Samsung Electronics Co., Ltd. (20240278801). SYSTEM ON CHIP, AUTONOMOUS DRIVING SYSTEM INCLUDING THE SAME, AND OPERATING METHOD OF THE AUTONOMOUS DRIVING SYSTEM simplified abstract

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SYSTEM ON CHIP, AUTONOMOUS DRIVING SYSTEM INCLUDING THE SAME, AND OPERATING METHOD OF THE AUTONOMOUS DRIVING SYSTEM

Organization Name

Samsung Electronics Co., Ltd.

Inventor(s)

Seunghan Lee of Suwon-si (KR)

Seungcheol Lee of Suwon-si (KR)

SYSTEM ON CHIP, AUTONOMOUS DRIVING SYSTEM INCLUDING THE SAME, AND OPERATING METHOD OF THE AUTONOMOUS DRIVING SYSTEM - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240278801 titled 'SYSTEM ON CHIP, AUTONOMOUS DRIVING SYSTEM INCLUDING THE SAME, AND OPERATING METHOD OF THE AUTONOMOUS DRIVING SYSTEM

Simplified Explanation: The patent application describes an autonomous driving system with two system on chip (SoC) modules, each equipped with a safe parking module to control parking based on failure information.

  • The system includes a first SoC with a safe parking module for parking the vehicle in case of failure.
  • A second SoC, operating at a higher performance level, also controls the autonomous driving function and has its own safe parking module.
  • The first or second SoC can be selectively driven based on the autonomous driving level.
  • In case of a failure in the first SoC, the second safe parking module takes over to park or stop the vehicle.

Key Features and Innovation:

  • Dual SoC configuration for autonomous driving control.
  • Safe parking modules in each SoC for handling failures.
  • Selective driving based on autonomous driving level.
  • Seamless transition between SoCs in case of failure.

Potential Applications: This technology can be applied in autonomous vehicles, self-driving taxis, and other autonomous transportation systems.

Problems Solved:

  • Addressing failures in autonomous driving systems.
  • Ensuring safe parking in case of system malfunctions.
  • Enhancing reliability and safety in autonomous vehicles.

Benefits:

  • Improved safety and reliability in autonomous driving.
  • Seamless transition between SoCs for continuous operation.
  • Enhanced performance with a dual SoC setup.

Commercial Applications: Potential commercial applications include autonomous vehicle manufacturers, transportation companies, and technology firms developing self-driving systems for various industries.

Prior Art: Prior art related to this technology may include patents or research on dual SoC configurations in autonomous systems, safe parking modules in autonomous vehicles, and fault-tolerant control systems for self-driving vehicles.

Frequently Updated Research: Researchers may be exploring advancements in fault-tolerant control systems, dual SoC configurations for autonomous vehicles, and safe parking mechanisms in self-driving cars.

Questions about Autonomous Driving Systems: 1. How do dual SoC configurations enhance the reliability of autonomous driving systems? 2. What are the key factors to consider when designing safe parking modules for autonomous vehicles?


Original Abstract Submitted

an autonomous driving system including: a first system on chip (soc) configured to control an autonomous driving function of a vehicle and including a first safe parking module configured to control parking of the vehicle according to first failure information; and a second soc configured to be driven at a higher operating performance than an operating performance of the first soc, configured to control the autonomous driving function of the vehicle, and including a second safe parking module configured to control the parking according to second failure information provided, wherein the first soc or the second soc is configured to be selectively driven according to level information corresponding to an autonomous driving level, and, based on a failure occurring in the first soc, the second safe parking module is further configured to control the parking or stopping of the vehicle in response to receiving the second failure information.