18594629. PUNCTURING-BASED 240 MHZ TRANSMISSION simplified abstract (LG Electronics Inc.)
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PUNCTURING-BASED 240 MHZ TRANSMISSION
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PUNCTURING-BASED 240 MHZ TRANSMISSION - A simplified explanation of the abstract
This abstract first appeared for US patent application 18594629 titled 'PUNCTURING-BASED 240 MHZ TRANSMISSION
Simplified Explanation: The abstract describes a patent application related to a wireless local area network (WLAN) system, where a transmission STA can send a PPDU through a 320 MHz channel, with a MAC signal containing puncturing pattern and CCFS information for the 320 MHz band.
- The patent application focuses on a WLAN system where a transmission STA can send a PPDU through a 320 MHz channel.
- The MAC signal generated for the PPDU includes puncturing pattern information and CCFS information for the 320 MHz band.
- The CCFS information consists of a first CCFS field related to the CCF of a primary 160 MHz channel and a second CCFS field related to the CCF of the 320 MHz channel.
Potential Applications: 1. Wireless communication systems 2. Network infrastructure development 3. Data transmission technologies
Problems Solved: 1. Efficient utilization of the 320 MHz channel 2. Improved MAC signal generation for PPDU transmission 3. Enhanced communication reliability in WLAN systems
Benefits: 1. Increased data transmission speeds 2. Enhanced network performance 3. Improved signal quality
Commercial Applications: The technology can be utilized in the development of high-speed wireless communication systems for various industries, including telecommunications, IoT, and smart devices.
Prior Art: Readers can explore prior patents related to WLAN systems, MAC signal generation, and data transmission technologies to understand the existing knowledge in this field.
Frequently Updated Research: Stay updated on advancements in wireless communication protocols, MAC signal optimization, and network efficiency to enhance the implementation of this technology.
Questions about WLAN Systems: 1. How does the puncturing pattern information in the MAC signal impact data transmission efficiency? 2. What are the potential challenges in implementing a 320 MHz channel in WLAN systems?
Original Abstract Submitted
In a wireless local area network (WLAN) system, a transmission STA can transmit a PPDU via a 320 MHz channel, and a Medium Access Control (MAC) signal may be generated for the PPDU. The MAC signal may include puncturing pattern information and channel center frequency segment (CCFS) information for a 320 MHz band. The CCFS information may include a first CCFS field related to channel center frequency (CCF) information of a primary 160 MHz channel, and a second CCFS field related to CCF information of a 320 MHz channel.