Skip to main content

The problem with creating the programs for artificial intelligence culminates in the self-driving cars

The problem with creating the programs for artificial intelligence culminates in the self-driving cars

Normally artificial intelligence is not dangerous, because it is a computer program and the reason why we are using computers is that they don't have own will. The thing what makes computer fascinating tool is that the system just serves people and solves the problem, and at the same time obeys the master.

And because the computer doesn't have own will, that system would ever give wrong answers or make mistakes. This is the normal way, how people think about computers and artificial intelligence. They believe that the answer to every problem is the computer, which never says "no" or give wrong answers.

The thing that computer would not have own will or ability to realize, what is right or wrong makes that tool the ultimate weapon. It also makes it the most dangerous weapon in the world. When we are saying, that computers would not make mistakes, and all mistakes, what the computer makes is made by the programmer, we should ask, is there something, what we would want to know?

When some robot can smashes to people, and the development of that system costs billions of dollars, would be easy to blame the user, if there would be an accident. And the thing what is remarkable is that if there would be only one case, when robot or car, what is driven by artificial intelligence kills people. 

What is so different in that place and person, that the controlling software of the automobile just makes the deadly error? When we are thinking that the same computer programs are used in many other vehicles and the deadly error happens only once, there is a possibility that there is something wrong in that particular car. But why only in this car was the computer program, what has an error?

The problem with the computer program is how to protect driver and passengers in the case of robbery? How a computer can be safe, and at the same time deny the cases like carjacking or robbery?

The problem with the car, what moves in the city area is that somebody can pull the door open, and force the driver out. This is not a problem in small towns. But sometimes there would be personnel, who are trying to stop vehicles and rob them. And in this kind of cases, artificial intelligence should have a protective mode for that kind of cases.

The problem with the protective mode is, that thing should protect the driver and passengers in the case of attack. But the thing is that if the program would operate the wrong way, it would risk many lives. And the assassins would turn that kind of program the ultimate weapon.

The thing is that by using the modified versions of those programs, the image recognition software would turn the car to an assassination tool. That means that a certain person can be targeted as hostile, and then the car just smashes that person. In this case, the face of the certain person would just installed to the database as the weapon, and then the protective mode turns the car as the weapon.

When the mission is done, the algorithm can remove the face from the database. And this thing would give those cars the terrifying shadow protocol, which makes them the ultimate weapons. 

As in the last paragraph has been written, one of the best and at the same times the most dangerous of those protective modes would be the infrared camera, what will notice the hidden weapons. And then the system would just smash that person, but as you know those things are a little bit more complicated than we ever thought.

That kind of protective mode would risk lives but on the other hand, the car should not stop, if there would be some kind of robber, who would try to stop the vehicle. But at the same time, the system should notice, that if there is some kind of accident, and people need help. Those things make the creation of the self-driving car difficult.

Comments

Popular posts from this blog

Plasmonic waves can make new waves in quantum technology.

"LSU researchers have made a significant discovery related to the fundamental properties and behavior of plasmonic waves, which can lead ot the development of more sensitive and robust quantum technologies. Credit: LSU" (ScitechDaily, Plasmonics Breakthrough Unleashes New Era of Quantum Technologies) Plasmonic waves in the quantum gas are the next-generation tools. The plasmonic wave is quite similar to radio waves. Or, rather say it, a combination of acoustic waves and electromagnetic waves. Quantum gas is an atom group. In those atom groups, temperature and pressure are extremely low.  The distance of atoms is long. And when an electromagnetic system can pump energy to those atoms. But the thing in quantum gas is that the atoms also make physical movements like soundwaves. It's possible. To create quantum gas using monoatomic ions like ionized noble gas. In those systems, positive (or negative) atoms push each other away.  When the box is filled with quantum gas and som

The breakthrough in solid-state qubits.

Hybrid integration of a designer nanodiamond with photonic circuits via ring resonators. Credit Steven Burrows/Sun Group (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) ****************************************** The next part is from ScitechDaily.com "JILA breakthrough in integrating artificial atoms with photonic circuits advances quantum computing efficiency and scalability". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "In quantum information science, many particles can act as “bits,” from individual atoms to photons. At JILA, researchers utilize these bits as “qubits,” storing and processing quantum 1s or 0s through a unique system". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "While many JILA Fellows focus on qubits found in nature, such as atoms and ions, JILA Associate Fellow and University of Colorado Boulder Assistant

Metamaterials can change their properties in an electric- or electro-optical field.

"Researchers have created a novel metamaterial that can dynamically tune its shape and properties in real-time, offering unprecedented adaptability for applications in robotics and smart materials. This development bridges the gap between current materials and the adaptability seen in nature, paving the way for the future of adaptive technologies. Credit: UNIST" (ScitechDaily, Metamaterial Magic: Scientists Develop New Material That Can Dynamically Tune Its Shape and Mechanical Properties in Real-Time) Metamaterials can change their properties in an electric- or electro-optical field.  An electro-optical activator can also be an IR state, which means. The metamorphosis in the material can thermally activate.  AI is the ultimate tool for metamaterial research. Metamaterials are nanotechnical- or quantum technical tools that can change their properties, like reflection or state from solid to liquid when the electric or optical effect hits that material. The metamaterial can cru