18183970. LEVERAGING CONNECTIVITY TO EXTEND DRIVING RANGE simplified abstract (TOYOTA JIDOSHA KABUSHIKI KAISHA)

From WikiPatents
Jump to navigation Jump to search

LEVERAGING CONNECTIVITY TO EXTEND DRIVING RANGE

Organization Name

TOYOTA JIDOSHA KABUSHIKI KAISHA

Inventor(s)

Seyhan Ucar of Mountain View CA (US)

Takamasa Higuchi of Mountain View CA (US)

Onur Altintas of Mountain View CA (US)

Kentaro Oguchi of Mountain View CA (US)

LEVERAGING CONNECTIVITY TO EXTEND DRIVING RANGE - A simplified explanation of the abstract

This abstract first appeared for US patent application 18183970 titled 'LEVERAGING CONNECTIVITY TO EXTEND DRIVING RANGE

Simplified Explanation: The patent application describes a method for managing electric vehicles (EVs) in a group by identifying discrepancies in the range of an EV and instructing the group to maintain a controlled speed until the discrepancy is resolved.

Key Features and Innovation:

  • Determining discrepancies in the range of an EV compared to a provided range.
  • Instructing a group of EVs to maintain a controlled speed until the discrepancy is resolved.
  • Enhancing efficiency and coordination among EVs in a group.

Potential Applications: This technology could be applied in:

  • Electric vehicle fleets for transportation services.
  • Autonomous driving systems for coordinated vehicle movements.
  • Energy management systems for optimizing EV performance.

Problems Solved:

  • Addressing range discrepancies in EVs.
  • Improving coordination and efficiency in EV groups.
  • Enhancing overall performance and reliability of EV systems.

Benefits:

  • Increased accuracy in range estimation for EVs.
  • Improved energy efficiency and battery management.
  • Enhanced safety and coordination in EV groups.

Commercial Applications: Potential commercial uses include:

  • Fleet management services for electric vehicle companies.
  • Integration into autonomous vehicle systems for improved coordination.
  • Energy management solutions for optimizing EV performance.

Questions about Electric Vehicle Range Discrepancy Management: 1. How does this technology improve the overall efficiency of electric vehicle fleets? 2. What are the potential safety benefits of maintaining a controlled speed in a group of electric vehicles?

Frequently Updated Research: Stay updated on the latest advancements in electric vehicle range management and coordination technologies to enhance the performance and efficiency of EV systems.


Original Abstract Submitted

An example operation includes determining a discrepancy between a provided range of an electric vehicle (EV) and an actual range of the EV being greater than a threshold; and including the EV with a connected group of other vehicles that are instructed to maintain a controlled rate of speed until the discrepancy is at or below the threshold.