Agricultural Goes High Tech

Release time:2017-09-18
author:Ameya360
source:Alix Paultre
reading:1145

  For an endeavor often associated with simple tools, modern agriculture is a hive of engineering activity. Some of the development work targets mitigation strategies for environmental challenges; other research focuses on tech solutions for cultivation and harvesting. Advanced , software, and systems that can operate precisely and under harsh conditions in the field are critical for monitoring and managing the multiple aspects of growing productive plants.

  Germany, a country known for both its agriculture and its high tech, had an opportunity to showcase both at a recent open house at Geisenheim University, an agricultural institute situated in one of the best wine regions in Europe . Unsurprisingly, much of the research conducted at Geisenheim focuses on viticulture.

  The first thing that catches the eye of a visitor to the university’s vineyards (yes, the academics also make their own wine) is the collection of large, otherworldly-looking emitter rings popping up above some of the vines. The LOEWE research cluster FACE2FACE has deployed Free Air Carbon Dioxide Enrichment (FACE) systems in open-air test facilities at Geisenheim and at Justus Liebig University (Giessen, Germany) to coordinate research into the effects of rising atmospheric levels of CO2 on plant growth. The emitter towers spray a stream of the gas onto the vines to simulate the future environment. Global warming may be under debate, but rising CO2 levels are a fact, and the resultant impact on grapes grown for winemaking must be investigated. Geisenheim is conducting similar research on vegetables, but the setup in the vegetable field isn’t as tall .

  FACE systems regulate CO2 levels (and for the vegetables, air temperature as well) over defined areas, making it possible to simulate the conditions expected between now and 2050. Focusing on agricultural ecosystems pertaining to grassland, viticulture, and horticulture, the research aims to develop climate change adjustment strategies, including ways to mitigate the effects of global warming on crops.

  Of course, one must be able to measure what one has set up, and the FACE installations are no exception. In addition to the sensors that monitor CO2 levels and adjust the gas output, there are chlorophyll sensors that take constant readings of plant metabolism and growth, along with control and recording electronics to manage and monitor the project. The sensors check levels every several minutes, providing a near-real-time monitoring of growth and development. The systems must be robust to survive in the field.

  Sunlike spectrum Another agricultural research area, with applicability for everyone from hobbyists to vertical factory farmers, is grow lights. Spectrum-specific LED grow lights can save a lot of energy, but some believe that for certain plant species only wide-spectrum light allows the plant to develop properly.

  The university’s Institute for Urban Gardening and Plant Development is researching high-efficiency wide-spectrum lamps to determine whether the wider-range output is beneficial to plant growth. Able to operate at half the power of a standard incandescent, the plasma technology (provided by Plasma International) is used in test-rigged horticulture lamps to deliver efficient light with a sunlike spectrum. Expectations are that the additional light will shorten the required culture period while still producing plants that are healthier and of better quality than plants grown under conventional greenhouse lamps.

  The best part about an open house at a university that makes its own wine is taking a break after looking at all the tech. A wine booth at the event reminded the researchers why they are doing what they do: so that people can continue to enjoy wine — and food — for the foreseeable future.

("Note: The information presented in this article is gathered from the internet and is provided as a reference for educational purposes. It does not signify the endorsement or standpoint of our website. If you find any content that violates copyright or intellectual property rights, please inform us for prompt removal.")

Online messageinquiry

reading
  • Week of hot material
  • Material in short supply seckilling
model brand Quote
BD71847AMWV-E2 ROHM Semiconductor
RB751G-40T2R ROHM Semiconductor
MC33074DR2G onsemi
CDZVT2R20B ROHM Semiconductor
TL431ACLPR Texas Instruments
model brand To snap up
BP3621 ROHM Semiconductor
IPZ40N04S5L4R8ATMA1 Infineon Technologies
BU33JA2MNVX-CTL ROHM Semiconductor
ESR03EZPJ151 ROHM Semiconductor
STM32F429IGT6 STMicroelectronics
TPS63050YFFR Texas Instruments
Hot labels
ROHM
IC
Averlogic
Intel
Samsung
IoT
AI
Sensor
Chip
About us

Qr code of ameya360 official account

Identify TWO-DIMENSIONAL code, you can pay attention to

AMEYA360 weixin Service Account AMEYA360 weixin Service Account
AMEYA360 mall (www.ameya360.com) was launched in 2011. Now there are more than 3,500 high-quality suppliers, including 6 million product model data, and more than 1 million component stocks for purchase. Products cover MCU+ memory + power chip +IGBT+MOS tube + op amp + RF Bluetooth + sensor + resistor capacitance inductor + connector and other fields. main business of platform covers spot sales of electronic components, BOM distribution and product supporting materials, providing one-stop purchasing and sales services for our customers.

Please enter the verification code in the image below:

verification code