Showing posts with label computers. Show all posts
Showing posts with label computers. Show all posts

Wednesday, July 29, 2026

The new memristor-based RISC systems. They can create models of human brains.



“A new memristor chip reconstructs intricate brain surfaces at near-biological speed. Credit: Stock. A memristor chip. It brought complex brain modelling into millisecond-scale operation. While preserving detailed cortical structure.”(ScitechDaily, Scientists Develop a Groundbreaking Chip That Operates at Brain-Like Speed)

“Reconstructing the brain’s deeply folded surface in real time requires enormous numbers of calculations. Researchers in China have now developed a chip that performs this work in less than 10 milliseconds. A speed, they say. It is comparable to the human brain’s functioning pace.”(ScitechDaily, Scientists Develop a Groundbreaking Chip That Operates at Brain-Like Speed)

We all have our vision of RISC (Reduced Instruction Set Computer) systems. We see those systems as controlling CAM (Computer-Aided Manufacturing) systems. Like. Computer-controlled lathes. The reduced instruction set makes those systems more limited. But faster than regular computers. 

“In electronics and computer science, a reduced instruction set computer (RISC, pronounced "risk") is a computer architecture designed to simplify the individual instructions given to the computer to accomplish tasks. “ (Wikipedia, Reduced instruction set computer)

“Compared to the instructions given to a complex instruction set computer (CISC).  RISC computer might require more machine code to accomplish a task because the individual instructions perform simpler operations. The goal is to offset the need to process more instructions by increasing the speed of each instruction. In particular. By implementing an instruction pipeline, which may be simpler to achieve given simpler instructions.” (Wikipedia, Reduced instruction set computer)

But modern RISC systems are more complicated than some computer-controlled lathes. Those systems. They can control civil and military robots and drones. The newest RISC systems and RISC architecture. They can model brains in a very short time. 


"Overview of NDS hardware with multilevel and fine-grained CCD memristor. Credit: Peking University"(ScitechDaily, Scientists Develop a Groundbreaking Chip That Operates at Brain-Like Speed)

The new microchip that uses memristors brings brain modelling in milliseconds. This chip still retains the cortex’s simple structure. This new microchip is the tool that beats ASIC circuits. That means application-specific integrated circuits. This new circuit can keep the brain structure. Topologically logical in simulations. “The researchers tested the chip by reconstructing the boundaries of the brain’s white and grey matter and producing 3D manifold-based surface meshes in real time. The resulting cortical surfaces were smooth, closed, and topologically consistent while preserving the brain’s intricate folds.” (ScitechDaily, Scientists Develop a Groundbreaking Chip That Operates at Brain-Like Speed)

“The researchers tested the chip by reconstructing the boundaries of the brain’s white and grey matter and producing 3D manifold-based surface meshes in real time. The resulting cortical surfaces were smooth, closed, and topologically consistent while preserving the brain’s intricate folds.”(ScitechDaily, Scientists Develop a Groundbreaking Chip That Operates at Brain-Like Speed) These kinds of systems can serve in Alzheimer's and Parkinson's research. They can also operate as simulators. They show how medications affect the brain. These kinds of RISC systems can be interesting tools. 

For making. Models of other organs and structures. RISC processors are systems. That developed. For certain. Specific operations. RISC processors can process data more effectively. But the big difference is this. Those systems have their operational code inside them. 

Than computers. Computers. Must exchange information between the processor and the application all the time. RISC systems. They don’t need special applications. Many operations are programmed. Straight. Into the chip. Or those actions are stored in ROM circuits. And that makes it more effective. The minus is that the computer. It's slower than a RISC processor. That is created for one specific purpose. RISC systems. They could simulate things like nuclear reactors. The system can use a similar codebase. As. This Chinese brain simulator uses. The system could be much faster. Than. Regular computers. 

The most widely used RISC systems are pocket calculators. Those systems are limited only to solving mathematical problems. The high-speed RISC processors can be modified NVIDIA A-series circuits. They can act as tools. They can calculate things like the Riemann conjecture with supercomputers. The system requires those prime numbers for the encryption and decryption process. The RISC simulator can operate along with submarine and aircraft computers. The system can compare the predicted and calculated values with the real values. Those RISC systems can also control the thermal effects of the superconducting systems. 


https://scitechdaily.com/scientists-develop-a-groundbreaking-chip-that-operates-at-brain-like-speed/


https://en.wikipedia.org/wiki/Memristor


https://en.wikipedia.org/wiki/Reduced_instruction_set_computer


Friday, July 17, 2026

AI might think differently than humans.



“York University researchers have uncovered a surprising mismatch between how artificial neural networks and primate brains process visual information. Credit: Shutterstock.” (ScitechDaily, Scientists Discover AI Models May Not Think Like the Brain After All)

AI might not think like a human at all. When researchers try to make computers think like brains. Those people sometimes forget why human brains are so different. Thinking in human brains is more closely connected to physical structures such as neurons and neurotransmitters. Than we even think about. 

This is the big difference between computers and human brains. The structure of the human brain plays a bigger role in the thinking process. Than we thought. The computer that runs billions of databases. It can have a very impressive capacity to connect information. But the problem is that. One binary processor. It can run one operation at a time. The system requires new processors. 

That processor. It can run. Multiple tasks at the same time. This is not possible for the regular processor. But the processor. That mimics the brain. It can use all its layers as independent processors. 


 The brain has four main areas. 


1) Cerebral cortex 


2) Cerebellum


3) Brainstem 


4 Cerebral hemispheres. The last one has two parts. 


The fact is that if we create a microprocessor that mimics the human brain. We need a five-layer microprocessor. Each of those layers can use a different programming language. That denies the data mix in the system. If every layer of the processor uses different languages, that makes data meant for other layers seem white noise.

Each layer mimics each part of the brain. And those layers. They can have different programming languages. Or different frequencies. That helps them to separate and sort information. The four-layer microchip. It can have one divided layer. That mimics the cerebral hemispheres. 

From different sources. The database connections. They can mimic neural networks. That transfer information in human brains. The difference between database structures and human brains is this. Databases run on the same monolithic computer. In human brains. Every single neuron is like an independent computer. This means that if we want to make a computer. 

Or. We can rather say: an AI solution. We must create a system. That involves 86 billon computers. The system. It can use morphing neural networks to make its operations more effective. 





“Schematic of a simple feedforward artificial neural network.” (Wikipedia, Neural network)


The thing that can make the process quite easy is that. Every neuron has. The ability to change its connections and their relations. This means we cannot measure the neuron’s ability to process information in the same way. As we measure a computer’s ability to process information. Human brains store information in the form. 

That is similar to a mosaic. The information. It is stored. In a form that is like pixels. Brains can connect and reshape those pixels freely. And that ultimate flexibility makes human brains so different from machines. In brains, every neuron has a pair. A mirror neuron. The neuron and its mirror. They act like loops or algorithms. Another purpose for mirror neurons. That is. They tell the primary neuron that the information traveled through. 

In human brains.  Multiple points of start. Data processing. At the same time. Brains can spread the operation. They could reserve more neurons for that action. This means that brains concentrate. In another way. Than computers. In brains, in brains. Every neuron acts as an independent computer. And the large number of neurons gives fine-tuning for processes in the brain. 

Computers can also connect data. But that system is far different from humans. In computers. The binary system. It can handle only one task per operation. The AI. That mimics human brains. Must have 86 million physical processors to mimic human processes. The ability to search data and then combine that data with memory. Is the thing that we call thinking. 

We could make a machine. That mimics human reactions. That machine requires a physical platform. That involves the same structure. As human brains. The fact is that. If we want to make a machine. That thinks like humans. We must remember that the system. It is a combination of hardware and software. 


https://scitechdaily.com/scientists-discover-ai-models-may-not-think-like-the-brain-after-all/



https://en.wikipedia.org/wiki/Neural_network

Wednesday, October 29, 2025

Mushrooms can act as a vital component in the new types of computers.



“Mushrooms have long been recognized for their extreme resilience and unique properties. Their innate abilities make them perfect specimens for bioelectronics, an emerging field that, for next-gen computing, could help develop exciting new materials.” (Phys.org, Mushrooms show promise as memory chips for future computers)

Basically, any material can act as memory. Proteins are as effective as magnetic tools in storing data. In that case, the system can store information. In the waves of the protein. Those wrinkles can be one, and the lower areas between those “hills” can be zero. That is one way to store information in a form that is immune to electromagnetic radiation. The system must have the ability to read that information. And it can happen by using microscopes. 

The biological data storage. Like mushrooms and living neurons, it is one way to store data. Mushroom networks can act as data processors. As well as all other networks. Those systems can make future computers more secure than before. The problem is with the computers in the kernel and ROM (Read-Only Memory) circuits. If the ROM circuit loses its data. That makes the computer unable to operate. 


The answer to that problem can be a mechanical computer. The mechanical computer was the tool. That was used before electronic computers. Electronic computers were more multi-use tools. Than mechanical systems. But nanotechnology. Makes it possible to create compact systems. Those mechanical computers can be used to restore ROM circuits if they have lost their programming. 

“As one example, researchers from The Ohio State University recently discovered that common edible fungi, such as shiitake mushrooms, can be grown and trained to act as organic memristors, a type of data processor that can remember past electrical states.” (Phys.org, Mushrooms show promise as memory chips for future computers)


The thing. That makes the new study. To use mushrooms as computers is that those networks are used as the RAM (Read-Access Memory). Mushrooms are forming networks. In the same way as neurons do. That makes them. Able to act as the living network. Mushroom networks are tools. That gives new abilities to computers. In those tests, researchers connected electrodes to different points of the network. In those cases. Researchers used mushrooms’ mycelium. That formed a network structure between electrodes. 

“After two months, the team discovered that when used as RAM – the computer memory that stores data – their mushroom memristor was able to switch between electrical states at up to 5,850 signals per second, with about 90% accuracy. However, performance dropped as the frequency of the electrical voltages increased, but much like an actual brain, it could be fixed by connecting more mushrooms to the circuit.” (Phys.org, Mushrooms show promise as memory chips for future computers)

Mushroom networks are things that can be more promising than living neurons. Living mushrooms don’t require similar nutrients to neurons. There is also a possibility. To use dry or killed fungi. That makes it possible to create new types of electronics. But there is a possibility of using the genetically engineered fungus. That also gives electricity. To the computers. 


https://phys.org/news/2025-10-mushrooms-memory-chips-future.html


Saturday, September 16, 2023

The neural spiral in our brains can mean very much to the human species.

    The neural spiral in our brains can mean very much to the human species.


And researchers can use the human brain as the model for AI-based solutions that are better than ever before. 


The neural spiral in the human brain is an impressive thing. It transmits information around our brain. And that thing is suspected behind the consequence. The thing in the neural spiral is that it gives brains the ability to analyze situations better. 

And that neural spiral gives us the thing called patience. That neural spiral makes our neural system better than insects. In insects neural system signals travel in one direction and that thing gives them an effective ability to handle information. 

But that thing means that if an insect decides to attack it will not think about the situation anymore, and that thing causes death if it attacks against the superior predator. If a human sees a cave bear human will go to a weapon before the hunter even thinks of attacking against bear. The neural spiral gives the hunter deliberation, and that ability is the thing that can save the hunter's life. 



Researchers used the human and other specie's brains as a model for high-power supercomputers. The human brain works like a computer. And that means it can give a model for next-generation systems. 


The thing is that researchers can model the neural spiral from the human brain into computers and morph networks. The AI-based morphing network means that the system can, as an example, forget things. The AI can have values that if the system doesn't use some database in a certain time the system removes those files. 

If we think about the mark of the recycling center, we can think that arrows are the sequences or pulses when data travels between computers. And at the end of every pulse is the computer. The system drives data in the direction where arrows show. And every time the data travels through the computer, that system analyzes the data that is handled by a computer. That is behind that ring. 


Image: Recycle mark can used as a model for spiral computing structure. Every arrow symbolizes the pulse where information travels between computers. And then after each pulse, the information travels through the computer that processes it. The number of processing sequences depends on how many times information travels in that circle. 

So the system can send the data to travel around this spiral or ring, and in every pulse, the data system can breed the information. That kind of system can be the ultimate tool for AI to analyze data. The type of those computers is not important. And they could be regular binary computers, DNA-based computers that can drive billions of programs at one time or they can be quantum computers. 



The AI-based kernel can make computers more powerful than ever before. And carbon nanotubes can make lightweight quantum computers possible. Every layer in the carbon nanotube is one state of qubit. So the four-layer carbon nanotube can act as a qubit where is one layer for zero, and three layers are for states 1,2, and 3. In the image is a layer nanotube, that could have qubit states 0,1 and 2. 

Maybe those lightweight systems are not as powerful as some superquantum computers. But they are more powerful than modern binary PCs.  And nobody expects that laptops can make the same things as supercomputers. 

The AI-based kernel can improve the system's power in every computer type. The binary computer can use different wires for transmitting one and zero. In that model, electricity that travels in wire one gives value one. And the electricity that travels in the wire two gives a value of zero. That thing makes the binary computer faster than ever before. And AI-based kernels can make this kind of system possible. 

By using fullerene nanotubes is possible to transmit information. In the form of qubits. In that model, each layer in a multi-layer nanotube is a certain state of the qubit. The quantum system can transfer data to those multi-layer carbon nanotubes. And that makes some kind of lightweight quantum computer possible. 

If there are four layers in the nanotube, that thing means that there is one zero layer and three states in qubits. This kind of system might not seem very impressive. But we can say that this kind of system's calculation power is enough for many simulations. 

The fact is that. The Internet allows to use of high-power quantum computers over the net by using laptops or even mobile telephones. That means the high-power quantum computers can be far away from their users. 

So lightweight quantum computers are not as powerful as super-powerful quantum computers that are in data centers. We can say that we don't even think that some laptops or home PCs have the same calculation power as some supercomputers have. However, the internet allows the users of the laptops can use the abilities of supercomputers. 


https://neurosciencenews.com/perception-brain-computer-23919/

https://www.sciencealert.com/liquid-computer-made-from-dna-comprises-billions-of-circuits

https://scitechdaily.com/biological-masterpiece-evolution-wired-human-brains-to-act-like-supercomputers/

Thursday, January 31, 2019

Why fingerprints are risking the data security?


Kimmo Huosionmaa

Access to rooms could get by using fingerprints. The idea is to clean the keys and keyboards before the person comes in, and then the intruder would use those buttons for getting access in the room. The thing, what those persons need is acetone and UV-light, what uncovers the fingerprints from the keys. 

Also, the computer program, what calculates the sort of the letters, what can be inputting the system by used keys is necessary. And this is why the hacker must remember to put the special marks in the program, what would calculate the order of the given marks.  The mathematical term for the number of sorts is the permutation.

Writing of that kind of program, where the mathematical formula calculates the order of the letters, what are inputting there is not very difficult. Then the program must first input the possibilities to the database, and then simultaneously test every possible order of the marks, what can give by the certain keys of the keyboard.

There are only limits of the numbers and marks, what are used for the access, and if the pin-code is short, the person can use a permutation to calculate the combination, and the permutation of four numbers is not very big. If the hackers have the computer program, what will calculate the of the numbers or letters, would the access to the targeted computer granted in seconds.

The permutation is the number of possibilities, how the line can be sequenced, and then the intruder can test every possibility of the sequence. But the special marks of the number keys are making the break in more difficult. By the way, its possible to program the keyboard emulation program, what can test automatically every possibility of the mark lines, and if the laptop is equipped with this software and install to the targeted computer, would it open quite fast.

Normally the passwords to the system are hard to calculate, but if the hacker would have the length of the password and the keys, what the person has been pressed, would the computer program allow guessing the password quite fast. The thing that the hacker would get the pin code or password happens quite easily if that intruder would allow to input those keys inside the calculation program, what calculates every way, how those letters or numbers can be sort.

The length of the password is very easy to guess, by reading the instructions, and if the two same marks or numbers are not allowed to get twice, the number of the keys, what person has been used uncovers the length of the password, and the pressed buttons can be uncovered by using acetone for cleaning them. And if the last thing, what person does after this is giving the password, those marks what is used is very easy to give the hacking program, what emulates the keyboard, but does the breaking in the system more faster than using the keyboards manually.

But this requires access to the same room with the targeted computer. In fact, the hotels are a good place for this kind of operation,  and when the target person goes for breakfast, would this person leave the laptop in the hotel room, and then the hacker can slip in and break the system. And this is the thing, what would not even be noticed. And the data, what hackers would steal from those computers, can give access to many computers and systems if the man stores the passwords in the computer by using the text documents, and the experienced hacker would find those documents in seconds. This is why the computers should ever leave unattended in some hotel rooms or cloakrooms.

Monday, January 28, 2019

The Internet allows creating the extremely big network based supercomputers.


Kimmo Huosionmaa

I might publish similar texts in somewhere else, but if you want to read this, you are welcome. In modern computing, the most important thing is the innovation and one way is to get that innovation from nature. One thing that can make the revolution for computing would be the interface, what could connect millions of normal personal computers in one big computer, and then by one click to separate those systems back to separated and independently operating computers.

This allows to use normal computers like the one single computer and create huge network-base supercomputer if the millions of computers would connect together. The idea is same with modular supercomputers, what are sometimes introduced in the media, but the scale of this system will be larger and the connections will be made farther than in the regular modular supercomputer, but in this case, the size of the system is not limited in one hall. In theory, every single computer on the Internet can be connected together, and the thing that denies that thing is the politics and the Russians would ever let their computers connected to the same network with United States computers.

This system would act like some sea monster, what can connect and release the parts of it in one big and then scrab the formation to it particles in the seconds. That thing could transform any group of computers, what is in the same network in one big system, what can be used in the advanced calculations, what is necessary for engineering. And this thing can operate in schools during holidays and night times when the computers are free to use.

When the operator would press the button of the user interface, the system would connect those computers together, and the idea is, that the system would store IP-addresses of every single computer to the database, and then their normal IP-addresses can be returned to those workstations in seconds. That means that the persons, who normally use those machines would not even notice, that the system would be in the different use.

Tuesday, November 6, 2018

Inventing the electronic computer was not an easy process

https://metsantarinoita.blogspot.com/

Kimmo Huosionmaa

When we are thinking about one of the most important tools of science, the electronic computer, we must realize that inventing that machine was not easy. The first electronic computers or ENIAC-units were created for making nuclear weapons and code-breaking duties for Los Alamos National Laboratories. But before the computer was ready to operate, the creators of that tool must create the command language and the way to input those commands in for the electronic calculating unit.

Electronic computers are the ultimate tool for calculating long series of calculations, and that's why it can make very sharp calculations for parabolic forms. The ability to calculate long series makes computers a very effective tool for code-breakers. Also, computers can comp databases with extreme speed, and that makes it a very effective tool for controlling the passengers and access to places like movie theaters.

And from the ENIAC is a long journey to modern computers, and there were two things, what revolutionized this thing. The keyboard, what makes those systems or their input panel seems like the copywriter, allowed that the computer can be used by a single user. And the second one was TV, what allowed to use computers without paper.

Those things are the most interesting parts of computers, and the last thing, what opened the world of computing for every person in the world was the mouse. The tracking tool, what allowed to draw with the computer and later the graphical interface has also based the use of the mouse. When we are thinking about computers and the men, who are working with them, there are many times some problems to realize that those persons are extreme professionals. And the computing is not very dramatic science, there is nothing happening outside the screen of the computer. But when computer control robots, it can be extremely dangerous for every organism in this planet.

Could some asteroid like Oamuamua be the Alien probe?

Picture I


Kimmo Huosionmaa

Harvard researchers have introduced interesting theory: Could Oamuamua asteroid, what comes outside of our solar system be some probe, what is made by humanoids? Remember that this is an only theory, and this text is an only hypothetical essay about this theory. So here is the question. Could the asteroid, what comes from another solar system alien SETI-probe, what mission is looking for other intelligent civilizations? This is a very interesting question because if the aliens would send the probe from another solar system, they might cover it by using ice. Ice is a very good material for protecting the core of the probe, because that covers the artificial layer, and makes the probe invisible.

And ice is easier to fix than some carbon fiber or other material. Scientists made scannings for that asteroid, and the result was silence, but that might mean nothing. If that asteroid would be the recon platform, it might use passive sensors for collecting the information from our solar system. This means that hypothetical aliens would want real information about the targeted solar system, and they would not want to disturb the civilizations, what lives in those planets.

If the system is passive, it would record the radio signals and other things, and when it would be far enough, this hypothetical spacecraft would send the records to its base by using MASER or LASER technology, what makes impossible to see the message from another side, and for noticing that message the observer must be the route of the transmission. The transmission would begin when the probe would get "wake up" signal from the base.

When we are thinking about engines or reactors, what the system might have, we must understand, that in the very cold space, the probe and its computers might be in the superconducting temperature. That means that the recording systems would not need very much extra energy, because there is no resistance in the wires. And when the probe is far enough, it would start its reactors and engines.

The motors could be WARP-engines or gauss-tracks, what is installed in the outer core of the spacecraft, and that system pulls the ions above the outer layer in the spacecraft, and that means that the ice would not need to remove. That kind of magnetic engines would not leave tracks to space or the spacecraft would also make itself the black hole and use singularity and wormholes to travel. And that technology would base, that the spacecraft just loaded with the very high power electricity, what increases the mass, and transfers the craft as the black hole. This kind of things might the hypothetical aliens have.

Sources:

https://phys.org/news/2018-11-oumuamua-extraterrestrial-solar.html

https://www.space.com/42352-oumuamua-interstellar-object-alien-light-sail.html

Picture I

https://3c1703fe8d.site.internapcdn.net/newman/gfx/news/2018/couldoumuamu.jpg

Friday, October 19, 2018

The artificial amoeba


Picture I


Kimmo Huosionmaa

I have written about this thing before, but there is something, what came in my mind about the flexible robot, what is called as "an artificial amoeba. How amoeba moves on the ground, and what we will do about that information? This is one of the most interesting things, what we can think if we will build an artificial amoeba. An artificial amoeba means the robot, what can change its form and slip in the structures by using small holes, and this kind of robots would be most valuable for intelligence and assassination missions. In the last one, this thing would slip in the human body and dam the aorta or the veins, what take fresh blood to the brains, what will cause the massive stroke.

A robot, what is mentioned as artificial amoeba would be actually the silicon or plastic bag, where is installed small iron bites. The outer layer of this robot would be solid, and the structure would be filled with water-type silicon, what protects the computers and other systems, what are made for controlling this system.

The electricity for this thing would be creating with small power cells, what can use alcohol or some other hydrocarbon for creating electric power, what this system needs for creating the electricity for the electronics and other systems. This thing would use small size CCD-cameras for creating the image of the surrounding space, and they can also use microphones for recording the voice.

But how this robot can change the shape and act like the natural amoeba? The idea of the iron bites, what is installed on the solid core is that they can help to change the form of this robot bag, and this thing would happen by pulling them with magnets, what are connected with the microchip, what is inside this bag, and this microchip can be made by using flexible material. The movement of this thing is quite easy. Inside the bag would be magnetic rolls, what would spin the outer layer like the track, and this would make possible to make artificial amoeba, what would move on the ground and water.

Picture I

https://www.carleton.edu/curricular/MEDA/classes/media110/Zimmermann/t2/floor.gif

Tuesday, September 11, 2018

The motorway and its role in the Internet designing



Picture I

https://avoimenkoodinmaailma.blogspot.com/

Kimmo Huosionmaa

The motorway has been inspired the creators of the Internet. The International network is called the information superhighway, and the similarity with road and physical traffic is similar. The cars act like data packages and there are a crossroads and another kind of things in the physical world, what are in the different for on the Internet.  The international network is similar but different looking concept than the motorway, but the working principles are the same. When we are sending the data packages to the net, we would probably not know, that some packages have right of way right.


And they are allowed to go first in the net, and in those cases, the router would collect other packages in the memory, and store them until the right of way packages have passed that router. After that, they are allowed to continue their trip on the Internet. The Internet is more flexible than the motorway because it can fix its symmetry, and that would make possible to see the movies by using the net. The system would reserve more space in the cable in the side of incoming data traffic, and the sending side would not need to be so wide. In fact, one bit would be enough for uploading side during the movie.


If the person wants to use some other service during the movie, would the system release more width for that use. If somebody wants to upload photos or movies, would the bandwidth released more in that purpose, on the side of sending data. The idea is, that the system would tell the router before, that there would be coming more data than usual, and the router would adjust the width of the transmission. Also, the system tells the router, what homepage is on the top, and if the film is not interesting, can the system decrease the bandwidth, what is reserved for that movie.


If the motorways would be so flexible as the Internet is, the number of the lanes would be changed by need, and the traffic surveillance systems would tell the road information screens how many lanes can be used in another way traffic. The idea of this system bases the idea, that in many rush-hours the other side of the motorway is actually empty, and there could be taken extra lanes for traffic, but there is only one problem. The center barriers deny that thing. But if the markings would be clear, and the screens would tell the people, that the outer lanes are reserved for the people, who are going outside of the city area, could this system even work, and this would give the idea for flexible highways, and in somewhere they can already exist.

Picture I

https://www.highwaysindustry.com/wp-content/uploads/2017/04/Smart-Motorways-Safety.jpg

Sunday, August 5, 2018

Terminators and Skynet are here



Picture I
https://marxjatalous.blogspot.com/

Kimmo Huosionmaa

Terminators and Skynet are not the fantasy anymore. Modern military technology allows making so horrifying weapons, that they would not believe as true. One of the most modern military systems is intelligent mines. what choose their targets. In those mines is the smart component, what is communicating with other systems, and in the real life that means, that own tanks and military personnel can drive or walk over those mines, and the smart component would read the RFID-sensors from their boots or vehicles. This means that own operators would not explode the mines, and that makes them very dangerous.


But when the enemy comes the piezo-electric components feel the pressure but they would not see the recognition sensor, and that allows to explore the mine. Same time the small computer, what is in the mines would send the information of the detonation to the command center, what will send drone or reconnaissance aircraft to check the situation. But when we are talking about the terminators and other military automation, we must realize that also the new human-shaped robots can be used in the combat area from the very long distance.


The satellite control allows that the command team can control the action of those robots from another side from the Earth. That high-class automation is allowing that those robots can operate very independently, and they can be supported by aircraft, what is modified to flying computer centers. Those next-generation command aircraft would be manned, but they can also be used by using remote-desktops and another kind of things, what the modern technology allows to use.


These systems can communicate with robots by using radios or Lasers, what is more, difficult to jam than radio waves.  The man-shaped robots can use the same systems as humans. So they can work on the same missions with humans. In this case, the man-shaped robots can fly aircraft, drive vehicles or operate as the infantryman. And if the aircraft would shoot down the robot can be re-program to operate as the infantry soldier, what would cause terrible situations in the back of enemy lines.


They can also break into the enemy command center and open the fire. This is what makes those units so dangerous. They cannot tell, who have given those orders because their memories could be cleaned. And of course, they can have internal bombs, what detonates them after the mission. This is the modern military technology, what is very effective against any enemy in the world. But this technology can also be misused in some dirty missions, but there is one very big difference between robots and humans. Robots can be destroyed by using computer viruses, and also electromagnetic weapons like ADS (Active Denial System)  would be very effective against computers and communication systems, what plays the vital role in the robot-operations.

Picture I

https://cdn.radiofrance.fr/s3/cruiser-production/2018/01/bf8fdfb6-dbae-4800-b383-5edddb6c9b63/738_010_a7a17150_485.jpg

Wednesday, July 18, 2018

Where would you put the artificial intelligence, what can threaten all the World, if that would be released?

Illustrial photo (RTG of ALSEP)
http://large.stanford.edu/courses/2012/ph241/kumar1/images/f2big.jpg
https://kirjabloggaus.blogspot.com/

Kimmo Huosionmaa

The supercomputers of tomorrow might be not bigger than the RTG of ALSEP, what is for the illustration purpose on the top of the test. People are afraid of the artificial intelligence, and that very understandable. We are all afraid of new things. And the artificial intelligence, that would be more intelligent than human is the very frightening thing.  But if this machine can create new things it would be the threat for many people, who have thought that nothing can threaten their position.


That is a very good question because many people would not even believe, that what kind of artificial intelligence could be the threat for the human race. The computer, what is imitating the human brains is very easy to produce in theory. There would be needed two microchips. Another is working as the Neuron, and another one plays the mirror neuron. That system could possible the spontaneous thinking process.


But there will be another one way to make the computer, what can think creatively.  Here we are thinking about the bio-processors. The supercomputers, what uses the living neurons for making the thoughts. The neuro-computers, what those bio-computers can be might be extremely small size, and the computer itself is actually the superconducting magnet, that would be installed around the cylinder, what is filled with the neurons.


That kind of computer can also give information on those cells by using magnet fields. The systems bases in the method, that the neurons, what take from bugs can be observed by using MEG ( Magnetoencephalography). That technology would allow communicating with those neurons by using magnet fields. And those cells must be feed by giving them sugars. If we would make that kind of computer, that system could be extremely dangerous. The most effective computer, that people can imagine, is the bio- or neurocomputer, that is connected to the quantum computer. That would give it the superior way to calculate and think without limits.


If it would connect to the Internet, the results could be devastating, if that system hacks some missile computers. The system, that is used could contain two tanks, where the neurons are. One tank is for the neuron, and another tank is for mirror neuron. That kind of machine would be used in the extreme long logic thinking. But the reason for that is very dangerous, the system must locate to the moon or somewhere where it could be controlled in a safe position. The results if that kind of computer would be making something unpredictable would be very dramatic. That is the reason, why the access to that kind of system must be limited. And if the computer would go unstable, that would cause the reason for eliminating that machine.

New attack uses vulnerability in microchips.

“Modern processors are fast, in part, because they guess. Rather than waiting to find out which way a program will branch, a chip predicts t...