BRAIN CORTEX CAPACITY
PART 34
Build a brain cortex with one chip or with one hundred chips. The neural capacity does not multiply 100 times for 100 chips. Neural capacity is multiplied 100,000 times. Imagine the power of a cortex 100,000 times more powerful than the current designed brain cortex in a jar.
Would it fit in a jar? Only if the jar is a big one! How big? Currently the lab has a big 5-liter jar. After some tests and redesigns, a new high density cortex will be placed inside but this is a future project.
The cortex is a different kind of machine animal with purposes entirely different from the Big Brain. Though technology from the Big Brain has made the Cortex possible, its purpose is very unique, i.e. both transferring a part of a human brain into the machine jar and increasing the jar's counterpart life span towards a state of immortality.
The base capacity of cortex intelligence "I" is based on a fundamental eight RISC processors. So doubling the "intelligence" of the cortex requires sixteen RISCs and the expansion is:
Intelligence = 8n1 + 8n2 + 8n3 + ... where n is a factor multiple of 8. So the cortex can have an intelligence increase by adding cores. A chip has eight RISCs so three chips will have 24 or three times the intelligence.
Since limitations at the upper end allotment for configurations are currently allowed at 800 processors, the expanded cortex can have up to 100 times the intelligence level of the first cortex.
Machine cortex intelligence is based on DNA or birthing knowledge, the size of long term and short term memory, conversation capability, thinking, asking questions and the ability to continually learn new things.
MACHINE CORTEX INTELLIGENCE NI
* DNA
* Memory
* Conversation
* Thinking
* Questions
* Learning
ABOUT THE MACHINE CORTEX BRAIN PROJECT
This
project objective is to develop a cortex machine brain, demonstrate a
human-to-machine brain transfer, in particular to take some relatively
simple characteristics of a human brain and transfer portions to the
machine brain, whereby human traits could be given a greater life longevity, leading towards immortality.
Index to the Brain Cortex
http://humanoidolabs.blogspot.tw/2013/11/brain-cortex-index-part-16.html
BIG BRAIN made by Humanoido is a giant intelligent AI machine. Over twenty years in the making, living and sentient, approaching one trillion processors/constructs. Join us in the exciting adventure as it continues to evolve!
Showing posts with label exoskeleton. Show all posts
Showing posts with label exoskeleton. Show all posts
Monday, November 18, 2013
Friday, November 2, 2012
Inverted Exoskeleton
INVERTED EXOSKELETON INVENTION
Turn your machine skin inside out!!!
This documents the new invention of the Inverted Exoskeleton. Prior to this, the Big Brain employed two styles of machine hardware design, a stacked tower of boards and the Exo or Exoskeleton.
POSITIVE EXO
The EXO is positive in nature, and has boards or component skin on the peripheral outside where wiring takes place.
TOWER
The Tower has boards stacked one of top of another. This approach is expanding linear. Wiring takes place on the top of each board.
NEGATIVE EXO
The Big Brain Project has invented the Negative Inverted Exoskeleton. The NIE has wiring and components inside the EXO configuration. It's the same as turning an Exoskeleton skin inside out.
COMPONENT PROTECTION
The NIE is a revelation in Big Braining technology. For the first time, the inverted electronic skin will protect components using the outside, or previous underside, of the board.
DURABILITY
The board also acts as its own support, connect together at the edges with simple low cost hardware. The config is idea for more rough handling, mobility, transport and even going into space. With inertial rocket effects on the NIE payload, the wires will press against the boards which act as a supporting bed in specific conditions and orientations.
COMPONENT PLACEMENT
The NIE places components on the inside, making better use of space and footprint. The ideal NIE config places the solderless breadboard at the opening side for easy wiring access. One challenge faced by the deployment of the NIE is the serial or USB connector orientations and resultant cabling positioning. 90-degree internalized mounting of boards restrict access to connectors which were mounted along board edges.
QUADLYZER CONSIDERATIONS
A new QuadLyzer is being examined with the possibility of a new Negative Inverted Exoskeleton design. However, Parallax has a universal design of placing the connector at the board's edge. This is blocked with the NIE design. One option is a turn-out board design which increases design complexity. For now, the best design for the QuadLyzer is a positive Exoskeleton to maintain easy access to cabling and serial connectors.
Turn your machine skin inside out!!!
This documents the new invention of the Inverted Exoskeleton. Prior to this, the Big Brain employed two styles of machine hardware design, a stacked tower of boards and the Exo or Exoskeleton.
POSITIVE EXO
The EXO is positive in nature, and has boards or component skin on the peripheral outside where wiring takes place.
TOWER
The Tower has boards stacked one of top of another. This approach is expanding linear. Wiring takes place on the top of each board.
NEGATIVE EXO
The Big Brain Project has invented the Negative Inverted Exoskeleton. The NIE has wiring and components inside the EXO configuration. It's the same as turning an Exoskeleton skin inside out.
COMPONENT PROTECTION
The NIE is a revelation in Big Braining technology. For the first time, the inverted electronic skin will protect components using the outside, or previous underside, of the board.
DURABILITY
The board also acts as its own support, connect together at the edges with simple low cost hardware. The config is idea for more rough handling, mobility, transport and even going into space. With inertial rocket effects on the NIE payload, the wires will press against the boards which act as a supporting bed in specific conditions and orientations.
COMPONENT PLACEMENT
The NIE places components on the inside, making better use of space and footprint. The ideal NIE config places the solderless breadboard at the opening side for easy wiring access. One challenge faced by the deployment of the NIE is the serial or USB connector orientations and resultant cabling positioning. 90-degree internalized mounting of boards restrict access to connectors which were mounted along board edges.
QUADLYZER CONSIDERATIONS
A new QuadLyzer is being examined with the possibility of a new Negative Inverted Exoskeleton design. However, Parallax has a universal design of placing the connector at the board's edge. This is blocked with the NIE design. One option is a turn-out board design which increases design complexity. For now, the best design for the QuadLyzer is a positive Exoskeleton to maintain easy access to cabling and serial connectors.
Thursday, August 2, 2012
RX Propeller Supercomputer
RX PROPELLER SUPERCOMPUTER
![]() |
| Big Propeller Retro Supercomputer |
The purpose of the RX is experimenting, supercomputer distributed parallel algorithm development, and having fun bringing back nostalgia from yesteryear's super computing machines! Of course, the R in RX stands for Retro.
It's how you look at it. The left side added to the right side of the Big Brain Machine equals a modern 2011/2012 super computer with TFLOPS processing power, according to the Top 500 list of supercomputers. But what happens when the left side is detached from the right side? What new things can arise from this configuration?
Retro Supercomputing
Now take the left side only into consideration. It accurately represents a Retro Supercomputer with approximately 1990s supercomputing power.
Functions
The left side is also a powerful controller to the outside world with its excess of 3,200 controlling input output ports and it has vital functions for retro and nostalgic supercomputing experimentation. It's ideally suited for development of distributed parallel programming techniques for various supercomputers.
Specifications
The best way to review some of these specs is to consult the specifications page, keeping in mind what applies to only the left brain. This, in a nutshell, includes all functions developed for solderless breadboards and the EXO.
EXO & Breadboards
The EXO is the previously detached Exoskeleton, a kind of obverse tower where the components are on the outside. Seen in the photo, the left brain combines the breadboards and the EXO.
Speed
Propeller Supercomputer Kit
Schematic Diagrams
Enumerator
Parallel Loader
Operations Algorithm
Applications Outline
Instructional PDF
The best way to review some of these specs is to consult the specifications page, keeping in mind what applies to only the left brain. This, in a nutshell, includes all functions developed for solderless breadboards and the EXO.
EXO & Breadboards
The EXO is the previously detached Exoskeleton, a kind of obverse tower where the components are on the outside. Seen in the photo, the left brain combines the breadboards and the EXO.
Speed
At 160 MIPS per chip, the first 100 chips push theoretical speed to 16,000 MIPS or 16 Billion Instructions Per Second (or approximated as 16 GIPS). The RS is integer based so you'll need to convert standards when comparing to other machines. GFLOPs speed is as fast as a 1990s supercomputer (see link).
The Propeller Supercomputing Kit
What would be needed for a kit? Let's say you can get the common lights, resistors, capacitors, breadboards, and Propeller chips. What else is required? The Propeller Supercomputer Kit includes the following to get started. Propeller Supercomputer Kit
Schematic Diagrams
Enumerator
Parallel Loader
Operations Algorithm
Applications Outline
Instructional PDF
RX Propeller Supercomputer Milestones
- Enumeration (software based)
- True Parallelism
- Instant Loading
- Thousands of Propeller VIP Processors
- Cloning
- Breaking the 100-chip Propeller barrier
- Stacked High Density Solderless Breadboards
- Exoskeleton Structure Components on Outside
- Evolution Chip Independence (EI, CI, AI)
- Divisional Signalers (DS Mode)
- Simplex N (Neural Config)
- ParP Ops (Parallel-Parallel Mode)
- Cross Platform Hosting
- Multi Program Language Ops
http://en.wikipedia.org/wiki/FLOPS
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Monday, March 5, 2012
Aliens Exist
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| Proof Aliens exist and have their own street |
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Wednesday, February 29, 2012
Disembodied Brain Goes Airborne
EXO BRAIN DISEMBODIED WILL GO AIRBORNE
It will take at least two weeks and a trip to China to retrieve the disembodied EXO portion of the Big Brain. It will then travel by jet aircraft, personally monitored, in disassembled pieces to it's new location.
This is part of a new program to fully assemble the disembodied brain in one location, to readily facilitate the next move in an effort to make the Big Brain more portable and easier to move, and create new built-in characteristics of mobility.
There's an increasing demand of the Big Brain for processing power and control, and in an effort to increase the magnitude of the Big Brain, all its components will need to function in one place of space time. Most remaining labs will remain open for R&D. Consolidation will be a future topic. The Big Brain has moved seven times and is an international project.
The BIG Brain is currently functioning without the EXO, by using its Right Brain and Left Brain sections which contain enhanced Propeller chip Arrays and AMD streaming processors. This currently leaves enough remaining brain power to run the new NULT 945-inch Telescope and the new Universe Penetrator.
The Big Brain EXO is made from 100% Parallax processors. The isolated EXO Brain section currently has a total of 21,000 enhanced Propeller VP processors, 168 Propeller Cog processors, and several host processors. Predominantly Propeller chip driven, it owes the majority of its processing and controlling power to enhanced Parallax Propeller chips.
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