Astrapi develops spiral-based modulation technology that enhances spectral efficiency by transitioning from periodic to non-periodic signal modulation. This approach enables telecommunications companies to increase bandwidth, signal power, and data throughput while reducing error rates in digital transmissions.
Funding
Funding not disclosed
Founders
Product
Problem
Current telecommunications systems face limitations in spectral efficiency, hindering their ability to meet the growing demand for bandwidth and data throughput. Traditional modulation techniques struggle to effectively combat channel impairments such as noise, interference, and phase distortions, leading to reduced signal power and increased error rates.
Solution
Astrapi has developed spiral-based modulation technology that enhances spectral efficiency by transitioning from periodic to non-periodic signal modulation. This approach enables telecommunications companies to increase bandwidth, signal power, and data throughput while reducing error rates in digital transmissions. Astrapi's technology exploits a generalization of Euler’s formula, opening a path to dramatically higher spectral efficiency. Spiral modulation provides new ways to combat channel impairments, including AWGN, coherent interference, and phase distortions by providing new ways to distinguish between signals. Astrapi's Spiral Modulation fully exploits the capabilities of a continuously non-stationary spectrum.
Target Audience
The primary customers are telecommunications companies seeking to improve spectral efficiency and increase data throughput, as well as government and defense organizations requiring advanced signal modulation techniques.
Features
- Spiral-based modulation for enhanced spectral efficiency
- Increased bandwidth, signal power, and data throughput
- Reduced error rates in digital transmissions
- Mitigation of channel impairments, including AWGN, coherent interference, and phase distortions
- Continuously non-stationary spectrum utilization