Mohamed Sayed Teaching Asst. & Electric Design Engineer.
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Greetings! I'm a seasoned Electrical Design Engineer and an academic aficionado, holding a bachelor's degree in electrical Power and Machines from the Faculty of Engineering at Ain Shams University, where I graduated top of my class with honors. Further reinforcing my academic prowess, I successfully obtained my master's degree, publishing two research papers in esteemed journals.

Having worked in both consulting and the petroleum sector, I've garnered in-depth experience in electrical system design, utilizing advanced tools like AutoCAD and BIM. My role in EPC (engineering, procurement, and construction) in the petroleum sector has enriched my skills in overseeing comprehensive project lifecycles. I've spearheaded processes, from conception to commissioning, ensuring optimal and efficient project execution.

Moreover, as a Teaching Assistant at Ain Shams University, I've not only facilitated student understanding of intricate electrical engineering concepts but also actively engaged in groundbreaking research activities.

Whether it's practical fieldwork or academic endeavors, I approach every task with rigor and passion. Entrust me to share a blend of hands-on experience and theoretical knowledge, ensuring a comprehensive understanding of electrical engineering.

Subjects

  • Electric and Magnetic Field Grade 1-Diploma

  • Power system Grade 1-Masters/Postgraduate

  • High power voltage distribution and utilisation Grade 1-Diploma

  • Electric Circuit Grade 1-Masters/Postgraduate

  • Electric machines and HVDC Grade 1-Masters/Postgraduate


Experience

  • Electric Engineer (Jun, 2023Present) at Enppi Company, Cairo
    Spearheaded the primary and secondary design processes for substations, ensuring robustness, efficiency, and adherence to industry standards.

    Played a pivotal role in electric distribution planning and implementation, optimizing energy delivery within the petroleum facilities.

    Managed comprehensive project lifecycles, from initial conceptualization and design to final execution, ensuring timely and efficient completion.

    Oversaw the procurement process, collaborating with vendors and suppliers to acquire top-quality electrical components and equipment.

    Conducted meticulous inspections, ensuring all installations and systems align with quality standards and safety regulations.

    Facilitated the commissioning phase, ensuring all electrical systems operate optimally and in synchronization with associated machinery.

    Actively engaged in on-site activities, collaborating with cross-functional teams to address challenges, and ensuring smooth project execution.
  • Electric Design and BIM Engineer (Oct, 2021Mar, 2023) at Studio International Engineering (SIE)
    Collaborated with a multi-disciplinary team to conceptualize, design, and refine electrical systems for various projects, ensuring client specifications and industry standards were met.

    Utilized AutoCAD to create detailed and accurate electrical schematics, layouts, and blueprints, ensuring clarity and precision in design documentation.

    Leveraged BIM (Building Information Modeling) software to integrate electrical designs within holistic building models, fostering interdisciplinary collaboration and ensuring alignment with architectural and mechanical components.

    Participated in client meetings to gather requirements, present designs, and receive feedback, ensuring designs align with client expectations and needs.

    Conducted thorough design reviews and simulations, identifying potential issues or optimizations, and iterating on designs accordingly.

    Coordinated with on-site engineers and contractors, providing them with comprehensive design insights and resolving any implementation challenges.

    Stayed abreast of the latest advancements in electrical engineering and design software, integrating new techniques and tools to enhance design quality and efficiency.
  • Teaching Assistant at Faculty of Engineering, Ain Shams University, Electrical Power Department (Dec, 2020Present) at Ain shams university
    - Collaborated closely with professors to deliver lectures, ensuring content clarity and relevance for students.
    - Played a pivotal role in facilitating classroom discussions, ensuring student engagement and comprehension.
    - Assisted students individually, addressing specific challenges and ensuring they grasped complex electrical engineering concepts.
    - Graded assignments and exams, offering detailed feedback to foster student improvement.
    - Actively engaged in research activities, contributing to the academic community by publishing two research papers in renowned journals, highlighting advancements and findings in the field of electrical engineering.

Education

  • Master's degree (Jan, 2021Aug, 2023) from Ain Shams University, cairoscored GPA: 3.96
  • Bachelor's degree (Sep, 2014Jul, 2019) from Ain Shams University, cairoscored GPA: 4

Fee details

    £350500/hour (US$7.2310.33/hour)


Courses offered

  • Revit

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 5
    • Instruction language: Arabic
    • Certificate provided: No
    Course Description:
    The "Revit for Electrical Engineers" course is designed to provide electrical engineers with a comprehensive understanding and practical skills in utilizing Autodesk Revit for electrical system design and documentation. This course will cover fundamental concepts, tools, and workflows specific to electrical engineering within the Revit environment.

    Course Objectives:
    Understand the basics of the Revit interface and navigation.
    Learn to create and manage electrical-specific components within Revit.
    Gain proficiency in designing electrical systems, including power distribution, lighting, and fire alarm systems.
    Explore methods for creating and editing electrical circuits and panel schedules.
    Develop skills in creating accurate electrical plans, diagrams, and schematics using Revit.
    Understand collaboration tools and methodologies for multidisciplinary coordination.
  • ETAP

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 5
    • Instruction language: Arabic
    • Certificate provided: No
    Course Overview:
    Welcome to the comprehensive course on Electrical Transient Analysis Program (ETAP) - the industry-leading software for electrical power system design, analysis, and simulation. This course is designed to equip electrical engineers, power system professionals, and students with the essential skills and in-depth knowledge required to proficiently use ETAP in real-world applications.

    Course Objectives:
    Gain a solid understanding of power system fundamentals and the role of ETAP in analyzing electrical networks.
    Learn to create accurate single line diagrams (SLDs) and model complex power systems using ETAP's intuitive interface.
    Perform load flow analysis to evaluate voltage profiles, power flows, and losses under steady-state conditions.
    Conduct short circuit analysis to calculate fault currents, fault levels, and analyze protective device coordination.
    Explore transient stability analysis to assess the system's behavior during dynamic events and ensure stability.
    Understand motor starting studies, harmonic analysis, and their implications on power system performance.
    Design and analyze protective relay settings for effective system protection and coordination.
    Utilize ETAP tools for system optimization, expansion planning, and improving overall power system efficiency.
  • Distribution

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 5
    • Instruction language: Arabic
    • Certificate provided: No
    Course Overview:
    Welcome to the Advanced Electrical System Design and Analysis course! This course is designed to provide a comprehensive understanding of various critical aspects involved in designing, estimating, and analyzing electrical systems. Participants will gain expertise in load estimation, lighting design, power panel scheduling, equipment sizing, voltage drop analysis, short circuit calculations, and single-line diagram creation, among other essential skills.

    Course Objectives:

    Load Estimation
    Bulk Equipment Sizing
    Space Program
    Lighting Design
    Power Design
    Power Panel Scheduling
    Cable sizing
    Cable Tray Sizing
    Routing
    Voltage Drop Analysis
    Short Circuit Calculations
    Single-Line Diagram Creation
  • Harmonic Analysis

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 6 - 10
    • Instruction language: Arabic
    • Certificate provided: No
    Course Overview:
    Welcome to the Comprehensive Harmonics Analysis in Electrical Systems course! This specialized course aims to provide an in-depth understanding of harmonics, their sources, effects on power systems, and methodologies for analyzing and mitigating harmonic distortion. Participants will delve into the theoretical foundations, practical implications, and industry-standard techniques for handling harmonics in electrical systems.

    Course Objectives:

    Understanding Harmonics: Gain insights into the nature of harmonics, their sources (non-linear loads), and their adverse effects on power quality and system performance.
    Harmonic Measurement Techniques: Explore methods and tools for measuring, monitoring, and quantifying harmonic distortion in electrical networks.
    Harmonic Analysis Techniques: Learn analytical methods, software tools, and mathematical models used for harmonic analysis in power systems.
    Impact of Harmonics: Understand the impact of harmonics on equipment, such as transformers, motors, and other sensitive devices, and their implications on power system operation.
    Harmonic Mitigation Strategies: Explore various techniques and mitigation solutions to reduce or eliminate harmonic distortion, including passive filters, active filters, and system design considerations.
    Compliance Standards and Regulations: Familiarize yourself with industry standards, guidelines, and regulations related to harmonic distortion and compliance requirements.
  • Design of Photovoltaic (PV) System, Renewable Enery

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 6 - 10
    • Instruction language: Arabic
    • Certificate provided: No
    Course Overview:
    Welcome to the Mastering Photovoltaic System Design and Implementation course! This comprehensive program is designed to equip participants with the knowledge, skills, and practical insights required to design, install, and optimize photovoltaic systems for various applications. The course covers the entire spectrum, from the fundamental principles of solar energy to advanced PV system design techniques.

    Course Objectives:

    Fundamentals of Solar Energy: Understand the principles of solar radiation, photovoltaic technology, and the conversion of sunlight into electrical energy.
    PV System Components and Configurations: Learn about solar panels, inverters, batteries, charge controllers, mounting structures, and various system configurations for on-grid and off-grid applications.
    PV System Sizing and Design: Gain expertise in sizing photovoltaic systems based on energy demand, site analysis, shading analysis, and economic considerations.
    System Installation and Integration: Understand best practices and methodologies for installing PV systems, interconnecting components, and ensuring compliance with safety standards and regulations.
    Performance Analysis and Monitoring: Explore techniques for monitoring system performance, conducting performance analysis, and troubleshooting common issues in PV systems.
    Grid Connection and Net Metering: Learn about grid-tied PV systems, net metering, feed-in tariffs, and the integration of PV systems with the utility grid.
    Off-Grid PV System Design: Understand the design considerations, component selection, and system optimization for standalone off-grid PV systems.
    Economic Analysis and Project Management: Explore the economic feasibility, financial incentives, project planning, and management aspects of PV system installations.
  • Lighting Design using Dialux

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 6 - 10
    • Instruction language: Arabic
    • Certificate provided: No
    Course Overview:
    Welcome to the Electrical Design with DIALux course! This specialized program is designed to provide participants with a comprehensive understanding of how to use DIALux software for electrical lighting design in various applications. Participants will learn practical techniques, tools, and methodologies to create efficient and aesthetically pleasing lighting designs for indoor and outdoor spaces.
  • Protection and Switchgear

    • USDFREE
    • Duration: duration is flexible and adjusted based on depth of coverage and availability of the participants.
    • Delivery mode: Online
    • Group size: 6 - 10
    • Instruction language: Arabbi
    • Certificate provided: No
    Course Overview:
    Welcome to the Advanced Protection and Switchgear Systems course! This specialized program is designed to provide participants with an in-depth understanding of protection principles, methodologies, and the application of switchgear devices in electrical power systems. The course will cover fundamental concepts as well as advanced techniques related to protection and switchgear to ensure system reliability, safety, and proper operation.

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