The OpenAPI Specification (OAS) defines a standard, language-agnostic interface to RESTful APIs which allows both humans and computers to discover and understand the capabilities of the service without access to source code, documentation, or through network traffic inspection. This document is licensed under The Apache License, Version 2.0. All current models used in the field will continue to be supported but replacement of the analog models (Version 4) produced before 2004 is encouraged.The key words "MUST", "MUST NOT", "REQUIRED", "SHALL", "SHALL NOT", "SHOULD", "SHOULD NOT", "RECOMMENDED", "NOT RECOMMENDED", "MAY", and "OPTIONAL" in this document are to be interpreted as described in BCP 14 RFC2119 RFC8174 when, and only when, they appear in all capitals, as shown here.
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Communication via serial, USB, cellular and DCS satelliteĪERONET will no longer accept previous models as new entries into the network. Onboard data storage prevents data loss GPS time and location stamped data
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Enhanced measurement scenarios yet data sets are compatible with historic database
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Micro-stepping: faster and smoother robot response Improved solar tracking accuracy and operational range
#Passware kit professional 2015 v.3 upgrade#
It is fully compatible with the existing robots and the latest Version 5 sensor heads (with an upgrade kit). The new model is essentially a new control box that has all the functionality of the current CE318 photometers. Extensive testing of the new model Cimel photometer has been completed and is now fully integrated into the AERONET network. +AERONET Version 3 manuscript published in Atmospheric Measurement TechniquesĬE318-T Sun-Sky-Lunar spectral photometer is accepted for AERONET use. + Inversion Uncertainty Estimates and Provisional Lunar AOD Announcement + NASA Hyperwall AERONET presentation at COP26 The AERONET web site also provides AERONET-related news, a description of research and operational activities, related Earth Science links, and an AERONET staff directory. New AERONET products will be released as new measurement techniques and algorithms are adopted and validated by the AERONET research community. Version 2 data may be downloaded from the web site through 2018 and thereafter upon special request. The Version 3 databases are available from the AERONET and PHOTONS web sites. The processing algorithms have evolved from Version 1.0 to Version 2.0 and now Version 3.0. Inversions, precipitable water, and other AOD-dependent products are derived from these levels and may implement additional quality checks. Version 3 AOD data are computed for three data quality levels: Level 1.0 (unscreened), Level 1.5 (cloud-screened and quality controlled), and Level 2.0 (quality-assured).
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The network imposes standardization of instruments, calibration, processing and distribution.ĪERONET collaboration provides globally distributed observations of spectral aerosol optical depth (AOD), inversion products, and precipitable water in diverse aerosol regimes. For more than 25 years, the project has provided long-term, continuous and readily accessible public domain database of aerosol optical, microphysical and radiative properties for aerosol research and characterization, validation of satellite retrievals, and synergism with other databases. of Lille 1, CNES, and CNRS-INSU) and is greatly expanded by networks (e.g., RIMA, AeroSpan, AEROCAN, and CARSNET) and collaborators from national agencies, institutes, universities, individual scientists, and partners. The AERONET (AErosol RObotic NETwork) project is a federation of ground-based remote sensing aerosol networks established by NASA and PHOTONS (PHOtométrie pour le Traitement Opérationnel de Normalisation Satellitaire Univ.