Qualcomm incorporated (20240196350). PHASE COHERENCE DISCONTINUITY FOR SENSING SIGNALS simplified abstract

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PHASE COHERENCE DISCONTINUITY FOR SENSING SIGNALS

Organization Name

qualcomm incorporated

Inventor(s)

Marwen Zorgui of San Diego CA (US)

Srinivas Yerramalli of San Diego CA (US)

Rajat Prakash of San Diego CA (US)

Xiaoxia Zhang of San Diego CA (US)

PHASE COHERENCE DISCONTINUITY FOR SENSING SIGNALS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240196350 titled 'PHASE COHERENCE DISCONTINUITY FOR SENSING SIGNALS

The abstract of this patent application describes a system where a first node transmits sensing signals and a phase coherence indication to a second node. The second node receives the sensing signals, reflects them off a target object, and measures them based on the phase coherence indication.

  • The first node can be a transmitter node, and the second node can be a receiver node.
  • The first or second node can be a transmission reception point (TRP), a user equipment (UE), a sensing reference unit, or a positioning reference unit.

Potential Applications: - This technology can be used in radar systems for target detection and tracking. - It can be applied in communication systems for signal transmission and reception. - The system can also be utilized in positioning and navigation applications.

Problems Solved: - Enables accurate measurement and analysis of sensing signals. - Improves the efficiency of communication and sensing systems. - Enhances the performance of radar and positioning technologies.

Benefits: - Increased accuracy in signal measurement and analysis. - Improved reliability in communication and sensing applications. - Enhanced performance and functionality of radar and positioning systems.

Commercial Applications: Title: Advanced Radar and Communication Systems Utilizing Phase Coherence Indication This technology can be commercialized in the defense industry for advanced radar systems, in telecommunications for improved signal transmission, and in the automotive sector for enhanced positioning and navigation capabilities.

Prior Art: Readers can explore existing patents related to radar systems, communication technologies, and signal processing methods to understand the background of this innovation.

Frequently Updated Research: Stay informed about advancements in radar technology, communication systems, and signal processing techniques to leverage the latest developments in this field.

Questions about the Technology: 1. How does the phase coherence indication improve the measurement of sensing signals? 2. What are the potential challenges in implementing this system in real-world applications?


Original Abstract Submitted

a first node may transmit a set of sensing signals. the first node may transmit a phase coherence indication based on a set of phase coherence discontinuities associated with the set of sensing signals to a second node. the second node may receive the set of sensing signals. the set of sensing signals received by the second node may be reflected off of a target object. the second node may receive the phase coherence indication based on the set of phase coherence discontinuities associated with the set of sensing signals. the second node may measure the set of sensing signals based on the phase coherence indication. the first node may be a transmitter node. the second node may be a receiver node. the first or second node may be one of a transmission reception point (trp), a user equipment (ue), a sensing reference unit, or a positioning reference unit.