Prof. Mahmoud Elfandi
- َQualifications: Doctor of Philosophy
- Academic Rank: Professor
- Department of Electrical and Electronic Engineering
- Faculty of Engineering
All | since 2019 | |
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Roles
Mahmoud Elfandi is one of the staff members at the department of 1 faculty of 2. He is working as a since 2015-10-17. He teaches several subjects in his major and has several puplications in the field of his interest.
Software & Tools: MATLAB, LabVIEW, Allen-Bradley, Siemens SIMATIC, Wonderware, CODESYS, PIDs
Programming Languages: C++, Python (Pandas, NumPy), Structured Text, Ladder Logic, Function Block Diagram, Sequence Function Chart
System Design & Analysis: SCADA Systems, DCS, HMI Design, PLC Programming, Real-Time Operating Systems, Fault Tolerance Standards & Protocols: IEC 61131-3, MODBUS, PROFINET, ETHERNET/IP, OPC UA, ISO 9001, Safety Integrity Level (SIL
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Control System Engineer
Developed a distributed control system for a large manufacturing client that increased the production capacity by 20% through real-time data optimization.
Introduced a predictive maintenance program that decreased equipment failures by 18%, ensuring smoother operations and higher customer satisfaction.
Led a digital transformation project that integrated IoT devices with existing control systems, resulting in a $150,000 annual savings from improved energy management.
Conducted in-depth training sessions for newer engineers that enhanced team’s understanding of advanced control system architecture by 35%.
Executed rigorous quality assurance protocols for software deployment which led to a 5% increase in system reliability and customer trust.
Schneider ElectricJanuary 2016 - February 2019
Electrical Controls Engineer
Revamped user interface for Schneider Electric control systems, improving user engagement and operational ease by 15%.
Coordinated with international teams to align control system standards, ensuring global consistency and reducing system adaptation time by 25%.
Careers
Head of Electrical department
Control System Engineer
Developed a distributed control system for a large manufacturing client that increased the production capacity by 20% through real-time data optimization.
Introduced a predictive maintenance program that decreased equipment failures by 18%, ensuring smoother operations and higher customer satisfaction.
Led a digital transformation project that integrated IoT devices with existing control systems, resulting in a $150,000 annual savings from improved energy management.
Conducted in-depth training sessions for newer engineers that enhanced team’s understanding of advanced control system architecture by 35%.
Executed rigorous quality assurance protocols for software deployment which led to a 5% increase in system reliability and customer trust.
Schneider ElectricJanuary 2016 - February 2019
Electrical Controls Engineer
Revamped user interface for Schneider Electric control systems, improving user engagement and operational ease by 15%.
Coordinated with international teams to align control system standards, ensuring global consistency and reducing system adaptation time by 25%.
Research Interests
Identification
Control System
External Activities
External examination
Journal review
Orchestrated a large-scale SCADA system upgrade that enhanced monitoring efficiency by 40% using cutting-edge Siemens software, leading to a company-wide reduction in energy consumption.
Spearheaded the integration of machine learning algorithms to predict maintenance needs, reducing system downtime by 25% and saving an estimated $200,000 annually in operational costs.
Collaborated cross-departmentally to implement cybersecurity measures that thwarted 99% of potential breaches, upholding company reputation for secure and reliable control systems.
Authored a comprehensive process documentation playbook that facilitated a 30% improvement in cross-training efficiency for the engineering team.Customized and optimized PLC programming that resulted in a 15% increase in automation process speed, setting a company record for throughput. HoneywellMay 2017 - December 2019 Automation Engineer Redesigned control panel layouts for three product lines, which increased the serviceability and reduced average repair times by 20%. Deployed an advanced PID controller scheme, enhancing system stability and achieving a 10% improvement in product quality consistency. Initiated and led a cross-functional team to review and audit existing control processes, identifying opportunities that simplified workflow and improved safety compliance by 15%. Control Systems Analyst Analyzed over 500 data points daily to monitor system performance, contributing to a consistent 99.8% uptime for critical automation processes. Implemented a system-wide benchmarking initiative that highlighted performance gaps and drove a targeted efficiency boost of 5% across all operations.
Publications