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Markt für Allwetter-Landesysteme – nach Typ (Mikrowellen-Landesystem, bodengestütztes Ergänzungssystem, Instrumentenlandesystem), nach Anwendung (kommerzieller Serviceflughafen, nicht-kommerzieller Serviceflughafen) und Prognose 2024 – 2032
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<div role="tabpanel" class="tab-pane fade-in active" id="overview"> <div> <h4>All-Weather Landing System Market - By Type (Microwave Landing System, Ground-Based Augmentation System, Instrument Landing System), By Application (Commercial Service Airport, Non-Commercial Service Airport) & Forecast 2024 – 2032</h4> </div> <div><p> </p> <h1><strong>All-Weather Landing System Market Size</strong></h1> <p>All-Weather Landing System Market was valued at <strong>USD 1.8 billion </strong>in 2023 and is estimated to register a <strong>CAGR of around 7%</strong> between 2024 and 2032. The growth of the market can be attributed to increasing air traffic and demand for safer landings.</p> <p>To get key market trends</p> <p> Download Free Sample</p> <p>In August 2023, the international air transport association (IATA) reported a robust continuation of the post-pandemic recovery in passenger traffic. Total traffic, measured in revenue passenger kilometers (RPKs), surged by 28.4% compared to August 2022, reaching a global level of 95.7% of pre-COVID levels. Domestic traffic experienced a notable increase of 25.4% compared to August 2022, surpassing the results from August 2019 by 9.2%. This growth was primarily fueled by strong demand within the Chinese domestic market. International traffic exhibited an even more substantial upswing, rising by 30.4% compared to the same month in the previous year. All global markets witnessed double-digit percentage gains year on year. The international RPKs reached 88.5% of the levels observed in August 2019, indicating a significant recovery in international air travel.</p> <p>The growing volume of air traffic worldwide is leading to an increased demand for advanced landing systems that can ensure safe and efficient landings in various weather conditions. AWLS provides the capability for aircraft to land safely in adverse weather conditions, such as low visibility or challenging weather patterns, contributing to enhanced aviation safety.<br> </p> <p>Regulatory mandates and safety standards will play a pivotal role in shaping the all-weather landing system industry outlook through 2032. Stringent regulatory mandates and safety standards imposed by aviation authorities around the world are compelling the aviation industry to adopt advanced landing systems. Compliance with these regulations, which often require the implementation of state-of-the-art technologies to enhance safety, drives the adoption of AWLS by airlines and airports.<br> </p> <table> <caption>All-Weather Landing System Market Report Attributes</caption> <tbody> <tr> </tr> </tbody> <thead> </thead> <tbody> <tr> <th scope="">Report Attribute</th> <th scope="">Details</th> </tr> </tbody> <tbody> <tr> <th scope="">Base Year</th> <td>2023</td> </tr> <tr> <th scope="">All-Weather Landing System Market Size in 2023</th> <td>USD 1.8 Billion</td> </tr> <tr> <th scope="">Forecast Period</th> <td>2024 to 2032</td> </tr> <tr> <th scope="">Forecast Period 2024 to 2032 CAGR</th> <td>7%</td> </tr> <tr> <th scope="">2032 Value Projection</th> <td>USD 3.4 Billion</td> </tr> <tr> <th scope="">Historical Data for</th> <td>2018 - 2023</td> </tr> <tr> <th scope="">No. of Pages</th> <td>200</td> </tr> <tr> <th scope="">Tables, Charts & Figures</th> <td>215</td> </tr> <tr> <th scope="">Segments covered</th> <td>Type, Application</td> </tr> <tr> <th scope="">Growth Drivers</th> <td> <ul> <li>Increased air traffic across the globe</li> <li>Growing government investments for construction of new airports</li> <li>Rising demand for operational efficiency at airports</li> <li>Technological advancements and integration of next-generation technologies</li> </ul> </td> </tr> <tr> <th scope="">Pitfalls & Challenges</th> <td> <ul> <li>High implementation costs</li> <li>Regulatory hurdles</li> </ul> </td> </tr> </tbody> <tbody> </tbody> </table> <p>What are the growth opportunities in this market?</p> <p> Download Free Sample</p> <p>Safety-conscious practices and the need to meet international aviation standards are key factors influencing the market. In contrast, the process of obtaining approvals and certifications for new or upgraded all-weather landing systems can be time-consuming and complex. Regulatory hurdles and the need to meet international standards may slow down the adoption of AWLS as stakeholders navigate through the necessary approvals and compliance processes.</p> <h2>All-Weather Landing System Market Trends</h2> <p>The incorporation of artificial intelligence (AI) and automation in AWLS is expected to be a growing trend in the AWLS market. Advanced algorithms and machine learning can enhance decision-making processes during landings, improving precision and efficiency. Automation features may assist pilots in navigating challenging weather conditions, contributing to overall aviation safety, and thus driving market growth.<br> <br> Against this backdrop, in July 2022, Elbit Systems introduced an advanced technological vision suite designed for military helicopters, embodying fifth-generation aircraft technology. This innovative suite incorporates a sophisticated sensor array, an AI-powered mission computer, and a distinctive Helmet Mounted Display (HMD) system. Offering helicopter pilots, the ability to perceive the environment through the aircraft's structure, the suite delivers real-time, clear, and colored wide-field visibility, day and night, even in challenging weather conditions. This technology addresses a critical challenge for military helicopters, allowing low-altitude flights in degraded visibility conditions and transforming adverse weather scenarios into operational advantages.</p> <h2>All-Weather Landing System Market Analysis</h2> <p>Learn more about the key segments shaping this market</p> <p> Download Free Sample</p> <p>Based on the application, the market is divided into commercial service airport and non-commercial service airport. In 2023, the commercial service airport segment accounted for around 75% of the market share. The adoption of all-weather landing systems (AWLS) at commercial service airports is favored by the aviation industry's relentless commitment to safety and efficiency. AWLS addresses the critical need for reliable landing capabilities in adverse weather conditions, ensuring uninterrupted air traffic flow. As aviation regulations increasingly prioritize advanced technologies, airports seek to comply with stringent safety standards, driving the integration of AWLS. The system's ability to minimize weather-related disruptions enhances overall operational resilience, making AWLS an attractive investment for airports aiming to provide consistent and secure services to passengers and airlines alike.</p> <p>Learn more about the key segments shaping this market</p> <p> Download Free Sample</p> <p>Based on the type, the market is categorized into microwave landing system (MLS), ground-based augmentation system and instrument landing system. In 2023, the instrument landing system segment accounted for around 68% of the market share. The demand for instrument landing systems (ILS) is primarily driven by the imperative for enhanced aviation safety and operational efficiency. Airlines and airports worldwide seek reliable landing systems to facilitate safe landings in adverse weather conditions, low visibility, and during challenging situations. Regulatory mandates and international safety standards further propel the adoption of ILS technologies. The desire to accommodate increased air traffic, especially in crowded airspace, emphasizes the need for precise and automated landing guidance systems, making ILS an integral component of modern aviation infrastructure.</p> <p>Looking for region specific data?</p> <p> Download Free Sample</p> <p>North America dominated the global all-weather landing system market with a major share of around 35% in 2023. North America all-weather landing system (AWLS) industry is thriving due to several factors. The region's vast and diverse geography exposes airports to a range of weather conditions, making advanced landing systems crucial for maintaining operational continuity. Stricter regulatory standards in the aviation sector, coupled with the priority placed on safety and reliability, drive the adoption of AWLS technologies. Furthermore, the substantial air traffic in North America necessitates robust systems that can facilitate landings in various weather scenarios. Ongoing investments in aviation infrastructure and a proactive approach to adopting cutting-edge technologies contribute to the flourishing AWLS industry in the region.</p> <h2>All-Weather Landing System Market Share</h2> <p>Continental AG and Raytheon Technologies Corporation hold a significant market share of over 10% of overall business. Continental AG invests heavily in research and development to enhance existing technologies and develop new, advanced features for All-Weather Landing Systems. This allows the company to stay competitive by offering innovative and technologically superior products.<br> <br> Raytheon Technologies Corporation focus on forming strategic partnerships with other companies, research institutions, or government agencies to share expertise, resources, and access new markets. This enables companies to leverage complementary strengths, share risks, and expand their market reach.</p> <h2>All-Weather Landing System Market Companies</h2> <p>Major players operating in the all-weather landing system industry are</p> <ul> <li>Astronics Corporation</li> <li>Cobham plc</li> <li>Collins Aerospace</li> <li>Honeywell International Inc.</li> <li>Indra Sistemas S.A.</li> <li>Leonardo S.p.A.</li> <li>Mopiens Inc.</li> <li>Multi Electric- OCEM Airfield</li> <li>NEC Corporation (AT&T Inc.)</li> <li>Raytheon Technologies Corporation</li> <li>Saab AB</li> <li>Sierra Nevada Corporation</li> <li>Thales Group</li> </ul> <h2>All-Weather Landing System Industry News</h2> <ul> <li>In October 2023, the Airports Authority of India (AAI) implemented an Instrument Landing System (ILS) at Belagavi Airport in Karnataka. The ILS was installed specifically on the approach for runway 26, facilitating aircraft landings during conditions of low visibility and at night. To address the increasing air traffic at Belagavi Airport, AAI commissioned a Category-I ILS for the runway. The total cost for the installation of this facility amounted to ?12.38 Crores (~USD 1.5 million), according to AAI.<br> </li> <li>In January 2023, Raytheon Intelligence and Space secured a contract from the Naval Air Traffic Management Systems Program Office of the U.S. Navy to supply the Joint Precision Approach and Landing Systems to the Japan Maritime Self-Defense Force. The GPS navigation and precision landing system will be installed on the JMSDF JS Izumo carrier. The JPALS system provides guidance for aircraft landings on carriers and assault ships, functioning effectively in diverse weather and surface conditions. Notably, JPALS integration is standard on all F-35 aircraft and is being implemented across the entire U.S. Navy aircraft and assault ship fleet.</li> </ul> <h3>The all-weather landing system market research report includes in-depth coverage of the industry with estimates & forecast in terms of revenue (USD Billion) from 2018 to 2032 for the following segments</h3> <p><strong>Click here</strong> to Buy Section of this Report</p> <p><strong>Market, By Type</strong></p> <ul> <li>Microwave Landing System (MLS)</li> <li>Ground-Based Augmentation System</li> <li>Instrument Landing System (ILS)</li> </ul> <p><strong>Market, By Application</strong></p> <ul> <li>Commercial Service Airport</li> <li>Non-Commercial Service Airport</li> </ul> <p>The above information is provided for the following regions and countries</p> <ul> <li>North America <ul> <li>U.S.</li> <li>Canada</li> </ul> </li> <li>Europe <ul> <li>UK</li> <li>Germany</li> <li>France</li> <li>Italy</li> <li>Spain</li> <li>Russia</li> <li>Nordics</li> </ul> </li> <li>Asia Pacific <ul> <li>China</li> <li>India</li> <li>Japan</li> <li>South Korea</li> <li>ANZ</li> <li>Southeast Asia </li> </ul> </li> <li>Latin America <ul> <li>Brazil</li> <li>Mexico</li> <li>Argentina </li> </ul> </li> <li>MEA <ul> <li>UAE</li> <li>Saudi Arabia</li> <li>South Africa</li> </ul> </li> </ul> <!-- disable inspect element start --><!-- disable inspect element start --><!-- <p><a onclick=""myfunction33(this)"" data-form-type=""requestsample_sectional"" id=""button55"" href=""""><b>Click here</b></a> to buy sections of this report</p><br/> --> <p> </p> </div> </div> <div role="tabpanel" class="tab-pane fade" id="tableofcontents"> <div> <h4>Table of Content</h4> </div> <div> <h5 class="p"><p><strong>Report Content</strong></p> <p><strong>Chapter 1 Methodology & Scope</strong></p> <p>1.1 Market scope & definition</p> <p>1.2 Base estimates & calculations</p> <p>1.3 Forecast calculation</p> <p>1.4 Data sources</p> <p>1.4.1 Primary</p> <p>1.4.2 Secondary</p> <p>1.4.2.1 Paid sources</p> <p>1.4.2.2 Public sources</p> <p><strong>Chapter 2 Executive Summary</strong></p> <p>2.1 All-weather landing system market 3600 synopsis, 2018 - 2032</p> <p>2.2 Business trends</p> <p>2.2.1 Total addressable market (TAM), 2024-2032</p> <p>2.3 Regional trends</p> <p>2.4 Type trends</p> <p>2.5 Application trends</p> <p><strong>Chapter 3 All-Weather Landing System Industry Insights</strong></p> <p>3.1 Industry ecosystem analysis</p> <p>3.2 Supplier landscape</p> <p>3.2.1 Component suppliers</p> <p>3.2.2 Manufacturers</p> <p>3.2.3 System integrators</p> <p>3.2.4 Software developers</p> <p>3.2.5 End-users</p> <p>3.3 Profit margin analysis</p> <p>3.4 Technology and innovation landscape</p> <p>3.5 Patent analysis</p> <p>3.6 Key news and initiatives</p> <p>3.7 Regulatory landscape</p> <p>3.8 Impact forces</p> <p>3.8.1 Growth drivers</p> <p>3.8.1.1 Increased air traffic across the globe</p> <p>3.8.1.2 Growing government investments for construction of new airports</p> <p>3.8.1.3 Rising demand for operational efficiency at airports</p> <p>3.8.1.4 Technological advancements and integration of next-generation technologies</p> <p>3.8.2 Industry pitfalls & challenges</p> <p>3.8.2.1 High implementation costs</p> <p>3.8.2.2 Regulatory hurdles</p> <p>3.9 Growth potential analysis</p> <p>3.10 Porter’s analysis</p> <p>3.11 PESTEL analysis</p> <p><strong>Chapter 4 Competitive Landscape, 2023</strong></p> <p>4.1 Introduction</p> <p>4.2 Company market share, 2023</p> <p>4.3 Competitive analysis of major market players, 2023</p> <p>4.3.1 Honeywell international Inc.</p> <p>4.3.2 Indra sistemas S.A.</p> <p>4.3.3 Leonardo S.p.A.</p> <p>4.3.4 Raytheon technologies corporation</p> <p>4.3.5 Astronics corporation</p> <p>4.3.6 Thales group</p> <p>4.3.7 Sierra nevada corporation</p> <p>4.4 Competitive positioning matrix, 2023</p> <p>4.5 Strategic outlook matrix, 2023</p> <p><strong>Chapter 5 All-Weather Landing System Market Estimates & Forecast, By Type (Revenue)</strong></p> <p>5.1 Key trends, by type</p> <p>5.2 Microwave landing system (MLS)</p> <p>5.3 Ground-based augmentation system</p> <p>5.4 Instrument landing system (ILS)</p> <p><strong>Chapter 6 All-Weather Landing System Market Estimates & Forecast, By Application (Revenue)</strong></p> <p>6.1 Key trends, by application</p> <p>6.2 Commercial service airport</p> <p>6.3 Non-commercial service airport</p> <p><strong>Chapter 7 All-Weather Landing System Market Estimates & Forecast, By Region</strong></p> <p>7.1 Key trends, by region</p> <p>7.2 North America</p> <p>7.2.1 U.S.</p> <p>7.2.2 Canada</p> <p>7.3 Europe</p> <p>7.3.1 UK</p> <p>7.3.2 Germany</p> <p>7.3.3 France</p> <p>7.3.4 Italy</p> <p>7.3.5 Spain</p> <p>7.3.6 Russia</p> <p>7.3.7 Nordics</p> <p>7.4 Asia Pacific</p> <p>7.4.1 China</p> <p>7.4.2 India</p> <p>7.4.3 Japan</p> <p>7.4.4 South Korea</p> <p>7.4.5 ANZ</p> <p>7.4.6 Southeast Asia</p> <p>7.5 Latin America</p> <p>7.5.1 Brazil</p> <p>7.5.2 Mexico</p> <p>7.5.3 Argentina</p> <p>7.6 MEA</p> <p>7.6.1 South Africa</p> <p>7.6.2 Saudi Arabia</p> <p>7.6.3 UAE</p> <p><strong>Chapter 8 Company Profiles</strong></p> <p>8.1 ADB Safegate</p> <p>8.2 Advanced Navigation and Positioning Corporation</p> <p>8.3 Astronics Corporation</p> <p>8.4 Boeing</p> <p>8.5 Calzoni</p> <p>8.6 Cobham plc</p> <p>8.7 Collins Aerospace</p> <p>8.8 Honeywell International Inc.</p> <p>8.9 Indra Sistemas S.A.</p> <p>8.10 Leonardo S.p.A.</p> <p>8.11 Mopiens Inc.</p> <p>8.12 Multi Electric- OCEM Airfield</p> <p>8.13 NEC Corporation (AT&T Inc.)</p> <p>8.14 Raytheon Technologies Corporation</p> <p>8.15 Saab AB</p> <p>8.16 Safran</p> <p>8.17 Sierra Nevada Corporation</p> <p>8.18 Systems Interface Limited</p> <p>8.19 Thales Group</p> <p>8.20 Universal Avionics Systems Corporation</p> </h5> </div> </div> <div role="tabpanel" class="tab-pane fade" id="tableoffigure"> <div></div> <div> <h5 class="p"><ul> <li>Astronics Corporation</li> <li>Cobham plc</li> <li>Collins Aerospace</li> <li>Honeywell International Inc.</li> <li>Indra Sistemas S.A.</li> <li>Leonardo S.p.A.</li> <li>Mopiens Inc.</li> <li>Multi Electric- OCEM Airfield</li> <li>NEC Corporation (AT&T Inc.)</li> <li>Raytheon Technologies Corporation</li> <li>Saab AB</li> <li>Sierra Nevada Corporation</li> <li>Thales Group</li> </ul> </h5> </div> </div>
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