The objective of deliverable D4.1 is to report on requirements, specifications and software development plan of the Space Research Services aimed at i) easing the management of astrophysics and planetary data through visualization (S1), ii) processing raw data and images toward generating multidimensional maps and mosaics (S2), and iii) automatize detection of structures within the maps (S3). This document reports on Space end-user communities, involved datasets and products and the current status of employed software and services. Then it presents the mapping of requirements to technical specifications and finally, the foreseen software development plan
This paper presents the system architecture of a collaborative virtual environment in which distribu...
evelopment of flight software for Operationally Responsive Space (ORS) is not simply the rapid devel...
The vision for the future of the planetary exploration program includes the capability to deliver {o...
The objective of deliverable D4.2 is to report on final updates of user requirements and specificati...
This document reports on the 1st release of the space services and the software underlying each serv...
The objective of Deliverable D3.1 is to report on requirements, specifications and software developm...
The objective of deliverable D3.2 is to report on final updates of user requirements and specificati...
The development, testing, and results of a software suite for automated development of spacecraft re...
This deliverable D4.3 presents the list of the thematic Space services released by NEANIAS project i...
Customer requirements are presented through three viewgraphs. One graph presents the range of servic...
A clear distinction is usually appropriate between the technologies and development processes for sp...
Only a few efforts are currently underway to develop an adequate technology base for the various the...
The NASA Exoplanet Program Analysis Group (ExoPAG) has undertaken an effort to define mission Level ...
Space programming is a primary task during the schematic design process, to produce a geometric conf...
Technologies required to support the stated OAST thrust to increase information return by X1000, whi...
This paper presents the system architecture of a collaborative virtual environment in which distribu...
evelopment of flight software for Operationally Responsive Space (ORS) is not simply the rapid devel...
The vision for the future of the planetary exploration program includes the capability to deliver {o...
The objective of deliverable D4.2 is to report on final updates of user requirements and specificati...
This document reports on the 1st release of the space services and the software underlying each serv...
The objective of Deliverable D3.1 is to report on requirements, specifications and software developm...
The objective of deliverable D3.2 is to report on final updates of user requirements and specificati...
The development, testing, and results of a software suite for automated development of spacecraft re...
This deliverable D4.3 presents the list of the thematic Space services released by NEANIAS project i...
Customer requirements are presented through three viewgraphs. One graph presents the range of servic...
A clear distinction is usually appropriate between the technologies and development processes for sp...
Only a few efforts are currently underway to develop an adequate technology base for the various the...
The NASA Exoplanet Program Analysis Group (ExoPAG) has undertaken an effort to define mission Level ...
Space programming is a primary task during the schematic design process, to produce a geometric conf...
Technologies required to support the stated OAST thrust to increase information return by X1000, whi...
This paper presents the system architecture of a collaborative virtual environment in which distribu...
evelopment of flight software for Operationally Responsive Space (ORS) is not simply the rapid devel...
The vision for the future of the planetary exploration program includes the capability to deliver {o...