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Tag: satellites

  • SpaceX’s Starlink Satellites to Descend in 2026: A Proactive Move to Minimize Cosmic Collisions

    SpaceX’s Starlink Satellites to Descend in 2026: A Proactive Move to Minimize Cosmic Collisions

    SpaceX, the prominent aerospace manufacturer and space transport services company, has announced plans to reposition about 4,400 of its satellites from their current altitude of 550 kilometers to approximately 480 kilometers above Earth over the course of the year. The decision was communicated by Michael Nicholls, SpaceX’s Vice President of Engineering. The strategic move to a lower orbital altitude is anticipated to drastically reduce the decay time of satellites at the end of their operational life.

    Reducing Satellite Decay Time

    Nicholls explained that the strategic change in altitude would mean a significant reduction in satellite decay time by over 80%. This allows obsolete satellites to withdraw from orbit more efficiently. Nicholls further pointed out that the lower orbit is relatively less congested as fewer satellites operate below the 500-kilometer mark. This, therefore, reduces the chances of collisions in an already congested orbital band.

    Mitigating Risks

    Furthermore, operating at a lower orbital altitude will assist in mitigating risks associated with “uncoordinated maneuvers and launches by other satellite operators,” according to Nicholls. The need for these strategic changes has grown as the number of satellites in space continues to increase.

    This significant move comes following an isolated incident reported by SpaceX in December. In the incident, one of the company’s satellites generated a minor amount of debris and interrupted communications momentarily with another satellite in orbit at 418 kilometers. SpaceX has stated that it is currently investigating the cause of the incident.

    Current Orbit Traffic

    Current estimates from the European Space Agency (ESA) suggest that around 40,000 objects are in Low Earth Orbit (LEO) at altitudes below 2,000 kilometers. In addition, the ESA also estimates that over 1.2 million pieces of debris larger than one centimeter are in orbit. Such objects are large enough to cause catastrophic damage if they collide with active spacecraft.

    To avoid such collisions, satellites routinely perform automated orbit adjustments using tracking data from national systems like the United States Space Command. As the number of satellites in orbit has grown, these maneuvers have significantly increased.

    SpaceX has been proactive in risk mitigation maneuvers. Hugh Lewis, Professor of Aeronautics at the University of Birmingham, noted that SpaceX conducted 144,404 conjunction risk mitigation maneuvers between December 2024 and May 2025, a 200% increase compared to the previous six months. Lewis attributed the rise to the growing Starlink fleet and the general increase in objects orbiting Earth.

    Questions & Answers

    Why is SpaceX planning to move its satellites to a lower orbit?
    To reduce the decay time of satellites at the end of their operational life and to mitigate the risk of collisions in an already crowded orbital band.

    What was the incident that prompted this decision by SpaceX?
    In December, a minor amount of debris was generated by one of SpaceX’s satellites which temporarily disrupted communications with another satellite. This incident highlighted potential risks and prompted the decision for repositioning.

    How often do satellites perform orbit adjustments to avoid collisions?
    Satellites routinely perform automated orbit adjustments using tracking data from national systems like the United States Space Command. As the number of satellites grows, these maneuvers have increased sharply.

  • Powering 5G and beyond with satellites

    Powering 5G and beyond with satellites

    The development of 5G and its applications in the Internet of Things, where 1.8 billion active 5G connections are estimated by 2025, is generating greater interest in satellite solutions to fulfill the criteria of reduced network latency, increased data volume, and connection density. In areas where terrestrial networks are absent or found lacking, satellites can fill the gap to provide ubiquitous connectivity in an increasingly connected world.

    In powering the next wave of technological innovations, satellites offer coverage that surpasses terrestrial networks, delivering high-powered reliable connectivity and secure global mobility. Satellite connectivity plays a particularly significant role in maritime and aeronautical industries, as well as use in critical disaster relief and emergency response missions.

    Without a doubt, satellites are emerging as integral components in 5G networks to address the unprecedented surge in connectivity demand to ensure that consumers and enterprises have access to data anytime, anywhere. Advances in this field have also been rapid to keep up with the global digital evolution. Satellite connectivity, once synonymous with high costs and high latency, is now viewed in a new light with recent advancements. For instance, low earth orbit (LEO) constellations have gained momentum as a more cost-effective alternative to improve coverage area, improve quality and deliver low-latency connections, particularly for remote populations. Next-generation LEOs are launched to significantly increase bandwidth to benefit all rungs of societies.

    With satellites playing an important role in the global connectivity ecosystem to connect the unconnected and provide backhaul connectivity for mobile network operators, both satellite communications startups and giants are pushing boundaries to deliver innovation and seamless solutions. For instance, UK satellite operator Immarsat recently announced the launch of Orchestra, a new and innovative multi-orbit global narrowband network that combines geostationary (GEO), low earth orbit, highly elliptical orbit (HEO), and terrestrial 5G. Building on existing connectivity capabilities, Immarsat also launched ELERA to accelerate IoT development and support humanitarian missions.

    SES also unveiled its O3b mPOWER constellation of 11 satellites to deliver multi-gigabit connectivity services to industries including telecommunications, aviation and maritime. This system is capable of providing intelligence-driven connectivity services with optimized global bandwidth availability and resiliency.

    To support intelligent 5G networks, satellite connectivity must be embraced to empower consumers, enterprises, and governments. For communications providers and mobile network operators, this means that satellite solutions are becoming important features to enhanced 5G networks to keep up with increased broadband demand. Satellites will complement terrestrial networks through traffic offloading, harnessing satellite’s multicasting or broadcasting functionality for new uses, enabling verticals such as smart mines, ports, and farms. It also opens up opportunities for the use of cloud in industries such as marine and offshore and fisheries, where activities are conducted predominantly in remote areas.

    However, mobile network operators tend to place emphasis on 5G upgrades in highly-populated cities. Because of this, satellite-based broadband is critical to increasing the reach to often neglected, underserved populations in rural areas, where connectivity can close a digital divide already aggravated by the pandemic to raise overall digital inclusion levels.

    In Asia Pacific, for instance, countries comprising tens of thousands of islands, such as Indonesia and the Philippines, are well-positioned to benefit from satellite as a viable and affordable alternative to connect the country and underserved geographies, as opposed to incurring high economic costs from building terrestrial network infrastructure.

    In the industry, some providers are primarily focused on providing 5G services to smartphone users – serving as mobile roaming partners to offer connections to hard-to-reach precincts. In view of this, 3GPP is currently looking into introducing non-terrestrial networks in 5G standards, to be published in the 3GPP Release 17 in 2022. This could signal new collaboration opportunities between mobile network operators and satellite operators in the near future.

    As countries accelerate digitalization ambitions, connectivity will become the new driver of economic growth and social cohesion. Citing Indonesia as an example, where its digital economy is predicted to triple to US$124 billion by 2025, the government is already looking into launching its largest telecommunications satellite in the near future. Clearly, the rise of satellites can be transformative. It is the vision of many for the region to witness faster digitalization and stronger economies.

  • Indian, Australian satellites to launch next week

    Indian, Australian satellites to launch next week

    Arianespace will launch two satellites next week that will provide communications capacity in Australia and India respectively.

    In the early hours of October 5, Arianespace will launch Sky Muster II, the second communications satellite for Australia’s national broadband network (NBN), and the GSAT-18 for the Indian Space Research Organization (ISRO).

    Sky Muster II will be used to provide NBN services in particularly remote and rural regions of the country. The satellite – along with the Sky Muster I, which launched in September last year – will be used to cover roughly 3% of the population.

    GSAT-18 will be used to provide telecommunications services in India, along with ISRO’s current fleet of 14 telecoms satellites.

    In other satellite news, Singtel has completed one of the first commercial installations in the APAC region for Inmarsat’s maritime-focused high speed satellite broadband service Fleet Xpress.

    Singtel completed he installation on “K” Line Ship Management Singapore’s massive container ship Houston Bridge, the companies announced. The ship management company will use Fleet Xpress for big data analysis to improve operational efficiencies such as monitoring engine performance.

    “The launch of Fleet Xpress marks a new page in maritime communications with continuous connectivity and guaranteed performance across the world’s oceans,” Inmarsat Marine chief sales officer Gerbrand Schalkwijk said.

    “We have a long standing relationship with Singtel, who are one of our leading partners in Asia, and we look forward to continuing this partnership for many years to come.”