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Hava Durumu Tahmini
THE MOST ESSENTIAL SENSOR SET FOR YOUR OWN FIELDS
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Hava Durumu Tahmini
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Hastalık Modelleri
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Otomatik Sulama

Workforce Planning
By the use of crop evapotranspiration better plan the irrigation, save water, money and time.
Helps prevent animal health problems that occur in houses with nonstandard climatic conditions.
Plant disease model calculation to improve plant protection and prevent crop losses.
Work planning on farms – it saves time and makes farming even more efficient.
Every farmer knows how much rainfall, temperature and relative humidity can vary from field to field. For measuring this data, Pessl Instruments is introducing LoRAIN. Make use of modern communication infrastructures for work planning and disease management decision on your fields. LoRaWAN® communication enables cost effective and timely monitoring of rainfall, actual temperature and relative humidity on your fields. With this data we can offer spray weather, work force planning, models for disease risks and infection dates for many crops, data can be used to produce a highly reliable localised weather forecast with MOS technology and virtual sensors for wind speed and global radiation are added to complete the information needed for intelligent and pro-active farming.

LoRAIN IS DESIGNED TO BE EASILY CONNECTED TO AN EXISTING LoRaWAN® NETWORK. FOR REMOTE SITUATIONS WITHOUT THE AVAILABILITY OF A COMMERCIALLY OPERATED LoRaWAN® NETWORK PESSL INSTRUMENTS PARTNERS WILL SUPPORT YOU WITH A FARM BASED LoRaWAN® NETWORK WHICH ENABLES YOU TO INSTALL ALL AVAILABLE LoRa® SENSORS – FROM PESSL INSTRUMENTS OR OTHER VENDORS.

WORK PLANNING TOOLS BASED ON WEATHER FORECAST
The spray window helps identify suitable periods for the application of crop protection measures by showing suitable (green), less suitable (yellow) and unsuitable (red) periods for application. The conditions are calculated from wind, precipitation, air temperature, relative humidity and delta T.

This simple risk model is used to evaluate, if C. beticola could be expected at all. If the incubation period could be fulfilled within the last 2 weeks, a value of 1 of incubation is shown, if not, the value is 0. Besides this model also a model for sporulation is shown. For sporulation, optimal conditions of 48 hours of high relative humidity with an average temperature of 30°C are used. For the interpretation of data: The risk is 0 if the incubation period has been longer than 2 weeks. If this is not the case, the model output will be 1. If there is a sporulation model result of higher than 10% calculated within the last week, the risk will be shown to be 2 and if the sporulation result is higher than 30% the risk output will be 3.

| Intelligent power supply | State of the art super capacitor charged with the solar panel The very low power requirements of LoRaWAN® communication enables a battery-free power concept for LoRAIN. Avoid the hassle with forgetting to switch off the device or damaging the batteries due to deep discharge during storage. Bring it to the sun and it will start working. Bring it to the shade and after 6 days it will slowly stop for the time being in shade. |
| What is LoRa®? | It is a spread spectrum modulation technique derived from chirp spread spectrum (CSS) technology and is the first low-cost implementation of chirp spread spectrum for commercial usage. |
| Connectivity range | 8 km line of sight between the LoRAIN device and LoRa® Gateway |
| Sensors | Rain Gauge: Sensitivity: 1 tip per 0.2 mm Air Temperature:Operating temperature range: -40 °C to +125 °C Thermometer error -10 °C to +85 °C: +/- 0.3 °C Relative humidity:Precision 0 – 80 %: +/- 2 %Precision 80 – 100 %: |