Thursday, October 28, 2021

Reviewer at IEEE Communications Magazine

I was selected as a reviewer at IEEE Communications Magazine in October 2021. This journal considered by most to be their most important member benefit, provides timely information on all aspects of communications: monthly feature articles describe technology, systems, services, market trends, development methods, regulatory and policy issues, and significant global events. These articles are complemented by a variety of departments, including: Conference Calendar, Book Reviews, the Global Communications Newsletter, and Scanning the Literature.


You could find more details about this journal via the link.



Sunday, October 3, 2021

TPC member at ICI2C’21

I was selected as a Technical Program Committee (TPC) member at The International Conference on Information, Communication & Cybersecurity (ICI2C’21). This conference was organized by The National School of Applied Sciences of Sultan Moulay Slimane University, Morocco, in collaboration with Charles Darwin University, Australia; during November 10-11, 2021. It provides an opportunity to account state-of-the-art works, future trends impacting information, communications and cyber-security, with a focus on elucidating the challenges, opportunities, and inter-dependencies that are just around the corner.


You could find more details about this conference via the link.



Friday, September 10, 2021

Master's thesis in Computer Engineering - Computer Systems Architecture

I defended my master's thesis on February 3, 2021 at Islamic Azad University, Tabriz Branch. In this thesis, a smart fire system is proposed to predict, control, and alert fire occurrences by using multiple fuzzy-based methods. This system aids less energy to be consumed for transmitting various messages between wireless nodes, network traffic to be reduced over the network, and network lifetime to be prolonged consequently. The proposed routing protocols are, generally, categorized into two groups: static and dynamic. The static protocols are used to transmit data packets between the stationary nodes placed in different locations. The dynamic protocols direct, control, and transmit messages between vehicles and rescue team members. Besides, several fuzzy systems are offered to detect explosion possibility, determine fire probability, measure the intensity and volume of the fire, estimate fire progress, detect the burn possibility, and determine suffocation probability. In addition, the system determines the active and passive nodes as well as detects failure nodes throughout the network. Rescue teams are dispatched to events on the best path, between fire department and event place, that is selected by another fuzzy-based procedure. This procedure leads the rescue and support teams to be dispatched to events in a short time. Simulation and evaluation results show that the proposed fire system has a high performance compared to the most existing fire systems.


You could find the thesis document via the link.



Thursday, August 19, 2021

The paper "Intelligent Velocity Control of Mobile Robots Using Fuzzy and Supervised Machine Learning"

The paper "Intelligent Velocity Control of Mobile Robots Using Fuzzy and Supervised Machine Learning" was published by VSB - Technical University of Ostrava in proceedings of conference GIS Ostrava 2021 Advances in Localization and Navigation on March 17-19, 2021. This paper proposes an intelligent technique for velocity control of a wheeled mobile robot by simultaneously using a fuzzy controller and a supervised machine learning (SML) algorithm. The technique is suitable for flexible leader-follower formation control on straight paths where a follower robot maintains a safe but flexible distance from a leader robot. The fuzzy controller determines the ultimate distance of the follower with respect to the leader from the measurements of two ultrasonic sensors. The SML algorithm calculates an appropriate velocity for the follower based on the ultimate distance. Simulations showed the effectiveness of the proposed technique in adjusting the follower robot's velocity in order to maintain a flexible formation with the leader robot.


You could find more information about the paper and the conference via the link 1 and link 2, respectively.



The paper "A Double-controller Fuzzy Scheme for Intelligent Resource Discovery on IaaS Cloud Systems"

The paper "A Double-controller Fuzzy Scheme for Intelligent Resource Discovery on IaaS Cloud Systems" was published by International Journal of Networking and Virtual Organisations on 17 Jun 2021. This paper proposes a double-controller fuzzy scheme for intelligent resource discovery in IaaS cloud systems, called DOCFIR. This scheme applies two fuzzy controllers to perform the intelligent resource discovery across the network. The first controller determines the number of virtual machines in the deployment phase based on the most important characteristics of the physical machines. The second controller discovers the appropriate computing resources for the user's job in the service phase based on characteristics of the physical machines and user requirements. The simulation results show that the proposed scheme surpasses some of the existing related works in terms of the number of completed jobs and success rate.


You could find more information about this paper via the link.



The paper "A Knowledge and Intelligent-based Strategy for Resource Discovery on IaaS Cloud Systems"

The paper "A Knowledge and Intelligent-based Strategy for Resource Discovery on IaaS Cloud Systems" was published by International Journal of Grid and Utility Computing on 30 Apr 2021. This paper proposes a knowledge and intelligent-based strategy for resource discovery in IaaS cloud systems, called KINRED. It uses a fuzzy system, a Multi-Criteria Decision Making (MCDM) controller and an artificial neural node to discover suitable resources under various changes on network metrics. The suggested fuzzy system uses hardware specifications of the computing resources in which CPU speed, CPU core, memory, disk, the number of virtual machines and utilisation rate are considered as inputs, and hardware type is considered as output of the system. The suggested MCDM controller makes proper decisions based on users' requirements in which CPU speed, CPU core, memory, and disk are assumed as inputs, and job type is assumed as output of the controller. Furthermore, the artificial neural node selects the computing resource having the highest success rate based on both outputs of the fuzzy system and MCDM controller. Simulation results show that the proposed strategy surpasses some of the existing related works in terms of the number of successful jobs, system throughput and service price.


You could find more information about this paper via the link.



Sunday, June 6, 2021

Reviewer at AIIPCC2021

I was selected as a reviewer at the The Second International Conference on Artificial Intelligence, Information Processing and Cloud Computing (AIIPCC2021). This conference aims to provide an opportunity for worldwide experts, scholars, and practitioners to share their new findings & valuable experience in related issues, explore future research trends and also promote global collaborations.


You can find more information about this journal via the link.


Thursday, March 25, 2021

Reviewer at ICPMS2021

I was selected as a reviewer at the Fourth International Conference on Physics, Mathematics and Statistics (ICPMS2021). This conference is an annual international conference, aims to offer the best platform for researchers and scholars worldwide to discuss recent developments in the area of Physics, Mathematics and Statistics.


You can find more information about this journal via the link.


Wednesday, December 2, 2020

The book "The Fundamentals and Empirical Design of a Smart Fire Detection System"

The book entitled "The Fundamentals and Empirical Design of a Smart Fire Detection System" was published by Cambridge Scholars Publishing in November 2020. This book introduces a smart fire detection system designed using a wireless sensor network and fuzzy methods. This system predicts, controls, and provides alerts to various events based on intelligent techniques. Routing protocols are performed based on intelligent procedures in which they are classified into two main groups: static and dynamic. Static protocols are used to transmit data packets between stationary nodes, while dynamic protocols are applied to transmit messages between rescue teams and fire departments. The active and passive states are specified for sensor nodes to balance the remaining energy of the nodes and prolong the network lifetime. The probability of explosion, fire, burn, and suffocation is determined based on fuzzy procedures. People affected can be guided to the exit at event places based on an intelligent method. In addition, members and dispatch routes of rescue and support teams are selected using intelligent methods to reduce financial losses and human casualties. The book will be useful for professors, researchers, and engineers in computer and electrical engineering.


You can obtain more information about this book via the link.


The paper "Novel Reversible CLA, Optimized RCA and Parallel Adder/Subtractor Circuits"

The paper entitled "Novel Reversible CLA, Optimized RCA and Parallel Adder/Subtractor Circuits" was published by Serbian Journal of Electrical Engineering in October 2020. This paper proposes reversible circuit designs of the three most commonly used adders: carry look-ahead adder (CLA adder), ripple carry adder (RCA adder), and parallel adder/subtractor. The n-bit reversible CLA adder, called CLA-GH, is designed using the Peres and Fredkin gates. The n-bit optimized reversible RCA adder, called ORCA-GH, is designed using the reversible circuit of a parity-preserving reversible full adder. Both circuits reduce the quantum cost. However, the ORCA-GH circuit also improves the number of constant inputs. Furthermore, the n-bit reversible parallel adder/subtractor, called PAS-GH, is designed using the Feynman, Peres, and Fredkin gates. It decreases the number of garbage outputs and quantum cost. The transistor realizations of the CLA-GH and PAS-GH circuits are provided accordingly. The evaluation results indicate that the proposed circuits surpass the existing works in all figures of merit.


You can obtain more information about this paper via the link.


Thursday, November 12, 2020

Technical Program Committee at SoCAV 2021

I was selected as a member of Technical Program Committee at International Symposium on Connected and Autonomous Vehicles (SoCAV 2021). This conference is dedicated to providing the platform and opportunities for researchers, scientists, engineers and scholars to exchange and share their experiences, new ideas and research in the common research field of Connected and Autonomous Vehicles, and to discuss practical issues, the challenges encountered as well as the solutions adopted. The SoCAV 2021 conference committee is excited to invite authors and scholars from all over the world to participate in this significant conference, to enhance our knowledge and create new knowledge to help promote the advances and changes of the joint academic researches.


You can obtain more information about this conference via the link.


Technical Program Committee at JCASE 2021

I was selected as a member of Technical Program Committee at 2nd International Joint Conference on Automation Science and Engineering (JCASE 2021). This conference will be commenced by creating an amalgamated global platform where enthusiastic researchers, policymakers, stakeholders and intellectual scholars getting together for a common purpose of identifying the challenges and issues in Automation Science and Engineering and sustainable methods to solve the particular issues by their combined research findings. JCASE 2021 will bring you a unique experience with the speeches from renowned speakers, best presentations, networking opportunities, and more.


You can obtain more information about this conference via the link.


Friday, October 16, 2020

Reviewer at International Journal of Research and Scientific Innovation

I was selected as a reviewer at International Journal of Research and Scientific Innovation. This journal is an open access International Journal emphasizing on engineering, science, management, applied science, social studies, and its subtopics. The aim is to educate and connect the global science & social science community.

You can find more information about this journal via the link.