Mission Control Space Services is a Canadian company specializing in developing advanced software and AI solutions for the space industry. They offer services like robotic control, autonomous vehicles, and planetary rovers, with their Spacefarer™ software designed for simplifying mission development and operations. They partner with organizations like the Canadian Space Agency, European Space Agency, and have worked with companies like ispace and Spire Global. Their work focuses on enabling new scientific and commercial opportunities on the Earth, Moon, Mars, and beyond.
All verified mentions of this organization in source documents.
Communication between the HAKUTO-R Mission 1 lander and the Mission Control Center was lost as of 8:00 a.m. JST on 2023-04-26.
The HAKUTO-R Mission 1 Lander performed its final orbital control maneuver at 10:08 JST on 2023-04-13 under direction from ispace engineers at the HAKUTO-R Mission Control Center in Nihonbashi, Tokyo.
The HAKUTO-R Mission 1 Lunar Lander performed its lunar orbit insertion maneuver at 10:24 JST on 2023-03-21 under direction from ispace engineers at the HAKUTO-R Mission Control Center in Nihonbashi, Tokyo.
The HAKUTO-R Mission 1 lander completed its fourth orbital control maneuver at 08:58 JST on 2023-03-17 under direction of ispace engineers in the Mission Control Center in Nihonbashi, Tokyo.
Launch Complex 2 supplements Launch Complex 1 and includes Rocket Lab’s Mission Control Center, an Integration and Control Facility with payload processing facilities and 100k class cleanrooms, and a vehicle integration bay capable of processing multiple Electron rockets simultaneously.
The SARSAT Mission Control Center at NOAA’s Satellite Operations Facility in Suitland, Maryland sends distress location information to Rescue Coordination Centers operated by the U.S. Air Force for land rescues and by the U.S. Coast Guard for water rescues.
NanoAvionics’ mission control center confirmed successful communications with all four Transporter-6 satellites and is executing the early operations phase (LEOP) to configure and validate the satellites for their primary mission objectives.
The Thailand MEOSAR solution includes delivery of a Mission Control Centre dedicated to managing and distributing alerts.
NanoAvionics’ mission control center confirmed communications with all four Transporter-6 satellites and is executing the early operations phase (LEOP) to configure and validate the satellites for their primary mission objectives.
All of the satellites launched with Bright Ascension’s flight software will use Bright Ascension’s Mission Control Software integrated with the onboard flight software.
D-Orbit’s mission control team is executing the launch and early orbit phase (LEOP) and performing health check procedures in preparation for the operational phase.
ispace managed HAKUTO-R Mission 1 operations from its mission control center in Nihonbashi, Tokyo.
The Tromsø Satellite Operations Centre is designed to provide resilient and secure operations and to be adaptable to manage multiple missions featuring different platforms and Mission Control Systems.
TSOC is a highly advanced operations centre designed to provide resilient and secure solutions and to be adaptable to manage multiple missions featuring different platforms and Mission Control Systems.
The Tromsø Satellite Operations Center is a new KSAT operations center designed to provide resilient and secure solutions and to be adaptable to manage multiple missions featuring different platforms and Mission Control Systems.
ispace successfully captured images and transmitted them to the HAKUTO-R Mission Control Center on 2022-12-14.
Mission Control provided an artificial intelligence–integrated flight computer to ispace Mission 1 to classify types of geological features as a rover drives around the lunar surface.
The Canadian Space Agency funded Canadensys Aerospace Corporation, Mission Control, and NGC Aerospace Ltd. under the Lunar Exploration Accelerator Program.
Sidus Space was approved to execute LizzieSat mission operations from the Sidus Mission Control Center in Merritt Island, Florida.
LizzieSat’s integrated system architecture includes the LizzieSat bus with hosted payloads and sensors, the Sidus Mission Control Center, and the launch systems required for mission success.