#CNSA #ChinaNationalSpaceAdministration #国家航天局 | #April2025 |#Tiangong #ChinaSpaceStation the newest next Generation Advance # Qingzhou #CargoSpaceCraft spacecraft officially unveiled on #SpaceDayofChina, highly reliable and intelligent! It will make its maiden flight this year….  

On the 25th April 2025  Space Day of China –  Hours Hong Kong SAR – Beijing time CNSA –China National Space Administrationthe China, People’s Republic of China Newest generation of cargo spacecraft officially unveiled, highly reliable and intelligent! It will make its maiden flight this year

China, People’s Republic of China my country’s new generation of cargo spacecraft has been unveiled. It weighs about 5 tons, has low cost, high reliability and strong intelligence, and will make its maiden flight this year

In the exploration of the vast universe, China’s space industry has always made steady progress and continued to write new glorious chapters. As the key support for the construction and operation of China’s space station, cargo spacecraft plays a vital role in ensuring the supply of space station materials and the transportation of scientific research equipment. At present, China’s Tianzhou cargo spacecraft in service has made great contributions to the construction and maintenance of the space station with its excellent performance and reliable operation.

The Tianzhou cargo spacecraft is an advanced cargo spacecraft independently developed by my country. Since it was put into use, it has successfully carried out space station cargo transportation missions many times. It has a large carrying capacity and can deliver a large amount of living supplies, experimental equipment, propellants and other key materials to the space station, effectively ensuring the smooth development of astronauts’ on-orbit life and scientific research.

The Tianzhou cargo spacecraft is designed with full consideration of the needs of the space station. It has precise docking technology and efficient material unloading capabilities, and can achieve seamless docking with the space station, ensuring that materials can be quickly and accurately transferred to the space station. At the same time, the Tianzhou cargo spacecraft also has the ability to replenish propellant on orbit, providing important power support for the orbit maintenance and attitude adjustment of the space station, greatly extending the on-orbit operation life of the space station.

However, with the continuous advancement of China’s space station construction and the gradual implementation of future deep space exploration missions, higher requirements are placed on the performance and functions of cargo spacecraft. Against this background, my country’s new generation of space “couriers” – the Qingzhou cargo spacecraft came into being. At the 2025 “China Space Day” science exhibition, the Qingzhou cargo spacecraft was officially unveiled, attracting the attention of the global aerospace community.

The Qingzhou cargo spacecraft was developed by the Microsatellite Innovation Institute of the Chinese Academy of Sciences. It is a light, small and fast spacecraft that integrates “low cost, high reliability, high adaptability and high intelligence”. It is also an important part of the space-to-earth cargo transportation system of the Chinese space station. It has the characteristics of moderate capacity, fast and flexible, and outstanding benefits. It will further enhance the safety and reliability of the space station’s material supply, especially the heterogeneous backup capability, and provide a solid guarantee for the safe and stable operation of the Chinese space station in orbit.

The Qingzhou cargo spacecraft has a “small body” but contains “big energy”. According to Chang Liang, chief designer of the Qingzhou cargo spacecraft and researcher at the Microsatellite Innovation Institute of the Chinese Academy of Sciences, the Qingzhou cargo spacecraft weighs about 5 tons, has an upward transport capacity of more than 1.8 tons, and a downward transport capacity of 2 tons.

Such a capacity configuration can not only meet the daily material supply needs of the space station, but also adapt to the transportation tasks of different types of goods. Its loading volume is about 9 cubic meters, and the volume of the cargo compartment is 27 cubic meters, which can carry astronauts’ living supplies, scientific experimental equipment, scientific payloads, etc. The cabin adopts a four-layer shelf mode with a total of 40 cargo grids. For special cargo needs, corresponding interfaces are reserved on the shelves, which can provide suitable storage space for goods of different specifications and shapes, greatly improving the flexibility and efficiency of cargo transportation.

In order to further reduce the cost of cargo transportation to China’s space station and improve transportation efficiency, the Microsatellite Innovation Institute of the Chinese Academy of Sciences and the rocket developer China Science and Technology Aerospace jointly carried out a joint demonstration of ship-rocket integration. Integrated work was carried out in terms of structural design, test and launch process, measurement and control communication, and pre-launch loading plan. In response to the requirements of cold chain transportation of spacecraft, the launch process was optimized, and the ship-rocket integrated test was adopted to simplify the test and launch process. This integrated design concept not only improves the economy of the mission, but also greatly shortens the launch preparation time, enabling the Qingzhou cargo spacecraft to respond more quickly to the material needs of the space station and achieve rapid launch.

Shu Rong, commander-in-chief of the Qingzhou cargo spacecraft and secretary of the Party Committee of the Microsatellite Innovation Institute of the Chinese Academy of Sciences, said that the integrated single-cabin configuration design is a prominent feature of the Qingzhou cargo spacecraft. On the premise of meeting the mission requirements, the integrated single-cabin configuration can improve space utilization and improve the economy of the mission. The integrated configuration greatly reduces the size of the Qingzhou, providing the largest and best space for cargo, and providing astronauts with convenient and fast operating space. At the same time, this configuration makes it easier to choose the right carrier, can adapt to multiple types of rockets, meet the needs of rapid launch, and further enhance the flexibility and adaptability of the Qingzhou cargo spacecraft.

Intelligence is also a highlight of the Qingzhou cargo spacecraft. Qingzhou is equipped with an intelligent cargo transportation management system that can realize intelligent identification, positioning and management of cargo. Astronauts can quickly find the required items through voice interaction and other methods, which improves the efficiency of cargo delivery, reduces the workload of astronauts, and also reduces the risks caused by manual operation errors. This intelligent design concept not only reflects the innovative development of China’s aerospace technology, but also provides a useful exploration for the intelligent operation and management of future space stations.

In addition to its powerful cargo transportation capabilities, the Qingzhou cargo spacecraft also demonstrates diverse application potential. It can not only transport conventional cargo such as astronauts’ daily necessities and scientific experimental equipment, but also carry various test payloads, support manned or unmanned space science payloads and various on-orbit experiments, meet the diverse needs of the space station, and improve the scientific research and application value of the space station.

It is worth mentioning that the Qingzhou cargo spacecraft has also actively introduced the concepts and technical means of commercial aerospace. For the first time, the business model of cargo transportation system overall management is adopted to combine the carrier and the spacecraft more closely, so as to achieve the overall optimization design of the system; the concept of commercial aerospace is introduced to promote the rapid iteration and application of new ideas, new devices and new materials in the aerospace field, and form good economic and social benefits. In addition, the Qingzhou cargo spacecraft also plans to explore various business models such as naming rights, carrying IP culture, brand communication, and popular science cooperation, and carry out innovative cooperation with all walks of life in the society to form good economic and social benefits and promote the sustainable development of China’s aerospace industry.

This year, the first prototype of the Qingzhou cargo spacecraft is scheduled to fly for the first time, and the first prototype is scheduled to be ready for delivery next year, ready to carry out cargo transportation missions to the space station. With the gradual commissioning of the Qingzhou cargo spacecraft, the material transportation capacity of the Chinese space station will be further enhanced, providing a more powerful guarantee for the long-term stable operation of the space station and the implementation of deep space exploration missions. It is believed that in the near future, the Qingzhou cargo spacecraft will be like a smart “space ark”, shuttling back and forth in the vast universe, opening up a broader world for the development of China’s aerospace industry.

Source: Science and Technology Daily reported on April 25, “China’s new generation officially unveiled! Planned for first flight this year”

Images and visuals are from their Respectives CMS China Manned SpaceCNSA-China National Space Administration  

#MadeInChina #中國製造 #中國 | #星河动力空间科 #GalacticEnergy #January2025| #酒泉卫星发射中心 #JiuquanSatelliteLaunchCenter  #CarrierRocketShopping #谷神星一号遥 #Ceres1 Y16 Launched successfully Deploy   Five Jitianxing A-05 – Yunyao-1 37 to 40  #Satellites

On China, People’s Republic of China commercial space industry gets off to a good start in 2025 At 18:11 on January 20, 2025, China successfully launched Yunyao-1 37 to 40 satellites using the Ceres-1 (Yao 16) carrier rocket at the Jiuquan Satellite Launch Center. Inner Mongolia, China, People’s Republic of China..   The satellites entered the planned orbit smoothly and the launch mission was a complete success. The mission also carried and launched the Jitianxing A-05 satellite.

At 18:11 Beijing time on January 20, 2025, Galaxy Power Aerospace successfully launched Ceres-1 (Yao 16) carrier rocket (mission code: On Your Shoulders) at the Jiuquan Satellite Launch Center, successfully sending 5 satellites, including Yunyao-1 37-40 and Jitianxing A-05, into a 535km sun-synchronous orbit.

The four satellites, Weibo Member Satellite (Yunyao-1 37), Kaiwu Constellation Jinding Test Satellite (Yunyao-1 38), Huaqing Haifeng Satellite (Yunyao-1 39), and Yunyao-1 40, have the same technical status and are all equipped with GNSS occultation payloads. The atmospheric temperature, humidity, pressure, and ionospheric electron density products can be obtained by inverting GNSS occultation data. They have broad application prospects and application value in meteorological observation, Kaiwu Interstellar Mine Network Demonstration Scenario Verification, and AIGE Future Mine Provides Comprehensive Data Support and Technical Services.

Jitianxing A-05 is equipped with a hyperspectral camera payload to obtain remote sensing images, which can be applied to ecological environment, industrial emissions, gas leaks, agricultural monitoring, mineral exploration, environmental monitoring, forest management, urban planning and other fields.



As of today, Ceres-1 has successfully completed 16 launches, sending 63 satellites into the predetermined orbit. It is the commercial launch vehicle with the most launches and the highest success rate in the private sector. The Ceres-1 (Yao 16) carrier rocket launched this time is the first carrier rocket manufactured and assembled by Galaxy Aerospace’s new generation solid aircraft research and development and production base in Ziyang, Sichuan. It is also the first “Sichuan-made” private commercial carrier rocket. At present, the base has completed the final assembly and testing of the subsequent three Ceres series rockets. This

mission also carried SPACE MOLLY 100%, an explorer of parallel universes designed by Galaxy Power and POP MART, a leading domestic trendy culture and entertainment brand. Through the deep integration of science and technology and art, the two parties demonstrated mankind’s awe of the universe and the courage and innovative spirit to explore the unknown world.

This launch was also strongly supported by functional film production supplier Aerospace Shanyou, Weibo members, and In Space Aerospace Technology Research Institute.

Images and visuals are from their respectives also Galactic Energy is located in Block D, Aviation Technology Plaza, E-Town, Beijing- China – People’s Republic of China  

#CNSA #ChinaNationalSpaceAdministration #国家航天局 | #BRI #November2024|#太原卫星发射中心#TaiyuanSatelliteLaunchCenter  – Advance  International Iconic #长征四号 #ChangZheng4B #LongMarch4B Yao 53 with Modified #ReusableCarrierRocket The Ocean Salinity Detection Satellite #Haiyang-401 #Satellite….  #ASummary

中国的First Ocean Salinity Detection Satellite was successfully launched

At 0810 Hours Hong Kong SAR- Beijing Time 14th November 2024 , China- People’s Republic of China- CNSA –China National Space Administration   Successfully launched  Chang Zheng – Long March 4B yao 53 Carrier Rocket ignited and took off at the Taiyuan Satellite Launch Center Shanxi Province..

中国的First Ocean Salinity Detection Satellite was successfully launched丨The 2024 “final battle” of the Chang 4 series rockets was successfully completed] At 6:42 on November 14, at the Taiyuan Satellite Launch Center in China, the Long March 4B carrier The rocket lifted the ocean salinity detection satellite into space successfully, and then successfully sent the satellite into its predetermined orbit. The launch mission was a complete success. At this point, the “final battle” of the Chang 4 series rockets in 2024 has been successfully completed.

The Ocean Salinity Detection Satellite is a scientific research satellite in the national civil space infrastructure, also known as Haiyang-401
The Long March 4B Yao 53 modified having Reusable Carrier rocket Features ..

The Ocean Salinity Detection Satellite is a scientific research satellite in the national civil space infrastructure, also known as Haiyang-401. It is my country’s China, People’s Republic of China first ocean salinity detection satellite and was developed by the Fifth Academy of the Aerospace Science and Technology Corporation. The satellite is equipped with comprehensive aperture radiometer, active and passive detectors and other payloads. After being launched into orbit, it can fill the gap in China’s high-precision global ocean salinity detection capabilities, improve China’s ability to acquire data on marine dynamic environmental factors, improve the accuracy and quality of China’s ocean forecast products, and meet the needs of marine environment forecasts, marine ecological forecasts, water cycle monitoring, and short-term Business needs in climate prediction and global climate change research, and taking into account soil moisture measurement, provide supporting data for marine industry applications and agricultural and rural, disaster reduction, meteorological and other related industry applications, and form application product capabilities. The Long March 4B carrier rocket is developed by the Eighth Academy of China Aerospace Science and Technology Corporation.

This launch is the 545th launch of the Long March series of launch vehicles.

Images and visuals are from their Respectives CMS China Manned SpaceCNSA-China National Space Administration

#MadeInChina #中國製造 #中國 | #星河动力空间科技有限公司#GalacticEnergy #July 2024|#CarrierRocketShopping Progress of#智神星一号 #Pallas1 #CarrierRocket  successfully completed a series of fairing tests.  

星河动力空间科技有限公司 Galactic Energy-  Galaxy Power (Beijing) Space Technology Co., Ltd. Located in Block D, Aviation Technology Plaza, E-Town, and Beijing – Beijing – China – People’s Republic of China ….Galaxy Aerospace is the first private aerospace company in China to achieve successful continuous launches, the first to send commercial networked satellites into a 500km sun-synchronous orbit, and the first to master the ability to launch multiple satellites with one carrier rocket.

[The Pallas-1 launch vehicle successfully completed a series of fairing tests]

On the 25th July 2024 The latest news from Galaxy Power; Recently, the company completed a series of static, modal, and separation tests on the Pallas-1 launch vehicle fairing, all of which were successful. The Pallas-1 series of launch vehicles are compatible with fairings with diameters of 3.35m, 4.2m, and 5.2m to meet the needs of different satellite customers. The fairing used in this test is one of the series of fairing products independently developed and designed by Galaxy Power, and is consistent with the status of the Pallas-1 Yao-1 flight test product.

The Pallas- 1 has a maximum low-orbit carrying capacity of 8 tons, with seven 50-ton liquid oxygen-kerosene engines in parallel in the first stage. It is scheduled to make its maiden flight at the end of this year….

Recently , Galaxy Aerospace completed a series of static, modal and separation tests on the fairing of the Pallas-1 launch vehicle, and all the tests were a complete success!

 The Pallas-1 series of launch vehicles are compatible with fairings with diameters of 3.35m, 4.2m, and 5.2m to meet the needs of different satellite customers. The fairing used in this test is one of the series of fairing products independently developed and designed by Galaxy Power, and is consistent with the Pallas-1 Yao-1 flight test product. The fairing adopts a von Karman shape, which has the advantages of low flight aerodynamic resistance, light structural mass and easy operation.

The fairing end cap is made of high-strength ablation-resistant composite material, a large area of ​​honeycomb sandwich composite material structure, and a metal frame structure at the rear. The fairing separation system adopts a “hinge-spring” half-cover rotation separation scheme, and the lateral and longitudinal separation unlocking devices both use point-type explosive bolts, which have small impact during the separation process and high separation reliability.

The static test of the fairing assessed the fairing’s ability to resist external loads and verified the structural strength. The test achieved the intended purpose and obtained relevant data. The modal test obtained the fairing’s modal parameters, providing a basis for structural dynamics model modification and fairing separation calculation.
 

The fairing separation test fully verified the correctness of the fairing separation system design, obtained the collision boundary data between the fairing separation body and the payload, assessed the adaptability of the structural system to the separation concentrated force load and the impact load of pyrotechnics, and obtained important mechanical environment parameters.

The complete success of the fairing series tests indicates that Galaxy Aerospace has the ability to quickly design, analyze and test large liquid rocket fairings, laying a solid foundation for the company’s subsequent model development.

Imagines and Visuals are from their respectives..

#CNSA #ChinaNationalSpaceAdministration #国家航天局 | #BRI #July2024|#太原卫星发射中心#TaiyuanSatelliteLaunchCenter  – Advance  International Iconic #长征四号 #ChangZheng4B #LongMarch4B  Y58  Deploying #Gaofen 11-05  #Satellite #ASummary

At 1103 Morning Hours Hong Kong SAR- Beijing Time 19th July 2024 , China- People’s Republic of China- CNSA –China National Space Administration   Successfully launched  Chang Zheng – Long March 4B Yao 58 Carrier Rocket ignited and took off at the Taiyuan Satellite Launch Center Shanxi Province..  Successfully launch China successfully launched the Gaofen-11 05 satellite Successfully into its pre-determined orbit…   

China successfully launched Gaofen-11 05 satellite into space using the Long March 4B carrier rocket at the Taiyuan Satellite Launch Center. The satellite entered the planned orbit smoothly and the launch mission was a complete success. The satellite is mainly used in land surveys, urban planning, land rights confirmation, road network design, crop yield estimation and disaster prevention and mitigation, and can provide information support for the implementation of major national strategies such as the “Belt and Road” and the modernization of national defense.

The satellite was developed by the General Department of Remote Sensing Satellites of the Fifth Academy of Aerospace Science and Technology. It is mainly used in land surveys, urban planning, land rights confirmation, road network design, crop yield estimation, and disaster prevention and mitigation. It can provide information support for the implementation of major national strategies such as the “Belt and Road” and the modernization of national defense.

The Long March 4B rocket has a 700kmSSO capacity of 2.5 tons. In order to meet the requirements of the satellite, this rocket uses a Φ4000mm von Karman fairing and a load reduction design to further improve the adaptability of the rocket. This mission is the first time in 15 months that the Long March 4 model has gone to the Taiyuan Satellite Launch Center for a launch.

Images and visuals are from their Respectives CMS China Manned SpaceCNSA-China National Space Administration