Communication "Costumer Highlight" mentionnant Panoramax

Bonjour,

Notre fournisseur de récepteur GNSS a l’habitude de promouvoir ses produits au travers de témoignages de clients. Ils souhaitent mettre en avant mon travail à UniLaSalle pour leur prochain “Costumer Spotlight”, et notamment de nos premières contributions à Panoramax.

Long story short

L’antenne vient de base avec une casquette à pochette un peu ridicule qui nous fait beaucoup rire depuis des années. En temps normal, on fonctionne en mode perche. À quoi bon avoir une précision centimétrique si on ne sait pas où se trouve le dessus de notre tête par rapport au point à relever ?

J’ai trouvé la configuration casquette très pratique pour Panoramax et j’ai envoyé une photo au commercial local. Et nous voilà en featuring.

C’est l’occasion de parler de libre au milieu d’articles habituellement orientés ESRI. Je voulais vous partager la première version de l’article pour savoir si vous aimeriez y ajouter quelque chose ou apporter des corrections.

Remarque 1 : Je vais faire rectifier la partie qui parle de webmap. Aujourd’hui, j’ai simplement contribué à Panoramax et je n’ai créé aucune webmap.

Remarque 2 : Je vais reboucler avec mes collègues géologues pour leur demander plus de précisions sur leurs usages.

Customer Spotlight: Chloé Girka Brings Precision Positioning to Research, Teaching, and the Field

Just north of Paris in Beauvais, France, GIS Engineer Chloé Girka helps turn location data into practical solutions for teaching, research, and campus operations. At UniLaSalle Polytechnic Institute, her work in the Agriculture Department spans a wide range: helping researchers map soil samples and crop growth, supporting drone surveys, supporting campus infrastructure, and even building a campus web map to support accessibility initiatives.

To support these projects, Chloé manages a variety of geospatial hardware and software. Sometimes she uses technology to teach students, and other times she uses it for her own work on campus. For the accessibility web map, for instance, Chloé combined imagery from a 360° camera with high-accuracy positions from an Eos Arrow 100+® GNSS receiver and various software to create real-world street views of the UniLaSalle campus.

For Chloé, her passion for geospatial technology extends from the classroom, where she teaches students about the fundamentals of positioning, to the field, where she demonstrates how precise location data can support real-world applications across agriculture, environmental science, and beyond.

Why are you passionate about your job?

My job as a GIS engineer at the Agriculture Department of an engineering school is anything but boring. One day I am teaching about John Snow’s 1885 cholera outbreak map; the next I am flying a drone or making figures for a scientific paper. I enjoy empowering people by sharing my knowledge and using my skills to create what my coworkers have imagined.

How did you first find out about Eos Positioning Systems’ GNSS products?

When I started working at UniLaSalle, one of my missions was to renew our aging GNSS equipment. I compared the products I could find online. Eos Positioning System stood out, in part thanks to the thorough specification description. We decided to acquire two Arrow 100+ GNSS receivers.

What do you use Eos GNSS receivers for?

We have a variety of people who use the receivers, for a variety of use cases.

The biggest users of GNSS receivers historically are colleagues from the Geology Department. I believe they use them for estimating volumes, essentially. We also use them to collect ground control points (GCPs) when flying drones that are not themselves RTK-enabled.

In the field of agriculture, we have used the Arrow 100+ receivers for soil science, both for recording the location of punctual samples and recording a track while collecting data with a tractor or a quad. This data can then be used for interpolation. A PhD student has also used them to record the location of individual maize plants as they emerged.

We also use the receivers directly on campus, for a more “urban” application. I was tasked with mapping all the streetlights on campus to facilitate their maintenance.

Our most recent project involves contributing to Panoramax, an open-source and decentralized alternative to Google’s Street View. Panoramax has many applications. In the short term, we want to use it as support to make our campus more accessible. The street-level views can assist with mapping on OpenStreetMap, providing data for routing services. They can also be used for vision positioning.

We ran a few tests for collecting the data, using a 360 camera on a pole, and the Arrow’s antenna in its special cap, collecting the GPX track with the GPS Logger app for Android. We use the open CentipedeRTK network for corrections. The timestamps of the photos are then matched with the GPX track in Java OpenStreetMap Editor (JOSM). The Arrow 100+ really helps with providing a reliable position in complex environments.

Do you have a favorite experience or memory from your projects with Eos technology?

We have students specializing in Precision Agriculture. They need to understand the notions around positioning and the differences between LBAS, SBAS, and RTK. After I give them a lecture on the topic of positioning, I take them outside for a treasure hunt with the Arrows. This is usually a fun activity, although often rainy.

Do you have a favorite feature of Eos GNSS receivers?

I like the freedom of using the receivers with any app. The receiver and the Eos Tools Pro app take over the phone/tablet’s location and give us complete freedom over the workflow.

Is there anything we didn’t ask you that you’d like to share with us?

Eos Positioning Systems’s customer service is always very reactive and helpful. I feel like I can openly share feedback and ask for advice.

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Bonjour,

L’article a été publié aujourd’hui : Customer Spotlight: Chloé Girka Brings Precision Positioning to Research, Teaching, and the Field | Eos

C’est top, merci pour la communication ! :grinning_face: