Qualcomm incorporated (20240267274). SAMPLE-LEVEL ERROR-CORRECTING CODE simplified abstract
Contents
SAMPLE-LEVEL ERROR-CORRECTING CODE
Organization Name
Inventor(s)
Ori Shental of Marlboro NJ (US)
Meilong Jiang of Westfield NJ (US)
Ashwin Sampath of Skillman NJ (US)
Ahmed Bedewy of Hillsborough NJ (US)
SAMPLE-LEVEL ERROR-CORRECTING CODE - A simplified explanation of the abstract
This abstract first appeared for US patent application 20240267274 titled 'SAMPLE-LEVEL ERROR-CORRECTING CODE
Simplified Explanation: The patent application relates to wireless communication, where a first device encodes data by adding time domain complex samples to real samples before transmitting it to a second device.
Key Features and Innovation:
- Encoding data by adding time domain complex samples to real samples
- Transmitting encoded data wirelessly to another device
- Function of the time domain complex samples is a known value
- Function is a sum of exponentials of the time domain complex samples
Potential Applications: This technology can be used in various wireless communication systems, such as mobile phones, IoT devices, and satellite communication.
Problems Solved: This technology addresses the need for efficient encoding and transmission of data in wireless communication systems.
Benefits:
- Improved data encoding process
- Enhanced data transmission efficiency
- Increased reliability in wireless communication
Commercial Applications: Potential commercial applications include telecommunications, IoT devices, satellite communication systems, and wireless networking solutions.
Prior Art: Prior art related to this technology may include research on data encoding techniques in wireless communication systems.
Frequently Updated Research: Stay updated on advancements in wireless communication technologies, data encoding methods, and signal processing techniques.
Questions about Wireless Communication: 1. How does adding time domain complex samples improve data encoding in wireless communication? 2. What are the potential challenges in implementing this technology in real-world wireless communication systems?
Original Abstract Submitted
various aspects of the present disclosure generally relate to wireless communication. in some aspects, a first wireless communication device may encode real samples of data to obtain encoded data based at least in part on adding one or more time domain complex samples to the real samples of the data, wherein a function of the one or more time domain complex samples is a known value, and wherein the function is a sum of exponentials of the one or more time domain complex samples. the first wireless communication device may transmit, to a second wireless communication device, the encoded data. numerous other aspects are described.