고고도 항공 플랫폼 스테이션(HAAPS) 시장 : 유형, 주파수 대역, 서브시스템, 용도, 최종사용자, 국가별 분석 및 예측(2023-2033년)
Global High-Altitude Aeronautical Platform Station (HAAPS) Market: Focus on Type, Frequency Band, Subsystem, Application, End User, and Country - Analysis and Forecast, 2023-2033
상품코드 : 1453588
리서치사 : BIS Research
발행일 : 2024년 03월
페이지 정보 : 영문
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한글목차

고고도 항공 플랫폼 스테이션(HAAPS)은 성층권에서 운영되는 고고도 플랫폼으로, 기본적으로 인공위성의 역할을 수행하지만 지구 대기권 내에서 운영됩니다.

HAAPS는 일반적으로 원격조종 항공기와 주변 지원 시스템을 포함한 무인항공기 시스템(UAS)과 비교되지만, 통신, 환경 감시, 재난 대응 등 다양한 용도의 전략적 계획을 실행할 수 있는 자동화된 함대 시스템의 형태를 띠고 있다는 점에서 차별성을 지닙니다.의 운용 고도는 보통 18-22km(약 59,000-72,000피트)로 성층권 하층에 위치합니다. 이 범위는 기술 및 대기 조건을 고려하여 다양한 응용 분야에서 역할을 최적화하기 위해 선택됩니다.

주요 시장 통계
예측 기간 2023-2033년
2023년 평가액 11억 9,440만 달러
2033년 전망 33억 3,810만 달러
CAGR 10.82%

용도별로는 통신 부문이 시장을 독점하고 있습니다.

용도별로는 급증하는 세계 커넥티비티 수요에 대응하는 데 있어 매우 중요한 역할을 하는 통신 부문이 선두를 달리고 있습니다.

유형별로는 UAV 부문이 시장을 독식하고 있습니다.

유형별로는 무인항공기(UAV) 유형이 시장을 주도하고 있습니다. 이 부문 수요 증가는 고급 정보, 감시 및 정찰 능력에 대한 군의 요구에 의해 주도되고 있으며, UAV는 긴 비행 지속 시간, 확장된 항속거리, 다른 플랫폼에 비해 빠른 배치 능력으로 인해 이러한 요구 사항에 이상적인 솔루션을 제공합니다. 제공합니다.

주파수 대역별로는 C밴드 부문이 시장을 독점하고 있습니다.

이 부문 수요 증가는 특히 서비스 취약 지역과 원격지에서의 광범위한 광대역 연결에 대한 수요에 의해 주도되고 있으며, HAAPS 시스템은 최종 사용자에게 고정형 광대역 연결을 제공하고, 모바일 네트워크와 코어 네트워크 간 트래픽을 백홀링하기 위해 고려되고 있습니다. 모바일 네트워크 코어 네트워크 간 트래픽 백홀 등에 고려되고 있습니다.

하위 시스템별로는 비행 제어 하위 시스템 부문이 시장을 독점하고 있습니다.

고고도 및 다양한 대기 조건에서 고고도에서의 운영 제어 및 안전성을 강화해야 할 필요성이 이 부문 수요 증가를 주도하고 있습니다. 이러한 고도 제어 시스템은 장기간 자율적으로 작동해야 하는 HAAPS의 안정성과 항법을 유지하는 데 매우 중요하며, HAAPS의 복잡성과 기능이 향상됨에 따라 비행 제어 서브시스템은 이러한 플랫폼의 복잡한 운영을 관리하기 위해 그 어느 때보다 중요해졌습니다. 그 어느 때보다 중요해졌습니다.

세계의 고고도 항공 플랫폼 스테이션(HAAPS) 시장을 조사했으며, 시장 개요, 주요 동향, 규제 환경, 시장 영향요인 및 시장 기회 분석, 시장 규모 추이 및 예측, 각종 부문별/지역별 상세 분석, 경쟁 구도, 주요 기업 개요 등의 정보를 정리하여 전해드립니다. 정리했습니다.

목차

주요 요약

제1장 시장

제2장 용도

제3장 제품

제4장 지역

제5장 시장 : 경쟁 벤치마킹 및 기업 개요

제6장 조사 방법

LSH
영문 목차

영문목차

Global High-Altitude Aeronautical Platform Station Market Overview

The high-altitude aeronautical platform station (HAAPS) are high-altitude platforms that operate in the stratosphere, essentially serving as satellites but within the Earth's atmosphere. They are commonly compared to unmanned aircraft systems (UAS), which include remotely piloted aircraft and the support systems around them. However, HAPS are distinct because they form an autonomous fleet system that can execute strategic plans for various applications such as telecommunications, environmental monitoring, and disaster response. The operational altitude for high-altitude aeronautical platform station (HAAPS) is typically between 18 to 22 kilometers (approximately 59,000 to 72,000 feet), which is in the lower stratosphere. This altitude range is chosen to optimize their role in various applications while considering technical and atmospheric conditions. In terms of regulation, HAPS are governed by a framework that reflects their unique nature, distinguishing them from more commonly known drones or unmanned aircraft, which are often referred to when discussing UAS. This regulatory distinction is important as it influences the development, deployment, and integration of HAPS into national and international airspace.

To encapsulate, while HAPS share similarities with UAS in being unmanned and having the capability to perform tasks autonomously, they are specifically designed to operate at higher altitudes for extended periods, fulfilling roles that are complementary to satellites and, in some aspects, traditional aircraft. Their unique operational characteristics have led to the development of a dedicated regulatory approach to ensure their safe and effective use in the stratosphere.

KEY MARKET STATISTICS
Forecast Period2023 - 2033
2023 Evaluation$1,194.4 Million
2033 Forecast$3,338.1 Million
CAGR10.82%

Market Introduction

HAAPS platforms represent an emerging technology poised to create a novel market in the field of remote sensing and surveillance. They present innovative and supplementary functionalities to those provided by satellites, ground-based infrastructure, and remotely piloted aircraft systems (RPAS), delivering these capabilities at a comparatively reduced expense. Furthermore, several high-altitude aeronautical platform station (HAAPS) have been under development for years, with notable examples including BAE's Phasa-35 and Leonardo's Sky Dweller. Among the most promising is Airbus's Zephyr, which was estimated to cost between $10 to $20 million per unit in 2016. Zephyr achieved multiple milestones during a test flight in 2022, including surpassing its 2018 world record for unmanned aerial vehicle (UAV) endurance by completing over 63 days of continuous flight. This test demonstrated capabilities critical for operational success, such as international airspace navigation, beyond line-of-sight control via satellite communications, direct downlinking to forward ground stations, and over-water flight, essential for expeditionary advanced base operations (EABO).

Industrial Impact

The industrial impact of the high-altitude aeronautical platform station (HAAPS) market is multifaceted. It offers significant enhancements in telecommunications, facilitating improved connectivity in remote areas that traditionally lack infrastructure. This has implications for both commercial and emergency communication networks, enhancing the reach of internet services and providing a backbone for IoT applications. Additionally, high-altitude aeronautical platform station (HAAPS) technology plays a crucial role in surveillance and monitoring, contributing to improved weather forecasting, environmental monitoring, and border security. The evolution of this market is likely to spur innovation in aerospace and communication technologies, potentially creating new industry standards and practices.

Market Segmentation:

Segmentation 1: Application

Communication Segment to Dominate the Global High-Altitude Aeronautical Platform Station (HAAPS) Market (by Application)

The communication segment is leading the global high-altitude aeronautical platform station (HAAPS) market (by application) due to its pivotal role in addressing the burgeoning global demand for connectivity.

Segmentation 2: by End User

Segmentation 3: by Type

UAVs to Dominate the Global High-Altitude Aeronautical Platform Station (HAAPS) Market (by Type)

The global high-altitude aeronautical platform station (HAAPS) market (by type) is led by the unmanned aerial vehicle (UAVs) type segment. The growing demand within the segment is propelled by the military's need for advanced intelligence, surveillance, and reconnaissance capabilities. UAVs provide an ideal solution for these requirements due to their extended flight endurance, augmented range capabilities, and the ability to be deployed rapidly compared to other platforms.

Segmentation 4: by Frequency Band

C-Band Segment to Dominate the Global High-Altitude Aeronautical Platform Station (HAAPS) Market (by Frequency Band)

The global high-altitude aeronautical platform station (HAAPS) market (by frequency band) is led by the C-band. The growing demand within the segment is propelled by the need for broader broadband connectivity, especially in underserved communities and remote areas. High-altitude aeronautical platform station (HAAPS) systems are increasingly being considered for providing fixed broadband connectivity for end-users and backhauling traffic between mobile and core networks.

Segmentation 5: by Subsystem

Flight Control Subsystem Segment to Dominate the Global High-Altitude Aeronautical Platform Station (HAAPS) Market (by Subsystem)

The global high-altitude aeronautical platform station (HAAPS) market (by subsystem) is led by the flight control subsystem. The growing demand within the segment is propelled by the need for enhanced operational control and safety in varying atmospheric conditions at high altitudes. These advanced control systems are crucial for maintaining the stability and navigation of high-altitude aeronautical platform station (HAAPS), which are required to operate autonomously over extended periods. With the increase in complexity and capability of HAAPS, the flight control subsystem becomes ever more essential for managing the intricate operations of these platforms.

Segmentation 6: by Region

North America's high growth rate in the high-altitude aeronautical platform station (HAAPS) market (by region) is anticipated to be driven by increasing investments in telecommunications infrastructure and the integration of HAAPS into national defense and security systems. The region's demand for advanced communication solutions, especially in remote and rural areas, is expected to boost the adoption of high-altitude aeronautical platform station (HAAPS). Additionally, technological advancements in high-altitude aeronautical platform station (HAAPS)and supportive government policies are likely to contribute to market growth in North America.

Recent Developments in the Global High-Altitude Aeronautical Platform Station (HAAPS) Market

In November 2022, World View and Sierra Nevada Corporation (SNC) collaborated to develop unmanned stratospheric balloons designed for intelligence, surveillance, and reconnaissance (ISR) as well as communications applications. This partnership combined SNC's proficiency in defense and aerospace integration, mission systems, and payload with World View's Earth observation capability from high altitudes. The joint effort aimed to facilitate the swift deployment of high-altitude balloon platforms, ensuring reliable positioning and responsiveness within hours or days, enabling round-the-clock operations. The companies showcased a rapidly maneuverable, ultra-persistent wide-area communications and ISR platform under the UK Ministry of Defence's Project Aether Program.

How can this report add value to an organization?

Product/Innovation Strategy: The product segment helps the reader understand the different types of products available for deployment and their potential globally. Moreover, the study provides the reader with a detailed understanding of the global high-altitude aeronautical platform station (HAAPS) market based on applications on the basis of the end user(commercial and Government, Defense, and Research Institutes), application (commercial, Earth observation, research, and others) and based on the products on the basis of type (UAVs, airships, balloons), subsystems (flight control subsystem, energy management subsystem, and communications payload subsystem), and frequency band (L-and S-Band, C-Band, Ku-and Ka-Band).

Growth/Marketing Strategy: The global high-altitude aeronautical platform station (HAAPS) market has seen major development by key players operating in the market, such as business expansion, partnership, collaboration, and joint venture. The favored strategy for the companies has been partnerships and contracts to strengthen their position in the global high-altitude aeronautical platform station (HAAPS) market. For instance, in June 2022, Stratodynamics received the highest accolades at the Air Traffic Management Awards for its innovation, the HiDRON, an unmanned glider launched via balloon, designed for high-altitude operations. This recognition marked a significant milestone in the Canada High-Altitude Aeronautical Platform Station (HAAPS) market, underscoring the country's growing influence and leadership in developing advanced aerial technologies.

Methodology: The research methodology design adopted for this specific study includes a mix of data collected from primary and secondary data sources. Both primary resources (key players, market leaders, and in-house experts) and secondary research (a host of paid and unpaid databases), along with analytical tools, are employed to build the predictive and forecast models.

Data and validation have been taken into consideration from both primary sources as well as secondary sources.

Key Considerations and Assumptions in Market Engineering and Validation

Primary Research

The primary sources involve industry experts from the aerospace and defense industry, including high-altitude aeronautical platform station (HAAPS) manufacturers manufacturing for the commercial and/or government industry and component manufacturers. Respondents such as CEOs, vice presidents, marketing directors, and technology and innovation directors have been interviewed to obtain and verify both qualitative and quantitative aspects of this research study.

Secondary Research

This study involves the usage of extensive secondary research, company websites, directories, and annual reports. It also makes use of databases, such as Spacenews, Businessweek, and others, to collect effective and useful information for a market-oriented, technical, commercial, and extensive study of the global market. In addition to the data sources, the study has been undertaken with the help of other data sources and websites, such as www.nasa.gov.

Secondary research was done to obtain critical information about the industry's value chain, the market's monetary chain, revenue models, the total pool of key players, and the current and potential use cases and applications.

Key Market Players and Competition Synopsis

The companies that are profiled have been selected based on thorough secondary research, which includes analyzing company coverage, product portfolio, market penetration, and insights gathered from primary experts.

The global high-altitude aeronautical platform station (HAAPS) market comprises key players who have established themselves thoroughly and have the proper understanding of the market, accompanied by start-ups who are looking forward to establishing themselves in this highly competitive market. In 2022, the global high-altitude aeronautical platform station (HAAPS) market was dominated by established players, accounting for 71% of the market share, whereas start-ups managed to capture 29% of the market.

Some prominent names established in this market are:

Table of Contents

Executive Summary

Scope and Definition

1 Markets

2 Application

3 Products

4 Regions

5 Markets - Competitive Benchmarking & Company Profiles

6 Research Methodology

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