Military Technology

Chapter 2310 It’s better to be surrounded by soldiers than to die on the battlefield.

Is this reaction too sensitive, so that all the changes in the surroundings will be regarded as enemies, causing accidental damage? A representative from the unit sitting there immediately raised such a question to him.

Wu Hao smiled and shook his head when he heard this and explained: "First of all, I can give you a clear answer. There will not be any accidental injuries like what you said. The safety and reliability of weapons and equipment has always been what we pursue, and it is also our most important thing. Take it seriously. If a weapon and equipment cannot be safe and reliable, then what’s the point of being advanced?”

After hearing Wu Hao's words, many leaders present nodded their heads, agreeing very much with his point of view.

Wu Hao, on the other hand, chuckled and continued: "Then let's analyze the questions you raised. Will such a reaction be too sensitive? I think this issue needs to be analyzed.

Under normal circumstances, this reaction would certainly be too sensitive. But this is on the battlefield. Faced with extremely dangerous and life-and-death situations, one cannot be too vigilant. It can be said that any noise on the battlefield may have serious consequences. It is better to fight against all the grass and trees than to lose your life on the battlefield.

Therefore, we will carry out targeted testing and make timely responses.

In fact, in non-battlefield environments, such sounds or fires rarely occur. In addition, some normal operations or accidents such as sounds and lights that occur in non-battlefield environments are completely different from the fire and light produced by explosions and ammunition launches on the battlefield, and the sounds are also different. Take this rocket launch as an example. The sound and fire pattern it produces are completely different from ordinary sound and fire.

We store these characteristic data of fire and sound in the system. After discovering the fire and sound, the system will quickly match it with the characteristic data stored in the system. If it matches, it will quickly lock and then launch an attack. This is identification. Target. The whole process is very fast, and can basically respond within a few milliseconds or even fractions of a millisecond, buying more time for interception. "

As for whether there will be accidental injuries, please rest assured, basically it will not happen. The system will automatically identify the enemy's identity, such as the enemy's clothing and logo, face recognition, and the standard and painting of related weapons and equipment, etc.

Of course, you can also wear an identification friend or foe system to avoid casualties on the battlefield as much as possible.

Speaking of this, Wu Hao glanced at everyone, and then said with a smile: "However, the battlefield environment is complex and changeable, and misjudgments may occur under certain circumstances.

For example, our personnel wear the opponent's clothing to camouflage, our personnel seize the opponent's armored vehicles, etc. At this time, before the unmanned vehicle receives relevant information, it may determine that these are enemy troops and launch an attack.

It is actually very simple to avoid this problem, that is, try not to wear the enemy's clothing, and capture the enemy's armored vehicles, etc.

If there is a need for this, you can turn off the unmanned vehicle in advance, or switch to semi-automatic mode, so there will be no problems.

In addition, there is another way, which is to spray and hang relevant identification marks on these clothing and armored vehicles, or to carry an identification friend or foe system, so that the system will not make misjudgments.

Finally, it is more troublesome. You can also use image recognition technology to identify these camouflaged combatants wearing enemy uniforms and captured enemy armored vehicles through the background system. In this way, you will encounter these personnel and vehicles later. , there will be no misjudgment. "

After hearing Wu Hao's introduction, everyone present nodded in praise and started talking. Obviously, their response and handling methods are highly praised, but I really don't know how they will perform on the battlefield. Actual testing is needed.

Does your driverless car also have a semi-autonomous mode? Leader Meng asked Wu Hao, obviously grasping the key point of Wu Hao's previous words.

Wu Hao smiled and responded: "Yes, our medium-sized intelligent unmanned combat vehicle has a total of three combat modes, manual remote control mode, semi-automatic mode, and fully automatic autonomous combat mode.

As the name suggests, the manual mode is similar to the combat unmanned vehicles and robots currently on the market. It uses remote control equipment to conduct remote control operations on unmanned vehicles or combat robots.

This method is safe and reliable, allowing unmanned vehicles to perfectly fulfill the commander's strategic and tactical intentions. However, it also has some problems, that is, it must rely on a remote control, so it is easy to be interfered on the battlefield and lose contact.

In addition, there is the issue of delay and response. Manual wireless remote control will have a certain delay, not only in communication, but also in the response of personnel. Even well-trained combatants need time to react.

Therefore, in some fierce and dangerous battlefields, this manual remote control mode can easily be targeted.

As for the semi-automatic mode, it adds automatic search and automatic locking aiming functions on the basis of the manual mode. The intelligent combat system mounted on the unmanned vehicle will automatically detect and search the surrounding environment and track and identify suspicious targets.

It will not make decisions. All decisions will be made by remote control commanders at the rear, confirming the target and launching an attack.

Compared with the manual method, this method has very obvious advantages. It can scan and detect the surrounding environment in real time, thereby discovering the target more quickly and accurately, and locking and tracking it, so that it can assist the rear remote control commander to conduct monitoring of the surrounding environment of the vehicle. Gain more detailed knowledge so you can detect and deal with threats in a timely manner.

The disadvantages are the same as the previous manual method, that is, it is easy to be interfered, and there is also a certain delay problem, making it impossible to deal with battlefield crisis situations in a timely manner.

Like the last rocket, if you use the previous two methods to deal with it, I'm afraid it will be too late. "

After saying this, Wu Hao took a breath, and then continued to speak to everyone: "As for the fully automatic intelligent autonomous combat mode, as the name suggests, this medium-sized intelligent unmanned combat vehicle can achieve truly intelligent autonomous combat missions. Human intervention is required. From discovering the target to confirming the attack, the entire process is controlled by the vehicle-mounted intelligent combat system.

This method has many advantages. It can basically make up for many shortcomings of the previous two modes, such as anti-interference, rapid response, reducing the number of vocal combatants on the battlefield, etc.

As for the shortcomings, it really depends on the beholder. Maybe for a while, everyone doesn’t trust fully autonomous artificial intelligence. This takes time, everyone needs to slowly adapt, and it requires determination. "

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