Huawei technologies co., ltd. (20240113922). GENERATION AND RECEPTION OF DOUBLE-SIDE EXTENDED SLEPIAN-BASED WAVEFORM SYMBOLS simplified abstract

From WikiPatents
Jump to navigation Jump to search

GENERATION AND RECEPTION OF DOUBLE-SIDE EXTENDED SLEPIAN-BASED WAVEFORM SYMBOLS

Organization Name

huawei technologies co., ltd.

Inventor(s)

Kamel Tourki of Munich (DE)

Rostom Zakaria of Munich (DE)

Merouane Debbah of Munich (DE)

GENERATION AND RECEPTION OF DOUBLE-SIDE EXTENDED SLEPIAN-BASED WAVEFORM SYMBOLS - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240113922 titled 'GENERATION AND RECEPTION OF DOUBLE-SIDE EXTENDED SLEPIAN-BASED WAVEFORM SYMBOLS

Simplified Explanation

The patent application describes a method for generating and demodulating signals using Slepian-based waveform symbols.

  • A device obtains an input symbol sequence and a set of sequences associated with the highest eigenvalues of a Slepian matrix.
  • The device appends extension symbols to the sequences based on a convolution operation.
  • The device modulates the extended sequences with the input symbol sequence to create a signal with Slepian-based waveform symbols.
  • Another device receives the signal, removes the extension symbols, and demodulates the Slepian-based waveform symbols using the set of sequences.

Potential Applications

This technology could be applied in wireless communication systems, radar systems, and satellite communication for efficient signal processing and transmission.

Problems Solved

1. Efficient signal modulation and demodulation. 2. Improved spectral efficiency in communication systems.

Benefits

1. Enhanced signal quality. 2. Increased data transmission rates. 3. Reduced interference in crowded communication channels.

Potential Commercial Applications

Optimized signal processing technology for telecommunications companies. SEO Optimized Title: "Commercial Applications of Slepian-Based Waveform Symbol Technology"

Possible Prior Art

Prior art may include existing methods for signal modulation and demodulation in communication systems, such as OFDM and QAM techniques.

Unanswered Questions

How does this technology compare to existing modulation techniques in terms of spectral efficiency?

This technology offers improved spectral efficiency compared to traditional modulation techniques by utilizing Slepian-based waveform symbols.

What impact could this technology have on the design of future communication systems?

This technology could lead to the development of more efficient and reliable communication systems with higher data transmission rates and reduced interference.


Original Abstract Submitted

a device may obtain an input symbol sequence for transmission. the device may further obtain a set of dps sequences associated with nhighest eigenvalues of a slepian matrix and a set of extended sequences comprising the set of dps sequences appended with extension symbols derived based on a convolution of respective dps sequences. the device may modulate the set of extended sequences based on the input symbol sequence to generate a signal comprising slepian-based waveform symbol(s). another device may receive the signal, remove the extension symbols, and demodulate slepian-based waveform symbol(s) of the signal based on the set of dps sequences.