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GRSS VR 2.3.15

73 MB / 1+ Downloads / Rating 5.0 - 1 reviews


See previous versions

GRSS VR, developed and published by Hardik Jain, has released its latest version, 2.3.15, on 2024-12-28. This app falls under the Education category on the Google Play Store and has achieved over 100 installs. It currently holds an overall rating of 5.0, based on 1 reviews.

GRSS VR APK available on this page is compatible with all Android devices that meet the required specifications (Android 5.0+). It can also be installed on PC and Mac using an Android emulator such as Bluestacks, LDPlayer, and others.

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App Screenshot

App Screenshot

App Details

Package name: com.CV.GRSSVR

Updated: 1 month ago

Developer Name: Hardik Jain

Category: Education

New features: Show more

App Permissions: Show more

Installation Instructions

This article outlines two straightforward methods for installing GRSS VR on PC Windows and Mac.

Using BlueStacks

  1. Download the APK/XAPK file from this page.
  2. Install BlueStacks by visiting http://bluestacks.com.
  3. Open the APK/XAPK file by double-clicking it. This action will launch BlueStacks and begin the application's installation. If the APK file does not automatically open with BlueStacks, right-click on it and select 'Open with...', then navigate to BlueStacks. Alternatively, you can drag-and-drop the APK file onto the BlueStacks home screen.
  4. Wait a few seconds for the installation to complete. Once done, the installed app will appear on the BlueStacks home screen. Click its icon to start using the application.

Using LDPlayer

  1. Download and install LDPlayer from https://www.ldplayer.net.
  2. Drag the APK/XAPK file directly into LDPlayer.

If you have any questions, please don't hesitate to contact us.

Reviews

5 ★, on 2018-07-19
Nice work hd

5 ★, on 2018-07-19
Innovative 👍

Previous Versions

GRSS VR 2.3.15
2024-12-28 / 73 MB / Android 5.0+

About this app

This app illustrates the work of the seven technical committees of the Geoscience and Remote Sensing Society (http://grss-ieee.org). For more information please visit http://www.grss-ieee.org/grss-vr-app/.

Earth Science Informatics (ESI) has the mission to advance the application of informatics to geosciences and remote sensing, to provide a venue for ESI professionals to exchange information and knowledge. The scene shows a CityGML model of the historical center of Santiago de Compostela and was provided by Tecnalia.

Frequency Allocations in Remote Sensing (FARS) has the mission to provide guidance and recommendations to the remote sensing community on matters relevant to spectrum management and to defend the interests of the community in the radio-frequency regulatory world. The scene shows a world map of the RFI (Radio-Frequency Interference) contamination experienced by the SMAP (Soil Moisture Active/Passive) satellite mission. RFI signals interfere with the normal operations of the satellite. The color indicates the percentage of data that is lost due to RFI; the height is the intensity of the RFI signals.

Instrumentation and Future Technologies (IFT) vision is to foster international cooperation in advancing the state-of-the-art in geoscience remote sensing instrumentation and technologies that improve knowledge for the betterment of society and the global environment. The scene shows a 3D model of the Tandem-L Synthetic Aperture Radar (SAR) satellite with deployable reflector antenna and digital feed array. The model is based on a CAD model provided by AIRBUS/DLR and was remodeled by Andreas Ley, TUB.

Image Analysis and Data Fusion (IADF) has the mission to serve as a global, multi-disciplinary, network for geospatial data fusion, with the aim of connecting people and resources. It aims at educating students and professionals and promoting the best practices in data fusion applications. The model was generated based on Multispectral LiDAR point cloud data and shows hyperspectral data as well as very high-resolution RGB imagery. The data was acquired by the National Center for Airborne Laser Mapping, NCALM and was used in the GRSS IADF Data Fusion Contest of 2018.


Geoscience Spaceborne Imaging Spectroscopy (GSIS) has the mission to provide a forum for technical and programmatic discussion and consultation among national space agencies, research institutions and other spaceborne IS data providers. Goals of the GSIS are to share information on current and future spaceborne imaging spectroscopy (“hyperspectral”) missions. The scene shows a hyperspectral image acquired by the HySpex-VNIR over Munich, Germany, specifically of the famous football stadium “Allianz Arena”. The HySpex-VNIR sensor provides 160 bands (400 nm – 100 nm). The shown data was acquired and processed by the German Aerospace Center (DLR) in Oberpfaffenhofen.

Modeling in Remote Sensing (MIRS) has the mission of the Modeling in Remote Sensing Technical Committee (MIRS TC) is to serve as a technical and professional forum for advancing the science of predicting remotely sensed observations from first principles theory. The scene shows three facades that have been reconstructed by image-based multi-view stereo and processed by an abstraction pipeline. The surface texture smoothly changes between measured colors and ambient occlusion.

Standards for Earth Observations (GSEO) has the mission to bring together industry and academia to identify where standardization can improve the generation, distribution and utilization of interoperable data products from remote sensing systems. The scene shows a 3D dataset of Granitic Terrain in the parts of Hyderabad depicting hills and valleys topography, India, using IRS LISS IV and Carto DEM. It was provided by Naresh K. Mallenahalli and Kidambi Seshadri, National Remote Sensing Centre (ISRO) and is licensed under CC BY-NC-ND 4.0.

New features

TC Description updated

App Permissions

Allows an application to read from external storage.
Allows applications to open network sockets.