User’s Hand Effect on TIS of Different GSM900/1800 Mobile Phone Models Using FDTD Method
Conference paper

This paper predicts the effect of the user’s hand-hold position on the Total Isotropic Sensitivity (TIS) of GSM900/1800 mobile phone antennas of realistic in-use conditions, where different semi-realistic mobile phone models, i.e., candy bar and clamshell, as well as different antenna types, i.e., external and internal, are simulated using a FDTD-based platform. A semi-realistic hand model consisting of three tissues and the SAM head are used in simulations. The results show a considerable impact on TIS of the adopted mobile phone models owing to the user’s hand presence at different positions, where a maximum level of TIS is obtained while grasping the upper part of the mobile phone against head. Maximum TIS levels are recorded in talk position for mobile phones with external antenna and maximum differences in TIS levels due to the hand-hold alteration are recorded for clamshell-type phones.

Marai Mohamed Elmabrouk ABOUSETTA, S. I. Al-Mously, (03-2009), World Academy of Science, Engineering and Technology: World Academy of Science, Engineering and Technology, 821-826

الذكاء الإصطناعي في التعليم (نظم التعلم الذكية)
مقال في مؤتمر علمي

 تستخدم الحواسيب في مجال التعليم منذ اكثر من ثلاثين عاما، وتعد نظم التدريب المعتمدة على الحاسوب computer based training والتعلم المساند بالحاسوب computer aided instruction من أولى النظم التي تعد محاولات للتدريس باستخدام الحواسيب [3,4,5]. ولم تكن هذه النظم مخصصة لحاجات المتعلم الفردية، بل كانت القرارات المتعلقة بتجوال وحركة الطالب داخل المادة العلمية محكومة في شكل مخطط مسبقا، مثل:

اذا تمت الاجابة على السؤال 21 بشكل صحيح

                                          تابع للسؤال 54

  والا انتقل الى السؤال 32

 

وبالتالي لم تؤخذ قدرات المتعلم بالحسبان

و رغم كفاءة نظم التدريب المعتمدة على الحاسوب CBT ونظم التعلم المساند بالحاسوب CAI في مساعدة المتعلمين، إلا أنها لا تقدم عناية فردية للطالب كما يفعل المعلم الطبيعي (الإنسان). و حتى يمكن للنظام التعليمي المعتمد على الحاسوب تقديم هكذا اهتمام، على النظام التفكير في كل من المجال التخصصي والمتعلم ذاته أيضا، وهذا ما شجع البحث في مجال بناء نظم التعلم الذكية  intelligent tutoring systems . و توفر هذه النظم مرونة في عرض المادة العلمية وقدرة اكبر للاستجابة الى حاجات الطالب، وتكتسب هذه النظم خاصية الذكاء من خلال قدرتها على عرض قرارات تربوية تعليمية عن الكيفية التي تمر بها عملية التعلم و كذلك اكتساب المعلومات عن شخصية المتعلم، ويسمح هذا بتوفير قدر كبير من التنوع بواسطة تغيير تفاعلات النظام مع الطالب. وقد أظهرت الدراسات الميدانية ان نظم التعلم الذكية ذات فاعلية عالية [4,5].

محمد ابوالقاسم علي الرتيمي، (01-2009)، طرابلس: الأكاديمية الليبية، 1-18

Accuracy and Cost Computation of the EM Coupling of a Cellular Handset and a Human Due to Artifact Rotation
Conference paper

This paper investigates both the computation accuracy (based on the power balance error) and the cost in terms of the number of FDTD-grid cells due to the artifact rotation for a cellular handset close to the user’s head. Two study cases are simulated to assess the EM coupling of a cellular handset and a MRI-based human head model at 900 MHz; firstly, both handset and head CAD models are aligned to the FDTD-grid, secondly, handset close to a rotated head in compliance with IEEE-1528 standard. A FDTD-based platform, SEMCAD-X, is used; where conventional and interactive gridder approaches are implemented to achieve the simulations. The results show that owing to the artifact rotation, the computation error may increase up to 30%, whereas, the required number of grid cells may increase up to 25%

مرعي محمد المبروك أبوستة, S. I. Al-Mously, (11-2008), SEBRIA: TELFOR2008, 484-487

A Novel Cellular Handset Design for an Enhanced Antenna Performance and a Reduced SAR in the Human Head
Conference paper

This paper presents a novel cellular handset design with a bottom-mounted short loaded-whip antenna. This new handset design is modeled and simulated using a finite difference time-domain (FDTD)-based platform SEMCAD. The proposed handset is based on a current commercially available bar-phone type with a curvature shape, keypad positioned above the screen, and top-mounted antenna. The specific absorption rates (SARs) are determined computationally in the specific anthropomorphic mannequin (SAM) and anatomically correct model of a human head when exposed to the EM-field radiation of the proposed cellular handset and the handset with top-mounted antenna. The two cellular handsets are simulated to operate at both GSM standards, 900 MHz as well as 1800 MHz, having different antenna dimensions and intput power of 0.6 W and 0.125 W, respectively. The proposed human hand holding the two handset models is a semirealistic hand model consists of three tissues: skin, muscle, and bone. The simulations are conducted with handset positions based on the IEEE standard 1528-2003. The results show that the proposed handset has a significant improvement of antenna efficiency when it is hand-held close to head, as compared with the handset of top-mounted antenna. Also, the results show that a significant reduction of the induced SAR in the human head-tissues can be achieved with the proposed handset

Marai Mohamed Elmabrouk ABOUSETTA, S. I. Al-Mously, (01-2008), Hindawi Publishing Corporation: International Journal of Antennas and Propagation, 1-10

Anticipated Impact of Hand-Hold Position on the Electromagnetic Interaction of Different Antenna Types/Positions and a Human in Cellular Communications
Conference paper

This paper is intended to investigate intensely the impact of multipossible hand-hold positions on the electromagnetic (EM) interaction of handset antennas and a human by using a finite-difference time-domain (FDTD) method. Candy-bar handsets with different external and internal antenna positions operating in the GSM900, GSM1800/DCS, and UMTS/IMT-2000 bands are hereby simulated with configuration of the most parts in order to achieve the commercially available handset model design. Homogeneous and heterogeneous phantoms both are used to simulate the human head, whereas, a semirealistic model with three different tissues is designed to simulate a human hand holding a set. Both of the antenna performance including the total isotropic sensitivity (TIS) and the specific absorption rate (SAR) in tissues are examined for the different suggested applicable cases, where various positions of antenna, handset and hand are considered in simulations. This simulation study determines that both of the antenna performance and the SAR in tissues significantly alter owing to the positioning of the handset against user’s head at different hand levels; where a maximum alteration is observed due to the exposure of handset with internal antenna, as compared with the handset having external antenna.

مرعي محمد المبروك أبوستة, S. I. Al-Mously, (01-2008), Hindawi Publishing Corporation: International Journal of Antennas and Propagation, 1-22

Study of Both Antenna and PCB Positions Effect on the Coupling Between the Cellular Hand-Set and Human Head at GSM-900 Standard
Conference paper

This paper presents a through investigation into the effect of the external antenna and printed circuit board (PCB) positions in cellular hand-sets on the coupling between the handset and human-head at GSM-900 frequency standard. The antenna performance and the specific absorption rate (SAR) induced in a human head were computed using a Finite Difference Time-Domain based platform (SEMCAD). A numerical correct model of a European female head was adopted and a semi-realistic hand model was designed during the simulation. The results showed that the optimum position for the antenna and PCB in hand-set close to head is the far right-corner for the right-hand users and the far left-corner for the left-hand users, where a minimum SAR in head is achieved.

Marai Mohamed Elmabrouk ABOUSETTA, S. I. Al-Mously, (01-2008), Chiba, Japan: Proceedings of iWAT, 514-517

A Study of the Hand-Hold Impact on the EM Interaction of a Cellular Handset and a Human
Journal Article

This paper investigates the impact of the hand-hold positions on both antenna performance and the specific absorption rate (SAR) induced in the user’s head. A cellular handset with external antenna operating at GSM-900 frequency is modeled and simulated using a finite difference time-domain (FDTD)-based platform SEMCAD-X. A specific anthropomorphic mannequin (SAM) is adopted to simulate the user’s head, whereas a semirealistic CAD-model of three-tissues is designed to simulate the user’s hand. The results show that in case of the handset in hand close to head at different positions; the antenna total efficiency gets reduced to (14.5% - 5.9%) at cheek-position and to (27.5% to 11.8%) at tilt-position. The peak averaged SAR1g values in head close to handset without hand, are 4.67 W/Kg and 2.66 W/Kg at cheek and tilt-position, respectively. Due to the presence of hand, the SAR1g in head gets reduced to (3.67-3.31 W/Kg) at cheek-position and to (1.84-1.64 W/Kg) at tilt-position, depending on the hand-hold position.

Marai Mohamed Elmabrouk ABOUSETTA, S. I. Al-Mously, (01-2005), International Journal of Electronics, Circuits and Systems: International Journal of Electronics, Circuits and Systems, 2 (2), 91-95

RULE REFINEMENT IN INDUCTIVE KNOWLEDGE-BASED SYSTEMS
PhD Thesis

This paper presents empirical methods for enhancing the accuracy of inductive learning systems. It

addresses the problems of: learning propositional production rules in multi-class classification tasks in

noisy domains, maintaining continuous learning when confronted with new situations after the learning

phase is completed, and classifying an object when no rule is satisfied for it.

It is shown that interleaving the learning and performance-evaluation processes, allows accurate

classifications to be made on real-world data sets. The paper presents the system ARIS which

implements this approach, and it is shown that the resulting classifications are often more accurate than

those made by the non-refined knowledge bases.

The core design decision that lies behind ARIS is that it employs an ordering of the rules according to

their weight. A rule’s weight is learned by using Bayes’ theorem to calculate weights for the rule’s

conditions and to combine them. This model focuses the analysis of the knowledge base and assists the

refinement process significantly.

The system is non-interactive, it relies on heuristics to focus the refinement on those experiments that

appear to be most consistent with the refinement data set. The design framework of ARIS consists of a

tabular model for expressing rule weights, and the relationship between refinement cases and the rules

satisfied for each case to focus the refinement process. The system has been used to refine knowledge

bases created by ARIS itself, as well as to refine knowledge bases created by the RIPPER and C4.5

systems [6,25] in ten selected domains. Two main advantages have been observed. First, the ability to

gradually improve the knowledge base as the refinement proceeds. Second, is the ability to learn strong

rules utilising condition’s weight using minimum covering algorithm. Thus, by taking account of this

information we improve the applicability and quality of refinement

Mohamed Abolgasem Ali Arteimi, (01-2000), جنوب افريقيا: الأكاديمية الليبية,

Configurable Computer Design for Guidance and Control Algorithms
Conference paper

Configurable Computer Design for Guidance and Control Algorithms

Abobaker Mohamed Abobaker Elhouni, (02-1999), Zabliak, Serbia: Zabliak, 14-18

Issues in FPGA-Based Configurable Computer Design for Operating Systems and Multimedia Applications
Conference paper

In this paper mappings of several different algorithms from the fields of operating systems and multimedia are discussed, together with the underlying system architecture. The system architecture is based on a board with four FPGA circuits. For the purpose of this research, a simulator of the system has been developed, and different interconnection networks, memory, and bus architectures have been tested. The results of the simulation, as well as analytical results, are presented.

Abobaker Mohamed Abobaker Elhouni, (01-1999), Hawaii, USA: Proceedings of the 32nd Annual Hawaii International Conference on Systems Sciences. 1999. HICSS-32, 50-56