TECHNOLOGY
Think of this membrane simply as a container filled with water. Just as raindrops create a rippling effect in water, NomadAI’s membrane absorbs each drop and retains it. Each drop, acting as an event, produces waves that appear as ripples. When one wave intersects with another wave their amplitudes are summed. This is how NomadAI is able to observe the cause and effect of each event to produce correlation from the sea of waves.
How does NomadAI encode data and form neurons in waveform?
Think of each raindrop as an event representing some digital data. When a raindrop creates a ripple, its digital data is converted into a wave. Once the digital data is converted it continues to exist within the membrane as a nonlinear wave.
Over time the membrane retains enough events to begin forming the basis of a neuron.
Subsequently a set of raindrops will begin to form scenarios equivalent to a neural network.
A set of raindrops can be canceled by the inversion of their waves. By countering those set of raindrops, NomadAI’s membrane forms the first neural networking connections because it knows where the raindrops will lead in their ripples.
NomadAI Technology: Why is this so Significant?
Currently, all industry AIs work within digital neural networks, so why is it important to work in a membrane filled with analog data instead of simply using existing digital neural networks?
- Analog signals allow real-time calculations of their analog data when the signals are at an intersect (superposition), at a reduced computational power consumption
- Natural phenomena within a neocortex allows superior storage of data within NomadAI’s membrane, outperforming digital storage
Working in analog within a neural network isn’t a 10x or 1000x victory, it becomes an expanding X advantage as Generative AI models enhance, evolve, and grow exponentially, requiring even larger operational expenditures.
Skyleap has implemented a neuromorphic membrane within NomadAI’s software, that can operate in wave, thermal, static pressure, and shock nonlinear waves.
Advancing a step further than academia in the neuromorphic computing field by:
- Encoding full pictures into the membrane, giving NomadAI the sensory of sight
- Storing data within the membrane to consolidate long-term memories
- Successfully summed nonlinear wave events
- Storing vast amounts of data in nonlinear form compared to our digital counterpart
Gallery
Image 6
Membrane with encoded data in analog form and the convergence of a specific event it needed to recall from the neurmorphic memory.
Image 5
Clusterization and groupings of events which subsequently form neurons (analog neural network)
Image 4
Convergence in recognition of a pattern. This image shows the neuromorphic membrane affirming a pattern it previously witnessed which existed within its ocean of waves.
Image 3
NomadAI membrane in its pre eureka moment during the recognition of a single pattern by the Proof by Contradiction
Image 2
The image before this one, NomadAI’s membrane, is observing this image of the Sun and its sunspots.
Image 1
This image shows the introduction of the sensory of sight to NomadAI, its membrane is observing our Sun, what is shown is the visual stimuli a retina would absorb; in this case it is NomadAI’s retina.