Embedded Power Management

  • Electrical & Control Engineering |

Description

Higher density performance, higher efficiency and smaller size are continually demanded for applications such as as microprocessors, telecom equipment, servers, laptop, and renewable energy systems. This course focuses on the embedded power management solution which has been introduced in the last decade to improve the efficiency and power density of the embedded power converters. It includes study of advanced control and high frequency modeling of power converters, analysis and design of high-frequency power converters; analysis of high-frequency magnetic components; analysis and design of embedded power management solutions for distributed power systems.

Program

PhD in Electrical & Control Engineering

Objectives

  • The student will be able to  Model and control of high-frequency power converters  Analyze of high-frequency magnetic components  Analyze and design of embedded power management solutions for distributed power systems.  Analyze power loss for multi-phase voltage regulator

Textbook

C. Grimm, P. Neumann, S. Mahlknecht, Embedded Systems for Smart Appliances and Energy Management, Springer New York, 2013. [2] A. D. Schlichting, Embedded Power Management and Control for Harvested Energy, 2014.

Course Content

content serial Description

Markets and Career

  • Generation, transmission, distribution and utilization of electrical power for public and private sectors to secure both continuous and emergency demands.
  • Electrical power feeding for civil and military marine and aviation utilities.
  • Electrical works in construction engineering.

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