Sistem Pangan Dengan IOT Dan Blockchain

CNN Indonesia
1 Mar 202204:02

Summary

TLDRThis script explores the future of farming through modern agricultural technologies like YME Agriculture systems, which control environmental factors such as light, humidity, and temperature to optimize plant growth. The IoT-enabled systems are already used in various countries, including Indonesia, to enhance crop yields and quality. By using tools like artificial light, foam, and water, these systems offer faster, more efficient farming that adapts to specific plant needs. The technology reduces manual intervention and allows for precise control over variables, aiming to revolutionize agriculture for better results and sustainability.

Takeaways

  • 😀 Modern farming involves using gadgets and technology to address agricultural limitations and challenges, such as climate change and global warming.
  • 😀 Conventional farming faces limitations like small land areas, dependency on sunlight, and geographical factors like weather, which can be overcome with modern agricultural systems.
  • 😀 YME Agriculture (C-E-G) is a futuristic farming method that uses controlled environments to optimize plant growth by adjusting light, water, CO2 levels, and more.
  • 😀 The system connects various agricultural tools to the Internet of Things (IoT) for real-time control and monitoring via applications, making farming more efficient and precise.
  • 😀 Data collected from plants is stored in Block C, acting as the 'brain' of the system to help optimize plant growth by analyzing optimal environmental conditions.
  • 😀 The system enables the adjustment of environmental factors, such as light and CO2, to ensure optimal plant health and growth.
  • 😀 By using this technology, farmers can grow crops with consistent quality, even in conditions previously thought unsuitable for certain plants.
  • 😀 The technology allows farmers to control plant factors like leaf thickness, stem height, and even taste, such as bitterness or sweetness, through environmental adjustments.
  • 😀 The agricultural system’s flexibility helps growers ensure better harvests and optimized crop growth, regardless of location, whether indoors or outdoors.
  • 😀 The agricultural system, though dependent on electricity and internet connectivity, can significantly reduce external agricultural variables like weather, thus ensuring more predictable and faster harvests.

Q & A

  • What is the main topic discussed in the transcript?

    -The main topic discussed is modern farming technology, specifically controlled environment agriculture (CEA) or YME Agriculture systems. These systems aim to overcome the limitations of traditional farming by using technology to optimize environmental conditions for plant growth.

  • What are some limitations of conventional farming highlighted in the transcript?

    -Conventional farming faces limitations such as limited land, dependency on sunlight, and geographic factors like weather, which can affect crop yields.

  • How does controlled environment agriculture (CEA) address the challenges of conventional farming?

    -CEA addresses these challenges by controlling the environment where plants grow. Factors like light, water, and carbon dioxide are adjusted using technology, allowing for more efficient and optimized plant growth regardless of external weather conditions.

  • What role does the Internet of Things (IoT) play in CEA systems?

    -In CEA systems, IoT connects various devices like sensors, lights, and water systems to the internet. This allows for remote monitoring and control of the growing environment, ensuring that plants receive the right conditions for optimal growth.

  • How does the CEA system collect and analyze data from the plants?

    -The system collects data from the plants and stores it in a central database known as Block C. This data is then analyzed to optimize plant growth conditions and improve future crop yields.

  • What specific environmental factors are controlled in a CEA system?

    -In a CEA system, factors such as light (provided by artificial lighting), water, carbon dioxide, and humidity are all controlled and adjusted based on the plant's needs.

  • Can CEA systems be used for all types of plants?

    -While CEA systems can be used for a wide variety of plants, the specific environmental conditions needed for each plant must be carefully controlled. For example, certain plants like strawberries may require adjustments to temperature, light intensity, and humidity.

  • What is the advantage of using CEA over traditional farming methods?

    -CEA offers the advantage of faster harvests and higher-quality crops, as it can provide optimal growing conditions year-round, free from the unpredictable effects of weather and external environmental factors.

  • What is the significance of 'agroeduwisata' in the context of the transcript?

    -Agroeduwisata refers to agricultural-based tourism that combines education with farming experiences. In the transcript, it highlights a location in Ragunan where plants are grown using CEA technology for educational and tourism purposes.

  • What is the main challenge of operating a CEA system?

    -The main challenge of operating a CEA system is its reliance on electricity and internet connectivity. These resources are essential for maintaining the controlled environment and ensuring smooth operation of the system.

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Related Tags
Modern FarmingSustainable AgricultureTech in FarmingClimate SolutionsIoT in AgricultureUrban FarmingIndoor FarmingSmart AgricultureAgro-TechnologyHydroponicsFarming Innovation