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 Ceres-1 sea launch adds 6 more satellites to China’s space program! ]
At 13:22 Hong Kong SAR- Beijing time on August 29th Thursday, 2024, on the “Dongfang Spaceport” sea launch ship in the Yellow Sea, the “Ceres-1” sea-launched Yao-3 carrier rocket carried six small optical remote sensing satellites, including “Yunyao-1” 15-17 satellites, Jitianxing A03 satellite, “Suxing-1” 01 satellite, and “Tianfu Gaofen-2” satellite, and sent the satellites into a sun-synchronous orbit (SSO) at an altitude of 535 kilometers.
The “Ceres-1” sea-launched carrier rocket is a small solid-fuel carrier rocket. The arrow is about 20 meters high, 1.4 meters in diameter, with a takeoff mass of about 33 tons and a capacity of 300 kilograms in a sun-synchronous orbit (SSO) at an altitude of 500 kilometers.
The Ceres-1 sea-launched rocket was developed by Beijing Galactic Energy. It is an adaptive improvement on the Ceres-1 standard rocket. It is a four-stage small rocket with a four-stage tandem configuration. The first, second and third stages use solid power, and the fourth stage uses liquid power. The rocket is about 20 meters high and 1.4 meters in diameter. It has a takeoff mass of about 33 tons and a takeoff thrust of 60 tons. Its altitude is 500 kilometers and the sun-synchronous orbit (SSO) has a carrying capacity of 300 kilograms.
Since its successful maiden flight on November 7, 2020, Ceres-1 has carried out 15 launches, 14 of which were successful, with a success rate of about 93.33%. Since the successful launch of the Ceres-1 sea-launched Yao-1 rocket on September 5, 2023, Ceres-1 has successfully carried out three consecutive sea launches, leading the way among private commercial aerospace companies.
This launch mission is the fourth launch of the Ceres-1 rocket in 2024, the third launch in the Yellow Sea (Taiyuan Satellite Launch Center), the 38th launch in China and the 156th orbital space launch in the world. At the same time, this launch is also the fourth marine space launch in China and the world this year.
This launch mission is the fourth launch of the Ceres-1 rocket in 2024, the third launch in the Yellow Sea (Taiyuan Satellite Launch Center), the 38th launch in China and the 156th orbital space launch in the world.
Beijing Zhongke Aerospace Exploration Technology Co., Ltd. is the first domestic aerospace enterprise with mixed ownership, and it is also the target enterprise that Oriental Aerospace Port focuses on introducing. Relying on the scientific research strength and resource advantages of the Institute of Mechanics of the Chinese Academy of Sciences and the Aerospace Flight Technology Center of the Chinese Academy of Sciences, China Aerospace Science and Technology has been committed to the research and development and integration of space technology and aerospace vehicles as a platform for the transformation of major national scientific research projects, as well as the transformation and provision of technological achievements. Aerospace launch service. The Lijian-1 rocket project also adds a brand-new name card to the Oriental Space Port, which will surely promote the construction of the Oriental Space Port to take a solid step forward.
[Lijian-1 Y4 launch vehicle has been successfully delivered and will soon carry out its fourth launch mission]
The launch ceremony of Lijian-1 Y4 launch vehicle was successfully held at the China Science and Technology Aerospace Industrialization Base. Lijian-1 Y4 launch vehicle has completed all pre-delivery tasks according to the process and successfully passed the factory review. It will carry out the “one Carrier rocket, five satellites” launch mission at the Jiuquan Satellite Launch Center in late September. This is also the fourth launch mission of this type of rocket. This batch of launched satellites is mainly used to provide remote sensing information services…
Lijian-1 Y4 launch vehicle has been successfully delivered from the factory – China Science and Technology Aerospace News; Lijian-1 Y4 launch vehicle has completed all pre-delivery work according to the process. After testing, the product functions and performance indicators meet the flight mission requirements and have successfully passed the factory review. It will carry out the “one rocket, five satellites” launch mission at the Jiuquan Satellite Launch Center in late September. This batch of satellites is mainly used to provide remote sensing information services.
Under the pulsating production mode, the Lijian-1 Yao-6, Yao-7, and Yao-8 launch vehicles are carrying out mass production and final assembly in an orderly manner. The products, equipment, instruments, tooling, etc. involved in the entire process have been planned in advance. Deployment, production tasks are clear, and production and assembly can be started simultaneously in the final assembly and testing plant and intelligent manufacturing plant. It is worth mentioning that the Zhongke Aerospace Industrialization Base currently has complete structural cabin manufacturing and assembly capabilities. Starting from the Lijian-1 Yao-5 launch vehicle, the manufactured cabins will be directly used and delivered for final assembly, further shortening the production and manufacturing cycle. .
As China’s first medium-sized rocket to achieve high-density launches and the record holder for multiple satellite launches in a single launch of Chinese commercial rockets, the Lijian-1 carrier rocket has achieved complete success for three consecutive launches, accurately delivering 37 satellites with a total load of 3.5 tons into the scheduled orbit, with a 100% launch success rate. This type of rocket is suitable for rapid network launch of small and medium-sized satellites in medium and low orbits. It has a carrying capacity of 1.5 tons in a 500-kilometer sun-synchronous orbit. It is a medium-sized solid launch vehicle with core competitiveness in China’s commercial launch vehicle launch market and is also the main force in China’s commercial aerospace industry. It is one of the rockets that can effectively meet the needs of the commercial launch market in medium and low orbits. It also has the ability to respond quickly to diversified market demands and is committed to providing customers with highly reliable, low-cost, and high-density flight-based launch services.
On the 2025 Hour Hong- Kong SAR – Beijing time CNSA –China National Space Administration On 22nd August 2024, the combination of the Chang Zheng- Long March 7A Yao 9 carrier rocket vertically at the Wenchang Space Launch Site, Hainan Province China, Peoples Republic of China China successfully launched the ChinaSat 4A from the Wenchang Space Launch Center using the Long March 7A Yao 9 carrier rocket. This launch is the 154th space launch in the world in 2024, the 37th in China, the 4th this month, and the 2nd by the Long March 7A carrier rocket.
ChinaSat 4AThe satellite can provide users with voice, data, and radio and television transmission services. This mission is the 532nd flight of the Long March series of carrier rockets
时空道宇科技 Space Time Daoyu Technology – Zhejiang Spacetime Daoyu Technology Co., Ltd. Zhejiang Spacetime Daoyu Technology Co., Ltd. Geely GeeSpace is Located 10th Floor, Building 1, Xinglian Technology Park, No. 1535 Hongmei Road, Xuhui District, Shanghai Ultra Mega City, China, People’s Republic of China. .. Is a technology innovation enterprise strategically invested by Geely. Founded in 2018, it is committed to becoming a global leading AICT infrastructure and application solution provider. SpaceSpace is a technology innovation company under Geely Holding Group. It was founded in 2018 and is committed to becoming a global leading provider of aerospace information and communication infrastructure and application solutions. SpaceSpace is committed to promoting the commercialization and upgrading of China’s satellite industry chain and the commercialization and application of China’s aerospace technology.
SpaceTime Aerospace focuses on constellation business, satellite manufacturing, and satellite application fields, providing highly competitive, safe and reliable products and services. In the field of satellite manufacturing, through self-developed general-purpose satellite platforms of various scales, as well as low-cost, highly reliable satellites and supply chain products, one-stop in-orbit delivery from satellite development to satellite mass production AIT is achieved. In the field of satellite applications, SpaceTime Aerospace provides global medium- and low-speed satellite communication services, satellite-based high-precision positioning services, and satellite remote sensing AI services through future travel constellations and its own ground systems. It deeply integrates aerospace technology with automobile manufacturing, future travel, and artificial intelligence, and cooperates with ecological partners in an open manner to continuously create value for customers and build a new generation of aerospace digital economy.
Through the construction of the future travel constellation, Spacetime Daoyu will create a “future travel” ecosystem with full coverage, combining multi-dimensional carriers such as automobiles and consumer electronics products to empower smart travel, unmanned systems, smart cities and other fields, and create a future travel technology ecosystem.
Host: Mr. Wang, this satellite on the screen is your target, right?
Wang Yang: Yes. What we are doing is to send satellites into space and build a global low-orbit communication constellation. We are currently launching 72 satellites into a 600-kilometer low-altitude orbit. After these 72 satellites are deployed, they can provide satellite network signal coverage anywhere in the world except the North and South Poles.
Host: What is the difference between this low-orbit satellite and an ordinary satellite?
Wang Yang: For example, the live broadcast signals of the current Paris Olympics are generally transmitted via high-orbit satellites. From the surface of the earth, there is a geosynchronous orbit about 36,000 kilometers above the earth, and three high-orbit satellites can cover the entire surface of the earth. However, with the development of technology, we have found that satellites can play a greater role in the low-orbit area of 300 to more than 1,000 kilometers. For example, it may take 240 milliseconds of delay to communicate with a high-orbit satellite, but it only takes 20 milliseconds to communicate with a low-orbit satellite. The overall transmission efficiency and delay of a low-orbit satellite are even better than those of ground optical fibers. At the same time, it can cover places that our ground base stations cannot cover.
Host: Mr. Wang, you just said that three high-orbit satellites can cover the world, so is it necessary for us to build 72 (low-orbit satellites)?
Wang Yang: It is precisely because the cost of high-orbit satellites is too high. We need at least 1 billion RMB to build a high-orbit satellite, and its launch cost is also very expensive. If it is a low-orbit satellite, its price will drop by one or two orders of magnitude, and it is safer. The failure of any satellite will not affect the reliability of the entire communication. The capacity of low-orbit satellites will be larger and the speed will be faster. One of the problems we often encountered before is that the human ground network is so perfect, with optical fiber, base stations, and core networks. The ground network it has established can even provide network signals at the base camp in the Himalayas. But the real situation is that 94% of the world has no signal coverage. In the world, our understanding of the blue planet is still far from enough.
Host: Is it worth it for us to spend money to provide radio signals to places where there are not many people?
Wang Yang: This should be an inevitable trend. Humans will continue to expand the boundaries of space, such as conquering uninhabited areas, and even going beyond the Earth to travel to the stars. With satellites, whether our friends are in the desert, on the island farthest from the mainland, or even traveling in the future, our mobile phones, cars, and aircraft can all be connected to data everywhere.
Host: When will we be able to achieve the goal of launching 72 satellites?
Wang Yang: We should be able to complete the deployment of 72 satellites in about 12 months. (After the deployment of the third-orbit satellite is completed) we will provide commercial services to the world. In fact, we have reached a stage where applications are being put into practice.
Host: (Compared to the long cycle of other future industries) Yours only takes one year?
Wang Yang: Actually not. We have experienced 10 years of continuous entrepreneurship, and most of our team members have accumulated nearly 20 years of experience in the entire aerospace field.
Host: Do you have any longer-term goals?
Wang Yang: In the second phase, we will focus on the establishment of a low-orbit communication constellation of 300 satellites. The low-orbit space is already very crowded, with more than 6,000 Starlink satellites operating at 300 to 500 kilometers, so it is urgent to occupy the frequency and orbit positions in the entire space.
Host: We have the impression that artificial satellite technology is relatively mature. Are there any scientific shortcomings in your field that need to be addressed?
Wang Yang: In fact, aerospace itself is a system engineering, not a theoretical study. For example, the theoretical system of all the aircraft designs we are involved in now was very complete 100 years ago, and the current engineering cycle is just different.
Host: If you want to widen the gap with your peers, do you need to build a moat in certain areas?
Wang Yang: This is indeed necessary. We have established our own moat in the layout of the industrial chain of commercial aerospace and the commercialization of the landing. The landing of large-scale commercial applications has always been a difficulty in the development of commercial aerospace companies. We have taken the lead in achieving breakthroughs in this regard. I brought a self-developed satellite communication chip, which uses the industry-leading 22nm process. This chip is actually used in our current mobile phones. We have launched a constellation of low-orbit communication satellites for satellite communications. How do we use it on the ground and how do we demodulate our signals? We will implant this 4mm chip into existing mobile phones, and use the mobile phone antenna to transmit satellite data.
Host: It sounds like our goals are very ambitious. Can other industries or other supporting facilities keep up? Are they too advanced?
Wang Yang: I think what we are doing now is actually achievable based on China’s entire industrial foundation. Our team used to have many people from the national team, as well as some experts from the Chinese Academy of Sciences. At the beginning of the business, we repeatedly reminded ourselves that the probability of scientists dying in entrepreneurship is extremely high, and it may even be a disaster to some extent. Therefore, when we consider the entire business rhythm, it must be consistent with the underlying logic of commercialization.
Back to the information and communication industry, it is actually very clear. Since the beginning of 2000, the 3G era has come, and at that time we had mobile Internet. In the last decade, the 4G era came, and we have the current digital economy era. So what is this decade? We see China’s 5G and the United States’ Starlink. The information and communication industry will definitely be able to achieve full coverage from 5G to 6G, meeting all our human travel requirements from the surface to low altitude and then to space. Of course, I think 8G should be the era of interstellar immigration. We will have network signals all the way from here to Mars, and it will become a reality.
Moderator: Capital participation requires a valuation and calculation. Can you give us a calculation for the field you are engaged in? How much money do you think it will cost based on the future development potential and the technology we have invested in?
Wang Yang: We have invested billions in research and development in the past six years. In our industry, whether it is a rocket company, a satellite company, or now a more advanced constellation networking company, its valuation will definitely exceed 10 billion.
Host: Regarding policies, what kind of policy soil is needed to plan for future industries?
Wang Yang: Considering the characteristics of low-orbit communication constellations in commercial aerospace, I think we should encourage the globalization of China’s commercial aerospace in the foreign trade sector, that is, the “going global” of the entire technology products and services. We look forward to the introduction of some national standards in this regard. We used to study some Western industry-university-research behaviors. In China’s system, from districts, cities, provinces to the country, the entire industrial policy support and innovation encouragement for each industry are very complete, but in fact, the real technology will eventually fall on commercial realization. This should be the government holding the baton, and then through the market economy, that is, the role of leading enterprises, to drive the innovation of engineering and original technology. This is actually a logical cycle. If we only mention one end, this matter will definitely be biased.
Host: What will our lives be like when this field develops to a mature stage?
Wang Yang: Let me make a creative summary. I believe that humans will always have the need to communicate with the outside world in the social system, so the implementation of all technologies and engineering around human communication will continue to develop iteratively. Like what we are doing in aerospace now, no matter where humans are now or where humans will explore in the future, we will ensure that there is network connection and communication methods. This is my wish.
On the 16th August 2024 schedule to launch CNSA _China National Space Administration -China – People’s Republic of China 1535 Hours Hong Kong –Beijing Time China- People’s Republic of China…. at the Xichang Satellite Launch Center, Sichuan Province…..launch complex station three of the Xichang Launch Center in China, the ” Chang Zheng -Long March 4B Yao72 ” carrier rocket carrying the Remote Sensing Satellite No. 43-01was ignited and launched, and the satellite was sent to the pre determine Orbit..
At the Xichang Satellite Launch Center using the Long March 4B carrier rocket…… The satellite successfully entered the predetermined orbit and the launch mission was a complete success. The satellite is mainly used to carry out new technology experiments on the low-orbit constellation system. This mission is the 531st flight of the Long March series of carrier the satellite is mainly used to carry out new technology experiments for low-orbit constellation systems B03 and C03 are from the Microsatellite Innovation Institute of the Chinese Academy of Sciences.. This mission is the 531st Long March series of carrier rockets ..
Long March 4B rocket that carried out this launch mission has a 700kmSSO capacity of up to 2.5 tons. This is the first time that the Long March 4 rocket is equipped with a 4.2-meter fairing product, and a new configuration loading method of multiple satellite side hanging is adopted to maximize the space utilization rate inside the fairing. In addition, the rocket adopts a full-arrow rainproof design.
The launch mission this time is: 🔺The 3rd launch of China’s space program in August 2024 (all successful) 🔺The 3rd launch of Long March 4B in 2024 (all successful) 🔺The 12th launch of the Eighth Academy of Space Technology in 2024 (all successful) 🔺The 26th launch of Long March rockets in 2024 (25 successful) 🔺The 36th launch of China’s space program in 2024 (34 successful) 🔺The 153rd launch of global space program in 2024 (147 successful) 🔺The 209th launch of the Xichang Satellite Launch Center (199 successful) 🔺The 50th launch of the Long March 4B carrier rocket (49 successful) 🔺The 215th launch of the Eighth Academy of Space Technology’s overall rocket (211 successful) 🔺The 531st launch of the Long March series of carrier rockets (513 successful) 🔺China’s carrier rocket has been launched for the 610th time (574 successful