Space India 2.0 Commerce, Policy, Security and Governance Perspectives
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Drafting Committee for the 'Asia‐Pacific
Drafting Committee for the ‘Asia‐Pacific Plan of Action for Space Applications for Sustainable Development (2018‐2030) Dr Rajeev Jaiswal EOS Programme Office Indian Space Research Organisation (ISRO) India Bangkok, Thailand 31 May ‐ 1 June 2018 India’s Current Space Assets Communication Satellites • 15 Operational (INSAT- 4A, 4B, 4CR and GSAT- 6, 7, 8, 9 (SAS), 10, 12, 14, 15, 16, 17, 18 & 19) • >300 Transponders in C, Ext C & Ku bands Remote sensing Satellites • Three in Geostationary orbit (Kalpana-1, INSAT 3D & 3DR) • 14 in Sun-synchronous orbit (RESOURCESAT- 2 & 2A; CARTOSAT-1/ 2 Series (5); RISAT-2; OCEANSAT 2; MEGHA-TROPIQUES; SARAL, SCATSAT-1) Navigation Satellites : 7 (IRNSS 1A - IG) & GAGAN Payloads in GSAT 8, 10 & 15 Space Science: MOM & ASTROSAT 1 Space Applications Mechanism in India Promoting Space Technology Applications & Tools For Governance and Development NATIONAL MEET “There should not be any space between common man and space technology” . 160 Projects across 58 Ministries . Web & Mobile Applications : 200+ . MoUs with stakeholders : 120+ . Capacity Building : 10,000+ . Space Technology Cells : 21 17 STATE MEETS Haryana, Bihar, Uttarakhand, Mizoram, Nagaland, Rajasthan, Punjab, Jharkhand, Meghalaya, Himachal 20 58 Pradesh, Kerala, Chhattisgarh, Assam, Madhya Ministries Ministries Pradesh, Tamil Nadu, Mizoram & Uttar Pradesh Space Applications Verticals SOCIO ECONOMIC SECURITY SUSTAINABLE DEVELOPMENT Food Impact Assessment Water Bio- Resources Conservation Energy Fragile & Coastal Ecosystem Health Climate Change Induced -
Abstract #1643
1/20/2017 CIM | TPMS | Abstract #1643 English Proving and Improving Martian Mining ISRU technology in Hawai`i The island of Hawai`i has been the stage for the only NASA ISRU field tests in 2008, 2010 and 2012. Focused on lunar ISRU and the RESOLVE/Resource Prospector Mission, much can be learned and developed from these experiences as applied to Martian ISRU. Hawaiian tephra has proven geochemical similarities to Mars, and also is the source of the geotechnical NASAJSC1A Mars Simulant. Hawaii is ideal for long term facilities/equipment testing and operational models needed prior to extended human missions to Mars. French No abstract title in French No French resume Author(s) and CoAuthor(s) Mr. John C. Hamilton EPO: Logistics Manager PISCES Pacific International Space Center for Exploration Systems https://www.cim.org/en/TPMSEvent/Chair/ChairAbstractPool.aspx 1/1 4/26/2017 CIM | TPMS | Profile of Mr. John Hamilton General Email(s): [email protected] Position: EPO: Logistics Manager Preferred Language: [Language not defined] Addresses Business Home PISCES Pacific International Space Center for Exploration Systems PO Box 615 Pepeekeo Hawaii United States 96720 Biographies Biography submitted with the abstract John Hamilton is on faculty with the Department of Physics and Astronomy at the University of Hawaii at Hilo, on the majestic island of Hawaii. As the Research Operations Manager of the newly formed PISCES (the Pacific International Space Center for Exploration Systems) in 2007 at the university, he managed multiple field tests with NASA, CSA, DLR, and ESA with surface technologies and ISRU. PISCES later was spun off as a State Agency, where John serves in the dual role of Education/Public Outreach and Logistics manager. -
Space Commercialization
Space commercialization August 23, 2019 Source : The Hindu Manifest pedagogy: Space commercialisation is one aspect which was left untapped until the last few years. After successful stint of ISRO as a scientific body it is now accelerating its activities as a commercial body. This is a very important topic for Mains. In news: ISRO arm NSIL has begun search for PSLV makers Placing it in syllabus: Space commercialisation by India (explicitly mentioned) Static dimensions: Role of Antrix Corporation Current dimensions: Establishment of NSIL Outsourcing of PSLV ISRO’s space commercialisation plan and its impact Content: NewSpace India Ltd (NSIL), the new public sector space business company have launched a formal search for industry consortia which can regularly manufacture and deliver entire PSLV satellite launch vehicles for the Indian Space Research Organisation (ISRO). Role of Antrix Corporation: Antrix Corporation Limited (ACL), Bengaluru is a wholly owned Government of India Companyunder the administrative control of the Department of Space. Was incorporated as a private limited company owned by the Government of India in September 1992 as a Marketing arm of ISRO for promotion and commercial exploitation of space products, technical consultancy services and transfer of technologies developed by ISRO. Another major objective is to facilitate development of space related industrial capabilities in India. Antrix markets space products and services to global customers. It is committed to configuring a cost-effective, advanced and reliable solution for every space programme related need. Antrix optimizes the space systems keeping in view the specific customer objectives. It plays a pivotal role in delivering space systems and services that meet the expectations of leading global organizations. -
Annual Report 2017 - 2018 Annual Report 2017 - 2018 Citizens’ Charter of Department of Space
GSAT-17 Satellites Images icro M sat ries Satellit Se e -2 at s to r a C 0 SAT-1 4 G 9 -C V L S P III-D1 -Mk LV GS INS -1 C Asia Satell uth ite o (G S S A T - 09 9 LV-F ) GS ries Sat Se ellit t-2 e sa to 8 r -C3 a LV C PS Annual Report 2017 - 2018 Annual Report 2017 - 2018 Citizens’ Charter of Department Of Space Department Of Space (DOS) has the primary responsibility of promoting the development of space science, technology and applications towards achieving self-reliance and facilitating in all round development of the nation. With this basic objective, DOS has evolved the following programmes: • Indian National Satellite (INSAT) programme for telecommunication, television broadcasting, meteorology, developmental education, societal applications such as telemedicine, tele-education, tele-advisories and similar such services • Indian Remote Sensing (IRS) satellite programme for the management of natural resources and various developmental projects across the country using space based imagery • Indigenous capability for the design and development of satellite and associated technologies for communications, navigation, remote sensing and space sciences • Design and development of launch vehicles for access to space and orbiting INSAT / GSAT, IRS and IRNSS satellites and space science missions • Research and development in space sciences and technologies as well as application programmes for national development The Department Of Space is committed to: • Carrying out research and development in satellite and launch vehicle technology with a goal to achieve total self reliance • Provide national space infrastructure for telecommunications and broadcasting needs of the country • Provide satellite services required for weather forecasting, monitoring, etc. -
Moriba Kemessia Jah, Ph.D. August 2020 THE
Moriba Kemessia Jah, Ph.D. August 2020 THE UNIVERSITY OF TEXAS AT AUSTIN Cockrell School of Engineering Resume FULL NAME: Moriba Kemessia Jah TITLE: Associate Professor DEPARTMENT: Aerospace Engineering and Engineering Mechanics EDUCATION: Embry-Riddle Aeronautical University Aerospace Engineering B.S. 1999 University of Colorado (Boulder) Aerospace Engineering Sci M.S. 2001 University of Colorado (Boulder) Aerospace Engineering Sci Ph.D. 2005 PROFESSIONAL REGISTRATION: Not Registered CURRENT AND PREVIOUS ACADEMIC POSITIONS: Associate Professor (with Tenure), The University of Texas at Austin, • Department of Aerospace Engineering and Engineering Mechanics, February 2020 – present Affiliate Faculty, The University of Texas at Austin • Environmental Sciences Institute, October 2019 – present Visiting Professor, Australian National University • Research School of Aerospace, Mechanical, and Environmental Engineering (RSAMEE), July 2019 – present Core Faculty, The University of Texas at Austin, • Oden Institute for Computational Engineering and Sciences, August 2018 – present Director, The University of Texas at Austin, • Oden Institute Computational Astronautical Sciences and Technologies Group, August 2018 - present Associate Professor (Tenure-Track), The University of Texas at Austin, • Department of Aerospace Engineering and Engineering Mechanics, April 2017 – February 2020 • Statistics and Data Science Department (Courtesy), October 2017 – present Program Lead and Distinguished Scholar, The University of Texas at Austin, • Robert Strauss -
Bhuvan ISRO’S Geoportal
bhuvan ISRO’s Geoportal www.bhuvan.nrsc.gov.in One-stop versatile Web based Earth Observation Know Bhuvan Data Products & Services What is it? dissemination for obtaining interoperable OGC web services Bhuvan (means Earth in Sanskrit) is a Geoportal of ISRO, to evince the Indian Earth Observation capabilities from the · Different supporting components like – interactive videos, Indian Remote Sensing (IRS) series of satellites. virtual tour, discussion forum, help documents are also available. It is an interactive versatile Earth-Browser which showcases multi-sensor, mutli-platform and multi- · Registration is optional in Bhuvan. However, some features temporal images with capabilities to overlay thematic require registration. Users can use the Central information, interpreted from such imagery as a vector Authentication Service of Bhuvan for creating an account Societal Applications layer, along with near real-time information from Automatic on Bhuvan towards single sign-on (SSO). Registered users Interactive 3D Environment Weather Stations (AWS), Potential Fishing Zone (PFZ) are having privilege to share and download the data, information, disaster support related information like forest collaborate with other Bhuvanites, discussions in Forum fire alerts, periodic agricultural drought assessment etc. etc. What can it do? A plug-in is to be downloaded and installed to access Bhuvan 3D (for first time use) Ranging from visualisation, Bhuvanites can also download IRS data products and consume thematic datasets as Why is it significant? -
ASTRIA Ontology: Open, Standards-Based, Data-Aggregated Representation of Space Objects
Space Traffic Management Conference 2019 Progress through Collaboration Feb 26th, 2:00 PM ASTRIA Ontology: Open, Standards-based, Data-aggregated Representation of Space Objects Jennie Wolfgang The University of Texas at Austin, [email protected] Kathleen Krysher The University of Texas at Austin, [email protected] Michael Slovenski The University of Texas at Austin, [email protected] Unmil P. Karadkar The University of Texas at Austin, [email protected] Shiva Iyer The University of Texas at Austin, [email protected] See next page for additional authors Follow this and additional works at: https://commons.erau.edu/stm Part of the Cataloging and Metadata Commons, Databases and Information Systems Commons, and the Space Vehicles Commons Wolfgang, Jennie; Krysher, Kathleen; Slovenski, Michael; Karadkar, Unmil P.; Iyer, Shiva; and Jah, Moriba K., "ASTRIA Ontology: Open, Standards-based, Data-aggregated Representation of Space Objects" (2019). Space Traffic Management Conference. 2. https://commons.erau.edu/stm/2019/presentations/2 This Event is brought to you for free and open access by the Conferences at Scholarly Commons. It has been accepted for inclusion in Space Traffic Management Conference by an authorized administrator of Scholarly Commons. For more information, please contact [email protected]. Presenter Information Jennie Wolfgang, Kathleen Krysher, Michael Slovenski, Unmil P. Karadkar, Shiva Iyer, and Moriba K. Jah This event is available at Scholarly Commons: https://commons.erau.edu/stm/2019/presentations/2 -
L6-Geospatial Technologies and Web Applications-Mr.Arulraj NRSC
GeoSpatial Technologies and Web Applications M. Arulraj Sci/Engr – SF Manager, Bhuvan Web Services Development [email protected] GIS Activities in Problem Solving Environment Empowering Human Take to Activities Action Plan Complex Data Modeling Analyze Interactive Mapping Integration Measure Observe Visualization Modeling . Application of this science is multi-disciplinary Major Components of GIS and Role of open source s/w Data Creations Vector, Raster & attribute Data organizations & Management Complete GIS Data query, processing, Solutions analysis and modeling Data presentations and visualizations OpenLayers Data sharing and disseminations Tools and technologies • Quantum GIS • Open Jump • SAGA, MapWindow GIS • OpenLayer API Desktop GIS • Mapfish, • Geoeditor, • GRASS Geoweb Remote • Geexplorer • OSIM 2.0 Sensing • SAGA • Geonetwork Catalogue Statistical Server • R Geo-spatial DomainGn Geo- GPS • Gpsbabel RDBMS • POSTGIS+ POSTGRESQL • Gpsdrive • TerrLib GIS s/w GIS Servers developme nt • GDAL/OGR • Osgeo MapServer • Geotool • Geoserver • OpenLayer API What is open source? Open source software is software where the source code is made available under a license that allows the modification, and re-distribution of the software at will. The distribution terms of open-source software must comply with the following criteria: Free redistribution; Source code; Derived works; Integrity of the author's source code; No discrimination against persons or groups; No discrimination against fields of endeavor; Distribution of license; License must not be specific to a product; License must not restrict other software; License must be technology-neutral. What is open source? 1. Free Redistribution The license shall not restrict any party from selling or giving away the software as a component of an aggregate software distribution containing programs from several different sources. -
INDIA JANUARY 2018 – June 2020
SPACE RESEARCH IN INDIA JANUARY 2018 – June 2020 Presented to 43rd COSPAR Scientific Assembly, Sydney, Australia | Jan 28–Feb 4, 2021 SPACE RESEARCH IN INDIA January 2018 – June 2020 A Report of the Indian National Committee for Space Research (INCOSPAR) Indian National Science Academy (INSA) Indian Space Research Organization (ISRO) For the 43rd COSPAR Scientific Assembly 28 January – 4 Febuary 2021 Sydney, Australia INDIAN SPACE RESEARCH ORGANISATION BENGALURU 2 Compiled and Edited by Mohammad Hasan Space Science Program Office ISRO HQ, Bengalure Enquiries to: Space Science Programme Office ISRO Headquarters Antariksh Bhavan, New BEL Road Bengaluru 560 231. Karnataka, India E-mail: [email protected] Cover Page Images: Upper: Colour composite picture of face-on spiral galaxy M 74 - from UVIT onboard AstroSat. Here blue colour represent image in far ultraviolet and green colour represent image in near ultraviolet.The spiral arms show the young stars that are copious emitters of ultraviolet light. Lower: Sarabhai crater as imaged by Terrain Mapping Camera-2 (TMC-2)onboard Chandrayaan-2 Orbiter.TMC-2 provides images (0.4μm to 0.85μm) at 5m spatial resolution 3 INDEX 4 FOREWORD PREFACE With great pleasure I introduce the report on Space Research in India, prepared for the 43rd COSPAR Scientific Assembly, 28 January – 4 February 2021, Sydney, Australia, by the Indian National Committee for Space Research (INCOSPAR), Indian National Science Academy (INSA), and Indian Space Research Organization (ISRO). The report gives an overview of the important accomplishments, achievements and research activities conducted in India in several areas of near- Earth space, Sun, Planetary science, and Astrophysics for the duration of two and half years (Jan 2018 – June 2020). -
OP#254-New Text
JUNE 2020 Strengthening the C4ISR Capabilities of India’s Armed Forces: The Role of Small Satellites KARTIK BOMMAKANTI Strengthening the C4ISR Capabilities of India's Armed Forces: The Role of Small Satellites KARTIK BOMMAKANTI ABOUT THE AUTHOR Kartik Bommakanti is an Associate Fellow at ORF. ISBN: 978-93-90159-24-6 © 2020 Observer Research Foundation. All rights reserved. No part of this publication may be reproduced or transmitted in any form or by any means without permission in writing from ORF. Strengthening the C4ISR Capabilities of India’s Armed Forces: The Role of Small Satellites ABSTRACT Small satellites have gained considerable importance in recent years. Although small spacecraft have existed for decades, their military applications have recently gained prominence owing to technological advances in their development and integration into the armed services of the major spacefaring countries across the world. This paper analyses the significance of small satellites in the C4ISR capabilities of the three service branches of the Indian military. Small satellites are not a panacea for the C4ISR needs of the Indian Army, Navy and Air Force, but will help partially address their sensor-related requirements. They also contribute to a multi-layered and distributed capability for the Indian armed services. Investment in Small Satellites should assume greater salience in Indian defence planning in the coming years. Attribution: Kartik Bommakanti, “Strengthening the C4ISR Capabilities of India’s Armed Forces: The Role of Small Satellites,” -
IAA Situation Report on Space Debris - 2016
IAA Situation Report on Space Debris - 2016 Editors: Christophe Bonnal Darren S. McKnight International A cadem y of A stronautics Notice: The cosmic study or position paper that is the subject of this report was approved by the Board of Trustees of the International Academy of Astronautics (IAA). Any opinions, findings, conclusions, or recommendations expressed in this report are those of the authors and do not necessarily reflect the views of the sponsoring or funding organizations. For more information about the International Academy of Astronautics, visit the IAA home page at www.iaaweb.org. Copyright 2017 by the International Academy of Astronautics. All rights reserved. The International Academy of Astronautics (IAA), an independent nongovernmental organization recognized by the United Nations, was founded in 1960. The purposes of the IAA are to foster the development of astronautics for peaceful purposes, to recognize individuals who have distinguished themselves in areas related to astronautics, and to provide a program through which the membership can contribute to international endeavours and cooperation in the advancement of aerospace activities. © International Academy of Astronautics (IAA) May 2017. This publication is protected by copyright. The information it contains cannot be reproduced without written authorization. Title: IAA Situation Report on Space Debris - 2016 Editors: Christophe Bonnal, Darren S. McKnight Printing of this Study was sponsored by CNES International Academy of Astronautics 6 rue Galilée, Po Box 1268-16, 75766 Paris Cedex 16, France www.iaaweb.org ISBN/EAN IAA : 978-2-917761-56-4 Cover Illustration: NASA IAA Situation Report on Space Debris - 2016 Editors Christophe Bonnal Darren S. -
Allocation of Commercial Space Industry Components 1
May 2018 Allocation of Commercial S pace Industry Components A Virtual Think Tank (ViTTa)® Report Deeper Analyses Clarifying Insights Better Decisions Produced in support of the Strategic Multilayer Assessment (SMA) Office (Joint Staff, J39) www.NSIteam.com Allocation of Commercial Space Industry Components 1 Authors Dr. Belinda Bragg Dr. Sabrina Pagano Please direct inquiries to Belinda Bragg at [email protected] ViTTa® Project Team Dr. Allison Astorino-Courtois Sarah Canna Nicole Peterson Executive VP Principal Analyst Analyst Weston Aviles Dr. Larry Kuznar George Popp Analyst Chief Cultural Sciences Officer Senior Analyst Dr. Belinda Bragg Dr. Sabrina Pagano Dr. John A. Stevenson Principal Research Scientist Principal Research Scientist Principal Research Scientist Interview Team1 Weston Aviles Nicole Peterson Analyst Analyst Sarah Canna George Popp Principal Analyst Senior Analyst What is ViTTa®? NSI’s Virtual Think Tank (ViTTa®) provides rapid response to critical information needs by pulsing our global network of subject matter experts (SMEs) to generate a wide range of expert insight. For this SMA Contested Space Operations project, ViTTa was used to address 23 unclassified questions submitted by the Joint Staff and US Air Force project sponsors. The ViTTa team received written and verbal input from over 111 experts from National Security Space, as well as civil, commercial, legal, think tank, and academic communities working space and space policy. Each Space ViTTa report contains two sections: 1) a summary response to the question asked; and 2) the full written and/or transcribed interview input received from each expert contributor organized alphabetically. Biographies for all expert contributors have been collated in a companion document.