Nokia technologies oy (20240340942). SIDELINK SIGNAL SENSING OF PASSIVELY REFLECTED SIGNAL TO PREDICT DECREASE IN RADIO NETWORK PERFORMANCE OF A USER NODE-NETWORK NODE RADIO LINK simplified abstract

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SIDELINK SIGNAL SENSING OF PASSIVELY REFLECTED SIGNAL TO PREDICT DECREASE IN RADIO NETWORK PERFORMANCE OF A USER NODE-NETWORK NODE RADIO LINK

Organization Name

nokia technologies oy

Inventor(s)

[[:Category:Mikko S�ily of Espoo (FI)|Mikko S�ily of Espoo (FI)]][[Category:Mikko S�ily of Espoo (FI)]]

Stephan Sigg of Espoo (FI)

Sameera Palipana of Espoo (FI)

Si-Ahmed Naas of Espoo (FI)

SIDELINK SIGNAL SENSING OF PASSIVELY REFLECTED SIGNAL TO PREDICT DECREASE IN RADIO NETWORK PERFORMANCE OF A USER NODE-NETWORK NODE RADIO LINK - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240340942 titled 'SIDELINK SIGNAL SENSING OF PASSIVELY REFLECTED SIGNAL TO PREDICT DECREASE IN RADIO NETWORK PERFORMANCE OF A USER NODE-NETWORK NODE RADIO LINK

Simplified Explanation: The patent application describes a method for controlling channel information for a sidelink channel between two user nodes, where the information is determined based on signals reflected by objects in the environment. If a decrease in network performance is predicted, the first user node can inform the network node to take corrective action.

Key Features and Innovation:

  • Controlling channel information for a sidelink channel based on passive reflection signals.
  • Predicting a decrease in network performance for a radio link.
  • Enabling corrective actions by informing the network node of predicted performance issues.

Potential Applications: This technology could be applied in various wireless communication systems where network performance needs to be optimized based on environmental conditions.

Problems Solved: This technology addresses the challenge of maintaining optimal network performance in dynamic environments where signal reflections can impact communication quality.

Benefits:

  • Improved network performance prediction.
  • Enhanced ability to take corrective actions proactively.
  • Better overall communication reliability in changing environments.

Commercial Applications: Potential commercial applications include IoT networks, smart cities, and industrial automation systems where reliable and efficient communication is crucial for operations.

Prior Art: Readers interested in prior art related to this technology could explore research on passive signal reflection in wireless communication systems and network performance optimization based on environmental factors.

Frequently Updated Research: Researchers are continually exploring advancements in passive signal reflection technologies and predictive network performance optimization in wireless communication systems.

Questions about the Technology: 1. How does passive signal reflection impact channel information in wireless communication systems? 2. What are the potential implications of predictive network performance optimization for future wireless networks?


Original Abstract Submitted

a method includes controlling receiving channel information for a sidelink channel between a first user node and a second user node, wherein the channel information is determined by the second user node based on the sidelink reference signal transmitted by the first user node that has been at least partially passively reflected format least one object within a physical environment; determining that there is a predicted decrease in a radio network performance for a radio link between the first user node and a network node; and controlling transmitting, by the first user node to a network node, information indicating that there is a predicted decrease in radio network performance for the radio link between the first user node and the network node, to enable the network node to perform a corrective action based on the predicted decrease in radio network performance.