Design and implementation of K802 surface-to-surface missile based on arduino2560+ MPU9250+BMP280+ Beidou

Design and implementation of K802 surface-to-surface missile based on arduino2560+ MPU9250+BMP280+ Beidou

Design and implementation of micro-inertial navigation system surface-to-surface missile based on arduino2560+ MPU9250+BMP280+ Beidou

is it better to be feared or respected? Which is better to be feared or respected?

i say, is ist too much to ask for both? I say, can’t both be done at the same time?

with that in mind, I humbly present the crown jewel 

of Freedom Line's "Freedom" series top products

It's the first missile system It's the first fully powered non-ballistic missile system

to incorporate our proprietary repulse technology, including our own rapid counterattack technology

they say the best weapon is one you never have to fire

I respectfully disagree I respectfully express different opinions

I prefer the weapon you only have to fire once

that's how Dad did it That's how my does it

for your consideration the missile. Just for your reference...

 

1. Full-range power, non-ballistic missiles, micro-inertial guidance, GPS or Beidou corrections, GPS or Beidou will only be turned on for a few moments during the flight, and will be turned off immediately after obtaining the data to avoid being locked by the anti-missile system, especially when Beidou receives the signal. To return the signal, the radio cannot be silent, and it must be turned off after fetching data.

2. Three-stage guidance (lift, level flight, end dive)

3. Three-point change of orbit, afterburner at the end of the engine and the release of hot aluminum to penetrate the defense, it is unrealistic and impossible for civilian technology to penetrate the defense at several times the speed of sound.

4. The terminal adopts proportional guidance and image recognition guidance (abandoning laser guidance)

5. I wanted to achieve vertical launch, such as a missile pit on a warship. The flight orbit is very domineering when the vertical launch flattened orbit, but the first time the vertical launch flattened the orbit, the traditional steering gear is too difficult to achieve, and jet steering gear must be used. So choose to launch at an oblique angle of 60 degrees.

6. At first, my thinking was wrong. I wanted to use GPS/Beidou navigation for all three segments. This is theoretically feasible, but in actual combat, GPS/Beidou navigation signals may be interfered by electromagnetic weapons or push fake GPS/Beidou navigation signals or naturally The terrain affects the GPS/Beidou navigation and navigation module, so the last three segments are all classic inertial navigation. GPS or Beidou is only briefly turned on for a few times to take data for correction. After the end engine is afterburner, the GPS or Beidou module is completely stopped before attacking.

ENGINE:                                JET

OPERATIONAL :                  30-50KM

SPEED: 1st speed of sound

Self-developed guidance and flight control system data (including all compiled source code, including penetrating differential calculation, including additive coupling, geomagnetic coupling, gps correction, including steering gear control)

Self-developed terminal image recognition data (grab the target map to generate a texture map, compare the original image, identify obvious targets such as enemy airports and buildings, establish priority, automatically return high-value targets as attack targets, including all compiled and passed Original code)

 

Practice is the only criterion for testing truth

Yesterday someone asked on the forum how the acceleration and other data of the module were tested. He mentioned bringing high-speed trains. To be honest, I actually brought the control panel and laptop to the three-segment data of the test flight of a civil airliner. Speed The Airbus 320 passenger plane left the ground at about 170 km/h. The level flight is about 1000 km/h, which is lower than I thought. It’s the only way for non-governmental research. If you are in a military industry or research institution, Speak to the leader, bring the control panel and laptop, fly a military plane, and have all the data. If I were in a military industry company, perhaps I had realized these weapons ten years ago, and they won’t take shape now. There are also colleagues and exchange groups. Maybe I can bring new people at my age. Hahaha, a long story, I entered Private enterprise..... To be honest, I really like the military industry. If there is a second chance in my life, I will choose to devote myself to the military industry, fall in love with him, and fight for him.

Update October 17, 2019

I wanted to add the data transmission module as shown in the figure below. In actual combat, I was sitting in the control room and watching the big screen monitoring. However, there are still some problems in debugging the frequency hopping communication part of the data transmission module. Although you can consider turning on and off at a fixed point in time, you can’t install it temporarily after consideration, otherwise Easily locked by anti-missile systems.

After the frequency hopping communication module problem is solved, all the weapons I designed and developed will be connected to the Internet including (space-based kinetic energy weapons and various types of missiles), establish an informationized attack platform, and finally introduce artificial intelligence, that is, the headquarters is destroyed during actual combat. As long as the underground server cluster is still there, the entire system will launch a counterattack against the enemy automatically or according to the schedule and time nodes.

Note: 1. Due to laws and regulations, the engine and warhead information is not provided, please do not consult, please understand.

           2. Because the information is all public and has no hidden parts, I am not responsible for all the consequences caused by using my design and code or modifying and running by myself.

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Origin blog.csdn.net/fanxiaoduo1/article/details/108594225