping property in OPPM allows for further chip duration increase. We consider using correlation receivers with hard-limiters and APDs at the receiver side. The bit error probability (BEP) of the proposed system is derived taking into account the impacts of APD noise, thermal noise, GVD, ISI, and multiple-access interference (MAI). A performance comparison between OOK-, PPM-, OPPM-OCDM and the proposed system is carried out. Our results reveal that the use of CSK/OPPM-OCDM with data rate constraint allows the reduction of MAI, GVD and ISI effects with improved spectral efficiency.
Ahmed E. Farghal, Hossam M. H. Shalaby, Kazutoshi Kato, Ramesh K. Pokharel
IEEE Trans. Commun.1