Qualcomm incorporated (20240107456). LOW POWER WAKE UP RADIO IN SIDELINK COMMUNICATIONS simplified abstract

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LOW POWER WAKE UP RADIO IN SIDELINK COMMUNICATIONS

Organization Name

qualcomm incorporated

Inventor(s)

Ahmed Elshafie of San Diego CA (US)

Huilin Xu of Temecula CA (US)

Wei Yang of San Diego CA (US)

Seyedkianoush Hosseini of San Diego CA (US)

Wanshi Chen of San Diego CA (US)

Linhai He of San Diego CA (US)

Yuchul Kim of San Diego CA (US)

LOW POWER WAKE UP RADIO IN SIDELINK COMMUNICATIONS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240107456 titled 'LOW POWER WAKE UP RADIO IN SIDELINK COMMUNICATIONS

Simplified Explanation

The patent application describes methods, systems, and devices for wireless communications, specifically focusing on wake-up radio signaling for user equipment (UE) when the main radio of the UE is in sleep mode. Here are some key points to explain the innovation:

  • Network entity configures UE for wake-up radio signaling when main radio is in sleep mode
  • UE monitors and receives wake-up signal, low power reference signal, or synchronization signal from another UE
  • If UE receives wake-up signal, it can establish communication with the other UE or network entity

Potential Applications

This technology could be applied in various wireless communication systems where power efficiency is crucial, such as IoT devices, smart home automation, and industrial sensor networks.

Problems Solved

1. Efficient power management for UEs in sleep mode 2. Seamless communication initiation between UEs and network entities

Benefits

1. Extended battery life for UEs 2. Reduced power consumption in wireless networks 3. Improved responsiveness and connectivity for UEs

Potential Commercial Applications

Optimizing power usage in IoT devices for smart homes Title: "Enhancing Power Efficiency in IoT Devices with Wake-Up Radio Signaling"

Possible Prior Art

One possible prior art could be the use of low-power listening techniques in wireless sensor networks to conserve energy. Another could be the implementation of wake-up radio technology in Bluetooth Low Energy devices.

Unanswered Questions

How does this technology impact the overall network efficiency?

This article does not delve into the broader implications of implementing wake-up radio signaling on a network-wide scale. It would be interesting to explore how this technology affects network congestion, latency, and overall performance.

What are the potential security implications of using wake-up radio signaling?

The article does not address the security aspects of wake-up radio signaling. It would be important to investigate potential vulnerabilities and safeguards to prevent unauthorized access or interference in communication channels utilizing this technology.


Original Abstract Submitted

methods, systems, and devices for wireless communications are described. techniques described herein relate to a network entity indicating a configuration for a user equipment (ue) for wake up radio signaling when the main radio of the ue is in a sleep mode. the ue may monitor for and receive, using the wake up radio, a wake up signal, a low power reference signal, or a low power synchronization signal from a second ue in accordance with the configuration. if the ue receives a wake up signal from the second ue, the ue may establish communications with the second ue or with the network entity based on the wake up signal.