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<br>
Serres connectées @ Jardin du coteau
 
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<div style="text-align: center">
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<b>Connected Greenhouses</b><br><br>
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<b>a project in partnership with</b><br>
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<b>Polytech-Grenoble – Les Jardins du Coteau – STMicroelectronics</b><br><br>
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</div>
   
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<br>
=Présentation=
 
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{|style="margin: 0 auto;"
==Projet==
 
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| [[Image:LogoPG.png|x75px]]
Expliquer le but et les missions du projet
 
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| <span style="color:white;">esp</span>
==Encadrants==
 
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| [[Image:Jardin du coteau.jpg|x100px]]
* Nicolas PALIX
 
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| <span style="color:white;">esp</span>
* Benoit MARCHANT
 
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| [[Image:STMicroelectronics.png|x125px]]
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|}
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=Presentation=
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[[File:Vue serres exterieur.jpg|250px|thumb|Greenhouse viewed from outside]]
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[[File:Vue serre interieur.jpg|250px|thumb|Greenhouse viewed from inside]]
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[[File:Vue interieur bis.jpg|250px|thumb|Greenhouse viewed from inside]]
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This project is part of the [[ASAC]] project.
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  +
==Project==
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  +
The Connected Greenhouses project is linked to sustainable development and its finale wish is to enhance the productivity of an organic farm. The Jardins du Coteau farm need the setting up of a sensor network in order to collect data from its greenhouses. This farm is situated in Saint-Cassien, a neighbouring town of Grenoble, near Voiron. This farm being organic, the market gardening is not as easy as an industrial and high-yield farming. Without using synthesized chemicals, the condition to grow plants are even more important. Also, the water flow is favoured by the ground of the farm and so, needs a permanent monitoring. As well, crops need some condition of temperature and moisture to grow and that's why those parameters are important and needed.
  +
  +
At the moment, even during winter or late in the evening, they have to go to the greenhouses in order to "sense" these physical quantities. They want a network of sensors in order to know the state of each greenhouse easily. It will surely enhance their productivity and of course, facilitate the job of farmers. They don't want to lose time any more on useless things.
  +
  +
Our mission consist in equipping the greenhouses of the farm with temperature and moisture sensor. In order to simplify and centralize the reading of these data, a delivery to the house of the owner will be set up. Indeed, several boards will be placed at several places in the greenhouses and a central gateway will collect them.
  +
  +
Of course, some obligations that will be explained later, are brought by the project.
  +
  +
==Supervisors==
  +
* Nicolas PALIX, Polytech
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* Benoit MARCHAND, ST Microelectronics (2017-2019)
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* Bruno STRUDEL, ST Microelectronics (2020-...)
 
* Vincent HIBON
 
* Vincent HIBON
   
==L'équipe==
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==The teams==
   
{|class="wikitable"
 
!scope="col"| Nom
 
!scope="col"| Filière
 
|-
 
!scope="row"| Charles BLANCHARD
 
| IESE-3
 
|-
 
!scope="row"| Théo GUIGUITANT
 
| IESE-3
 
|-
 
!scope="row"| Justin RUAUX
 
| IESE-3
 
|-
 
!scope="row"| Nicolas KIEGER
 
| IESE-4
 
|-
 
!scope="row"| Corentin DEREY
 
| IESE-4
 
|-
 
!scope="row"| Damien MASSARDIER
 
| MAT-3
 
|-
 
!scope="row"| Justine DOBIES
 
| MAT-4
 
|-
 
!scope="row"| Sami GUEHIS
 
| MAT-4
 
|-
 
|}
 
   
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* [[ASAC/SJC/SJC-2017]]
Le chef de projet est Nicolas KIEGER.
 
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* [[ASAC/SJC/SJC-2018]]
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* [[ASAC/SJC/SJC-2019]]
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* [[ASAC/SJC/SJC-2020-CO]] [[ASAC/SJC/SJC-2020-INFO]]
   
=Projet=
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=Project=
   
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==Specifications==
==Cahier des charges==
 
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Rédiger et joindre le fichier
 
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[https://air.imag.fr/images/5/53/Serres_connect%C3%A9es_Cahier_des_charges.pdf#filelinks Download link of the specifications (FR)]
==Moyens==
 
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===Explication===
 
  +
Blabla
 
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==Technical solutions ==
===Matériel===
 
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===Explanation===
*Carte stm
 
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*carte extension
 
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[[ASAC/Nomenclature_LoRa|LoRa nomenclature on the farm]]
*Module lora
 
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*Capteur température
 
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===Material===
=Gestion de projet=
 
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  +
{|style="margin: 0 auto;"
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| [[File:Carte_STM32_Nucleo_LR073RZ.jpg|thumb|x150px| STM32 Nucleo board LR073RZ]]
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| [[File:Module_LoRa_I-NUCLEO-SX1272D.jpg|thumb|x150px| LoRa Plug-in I-NUCLEO-SX1272D]]
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| [[File:Carte_d'extension_X-NUCLEO-IKS01A1.jpg‎|thumb|x150px| Extension bard X-NUCLEO-IKS01A1]]
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|}
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{|style="margin: 0 auto;"
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| [[File:Thermomètre_Humidimètre_SHT10.jpg|thumb|x150px| Thermometer / Moisture meter SHT10]]
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| [[File:LoRaPC_GW.jpeg|thumb|x150px| LoRa Picocell Gateway]]
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|}
   
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* [http://www.st.com/content/st_com/en/products/evaluation-tools/product-evaluation-tools/mcu-eval-tools/stm32-mcu-eval-tools/stm32-mcu-nucleo/nucleo-l073rz.html STM32 Nucleo board LR073RZ]
==Comptes-rendus==
 
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* [http://www.st.com/content/st_com/en/products/evaluation-tools/product-evaluation-tools/mcu-eval-tools/stm32-mcu-eval-tools/stm32-3rd-party-evaluation-tools/i-nucleo-sx1272d.html LoRa Plug-in I-NUCLEO-SX1272D]
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* [http://www.st.com/content/st_com/en/products/ecosystems/stm32-open-development-environment/stm32-nucleo-expansion-boards/stm32-ode-sense-hw/x-nucleo-iks01a1.html Extension bard X-NUCLEO-IKS01A1]
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* [https://www.adafruit.com/product/1298 Thermometer / Moisture meter SHT10]
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* [https://www.semtech.com/uploads/documents/picocell_gateway_user_guide.pdf LoRa Picocell Gateway]
   
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== Dashboard ==
*[[ASAC/SJC/CR/Compte-rendu de la séance 1 - 12/10/2017|Séance 1 - 12/10/2017]]
 
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[[Image:st-cassien.iot.imag.fr.png|thumb|https://st-cassien.iot.imag.fr/]]
*[[ASAC/SJC/CR/Compte-rendu de la séance 2 - 19/10/2017|Séance 2 - 19/10/2017]]
 
*[[ASAC/SJC/CR/Compte-rendu de la séance 3 - 26/10/2017|Séance 3 - 26/10/2017]]
 
*[[ASAC/SJC/CR/Compte-rendu de la séance 4 - 09/11/2017|Séance 4 - 09/11/2017]]
 
   
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[[Image:Grafana-jdc.png|x500px|Grafana]]
==Répartition des tâches et planning prévisionnel==
 
   
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=Links=
Blabla
 
   
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https://st-cassien.iot.imag.fr
=Liens=
 
   
==GitHub==
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== Git repository==
   
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https://gricad-gitlab.univ-grenoble-alpes.fr/ASAC/serres-jdc
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* https://gricad-gitlab.univ-grenoble-alpes.fr/Projet-RICM4/17-18/10
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* https://gricad-gitlab.univ-grenoble-alpes.fr/Projet-RICM4/17-18/11
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* https://gricad-gitlab.univ-grenoble-alpes.fr/Projet-RICM4/17-18/12
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* https://gricad-gitlab.univ-grenoble-alpes.fr/Projets-INFO4/18-19/5
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* https://gricad-gitlab.univ-grenoble-alpes.fr/Projets-INFO4/19-20/4
   
==Projets relatifs==
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==Relative projects==
 
* [[ASAC/GEJC|Gestion de l'eau @ Jardin du coteau]]
 
* [[ASAC/GEJC|Gestion de l'eau @ Jardin du coteau]]
 
* [[ASAC/AP|Aquaponie @ Polytech]]
 
* [[ASAC/AP|Aquaponie @ Polytech]]
   
==Projets antérieurs==
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==Previous projects==
   
Voir [[Projets_2016-2017|ici]] pour plus d'information.
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See [[Projets_2016-2017|here]] for more information.
   
 
{|class="wikitable alternance"
 
{|class="wikitable alternance"
!scope="col"| Projet
+
!scope="col"| Project
!scope="col"| Fiche de suivi
+
!scope="col"| Tracking sheet
!scope="col"| Dépot git
+
!scope="col"| GitHub repository
 
|-
 
|-
   
 
!scope="row"| [[Ruche connectée LoRa]]
 
!scope="row"| [[Ruche connectée LoRa]]
| [[RICM4_2016_2017_-_Ruche_Connectee| Fiche]]
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| [[RICM4_2016_2017_-_Ruche_Connectee| Sheet]]
 
| [https://github.com/GwenaelMoreau/connectedhive GitHub]
 
| [https://github.com/GwenaelMoreau/connectedhive GitHub]
 
|-
 
|-
Line 94: Line 117:
   
 
!scope="row"| [[Serres connectées]]
 
!scope="row"| [[Serres connectées]]
| [[Projets-2016-2017-Serres_connectées| Fiche]]
+
| [[Projets-2016-2017-Serres_connectées| Sheet]]
 
| [https://github.com/igreenhouse/endpoints/blob/master/README.md GitHub]
 
| [https://github.com/igreenhouse/endpoints/blob/master/README.md GitHub]
 
|-
 
|-
   
 
!scope="row"| [[I-Greenhouse]] : [[Serre connectée aquaponie]]
 
!scope="row"| [[I-Greenhouse]] : [[Serre connectée aquaponie]]
| [[Projets-2016-2017-I-Greenhouse : Serre connectée aquaponie | Fiche]]
+
| [[Projets-2016-2017-I-Greenhouse : Serre connectée aquaponie | Sheet]]
 
| [https://github.com/igreenhouse Full GitHub] - [https://github.com/stractus/I-Greenhouse-Aquaponie Project's GitHub]
 
| [https://github.com/igreenhouse Full GitHub] - [https://github.com/stractus/I-Greenhouse-Aquaponie Project's GitHub]
 
|-
 
|-
   
 
!scope="row"| [[Station de pompage connectée]]
 
!scope="row"| [[Station de pompage connectée]]
| [[Projets-2016-2017-Station de pompage connectée| Fiche]]
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| [[Projets-2016-2017-Station de pompage connectée| Sheet]]
 
| [https://github.com/GroupeProjetRICM4StationDePompage2017/ GitHub]
 
| [https://github.com/GroupeProjetRICM4StationDePompage2017/ GitHub]
 
|-
 
|-

Latest revision as of 17:48, 18 January 2021


Connected Greenhouses

a project in partnership with
Polytech-Grenoble – Les Jardins du Coteau – STMicroelectronics


LogoPG.png esp Jardin du coteau.jpg esp STMicroelectronics.png


Presentation

Greenhouse viewed from outside
Greenhouse viewed from inside
Greenhouse viewed from inside

This project is part of the ASAC project.

Project

The Connected Greenhouses project is linked to sustainable development and its finale wish is to enhance the productivity of an organic farm. The Jardins du Coteau farm need the setting up of a sensor network in order to collect data from its greenhouses. This farm is situated in Saint-Cassien, a neighbouring town of Grenoble, near Voiron. This farm being organic, the market gardening is not as easy as an industrial and high-yield farming. Without using synthesized chemicals, the condition to grow plants are even more important. Also, the water flow is favoured by the ground of the farm and so, needs a permanent monitoring. As well, crops need some condition of temperature and moisture to grow and that's why those parameters are important and needed.

At the moment, even during winter or late in the evening, they have to go to the greenhouses in order to "sense" these physical quantities. They want a network of sensors in order to know the state of each greenhouse easily. It will surely enhance their productivity and of course, facilitate the job of farmers. They don't want to lose time any more on useless things.

Our mission consist in equipping the greenhouses of the farm with temperature and moisture sensor. In order to simplify and centralize the reading of these data, a delivery to the house of the owner will be set up. Indeed, several boards will be placed at several places in the greenhouses and a central gateway will collect them.

Of course, some obligations that will be explained later, are brought by the project.

Supervisors

  • Nicolas PALIX, Polytech
  • Benoit MARCHAND, ST Microelectronics (2017-2019)
  • Bruno STRUDEL, ST Microelectronics (2020-...)
  • Vincent HIBON

The teams

Project

Specifications

Download link of the specifications (FR)


Technical solutions

Explanation

LoRa nomenclature on the farm

Material

STM32 Nucleo board LR073RZ
LoRa Plug-in I-NUCLEO-SX1272D
Extension bard X-NUCLEO-IKS01A1
Thermometer / Moisture meter SHT10
LoRa Picocell Gateway

Dashboard

Grafana

Links

https://st-cassien.iot.imag.fr

Git repository

https://gricad-gitlab.univ-grenoble-alpes.fr/ASAC/serres-jdc

Relative projects

Previous projects

See here for more information.

Project Tracking sheet GitHub repository
Ruche connectée LoRa Sheet GitHub
Serres connectées Sheet GitHub
I-Greenhouse : Serre connectée aquaponie Sheet Full GitHub - Project's GitHub
Station de pompage connectée Sheet GitHub