Я нашел самый быстрый способ поднять свой независимый и бесплатный VPN
Сразу оговорка, платить придётся только за хостинг.
1️⃣ Покупаем сервер где-то на просторах интернета. Конечно же сервер должен находиться за пределами страны. Например я закупился на https://eurohoster.org/ (не реклама). Проверяйте лимиты по трафику, в идеале - без ограничений.
2️⃣ Ставим docker
sudo apt install docker.io
Если удобней с DockerCompose то ставим и его
sudo apt install docker-compose
3️⃣ Ставим WG-EASY
Самый простой способ поднять сервис WireGuard c WebUI это проект wg-easy
Код и документация здесь
https://github.com/weejewel/wg-easy
Запускаем контейнер:
https://github.com/weejewel/wg-easy#2-run-wireguard-easy
Для тех кто с DockerCompose, забираем файл здесь:
https://gist.github.com/paulwinex/be87f79687b96786098ec8fa6a8e251c
В обоих случаях потребуется поменять две переменные:
WG_HOST - внешний статичный IP вашего сервера
PASSWORD - придумайте пароль для WEB UI
Остальные параметры указаны ниже на странице github https://github.com/weejewel/wg-easy#options
4️⃣ Ставим клиента
Все доступные клиенты здесь
https://www.wireguard.com/install/
Есть возможность добавить клиента в Network Manager для управления подключением через UI. Установка зависит от вашей системы, ищите мануалы в сети, их много.
https://github.com/max-moser/network-manager-wireguard
Скрипт установки для RasperryPi
https://gist.github.com/paulwinex/c2c4090f19dbe8bd1253c5744f3f06e1
ЗЫ. Конечно же это не "самый простой" и далеко не единственный способ. А просто тот, который использую я сам.
#offtop#linux
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Kanal: 👉https://www.youtube.com/@SEEYOUZBEKISTAN/videos
#QuyoshPechi#Interstellar
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🌎 Exploring the edge of the solar system, NASA’s Voyager 1 spacecraft became the first human-made object to enter interstellar space in 2012. It carries instruments to measure cosmic rays, magnetic fields, and particles beyond the Sun’s influence—data still transmitted from over 24 billion kilometers away. ✨
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🪐 Some of the most mysterious worlds in our galaxy are rogue planets like CFBDSIR J214947.2-040308.9, a giant planet drifting alone in interstellar space without a star to orbit. Detected about 130 light-years from Earth, this lonely world glows with leftover heat from its birth and is studied in infrared light, revealing that even without a sun, planets can wander the dark, silent stretches between stars. ✨
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🪐 The interstellar probe mission concept led by NASA aims to send a spacecraft beyond our solar system, much farther than Voyager 1, to distances over 1,000 astronomical units (AU) from the Sun. This ambitious plan would explore the uncharted space between stars and gather data about the outer regions of our solar system and the nearby interstellar environment, including the edge where the solar wind from our Sun blends into the thin gas found between stars. ✨
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🪐 In 1977, the Voyager 2 spacecraft was launched carrying a special message for any potential alien civilizations—a Golden Record encoded with music, greetings in 55 languages, and sounds from Earth. Voyager 2 is now over 20 billion kilometers from our planet, traveling beyond the edge of the solar system and continuing its silent journey through interstellar space. ✨
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🪐 In 1977, the Voyager 1 spacecraft left Earth carrying a "Golden Record"—a carefully crafted message with sounds and images from our planet, designed in the hope that someday it might be found by aliens in another star system. Now Voyager 1 is more than 24 billion kilometers away, continuing its silent journey through interstellar space, making it humanity’s most distant attempt to reach out to any extraterrestrial civilization. ✨
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🪐 NASA and ESA are collaborating on future missions to develop solar sail technology—a method that harnesses sunlight for propulsion—to power lightweight spacecraft toward nearby stars like Alpha Centauri. Unlike rockets, solar sails use the gentle push of photons (tiny particles of light) from the Sun to gradually accelerate, making it possible for small probes to reach interstellar space without carrying any fuel onboard. ✨
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🪐 The future of interstellar travel could be shaped by the use of atomic clocks and navigation systems like NASA's Deep Space Atomic Clock, tested aboard the Earth-orbiting DSAC mission. Ultra-precise atomic clocks allow spacecraft to autonomously navigate across billions of kilometers, setting the stage for robotic probes to travel to distant stars such as Alpha Centauri and safely communicate their position back to Earth. ✨
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🪐 The future of interstellar travel could be shaped by experiments like NASA's Heliospheric Imager, which studies the vast region where the Sun's solar wind meets interstellar space—the heliopause. By understanding this distant boundary zone, where Voyager 1 crossed over 120 astronomical units from the Sun, scientists are learning how future spacecraft might navigate safely beyond our solar system and toward other stars like Alpha Centauri. ✨
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