Showing posts with label clone. Show all posts
Showing posts with label clone. Show all posts

Sunday, May 22, 2022

AI Creates AI


AI Creates AI
Here at the Big Brain AI Lab we have AI life machines being geared up for creating other AI life machines. This is borderline cloning. We can't say the exact level we've achieved because the project is private, but we can say where it's headed!

In a brief history, it all began with experiments in cloning with the Big Brain, when it reached the collective of 240,000 processors. Today, the AI is far advanced with much more capability. Motion control through a humanoid robot can enable the dexterous manufacture and repair of other AI beings. It can also enable the creation, repair and troubleshooting of humans augmented with AI machine interfacing. The AI humanoid robot being created by Elon Musk of TESLA is moving towards achieving the same goals.

Above Image: Is this pure AI humanoid or is this advanced AI augmented humans that are more machine than human? At what part of a transformative human process does the human become machine? Is AI reproduction of AI machines cloning or does it only approximate unique machine life forms and not qualify as cloning? If we reproduce every part of the human body with machine parts, are we still human or have we lost our humanity?

Sunday, November 21, 2021

Method for Humanity to Travel the Galaxy

Method for Humanity to Travel to Galaxy Star Systems

Step 1: Humans evolve bodies to have complete body fabricated replacements
Step 2: The humans are digitally transferred to containments of simulation
Step 3: The simulation can transmit using quantum transmitters that break the Einstein space time barrier
Step 4: Upon arrival, simulation bodies specify the construction of robot bodies that receive the simulation bod

ENSURING THE PRESERVATION OF HUMANITY
Conventional liquid fuel rockets such as those used by Elon Musk and Spacex, or solid fuel used by NASA SLS boosters, are not fast enough for travel to the stars. Even future technology using rockets with nuclear drives and ion fusion are insufficient. A future way of travel is necessary such as the method proposed by Humanoido - duplicate humanity sets embossed in space hardened encapsulated substrates of simulation can be dispersed across the galaxy far and wide through the use of quantum transmissions that exceed Einstein Space Time Continuum domain for rapid FTL dissemination.

SELECTED STAR SYSTEMS
Humanity needs to construct future, multiple, vastly more powerful, telescopes on the Earth, Moon or in space to determine which star systems are ideal for humanities multi colonization. Automating the process and sending out billions of cloned humanity sets assure greater odds of successful planetary rooting and preservation of the species.

ALIEN PLANETS MAY BE BETTER THAN THE EARTH
Earth’s oceans have made it the perfect environment for biodiversity, but a new study suggests that it may not have the best conditions in the galaxy. The study suggests that exoplanets that have “favorable ocean circulation patterns” could be better suited to support a wider range of life than Earth.

Thursday, April 2, 2020

Are You Yourself or a Clone?

WTF? Are You Yourself or a Machine Clone? The Debate Rages On
When you transfer your human brain over into a machine brain, are you the same person or a clone of yourself?

Philosophical questions and debates may occur when converting a human brain over into a machine brain. It may be possible to take a human brain and convert it into one machine brain, then take the machine brain to make as many clone brains as you want. Who is you and who is who?

Some will speculate the brain is your brain if the original ceases to exist. However, at the moment of transfer, the machine brain has its own set of experiences when compared to its human version or any other brain. Brain transfers could occur to the machine brain and the machine could be put into stasis. However, the human brain would evolve over time and create differences with the machine brain. In the case of brain disease, having a copy of the brain when it was healthy is desired. Maybe it will be possible to replicate a diseased brain and repair the machine version. It might be a good idea to have two of you as two machines. You can work together with your twin self. Your twin self could easily be put to hibernation ahead of time in the event that something catastrophic happens to you. As twins, you can do double the work in half the time. But who is who? Is the consciousness the same?

Thursday, August 1, 2013

COSMAC Elf Clone Built with PICs

COSMAC ELF CLONE BUILT WITH PICS
Ted Rossin put together a modern day version of a COSMAC ELF retro computer using a PIC processor.

"The PIC is clocked with a 7.16 MHz crystal which is 4x the rate of a standard Elf with Pixie chip.  This gave me 32 PIC instructions per 1802 state cycle to get the job done.  I use the internal PLL to multiply the clock by another 4 as the PIC needs 4 clocks per instruction.  For most 1802 instructions this was cake but some were quite challenging as the PIC has to implement the instruction plus keep TPA and TPB going as well as implement the normal 1802 bus cycles not to mention the need to respond to the mode pins, DMA and interrupts."

http://www.tedrossin.net46.net/Electronics/RCA/RCA.html#ElfClone

Tuesday, June 4, 2013

Machine Life Extension

Big Brain Machine with life
MACHINE LIFE EXTENSION
WHO WILL LIVE LONGER - YOU OR THE MACHINE?

Emerging new research has shown that stem cells can create life longevity, life extension and reverse aging for biological humans. Most effects in humans can be recreated, duplicated, simulated or replicated in machines. How can ideas from stem cells be applied to machines?

There are several aspects to a living machine. In most processor based machines, a clock determines the number of pulsed cycles. With several techniques, the clock can be enhanced to increase or decrease the number of cycles.

Stem cells in humans can have a regenerative effect. In machines, subroutines can run at clock rates equal to or less than the master clock speed.

In humans, a slower metabolism can extend longevity. The same is true of machines with a lower clock rate. The stress, heat output, is less and the substrate's life span is extended. In cryogenic deep freeze lab experiments, subjects are frozen for an extended period of time, and brought back to life, and live longer. Machines can also be cryogenically altered.

Regeneration and repair in a human can equate to a reboot in some processors. Multiple subroutines can be created and each rebooted at will. Each of a multiple processor can have its own clock rate.

Global Reboot
Rebootable Subroutine
Lower Clock Rate
Cryogenic Alterations


Wednesday, February 13, 2013

Emerging Worlds of Massive Transposition Machines

Travel to the heart of this great and vast stellar nursery abyss, splayed by the Big Brain's ultra space penetrating GT eye, and discover thousands of new worlds beginning to emerge.

EMERGING WORLDS OF MASSIVE TRANSPOSITION MACHINES
Transposition machines (MTMs) are powerful computing machines that continue to evolve like new emerging worlds from the stellar nursery abyss. They were initially conceived and birthed in the year 2009. Fast forward to May 16th, 2011, and the Massive T1 Transposition Machine was in full operation - blogged in regard to its merging with the Big Brain machine. In 2013, the T1 has become the front end of a new breed of massively parallel machines.

May 16, 2011 "There are several machine technologies now merged with the Big Brain. One is the Massive Transposition Machine, a machine that I designed/invented around 2 years ago, mentioned at the signature link. The Massive Transposition Machine was originally designed for a thousand Propellers but was scaled back in the actual construction, which was shy of the 1,000 props and finally led to the Big Brain. This was spun off the devices gleaned from the US40. Rather than do two incredibly large Propeller projects, many of the details of the MTM were and are being incorporated into the Extremely Large Brain project. This is not the only previously invented technology going into the Big Brain as some time ago the technique of Cloning was likewise developed (my off site paper). Using Brain Cloning has resulted in more effective Brain packages, propagation and time saving methods, increasing the effective software speed, reducing code, and has led to better techniques of folding and unfolding in dreaming and neural packaging." Humanoido
 
WHAT IS A TRANSPOSITION?
The Massive T1 Transposition Machine is a powerful TeraFLOPS machine made by Humanoido Labs. It has a 10x10x10 cube design with all available Propeller chips* and is built up to over 1,526 hardware processors plus over 800,000 VP processors added.** What is the Transposition machine doing today? The T1 or MTM derivatives have numerous features that are now adopted in the Lab's series of Massively Parallel Machines. To DIY these large machines, new designs are required to maintain low power, low cost, ease of programming, basic wiring, and a convenient way to set up and run numerous applications and experiments. The T1 has led to developments that satisfy these requirements. These features are fast becoming the standard for a line of T1-evolved incorporations and newer machines.

Features of the T1 Transposition Machine
  • Low Power
  • Low Cost
  • Easy Loading
  • Fast Response
  • Simplified Display
  • Maximized Design
  • Parallel apps
  • Fast Setup
  • New Algorithms
  • Processor I/O Reporting
  • Processor Enhacement
  • Partitioning
  • MIM Machine in a Machine
  • PARP Parallel Parallel
  • No Parts Enabling
  • Reconfigurable
  • Cloning
  • Transforming
  • SuperTronic Enabling***
* A 10x10x10 cube is created by the arrangement of processors
** VPs are created by Propeller enhancement
*** Note: the latest version of the Transposition Machine is Big Brain SuperTronic enabled

LINKS
This machine was entered into the Big Brain category of machines.


The machine was first blogged at the Parallax Forum on the signature site.


The T1 is also included in the Big Brain Genealogy blog.
http://humanoidolabs.blogspot.com/p/genealogy.html

Saturday, August 11, 2012

Make Multiple Propeller Machines from One

PROPELLER SUPER COMPUTING
MAKE MULTIPLE PROPELLER MACHINES FROM ONE

You can adapt this technique to make many machines given just one machine to work with. There's no need to tear down a machine for recycling or build a new machine with hardware. The method algorithm, which is all in software, is to first make a large parallel machine using Parallax Propeller chips and set the hardware according to the standard supercomputing wiring established by the Big Brain project. This is a parallel wiring format of chips and Cogs. Next, clone a large number of internal processors, i.e. 50,000 processors in a fifty chip machine and 100,000 processors in a one hundred chip machine. Now, configure the processors to make new machines. For example, each new machine is software wired, i.e. cube computing is possible, vast array machines are possible, new versions of T-Series Massive Transposition Machines, and linear ramp software accelerators are possible. Another example is the Power Cube, a machine inside a machine wired with node software.

How to wire a Propeller super computing machine with software is a very interesting vast topic and encompasses many areas. The subject can be addressed by examining reconfigurations of mass enumerated processors as a starting point. There are many techniques involving parallelism computing and distributed methodology. Look for more about this topic in the future.

Tuesday, March 20, 2012

One Chip Brain

Propeller Driven Big Brain
ANALYSIS OF A ONE CHIP BRAIN
What can you do with a one chip brain? Exactly how powerful is it? How many processors can be initiated in the confines of one Parallax Propeller chip? What are these one-chip Big Brain prodigies capable of doing? How are they constructed?

The Humanoido approach - First take one Parallax Propeller chip. Working with the pins of a P8X32A-D40 DIP chip is easy. It will have 8 COGS or RISC processors. These are powerful because they run in true Parallel. Let's enhance this power. Enhancing the chip and Cloning can create smaller sub processors. This is a process used by the Big Brain to create a new ROS real time operating system of Neural Matter and exampling firing neurons. It also serves as a time manager and facilitates the new creation of extra domains with 125 processors. COGs have available 2K. Initiate Cloning for an array of 8 x 125 processors. This creates a chip with 1008 exampling processors. So one chip is very capable when enhanced. Applications include constructing working Simplex Neurons - which are small powerful levels of code, extended thinking and thought patterns (TP's are the key to one form of machine intelligence), and simultaneous & time shared events.
  • Model Number: P8X32A-D40
  • Processors (cogs): Eight
  • Architecture: 32-bits
  • System Clock Speed: DC to 80 MHz
  • Global RAM/ROM: 64 K bytes; 32 K RAM / 32 K ROM
  • Cog RAM: 512 x 32 bits each
  • I/O Pins: 32 (simultaneously addressable by all eight cogs)
  • Current Source/Sink per I/O: 40 mA
  • Clock Modes: (a) External crystal 4 -8 MHz (16 x PLL) (b) Internal oscillator ~12 MHz or ~20 kHz (c) Direct drive
  • Package Type: 40-pin DIP
  • P0-P31: General purpose I/O.  Can source/sink 40 mA each at 3.3 VDC
  • P31: Rx from host (general purpose I/O after boot up).
  • P30: Tx to host (general purpose I/O after boot up/download).
  • P29: I2C SDA connection to external EEPROM (general purpose I/O after boot up).
  • P28: I2C SCL connection to external EEPROM (general purpose I/O after boot up).
  • Vdd: 3.3 V power (2.7 - 3.6 VDC).
  • Vss: Ground (0 VDC).
  • BOEn: Brown Out Enable (active low). Must be connected to either Vdd or Vss.  If low, RESn becomes a weak output (~5 KΩ) for monitoring purposes but can be driven low to cause reset. If high, RESn is a CMOS input with Schmitt Trigger.
  • RESn: Reset (active low). When low, resets the Propeller chip; all cogs disabled and I/O pins floating. Propeller restarts 50 ms after RESn transitions from low to high.
  • XI: Crystal / clock input. Can connect to crystal or oscillator.
  • XO: Crystal Output. Provides feedback for an external crystal. Internal C and R selectable for crystals (no other components required).
  • Power requirements: 2.7 to 3.3 VDC
  • Communication: Serial for programming
  • Dimensions: 0.48 x 2.0 x 0.13 in (12.3 x 51 x 3.41 mm)
  • Operating temp range: -67 to +257 °F (-55 to +125 °C)

Saturday, February 18, 2012

Micron Propeller

THE MICRON PROPELLER
Create the MP with no hardware changes
Shrinking the Propeller!
One of the most exciting parts of working with a Propeller chip is enhancing it with new ways of thinking out of the box. Expanding the world of Propeller with enlarging enhancements is highly useful for the Big Brain. Contracting the chip is also useful, i.e. shrinking it down to a remarkable "micron" level.

A Micron Propeller is a new small scale version of the full scale Propeller chip. How small? It's exampling prototype is 1/125th of Cog or 1/1000th of the entire chip. It's a prop that's subdivided into smaller processors. It's one of these processors that we are interested in. Propeller chips already have subdivisions of eight Cogs or processors that can work singly or in unison. However, the Micron Propeller takes this to a whole new level of small.

Focus on a Micron Propeller - it's created by the operation of disabling seven Cogs, maintaining functioning of one, and subdividing the one into additional processing units. One of these subdivisions become a Micron Propeller. Micron Propellers are useful for ultra low power consumption, the managing and operating of special code, can be transported to other parts of the chip, and operate green by using only the resources needed. Th e Micron Propeller is derived from the Big Brain's VP technology.

Micron Propeller
Spinoff technology from Big Brain VPs -  the Micron Propeller is the ultimately small Propeller. Each Propeller chip has eight cogs, one of which is subdivided into a maximum of 125 Clones. The remainder cogs are placed in off conditions. One 1/125th of (A), the smallest usable subdivision, is known as a Micron Propeller (MP). One chip can generate many MPs. Each MP holds one Micron program and shares resources including RAM, ROM, Clock, Counters and PINS. MPs can undergo SW transmutations and transporting. The MPRTOS Micron Propeller Real Time Operating System controls timing, parametric handling, multitasking functions, and is a part of Cloning.