- Faculty
- Faculty of Sciences and Engineering
- Department
- Computer Science & Engineering
- Designation
- Associate Professor
- Institution
- East West University
- Department bn
- কম্পিউটার সায়েন্স ও ইঞ্জিনিয়ারিং
- Designation bn
- সহযোগী অধ্যাপক
- Institution bn
- ইস্ট ওয়েস্ট ইউনিভার্সিটি
- Research Interest
- Computer Networks Wireless Sensor Networks Underwater wireless sensor networks Underwater communication and signals propagation Localization for terrestrial environment (Tracking) Underwater localization (Tracking)
- Teaching Materials
- East West University Department of Computer Science and Engineering Course Outline Semester: Fall 2024 Course: CSE405 Computer Networks Credits and Teaching Scheme Theory Laboratory Total Credits 3 1 4 Contact Hours 2.5 Hours/Week for 17 Weeks + Final Exam in the 18 th Week 2 Hours/Week for 17 Weeks 4.5 Hours/Week for 17 Weeks + Final Exam in the 18 th Week Prerequisite CSE246 Algorithms Course Objective This course explores the field of computer networking and communication, emphasizing network architecture and software issues. Student will learn the basic performance and engineering trade-offs in the design and implementation of computer networks. Knowledge of this course will be needed as prerequisite knowledge for future courses such as CSE406 Internet of Things, CSE453 Wireless Networks, and CSE457 Cellular Networks. Knowledge Profile K4: Forefront engineering specialist knowledge for practice, K5: Engineering design K6: Engineering practice (technology) Learning Domains Cognitive - C2: Understanding, C3: Applying, C4: Analyzing, C6: Creating Psychomotor - P3: Precision, P5: Naturalization Affective - A2: Responding, A4: Organizing, A5: Internalizing. Program Outcomes (POs) PO2: Problem Analysis, PO3: Design/Development of Solutions PO5: Modern Tool Usage, PO12: Lifelong Learning Complex Engineering Problem Solution EP1: Depth of knowledge required, EP2: Range of conflicting requirements. EP3: Depth of analysis required, EP4: Familiarity of issues. Complex Engineering Activities None Course Outcomes (COs) with Mappings After completion of this course students will be able to: CO CO Description PO Learning Domains Knowledge Profile Complex Engineering Problem Solving/ Engineering Activities CO1 Identify, use and justify algorithms, protocols and phenomena of different computer network layers for analyzing and designing functional networks PO2 C2, C3 K4 CO2 Analyze , develop and justify networking algorithms and protocol for effective design of computer networks PO3 C2, C3, C4, A2, A4, A5 K5 EP1, EP2, EP3, EP4 CO3 Apply appropriate tools to build and simulate computer networks and analyze packet transmission PO5 C3, C6, P3 K6 CO4 Identify and use appropriate computer network solutions; and construct a complete computer network for coping with the evolving and changing technologies PO12 P3, P5 A4, A5 Course Topics, Teaching-Learning Method, and Assessment Scheme Course Topic T eaching-Learning Method CO CO Marks Exam (Mark) C2 C3 C6 Introduction to computer networks, layers, transmission media. Data link layer: introduction, design issues, framing. Lecture, Class Discussion, Discussion Outside Class with Instructor/ Teaching Assistant CO1, CO2 30 Midterm (30%) Protocol verification: finite state machine & petri net models MAC, Channel allocation problem, CSMA/CD, Contention period, BEB, CSMA Collision-free protocols: bit-map, binary countdown, limited contention Internet Protocol (IP), IPv4 header, NAT IP addresses and subnets Static and dynamic routing algorithm, Distance vector routing, count-to-infinity problem, Link state routing CO1, CO2 30 Final (30%) Congestion and congestion control algorithms in network layer QoS, leaky bucket algorithm, Jitter, Internetworking, tunneling, fragmentation Transport layer: Introduction, transport services, connection establishment, data transfer & connection release, TCP segment header, Congestion control in Transport layer Application layer: Introduction, DNS, Web server, Optimization of Web server, Server farm Laboratory Experiments and Assessment Scheme Experiment Teaching-Learning Method CO Mark of Cognitive Learning Levels Mark of Psychomotor Learning Levels Mark of Affective Learning Levels CO Mark C2 C3 C4 C6 P3 A2 Familiarization with transmission media and orientation of CAT5 Lab Experiment, Result analysis and report CO3 Creating straight through and cross over cable and data transmission between hosts Do CO3 The basic of Linux networking commands, administrative commands and
- Academic Background
- Ph.D. in Information & Communication Technology, Griffith University, Australia M.S. in Computer Information System, University of Phoenix, USA B.Sc. in Civil and Environmental Engineering, Middle East Technical University, Turkey
- Awards & Achievements
- IPRS (100% scholarship in PhD program), Griffith University, Australia
- Professional Experience
- Counter threshold value and random assessment delay analysis in counter based broadcast scheme for mobile ad hoc network. Geographical affect on WiMAX in Bangladesh. Design of a fiber optic based corporate network. Analysis of parallel transmission in hidden nodes scenario in ad hoc network. Asset management & inventory control system of DHL Bangladesh. Design framework for VOIP services of Bangladesh based on BTTB infrastructure Design, analysis and simulation of storage area network (SAN) Design and analysis of a fiber optic based corporate network: case study (BARI) Simulation of asynchronous transfer mode (ATM) network Analysis of East West University’s network to find anomalies and to improve performance as a whole
- Affiliation Professional Membership
- IEEE, IACSIT