PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1587665
PUBLISHER: Stratistics Market Research Consulting | PRODUCT CODE: 1587665
According to Stratistics MRC, the Global Aerobridge Market is accounted for $8.54 billion in 2024 and is expected to reach $10.0 billion by 2030 growing at a CAGR of 3.2% during the forecast period. An aerobridge, also known as a jet bridge, jet way, or passenger boarding bridge, is a movable, enclosed walkway connecting an airport terminal gate directly to an aircraft door, allowing passengers to board and disembark safely and comfortably. Aerobridges adjust vertically and horizontally to match different aircraft types and door heights. They provide weather protection, security, and accessibility, enhancing overall passenger experience and efficiency in airport operations.
According to data of United Nations (UN) more than 54% of global population is living in urban areas, which is generating employment opportunities and improving income level of individuals.
Focus on passenger experience
The focus on passenger experience prioritizes seamless boarding processes and protection from weather elements, prompting airports to invest in aerobridges. These structures facilitate easy access to aircraft, reducing the physical strain of boarding and disembarking, particularly for elderly and disabled passengers. Additionally, well-designed aerobridges can accommodate various aircraft sizes, improving operational efficiency. As competition among airlines and airports intensifies, leading to greater demand for advanced aerobridges equipped with features such as automated boarding and enhanced safety measures.
Space constraints
Space constraints at many regional airports may lack the physical footprint required to install aerobridges, which need adequate room for maneuverability and structural support. This limitation forces some airports to rely on traditional boarding methods, such as stairs and buses, which are less efficient and comfortable. Additionally, existing terminal layouts might not accommodate retrofitting for aerobridges without extensive renovations, which can be cost-prohibitive. Consequently, the inability to integrate aerobridges into constrained airport designs stifles market growth and restricts the modernization of passenger boarding processes.
Technological advancements
Smart aerobridges equipped with automated docking systems and sensors improve alignment accuracy and reduce boarding times, minimizing delays and operational disruptions. Advanced materials and designs also extend aerobridge lifespan and lower maintenance costs, making them more attractive for airport operators. Furthermore, integrating data analytics enables real-time monitoring and predictive maintenance, improving reliability and reducing downtime. These innovations cater to modern airport needs, supporting faster, safer, and more cost-effective passenger flow management, thus fostering the market growth.
Economic downturns
Economic downturns in challenging economic climates, airlines and airports often prioritize essential operational expenses over capital-intensive projects, including new aerobridge installations. This budget reallocation limits the capacity for modernization or expansion projects that typically drive aerobridge demand. Smaller regional airports are particularly affected, as they may entirely forego aerobridge installations due to cost constraints. Additionally, during downturns, governments may reduce aviation sector funding or focus on alternative economic priorities, further slowing market growth.
Covid-19 Impact
COVID-19 negatively impacted the aerobridge market as global air travel declined, reducing airport and airline revenues. Many airports postponed infrastructure upgrades, including aerobridge installations, to conserve resources amid uncertain demand. Additionally, flight restrictions and grounded fleets further decreased the immediate need for new boarding solutions. However, with the focus on safer passenger flow and touch less boarding, post-pandemic recovery efforts have reignited interest in aerobridges, particularly those with advanced features that support health safety and improved airport operations.
The electromechanical segment is expected to be the largest during the forecast period
The electromechanical segment is predicted to secure the largest market share throughout the forecast period, due to enhanced operational efficiency and passenger experience. Electromechanical aerobridges, which rely on electric motors and advanced controls for movement, enable precise, reducing boarding times and minimizing human error. These systems are increasingly favoured over hydraulic models for their energy efficiency, lower maintenance, and eco-friendliness, aligning with the aviation industry's sustainability goals. Additionally, electromechanical aerobridges support automation features, which improve safety and reduce the need for manual adjustments, making them ideal for modern airport infrastructure.
The commercial aircraft segment is expected to have the highest CAGR during the forecast period
The commercial aircraft segment is projected to witness substantial growth during the projection period, due to the rising global air passenger demand and increased frequency of flights. As airlines expand routes and airports grow to accommodate larger fleets, the need for efficient, safe, and passenger-friendly boarding solutions like aerobridges intensifies. Commercial airlines prioritize reducing turnaround times, improving passenger comfort, and ensuring accessibility for all, fuelling aerobridge demand. Additionally, modernization and expansion projects in major airports to serve larger, newer commercial aircraft types directly drive the installation of advanced aerobridge systems.
During the projected timeframe, the Asia Pacific region is expected to hold the largest market share driven by increasing air travel demand and airport modernization initiatives. Rapid urbanization and rising disposable incomes are contributing to higher passenger traffic, prompting airports to enhance infrastructure. Governments and private stakeholders are investing in the development of new airports and the expansion of existing ones, further boosting aerobridge installations. Additionally, the emphasis on passenger comfort and safety is leading to the adoption of advanced aerobridge technologies, including automated systems and improved designs.
Over the forecasted timeframe, the North America region is anticipated to exhibit the highest CAGR, owing to a significant increase in air travel and ongoing airport modernization projects. Major U.S. airports are investing in upgrading infrastructure to enhance passenger experience, leading to higher demand for advanced aerobridges. The region's focus on safety, accessibility, and efficiency supports the adoption of innovative aerobridge technologies, including automated systems and smart features. With a strong emphasis on improving operational performance and passenger comfort, North America is poised to remain a key player in the global aerobridge market.
Key players in the market
Some of the key players profiled in the Aerobridge Market include ADELTE Group SL, FMT Aircraft Gate Support Systems AB, HUBNER Group, JBT AeroTech, thyssenkrupp AG, CIMC Tianda Holdings Co. Ltd., Deerns Groep BV, PT Bukaka Teknik Utama Tbk, ShinMaywa Industries Ltd., Mitsubishi Heavy Industries Ltd., ADELTE, PowerLIFT, AEROMAT, AEROLIFT, FMT Gate Support Systems, EHEIM, AERODECK, and Avro Aero.
In October 2024, Thyssenkrupp Steel signed a memorandum of understanding with Volkswagen to supply low-carbon steel from its future direct reduction plant. This collaboration aims to support Volkswagen's goal of reducing CO2 emissions in its supply chain, particularly for electric vehicles.
In July 2024, CIMC Tianda announced its acquisition of a 60% stake in Shenyang Jietong, a significant player in China's firefighting equipment industry, for 600 million yuan. This strategic move is part of their expansion plans in the firefighting sector
In October 2023, HUBNER has entered into a partnership with AKIA, a Turkish bus manufacturer, to provide its advanced electronically controlled steering system for the development of the "TransEra," a high-capacity bi-articulated electric bus. This 36-meter-long vehicle is designed to operate without special lanes, showcasing a significant advancement in urban public transport technology