CHARGER OF VENUS

High-Level Project Summary

Purpose: With wireless charging, it will be able to send electromagnetic waves to Venus and charge it by transmitting wireless electricity with the satellite such as the vehicle's tesla coil, so that the exploration vehicle in the venus will be wireless and long-term charging with the help of the satellite, and every vehicle sent to Venus will be resistant to long-term charging thanks to the system in the satellite

Detailed Project Description

CHARGER OF VENUS


Task: To be able to make a battery that canwithstand the conditions of Venus for at least 60 days



Purpose: With wireless charging, it will be able to send electromagnetic waves to Venus and charge it by transmitting wireless electricity with the satellite such as the vehicle's tesla coil, so that the exploration vehicle in the venus will be wireless and long-term charging with the help of the satellite, and every vehicle sent to Venus will be resistant to long-term charging thanks to the system in the satellite


 PROPERTIES


1-In order to prevent the system from deteriorating in its own magnetic field, there will be a faraday cage in the main center of the satellite so that it will not be affected by the magnetic field.


2- Since every part of the system, including the vehicle, works with this system, it is aimed to use the batteries more in the long term.


3- The vehicle on the surface of Venus will receive this electromagnetic field with the receiver and convert it into electricity

 

 4- The satellite electricity circulating in the atmosphere of Venus will receive with the solar panels located around it


5- The vehicle will move through pallets so that it moves more easily on the ground of Venus and does not have problems in scattered terrains and does not waste energy


6- Despite the heat of the venus, the parts will be cooled regularly with an internal cooling system


7- The motherboard inside the vehicle will be protected by the faraday cage so that it does not deteriorate while entering the magnetic field and charging. 


 8- The properties of quantum batteries will be used for fast transfer and quick charging


9- Since the dense sulfuric acid gas in the atmosphere of Venus conducts electricity, the satellite charger we use will conduct electricity faster


10- When the distance of electrical transmission increases by 2 times, the magnetic force decreases by 6 times, but this may not be the case in Venus.




11- With the x-ray used at the vehicle's observation point, the positioning system of the GPS can be found more easily (x-rays can show behind dense dust clouds)


12- Since Venus does not have a magnetic field, the working mechanism of the device we use is much more comfortable and can more easily find the position of the vehicle on the surface.


Space Agency Data

https://tua.gov.tr/tr = general information about venus


https://solarsystem.nasa.gov/planets/venus/overview/ = structure of venus


https://www.nasa.gov/venus = geographical structure of venus


https://www.nasa.gov/smallsat-institute/space-mission-design-tools = satellite designs

Hackathon Journey

The most challenging thing for us in this project was that we came up with the idea. It was the right decision for us to use a few different ideas, rather than an existing one. Where our imagination brought us inspired. Our biggest setback was the time limit, but with my team, we worked hard and managed to overcome this time issue. We learned general information about Venus, its temperature, the structure of wireless charging, and the structure of quantum batteries, which will perhaps be one of the greatest technologies of the future. Above all, I would like to thank my team members who were with me, helped me and gave their valuable time for this project.

References

https://www.aa.com.tr/tr/bilim-teknoloji/nasa-mars-kesif-araci-perseverancein-firlatilisini-erteledi/1874569


https://tr.pinterest.com/pin/591167888584509877/


https://tua.gov.tr/tr


https://solarsystem.nasa.gov/planets/venus/overview/


https://www.nasa.gov/venus


https://www.nasa.gov/smallsat-institute/space-mission-design-tools


https://tr.wikipedia.org/wiki/Elektromanyetizma


https://tr.wikipedia.org/wiki/Elektromanyetik_alan


python v.3.10.7

python v.3.8.8

Tags

#equipment #space