Fundamentals of Wireless Power Transfer for Vehicles and Evaluation of Various Methods, Safety, Charging Efficiency, and Standardization
S50201
Explanation of the feasibility of positioning vehicles and power supply sides, ensuring safety, and trends in standardization!
【Venue】 Tokyo Chuo Ward Industrial Hall 4F, Room 2【Tokyo, Chuo Ward】 【Date and Time】February 18, 2015 (Wednesday) 10:15-16:30 【Speakers】 Part 1: Shunsuke Takahashi, Senior Visiting Researcher, Waseda University Environmental Research Center (Formerly Showa Aircraft Industry Co., Ltd.) Part 2: Representative from Toyo Electronics Co., Ltd., Equipment Sales Department, Manager's Office (Sales Technology) Part 3: Representative from Murata Manufacturing Co., Ltd., Technology and Business Development Division, Device Development Center Part 4: Representative from Toyota Central R&D Labs, Inc., Systems and Electronics Division 2, Electromagnetic Applications Research Laboratory
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basic information
★A new value that creates labor-saving for battery replacement ⇒ It is predicted to expand approximately 40 times in the global market from 2013 to 2018, but what is the reality? ★An explanation is scheduled by technical personnel from Waseda University, Toyo Electronics Co., Ltd., Murata Manufacturing Co., Ltd., and Toyota Central R&D Labs, Inc.! 【Part 1: Lecture Overview】 Power transmission through electromagnetic induction is a technology that was already discovered in the 19th century; however, the challenge of achieving charging efficiency comparable to that of conventional chargers while maintaining a large coil gap between the vehicle floor and the ground has been difficult to overcome. This lecture will introduce and evaluate various methods of the latest wireless power transfer technology and present the current trends in the automotive field, including demonstration tests. Additionally, it will address unique challenges of wireless power transfer such as safety concerning the human body and heating, standardization, as well as future directions like power transfer while driving and market size predictions.
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For 2 participants from 1 company, applications made after February 5 will be 59,400 yen (including tax, lunch, and textbook costs).
Price range
P2
Delivery Time
P2
Applications/Examples of results
Part 1: Fundamentals of Wireless Power Transfer Technology and Evaluation of Various Methods, Current Status of Safety, Charging, and Standardization in Automobiles 1. Overview of Wireless Power Transfer Technology 2. Trends in the Automotive Sector 3. Challenges of Wireless Power Transfer 4. Future Directions 5. Summary Part 2: Characteristics of Electromagnetic Induction Wireless Power Transfer Systems, Points for High Efficiency and Safety Measures, Industrial Applications 1. Overview of Wireless Power Transfer Technology 2. Electromagnetic Induction Method 3. Circuit Configuration and SPICE Simulation 4. Methods for Reducing Losses and Increasing Efficiency 5. Safety Measures and Compliance with Radio Laws 6. Examples of Industrial Applications 7. Wireless Power Transfer Experimental SiC Inverter Device Part 3: Development of DC Resonant Wireless Power Transfer Systems and Potential for In-Vehicle Applications Part 4: Current Status and Challenges of In-Vehicle Wireless Power Transfer System Development 1. Background 2. Non-Contact Power Transfer Methods 3. In-Vehicle Non-Contact Charging Systems 4. Regulations Regarding Electromagnetic Waves 5. Other Challenges 6. Summary
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