eng.ahmed_soliman

Ahmed Soliman Ali Mubarak

Lecturer -

Faculty of engineering

Address: Aswan

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2018 | Keywords
Tightly Coupled LTE/Wi-Fi/mmWave HetNet Using 2C/U Plane Splitting for 5G Networks
INTEGRATING THE ULTRA-HIGH CAPACITY MILLIMETER WAVE (MMWAVE) BAND INTO THE EXISTING CELLULAR NETWORK IS ONE OF THE MAIN CHALLENGES TOWARDS A UNIFIED MULTI-GBPS 5G NETWORK. IN THIS PAPER, A NOVEL HIERARCHICAL MULTI-BAND HETEROGENEOUS NETWORK (HETNET) IS PROPOSED TO EFFICIENTLY OVERLAY MMWAVE SMALL CELLS (SCS) OVER THE LEGACY LTE ENB. BY WHICH, A MEDIUM COVERAGE BAND IS USED TO PRECISELY CONTROL ... Read more

2018 | Keywords mmWave/ CAPWAP/WLAN,
New CNew CAPWAP architectures for IEEE 802.11 ad based Wi-Fi/WiGig WLANs architectures for IEEE 802.11 ad based Wi-Fi/WiGig WLANs
Recently, the unlicensed 60 GHz millimeter wave (mmWave) band has drawn attention as a promising solution for enabling future multi-Gbps wireless local area networks (WLANs). IEEE 802.11 ad (WiGig) standard was developed for 60 GHz WLANs, where directional transmission is utilized to compensate severe propagation losses in mmWave bands. Due to mmWave signals propagation limitations and its high vulnerability to ... Read more

2018 | Keywords mmWave, beam forming,
Comparative study on millimeter wave location-based beamforming
This paper presents a comparative study on millimeter wave (mmWave) location-based analog beamforming (BF) techniques based on channel estimation. Localization and compressive sensing (CS) effectively reduces mmWave BF complexity and enhance the performance of mmWave system comparable to the conventional mmWave analog BF techniques. BF techniques based on channel state information (CSI) has high complexity in constructing mmWave channel sensing ... Read more

2016 | Keywords mmWave/ Wi-fi localization,
Millimeter wave beamforming training, discovery and association using WiFi positioning in outdoor urban environment
Millimeter wave (mmWave) communication is considered as the most promising solution for future 5G cellular networks. However, it suffers from a severe propagation loss causing dramatic link quality degradation and limiting its coverage area. Antenna beamforming appears to be a suitable solution to overcome this problem and provides longer transmission outdoor mmWave links. Accordingly, highly complicated conventional beamforming training (BT) ... Read more

2016 | Keywords LDPC/, MIMO, 1-bit ADC,
Low Density Parity Check (LDPC) Coded MIMO-Constant Envelop Modulation System with IF sampled 1-bit ADC
MIMO-Constant Envelop Modulation (CEM) is a very power and complexity efficient system, which is introduced as alternative candidate to the currently used MIMO-Orthogonal Frequency Division Multiplexing (OFDM). CEM system enables to use high efficient nonlinear power amplifier on the transmitter side and 1 bit (low resolution) analog to digital converter (ADC) on the receiver side. Due to adopting the low ... Read more

2013 | Keywords image transmission / OFDM,
Progressive image transmission over OFDM with rate and power allocation
A modified Orthogonal Frequency Division Multiplexing (OFDM) system for robust progressive image transmission is proposed in this paper. A joint source-channel coder (JSCC) is employed in the modified OFDM system. The set partitioning hierarchical trees (SPIHT) used as source code, and The Low-Density Parity-Check (LDPC) used as a channel coder. The SPIHT coder is modified to generate four different groups ... Read more

Source-channel rate allocation scheme for robust progressive image transmission using LDPC
A joint source-channel coding scheme (JSCC) for robust image transmission over wireless communication channel is proposed in this paper. In the proposed scheme, the set partitioning hierarchical trees (SPIHT) coder is modified to generate four different groups of bit stream relative to its significances. Moreover, an optimal unequal error protection (UEP) is suggested for data groups based on the channel ... Read more

LTE/Wi-Fi/mmWave RAN-Level Interworking Using 2C/U Plane Splitting for Future 5G Networks
Integration of the promising Millimeter wave (mmWave) technology into the existing cellular network is one of the main challenges towards a unified multi-Gbps 5G cellular network. However, due to its short transmission range accompanied with the inevitable use of highly directional communication, directly controlling the access of mmWave small cells (SCs) using the legacy LTE eNB using conventional LTE/WLANs interworking ... Read more

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