Qualcomm incorporated (20240305345). RESOURCE SHARING BETWEEN TRANSMISSION HYPOTHESES simplified abstract

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RESOURCE SHARING BETWEEN TRANSMISSION HYPOTHESES

Organization Name

qualcomm incorporated

Inventor(s)

Mostafa Khoshnevisan of San Diego CA (US)

Chenxi Hao of Beijing (CN)

Faris Rassam of El Cajon CA (US)

Lei Xiao of San Jose CA (US)

Tao Luo of San Diego CA (US)

Xiaoxia Zhang of San Diego CA (US)

Hao Xu of Beijing (CN)

Peter Gaal of San Diego CA (US)

RESOURCE SHARING BETWEEN TRANSMISSION HYPOTHESES - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240305345 titled 'RESOURCE SHARING BETWEEN TRANSMISSION HYPOTHESES

The abstract describes methods, systems, and devices for wireless communications, where a user equipment (UE) can indicate to a base station its capability to use a channel measurement resource for both joint transmission and single transmission hypotheses. The UE receives a configuration message based on this capability, indicating a first channel measurement resource associated with a first transmission configuration indicator state for a first joint transmission hypothesis. The UE then obtains a channel measurement for both the joint transmission and single transmission hypotheses using the first channel measurement resource.

  • User equipment (UE) can indicate its capability to use a channel measurement resource for different transmission hypotheses to a base station.
  • Based on this indication, the UE receives a configuration message specifying a channel measurement resource for a particular transmission configuration.
  • The UE then uses this channel measurement resource to obtain measurements for both joint transmission and single transmission hypotheses.

Potential Applications: - This technology can be applied in wireless communication systems to improve channel measurement accuracy and efficiency. - It can enhance the performance of communication networks by enabling UEs to optimize their transmission configurations based on channel measurements.

Problems Solved: - Addressing the need for efficient utilization of channel measurement resources in wireless communication systems. - Improving the reliability of transmission configurations by obtaining accurate channel measurements for different transmission hypotheses.

Benefits: - Enhanced communication system performance through optimized transmission configurations. - Improved resource utilization leading to better overall network efficiency.

Commercial Applications: Title: Enhanced Wireless Communication Systems for Optimized Transmission Configurations This technology can be utilized in 5G and beyond networks, IoT devices, and smart city applications to enhance communication reliability and efficiency. It can also benefit telecommunications companies by improving network performance and user experience.

Questions about Wireless Communication Systems for Optimized Transmission Configurations: 1. How does this technology impact the overall efficiency of wireless communication systems? 2. What are the potential implications of using this technology in IoT devices and smart city applications?

Frequently Updated Research: Stay updated on the latest advancements in wireless communication systems, channel measurement techniques, and optimization algorithms to further enhance the performance of this technology.


Original Abstract Submitted

methods, systems, and devices for wireless communications are described. a user equipment (ue) may indicate, to a base station, a capability of the ue to use a channel measurement resource for both a joint transmission hypothesis and a single transmission hypothesis. the ue may receive, based on indicating the capability of the ue, a configuration message indicating a first channel measurement resource that is associated with a first transmission configuration indicator state and that is configured for a first joint transmission hypothesis. the ue may obtain a channel measurement for both the first joint transmission hypothesis and a first single transmission hypothesis using the first channel measurement resource based on the configuration message.