18550430. A SINGULAR / DIFFERENTIAL STATISTICAL APPROACH FOR NARROW BEAM-BASED CHANNEL ACCESS simplified abstract (QUALCOMM Incorporated)

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A SINGULAR / DIFFERENTIAL STATISTICAL APPROACH FOR NARROW BEAM-BASED CHANNEL ACCESS

Organization Name

QUALCOMM Incorporated

Inventor(s)

Mohammed Ali Mohammed Hirzallah of San Marcos CA (US)

Arumugam Chendamarai Kannan of San Diego CA (US)

Srinivas Yerramalli of San Diego CA (US)

Giovanni Chisci of San Diego CA (US)

Vinay Chande of San Diego CA (US)

Jing Sun of San Diego CA (US)

Aleksandar Damnjanovic of Del Mar CA (US)

Marco Papaleo of Bologna (IT)

Xiaoxia Zhang of San Diego CA (US)

Tao Luo of San Diego CA (US)

A SINGULAR / DIFFERENTIAL STATISTICAL APPROACH FOR NARROW BEAM-BASED CHANNEL ACCESS - A simplified explanation of the abstract

This abstract first appeared for US patent application 18550430 titled 'A SINGULAR / DIFFERENTIAL STATISTICAL APPROACH FOR NARROW BEAM-BASED CHANNEL ACCESS

Simplified Explanation

The patent application describes a system for narrow beam-based channel access in wireless communication networks operating over unlicensed spectrum. It involves signal measurements and interference conditions to optimize communication.

  • Utilizes narrow beam-based channel access for wireless communication.
  • Measures signals at multiple locations to determine interference conditions.
  • Determines if a wireless device meets interference criteria based on signal measurements.

Key Features and Innovation

  • Narrow beam-based channel access for improved communication efficiency.
  • Signal measurements at multiple locations for accurate interference assessment.
  • Criteria-based evaluation of interference conditions for optimal network performance.

Potential Applications

This technology can be applied in:

  • Wireless communication networks.
  • Internet of Things (IoT) devices.
  • Smart city infrastructure.

Problems Solved

  • Addressing interference issues in wireless communication networks.
  • Optimizing channel access for improved data transmission.
  • Enhancing overall network performance and reliability.

Benefits

  • Increased communication efficiency.
  • Reduced interference for better signal quality.
  • Enhanced network performance and reliability.

Commercial Applications

  • Potential commercial uses include:
  • Telecommunications companies optimizing network performance.
  • IoT device manufacturers improving connectivity.
  • Smart city developers enhancing communication infrastructure.

Prior Art

Readers can explore prior research on narrow beam-based channel access in wireless networks and interference mitigation techniques.

Frequently Updated Research

Stay informed about the latest advancements in narrow beam technology and interference management in wireless communications.

Questions about Narrow Beam-Based Channel Access

How does narrow beam-based channel access improve wireless communication networks?

Narrow beam-based channel access allows for more focused and efficient transmission of signals, reducing interference and improving overall network performance.

What are the key benefits of utilizing signal measurements for interference assessment?

Signal measurements provide valuable data for evaluating interference conditions, enabling better decision-making for channel access and network optimization.


Original Abstract Submitted

Wireless communications systems and methods related to narrow beam-based channel access for communications in a wireless communication network operating over an unlicensed spectrum are provided. A first wireless communication device receives, from a second wireless communication device, one or more signals associated with a beam parameter. The first wireless communication device determines, at each of a plurality of locations, a signal measurement for at least one received signal of the one or more received signals. The first wireless communication device determines, based at least in part on an p-th percentile signal measurement and a q-th percentile signal measurement of the signal measurements at the plurality of locations, whether the second wireless communication device satisfies an interference condition.