{Another Announcement!} It's already a busy week for us at #satellite2024. Today, we're proud to announce that Antaris is integrating its TrueTwin™ simulation environment with Aalyria's Spacetime. Spacetime is a SaaS platform for orchestrating large and constantly-changing communications networks with steerable or directional signals. By integrating Spacetime with TrueTwin™, operators will be able to simulate the performance of an entire communications constellation from the satellite bus and payload subsystems to any other network node, all using this integrated, end-to-end, cloud-based platform. Learn more and set up a meeting to fly it in TrueTwin™ at https://shorturl.at/cnAE5. #satellite2024 #satellitecommunications #satellitetechnology #satellitetech #satellitecommunications #satellitecommunication SATELLITE Conference & Exhibition
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Curious about the benefits of software-first satellites? As digital technologies advance, the space industry is transforming into a more interconnected and data-driven domain. Software-first satellite design is becoming an essential building block for intelligent satellite networks. Discover how this approach is benefiting space missions today: https://lnkd.in/d5reymZs
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Senior R&D Engineer at Ansys | Chartered Engineer | PhD in Combustion CFD | Technical Writing | 15+ Years in Numerical Simulation
Dive into the world of satellite constellations in our next webinar! Discover how to model and analyze groups of satellites with chains and constellation objects for optimal connectivity.
Improved Data Routing and Optimization for Large Satellite Constellation Designs | Ansys
amplify.ansys.com
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GNSS-signal- processing R us 😊 This time we use it for scatterometry, that is the cool application which uses the abundance of L-band signals (including timing) from different Navigations satellites (read GPS, Galileo and different SBAS satellites). Which are reflected back from earth, based on what reflected it there are different signal signatures. And that can be used to draw conclusion on moisture, flooding, wind, currents etc. PRETTY-cool
Excellent in-flight results obtained from PRETTY, our latest In-Orbit Demonstration CubeSat mission. Congratulations to the whole team for successful first payload data acquisitions. The performance is very promising. First demonstration of a new interferometric GNSS reflectometry technique, showing that CubeSats can be used cost-effectively to test new RF signal processing techniques with software-defined radio.
Icy first light of shoebox-sized PRETTY CubeSat
esa.int
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We often get asked how many satellites are in orbit, or about their current operational status. Sometimes, the questions are deeper, and users might want to know about the satellite signals, or the services they provide. Adding complexity to the subject is the fact that GNSS satellites are always in flux, often being updated, and – sometimes – failing. 🛰️ We are happy to provide these answers and references to each of the major global and regional constellations. We encourage you to use this information in tandem with our GNSS Spectrum poster. ➡️ If you have any questions, we encourage you to join the Skydel User Forums: https://lnkd.in/ghqfgX-k ➡️ Read more here: https://lnkd.in/ghWEn7Th #Safran #GNSS #Simulation #Galileo #Glonass #PNT #ResilientPNT
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We often get asked how many satellites are in orbit, or about their current operational status. Sometimes, the questions are deeper, and users might want to know about the satellite signals, or the services they provide. Adding complexity to the subject is the fact that GNSS satellites are always in flux, often being updated, and – sometimes – failing. 🛰️ We are happy to provide these answers and references to each of the major global and regional constellations. We encourage you to use this information in tandem with our GNSS Spectrum poster. ➡️ If you have any questions, we encourage you to join the Skydel User Forums: https://lnkd.in/d6_2kXCU ➡️ Read more here: https://lnkd.in/dzqj9tUU #Safran #GNSS #Simulation #Galileo #Glonass #PNT #ResilientPNT
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TeraNet just broke new ground with its ground stations that employ lasers instead of traditional wireless radio signals to transfer data between satellites and Earth. Lasers can transfer data at thousands of gigabits per second due to their much higher frequencies compared to radio waves, allowing for significantly greater data density. This demonstration is the critical first step in establishing a next-generation space communications. https://lnkd.in/ecWYd2dN FuturistSpeaker.com #foresight #predictions #futuretrends #futureofwork #futurejobs #keynotespeaker #futuriststrategy #mostquoted
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𝗡𝗼𝘁𝗶𝗰𝗲 𝗿𝗲𝗴𝗮𝗿𝗱𝗶𝗻𝗴 𝘁𝗵𝗲 𝗟𝗮𝘂𝗻𝗰𝗵 𝗦𝗰𝗵𝗲𝗱𝘂𝗹𝗲 𝗳𝗼𝗿 𝗼𝘂𝗿 𝗻𝗲𝘅𝘁 𝗦𝘁𝗿𝗶𝗫 𝗦𝗮𝘁𝗲𝗹𝗹𝗶𝘁𝗲 Synspective, a Synthetic Aperture Radar (SAR) satellite data and analytic solutions provider, announced the official launch schedule of the fifth StriX, the company’s SAR satellite. The fifth StriX mission is scheduled to launch during a 14-day window that opens on July 30 (UTC). The launch may be postponed or canceled due to unforeseen weather conditions or complications. The mission is scheduled for lift-off from Rocket Lab’s Electron launch vehicle at the Rocket Lab Launch Complex on the Mahia Peninsula in New Zealand. Our fifth satellite performs better than its previous satellite and will operate in an inclined orbit. The new satellite will enable us to capture high-resolution images of densely populated areas in high-demand, low- to mid-latitude regions. Until the launch of our new StriX, the satellite’s imaging direction was limited to a single direction, resulting in an invisible area caused by the relationship between the satellite’s imaging direction and angle and the slope of the land area. However, combining the satellites in an inclined and sun-synchronous orbit will enable observation from four directions (east, west, north, and south), allowing us to receive clear images.
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Senior R&D Engineer at Ansys | Chartered Engineer | PhD in Combustion CFD | Technical Writing | 15+ Years in Numerical Simulation
Dive into the world of satellite constellations in our next webinar! Discover how to model and analyze groups of satellites with chains and constellation objects for optimal connectivity.
Improved Data Routing and Optimization for Large Satellite Constellation Designs | Ansys
amplify.ansys.com
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We often get asked how many satellites are in orbit, or about their current operational status. Sometimes, the questions are deeper, and users might want to know about the satellite signals, or the services they provide. Adding complexity to the subject is the fact that GNSS satellites are always in flux, often being updated, and – sometimes – failing. 🛰️ We are happy to provide these answers and references to each of the major global and regional constellations. We encourage you to use this information in tandem with our GNSS Spectrum poster. ➡️ If you have any questions, we encourage you to join the Skydel User Forums: https://lnkd.in/euyA-6kB ➡️ Read more here: https://lnkd.in/e5rteTJN #Safran #GNSS #Simulation #Galileo #Glonass #PNT #ResilientPNT
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We often get asked how many satellites are in orbit, or about their current operational status. Sometimes, the questions are deeper, and users might want to know about the satellite signals, or the services they provide. Adding complexity to the subject is the fact that GNSS satellites are always in flux, often being updated, and – sometimes – failing. 🛰️ We are happy to provide these answers and references to each of the major global and regional constellations. We encourage you to use this information in tandem with our GNSS Spectrum poster. ➡️ If you have any questions, we encourage you to join the Skydel User Forums: https://lnkd.in/ezjjvDeZ ➡️ Read more here: https://lnkd.in/etbgkHBu #Safran #GNSS #Simulation #Galileo #Glonass #PNT #ResilientPNT
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