Amazon technologies, inc. (20240201779). PRESENCE DETECTION WITH DYNAMIC RADAR OPERATING MODES simplified abstract

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PRESENCE DETECTION WITH DYNAMIC RADAR OPERATING MODES

Organization Name

amazon technologies, inc.

Inventor(s)

Zheda Li of Mountain View CA (US)

Morris Yuanhsiang Hsu of Mountain View CA (US)

Vivek Yenamandra of Santa Clara CA (US)

Aditya V. Padaki of San Jose CA (US)

Raghunandan M Rao of Santa Clara CA (US)

Abhishek Sanaka of San Jose CA (US)

Rohit Kumar of San Jose CA (US)

Sai Prashanth Chinnapalli of Dublin CA (US)

PRESENCE DETECTION WITH DYNAMIC RADAR OPERATING MODES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240201779 titled 'PRESENCE DETECTION WITH DYNAMIC RADAR OPERATING MODES

Simplified Explanation

The patent application describes techniques for dynamically modulating radar modes to detect objects and trigger device actions based on radar sensor data.

  • The computer system implements different radar configurations for the radar sensor to switch between modes.
  • The system analyzes radar data to determine the presence of objects within the sensor's field of view.
  • Based on the analysis, the system can instruct the device to take specific actions, such as turning on.
  • The radar sensor can be instructed to switch to a different radar configuration for a different mode.

Key Features and Innovation

  • Dynamic radar mode modulation for enhanced object detection.
  • Automatic triggering of device actions based on radar sensor data.
  • Ability to switch between different radar configurations for different modes.

Potential Applications

The technology can be used in various industries such as automotive for collision avoidance systems, security for intruder detection, and robotics for object recognition.

Problems Solved

  • Improved object detection capabilities using radar sensors.
  • Enhanced automation of device actions based on radar data.

Benefits

  • Increased safety and security through better object detection.
  • Enhanced user experience with automated device actions.
  • Improved efficiency in various applications through dynamic radar mode modulation.

Commercial Applications

Title: Dynamic Radar Mode Modulation Technology for Enhanced Object Detection This technology can be applied in automotive safety systems, security systems, robotics, and industrial automation for improved object detection and automated actions based on radar sensor data.

Prior Art

Readers can explore prior patents related to radar sensor technologies, object detection systems, and automation in various industries to understand the evolution of similar technologies.

Frequently Updated Research

Stay updated on advancements in radar sensor technologies, object detection algorithms, and automation systems to enhance the capabilities of dynamic radar mode modulation technology.

Questions about Dynamic Radar Mode Modulation

How does dynamic radar mode modulation improve object detection compared to traditional radar systems?

Dynamic radar mode modulation allows for the adjustment of radar configurations based on the specific mode, enhancing object detection capabilities in various scenarios.

What are the potential challenges in implementing dynamic radar mode modulation technology in real-world applications?

Challenges may include optimizing radar configurations for different modes, ensuring seamless switching between modes, and integrating the technology with existing systems effectively.


Original Abstract Submitted

techniques for a dynamic radar mode modulation feature are described herein. a computer system associated with a device may implement a first radar configuration for a radar sensor. the first radar configuration may correspond to a first mode and comprise a first frame per second rate and a first difference threshold. the computer system may receive first data from the radar sensor in the first radar configuration. the computer system may determine a presence of an object within a field of view of the radar sensor based on the first data and the first difference threshold. the computer system may instruct the device to turn on based on determining the presence of the user. the radar sensor may be instructed to implement a second radar configuration associated with a second mode.