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航空MROソフトウェアの世界市場規模:タイプ別、航空機タイプ別、組織タイプ別、サービスタイプ別、地域範囲別および予測

Global Aviation MRO Software Market Size By Type, By Aircraft Type, By Organization Type, By Service Type, By Geographic Scope And Forecast


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英文 202 Pages
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2~3営業日
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価格表記: USDを日本円(税抜)に換算
本日の銀行送金レート: 1USD=144.76円
航空MROソフトウェアの世界市場規模:タイプ別、航空機タイプ別、組織タイプ別、サービスタイプ別、地域範囲別および予測
出版日: 2025年05月12日
発行: Verified Market Research
ページ情報: 英文 202 Pages
納期: 2~3営業日
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概要

航空MROソフトウェアの市場規模と予測

航空MROソフトウェア市場規模は、2024年に65億9,000万米ドルと評価され、2026~2032年にかけてCAGR 2.20%で成長し、2032年には78億4,000万米ドルに達すると予測されます。

航空MROソフトウェアは、航空産業における整備・修理・オーバーホール(MRO)業務を管理・最適化するために設計された専門ソリューションです。このソフトウェアは、多くの場合SaaS(Software-as-a-Service)モデルとして提供され、以下をサポートします。

このソフトウェアは、多くの場合、SaaS(Software-as-a-Service)モデルとして提供され、状態ベースと予測メンテナンス分析のための堅牢なツールを提供することにより、相手先商標製品製造業者(OEM)、航空会社、MROサービスプロバイダをサポートしています。

航空MROソフトウェアの主要機能には、航空機の使用状況やコンポーネントのライフサイクルに基づいてタスクを編成するメンテナンス・スケジューリング、メンテナンス・タスクの効率的な作成と追跡を行うワークオーダー管理、ダウンタイムを最小限に抑えるためにスペアパーツや機器のレベルをモニタリングする在庫管理などがあります。

資産管理は航空機の性能、履歴、価値を追跡し、コンプライアンス管理は自動化されたチェックとレポートによってFAA Part 145やEASA Part 145のような産業規制の遵守を保証します。

世界の航空MROソフトウェア市場力学

世界の航空MROソフトウェア市場を形成している主要市場力学は以下の通りです。

主要市場促進要因

航空機材の拡大:インドや中国などの新興諸国における航空需要の増加は、新しい航空機の必要性を促進し、整備、修理、オーバーホール(MRO)サービスの需要増につながっています。航空会社が旅客数の増加に対応するために航空機を拡大するにつれて、MROセクタは着実に成長する態勢を整えています。

パンデミック後の旅行急増:COVID-19感染者の減少と渡航制限の緩和により、航空機の利用が増加し、飛行時間の増加と航空機整備の必要性が高まっています。航空会社とMRO事業者は、飛行時間の増加による消耗を管理するために、定期的な予防点検と整備に重点を置いているため、効率的なデータ収集と整備管理の必要性によって、MROソフトウェアの需要が増加すると予想されます。

技術革新:人工知能(AI)、機械学習(ML)、ビッグデータ分析など、ソフトウェア開発の進歩が整備プロセスを強化しています。これらの技術によって可能になる予知保全は、機器の故障予測、保全スケジュールの最適化、ダウンタイムの削減を可能にし、先進的なMROソフトウェアソリューションの採用を促進しています。

規制遵守:世界中の航空当局が課す厳しい安全規制とコンプライアンス規制が、MROソフトウェアの需要に拍車をかけています。これらのツールは、組織が整備活動を追跡し、規制を確実に遵守し、詳細な記録を維持することを支援し、それによって規制遵守をサポートします。

クラウドベースのソリューション:クラウドベースのMROソフトウェアの採用が増加しており、拡大性、アクセス性、コスト効率などのメリットがあります。この動向は、業務を合理化し、保守作業をより効率的に管理しようとする航空会社を惹きつけています。

コネクテッド航空機とIoT:コネクテッド航空機とモノのインターネット(IoT)の台頭は、搭載センサと統合するMROソフトウェアの需要を促進しています。これらのソリューションが提供するリアルタイムのモニタリングと診断は、メンテナンスの効率とパフォーマンスを向上させています。

世界の航空機の拡大:世界中で民間機や軍用機の数が増加しているため、先進的MROソフトウェアソリューションの必要性が高まっています。航空会社や国防軍は、航空機のパフォーマンスを最適化し、運用コストを削減しようとしており、堅牢な分析機能を備えた先進的ソフトウェアツールが不可欠となっています。

データ主導の意思決定:データ主導の意思決定が重視されているため、強力な分析機能を備えたMROソフトウェアへの需要が高まっています。データ洞察力を活用することで、航空会社は整備業務を改善し、改善すべき領域を特定し、効率とパフォーマンスを高めるための戦略的な意思決定を行うことができます。

主要課題

激しい競合:同様のMROソリューションを提供するソフトウェアプロバイダが急増したことで、競争が激化し、価格圧力が高まっています。このような競争の激化は、売上の下押し圧力となり、企業が市場シェアを維持し、望ましい売上目標を達成することを困難にします。

景気後退と予算制約:旅客需要の減少、不安定な燃料価格、地政学的不安定など、航空会社や航空組織が直面している財務上の課題は、MROソフトウェアの売上に影響を及ぼしています。予算の制約に対応するため、これらの組織はコスト削減策を優先し、ソフトウェアソリューションへの投資を延期または縮小する可能性があります。

統合と導入の課題:先進的なMROソフトウェアの利点にもかかわらず、これらのソリューションの統合と導入で苦労している組織もあります。技術的な複雑さ、既存システムとの互換性の問題、変化への抵抗などが、販売プロセスを阻害し、MROソフトウェアの採用を遅らせる可能性があります。

規制遵守:航空産業は、メンテナンス業務、データセキュリティ、業務プロトコルなどを規定する厳しい規制要件にさらされています。こうした規制への対応には時間とリソースを要するため、MROソフトウェアベンダーにとってはさらなる課題が生じ、販売努力に影響を及ぼす可能性があります。

顧客の嗜好の変化:市場動向の進化や顧客の嗜好の変化は、販売力学に影響を与えます。ベンダーは、変化するニーズに対応するため、常に革新的な製品を提供しなければならないです。こうした変化を予測し対応できなければ、販売機会を失い、市場シェアが低下する可能性があります。

高い研究開発費:MROソフトウェアの研究開発(R&D)に関連する多額のコストは、市場の成長を制約する可能性があります。先進的ソフトウェアモジュールの設計・開発の複雑さと、これらのシステムの保守・統合にかかる費用は、経済的な負担となります。

主要動向

クラウドベースのソリューション:クラウドベースのMROソフトウェアの採用が勢いを増しており、拡大性、費用対効果、アクセス性の向上といった大きなメリットをもたらしています。このシフトにより、航空会社は場所を問わずにメンテナンス業務を管理し、プロセスを合理化し、ITインフラのコストを削減することができます。

データ分析とAI:先進的データ分析と人工知能(AI)をMROソフトウェアに統合することで、整備スケジュールの最適化、潜在的な機器の故障の予測、全体的な意思決定の強化がますます進んでいます。AIを活用した予知保全は、操業に影響が出る前に先手を打って問題に対処することで、信頼性を向上させ、ダウンタイムを削減します。

モノのインターネット(IoT):IoTセンサとMROソフトウェアの統合により、航空機部品のリアルタイムモニタリングが可能になります。この接続性により、部品の性能に関する継続的なデータを提供することで予知保全が促進され、より正確な保全計画が可能になり、予期せぬ故障が減少します。

モバイルアプリケーション:MRO技術者やエンジニアのためのモバイルアプリケーションの開発により、重要な情報にアクセスし、リモートでタスクを実行できるようになります。これらのアプリケーションは運用の柔軟性を高め、技術者がメンテナンス活動をより効率的に管理し、外出先でも最新情報を入手できるようにします。

カスタマーポータル:MROソフトウェアに顧客ポータルが搭載されることが増えており、航空会社や航空機所有者は、メンテナンス活動、文書、更新情報にリアルタイムでアクセスできます。これらのポータルは、透明性とコミュニケーションを向上させ、利害関係者がメンテナンスの進捗状況を追跡し、タイムリーな情報を受け取ることを可能にします。

企業資源計画(ERP):MROソフトウェアとERPシステムとのシームレスな統合は、標準的な手法になりつつあります。この統合により、ビジネスプロセスが合理化され、業務効率が向上し、メンテナンスデータが財務や人事などの他の部門と確実に同期されます。

コンピュータ保全管理システム(CMMS):CMMSとの統合により、保全作業、在庫、作業指示の効果的な管理が可能になります。この統合により、メンテナンス活動が適切に調整され、在庫レベルが最適化され、作業指示が効率的に追跡・管理されます。

VMRの中身

産業レポート

VMRのレポートには、ピッチの作成、ビジネスプランの作成、プレゼンテーションの構築、提案書の作成に役立つ実用的なデータと将来を見据えた分析が含まれています。

目次

第1章 航空MROソフトウェアの世界市場導入

  • 市場概要
  • 調査範囲
  • 前提条件

第2章 エグゼクティブサマリー

第3章 VERIFIED MARKET RESEARCHの調査手法

  • データマイニング
  • バリデーション
  • 一次資料
  • データソース一覧

第4章 航空MROソフトウェアの世界市場展望

  • 概要
  • 市場力学
    • 促進要因
    • 抑制要因
    • 機会

第5章 航空MROソフトウェアの世界市場:タイプ別

  • メンテナンス管理ソフトウェア
  • 在庫管理ソフトウェア
  • 資産管理ソフトウェア
  • サプライチェーン管理ソフトウェア
  • 品質コンプライアンス管理ソフトウェア

第6章 航空MROソフトウェアの世界市場:航空機タイプ別

  • ナローボディ
  • ワイドボディ
  • リージョナルジェット

第7章 航空MROソフトウェアの世界市場:組織タイプ別

  • 航空会社/オペレーターMRO
  • 独立系MRO
  • 相手先ブランド製造会社MRO

第8章 航空MROソフトウェアの世界市場:サービスタイプ別

  • エンジンオーバーホール
  • 機体整備
  • ラインメンテナンス
  • 改造
  • コンポーネント

第9章 航空MROソフトウェアの世界市場:地域別

  • 概要
  • 北米
    • 米国
    • カナダ
    • メキシコ
  • 欧州
    • ドイツ
    • 英国
    • フランス
    • その他の欧州
  • アジア太平洋
    • 中国
    • 日本
    • インド
    • その他のアジア太平洋
  • その他
    • ラテンアメリカ
    • 中東・アフリカ

第10章 世界の航空MROソフトウェア市場の競合情勢

  • 概要
  • 各社の市場ランキング
  • 主要開発戦略

第11章 企業プロファイル

  • Ramco Systems
  • Airbus
  • Honeywell
  • Lufthansa Technik
  • Aveasta Holdings
  • Accenture
  • CGI
  • Wipro
  • SITA
  • ARINC

第12章 付録

  • 関連調査
目次
Product Code: 60315

Aviation MRO Software Market Size And Forecast

Aviation MRO Software Market size was valued at USD 6.59 Billion in 2024 and is projected to reach USD 7.84 Billion by 2032, growing at a CAGR of 2.20% from 2026 to 2032.

Aviation MRO software is a specialized solution designed to manage and optimize Maintenance, Repair, and Overhaul (MRO) operations in the aviation industry. This software, often delivered as a Software-as-a-Service (SaaS) model, supports

Original Equipment Manufacturers (OEMs), airline operators, and MRO service providers by providing robust tools for condition-based and predictive maintenance analysis.

Key features of aviation MRO software include Maintenance Scheduling for organizing tasks based on aircraft usage and component lifecycles, Work Order Management for efficient creation and tracking of maintenance tasks, and Inventory Management for monitoring spare parts and equipment levels to minimize downtime.

Asset Management tracks aircraft performance, history, and value, while Compliance Management ensures adherence to industry regulations like FAA Part 145 and EASA Part 145 through automated checks and reporting.

Global Aviation MRO Software Market Dynamics

The key market dynamics that are shaping the global aviation MRO software market include:

Key Market Drivers

Expansion of Air Fleet: The increasing air travel demand in developing countries, such as India and China, is driving the need for new aircraft, leading to a higher demand for maintenance, repair, and overhaul (MRO) services. As airlines expand their fleets to accommodate rising passenger traffic, the MRO sector is poised for steady growth.

Post-Pandemic Travel Surge: The decline in COVID-19 cases and the easing of travel restrictions have boosted air travel, leading to increased flight hours and a greater need for aircraft maintenance. As airlines and MRO operators focus on regular preventive checkups and servicing to manage wear and tear from increased flight hours, the demand for MRO software is expected to rise, driven by the need for efficient data collection and maintenance management.

Technological Innovations: Advances in software development, including artificial intelligence (AI), machine learning (ML), and big data analytics, are enhancing maintenance processes. Predictive maintenance enabled by these technologies allows for forecasting equipment failures, optimizing maintenance schedules, and reducing downtime, driving the adoption of advanced MRO software solutions.

Regulatory Compliance: Stringent safety and compliance regulations imposed by aviation authorities worldwide are fueling the demand for MRO software. These tools assist organizations in tracking maintenance activities, ensuring adherence to regulations, and maintaining detailed records, thereby supporting regulatory compliance.

Cloud-Based Solutions: The growing adoption of cloud-based MRO software offers benefits such as scalability, accessibility, and cost-effectiveness. This trend is attracting aviation organizations seeking to streamline their operations and manage maintenance tasks more efficiently.

Connected Aircraft and IoT: The rise of connected aircraft and the Internet of Things (IoT) is driving the demand for MRO software that integrates with onboard sensors. Real-time monitoring and diagnostics provided by these solutions enhance maintenance efficiency and performance.

Global Fleet Expansion: The growing number of commercial and military aircraft worldwide is increasing the need for sophisticated MRO software solutions. As airlines and defense forces seek to optimize fleet performance and reduce operational costs, advanced software tools with robust analytics capabilities are becoming essential.

Data-Driven Decision Making: The emphasis on data-driven decision-making is fueling the demand for MRO software with strong analytics features. By leveraging data insights, aviation organizations can improve maintenance operations, identify areas for improvement, and make strategic decisions to enhance efficiency and performance.

Key Challenges

Intense Competition: The proliferation of software providers offering similar MRO solutions has led to increased competition and pricing pressures. This intensified competition can result in downward pressure on sales and make it challenging for companies to maintain market share and achieve desired sales targets.

Economic Downturns and Budget Constraints: Financial challenges faced by airlines and aviation organizations, including reduced passenger demand, volatile fuel prices, and geopolitical instability, are impacting MRO software sales. In response to budget constraints, these organizations may prioritize cost-cutting measures and delay or scale back investments in software solutions.

Integration and Adoption Challenges: Despite the benefits of advanced MRO software, some organizations struggle with the integration and adoption of these solutions. Technical complexities, compatibility issues with existing systems, and resistance to change can impede the sales process and delay the adoption of MRO software.

Regulatory Compliance: The aviation industry is subject to stringent regulatory requirements that govern maintenance practices, data security, and operational protocols. Compliance with these regulations can be time-consuming and resource-intensive, creating additional challenges for MRO software vendors and impacting their sales efforts.

Shifts in Customer Preferences: Evolving market trends and shifting customer preferences influence sales dynamics. Vendors must continuously innovate and adapt their offerings to meet changing needs. Failure to anticipate and respond to these changes can result in lost sales opportunities and a reduced market share.

High R&D Costs: The significant costs associated with research and development (R&D) of MRO software can constrain market growth. The complexity of designing and developing advanced software modules, along with the expense of maintaining and integrating these systems, presents a financial burden.

Key Trends

Cloud-Based Solutions: The adoption of cloud-based MRO software is gaining momentum, providing significant advantages such as scalability, cost-effectiveness, and improved accessibility. This shift allows aviation organizations to manage maintenance operations from any location, streamline processes, and reduce IT infrastructure costs.

Data Analytics and AI: Advanced data analytics and artificial intelligence (AI) are being increasingly integrated into MRO software to optimize maintenance schedules, predict potential equipment failures, and enhance overall decision-making. AI-driven predictive maintenance helps preemptively address issues before they impact operations, thereby improving reliability and reducing downtime.

Internet of Things (IoT): The integration of IoT sensors with MRO software enables real-time monitoring of aircraft components. This connectivity facilitates predictive maintenance by providing continuous data on component performance, allowing for more precise maintenance planning and reducing unexpected failures.

Mobile Applications: The development of mobile applications for MRO technicians and engineers allows them to access critical information and perform tasks remotely. These apps enhance operational flexibility, enabling technicians to manage maintenance activities more efficiently and stay updated on the go.

Customer Portals: MRO software increasingly includes customer portals, providing airlines and aircraft owners with real-time access to maintenance activities, documentation, and updates. These portals improve transparency and communication, allowing stakeholders to track maintenance progress and receive timely information.

Enterprise Resource Planning (ERP): The seamless integration of MRO software with ERP systems is becoming a standard practice. This integration streamlines business processes, improves operational efficiency, and ensures that maintenance data is synchronized with other business functions, such as finance and human resources.

Computerized Maintenance Management Systems (CMMS): Integration with CMMS enables effective management of maintenance tasks, inventory, and work orders. This integration ensures that maintenance activities are well-coordinated, inventory levels are optimized, and work orders are tracked and managed efficiently.

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Global Aviation MRO Software Market Regional Analysis

Here is a more detailed regional analysis of the global aviation MRO software market:

Asia Pacific

The Asia-Pacific region is set to lead the global aviation MRO software market driven by the rapid expansion of aircraft fleets in the area.

Home to one of the largest and fastest-growing fleets worldwide, the region's substantial number of aircraft in operation creates a high demand for advanced Maintenance, Repair, and Overhaul (MRO) software. This software is essential for managing and optimizing maintenance operations efficiently, ensuring the operational reliability and safety of these aircraft.

Countries like China and India are emerging as key players in the aviation sector, experiencing significant growth in their aviation markets. With expanding fleets and increasing air traffic, these nations drive the need for sophisticated MRO solutions.

The growing number of aircraft and the expansion of maintenance facilities in these countries further fuel the demand for advanced MRO software.

Major maintenance and repair facilities, particularly in China and Singapore, are adopting cutting-edge MRO software to enhance their operational capabilities, streamline processes, and comply with global regulatory standards.

Asia-Pacific operates approximately one-third of the world's total aircraft fleet, a share that is expected to rise during the forecast period. The region's large and expanding fleet requires effective MRO solutions to extend aircraft lifespan and maintain high operational standards.

The Asia-Pacific market presents lucrative investment opportunities for MRO software providers due to its expanding aviation sector, numerous potential clients, and favorable investment conditions.

North America

North America is projected to experience the fastest growth in the global aviation MRO software market during the forecast period, driven by the region's extensive use of MRO software to boost operational efficiency, safety, and cost-effectiveness in aircraft maintenance.

The increasing complexity of modern aircraft systems necessitates advanced MRO solutions to manage sophisticated technologies. MRO software is essential for scheduling maintenance, tracking inventory and replacement parts, and analyzing equipment performance, enabling aviation companies to handle the advanced needs of contemporary aircraft.

The region's emphasis on digitalization is enhancing the aviation industry's technical capabilities. Advanced MRO software facilitates more efficient base, operational, and line management, leading to streamlined maintenance processes and solidifying North America's leadership in the sector.

The expansion of North American aviation fleets, covering domestic and international routes, fuels the demand for MRO software to manage and maintain these growing fleets. Increased flight activity, particularly to and from major destinations like China, further drives the need for robust MRO solutions.

Moreover, North American MRO providers are adopting advanced technologies to achieve sustainability goals. The large fleet size in the region generates significant demand for MRO services, and the integration of innovative technologies supports sustainable maintenance practices, contributing to the market's continuous growth.

Global Aviation MRO Software Market: Segmentation Analysis

The Global Aviation MRO Software Market is segmented based on Type, Aircraft Type, Organization Type, Service Type, And Geography.

Aviation MRO Software Market, By Type

  • Maintenance Management Software
  • Inventory Management Software
  • Asset Management Software
  • Supply Chain Management Software
  • Quality & Compliance Management Software

Based on Type, the Global Aviation MRO Software Market is bifurcated into Maintenance Management Software, Inventory Management Software, Asset Management Software, Supply Chain Management Software, and Quality & Compliance Management Software. The maintenance management segment significantly dominates the Global Aviation MRO Software Market owing to the strong demand from airline operators and MRO organizations for efficient inventory management and advanced fleet software fuels the segment's expansion.

Aviation MRO Software Market, By Aircraft Type

  • Narrow-body
  • Wide-body
  • Regional Jet

Based on Aircraft Type, the Global Aviation MRO Software Market is bifurcated into Narrow-body, Wide-body, and Regional Jet. The narrow-body segment is dominant in the Global Aviation MRO Software Market. These aircraft, primarily used for short-distance cross-border and domestic flights, typically accommodate over 295 passengers. Due to their significant presence in the global commercial aviation fleet, narrow-body aircraft drive substantial demand for MRO software.

Aviation MRO Software Market, By Organization Type

  • Airline/Operator MRO
  • Independent MRO
  • Original Equipment Manufacturer MRO

Based on Organization Type, the Global Aviation MRO Software Market is bifurcated into Airline/Operatory MRO, Independent MRO, and Original Equipment Manufacturer MRO. The Airline/Operator MRO segment holds a prominent position in the global aviation MRO software market, driven by their need for efficient and cost-effective maintenance operations. These MROs require software solutions tailored to their specific fleet compositions, maintenance strategies, and regulatory compliance requirements.

Aviation MRO Software Market, By Service Type

  • Engine Overhaul
  • Airframe Maintenance
  • Line Maintenance
  • Modification
  • Components

Based on Service Type, the Global Aviation MRO Software Market is bifurcated into Engine Overhaul, Airframe Maintenance, Line Maintenance, Modification, and Components. The engine overhaul segment significantly dominates the global aviation MRO software market owing to the complexity and specialized nature of engine maintenance. Engines require meticulous attention and advanced technologies, which drives the demand for specialized MRO software in this area.

Aviation MRO Software Market, By Geography

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World

Based on Geography, the Global Aviation MRO Software Market is classified into North America, Europe, Asia Pacific, and the Rest of the World. The Asia-Pacific region is poised to significantly dominate the global aviation MRO software market during the forecast period, driven by the expansion of aircraft fleet. The Asia-Pacific region is home to one of the largest and fastest-growing aircraft fleets globally. The substantial number of aircraft in operation necessitates advanced Maintenance, Repair, and Overhaul (MRO) software to manage and optimize maintenance operations efficiently.

Key Players

The "Global Aviation MRO Software Market" study report will provide valuable insight with an emphasis on the global market. The major players in the market are Ramco Systems, Airbus, Honeywell, Lufthansa Technik, Aveasta Holdings, Accenture, CGI, Wipro, SITA, and ARINC.

  • This section offers in-depth analysis through a company overview, position analysis, the regional and industrial footprint of the company, and the ACE matrix for insightful competitive analysis. The section also provides an exhaustive analysis of the financial performances of mentioned players in the given market.

Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.

Global Aviation MRO Software Market Key Developments

  • In March 2022, AAR, a US-based aviation sector MRO services company, announced a distribution agreement with Collins Aerospace's Goodrich specialist heating and de-icing system division.
  • In February 2022, Oracle Corporation announced the launch of new logistics features within its software platforms, such as Fusion Cloud SCM, Fusion Cloud Transportation Management, and Fusion Cloud Global Trade Management, which will help reduce costs, minimize risks, plan resources, improve customer service, and enable agile business operations.
  • In February 2022, Lufthansa Technik and Vietjet announced an agreement with Singapore Airshow to use AVIATAR's Technical Logbook, a seamless digital pilot-to-maintenance collaboration solution.
  • In December 2021, Jet Support Services Inc. (JSSI) announced the acquisition of Jet Support Services Inc. (JSSI) a software-as-a-service (SaaS) solution provider for aircraft maintenance monitoring and inventory management.
  • In March 2021, IFS Software Provider announced the launch of new MRO solutions to improve and simplify MRO operations.

TABLE OF CONTENTS

1 INTRODUCTION OF GLOBAL AVIATION MRO SOFTWARE MARKET

  • 1.1 Overview of the Market
  • 1.2 Scope of Report
  • 1.3 Assumptions

2 EXECUTIVE SUMMARY

3 RESEARCH METHODOLOGY OF VERIFIED MARKET RESEARCH

  • 3.1 Data Mining
  • 3.2 Validation
  • 3.3 Primary Interviews
  • 3.4 List of Data Sources

4 GLOBAL AVIATION MRO SOFTWARE MARKET OUTLOOK

  • 4.1 Overview
  • 4.2 Market Dynamics
    • 4.2.1 Drivers
    • 4.2.2 Restraints
    • 4.2.3 Opportunities

5 GLOBAL AVIATION MRO SOFTWARE MARKET, BY TYPE

  • 5.1 Maintenance Management Software
  • 5.2 Inventory Management Software
  • 5.3 Asset Management Software
  • 5.4 Supply Chain Management Software
  • 5.5 Quality & Compliance Management Software

6 GLOBAL AVIATION MRO SOFTWARE MARKET, BY Aircraft Type

  • 6.1 Narrow-body
  • 6.2Wide-body
  • 6.3Regional Jet

7 GLOBAL AVIATION MRO SOFTWARE MARKET, BY Organization Type

  • 7.1 Airline/Operator MRO
  • 7.2Independent MRO
  • 7.3Original Equipment Manufacturer MRO

8 GLOBAL AVIATION MRO SOFTWARE MARKET, BY Service Type

  • 8.1Engine Overhaul
  • 8.2Airframe Maintenance
  • 8.3Line Maintenance
  • 8.4Modification
  • 8.5Components

9 GLOBAL AVIATION MRO SOFTWARE MARKET, BY GEOGRAPHY

  • 9.1 Overview
  • 9.2 North America
    • 9.2.1 U.S.
    • 9.2.2 Canada
    • 9.2.3 Mexico
  • 9.3 Europe
    • 9.3.1 Germany
    • 9.3.2 U.K.
    • 9.3.3 France
    • 9.3.4 Rest of Europe
  • 9.4 Asia Pacific
    • 9.4.1 China
    • 9.4.2 Japan
    • 9.4.3 India
    • 9.4.4 Rest of Asia Pacific
  • 9.5 Rest of the World
    • 9.5.1 Latin America
    • 9.5.2 Middle East and Africa

10 GLOBAL AVIATION MRO SOFTWARE MARKET COMPETITIVE LANDSCAPE

  • 10.1 Overview
  • 10.2 Company Market Ranking
  • 10.3 Key Development Strategies

11 COMPANY PROFILES

  • 11.1Ramco Systems
  • 11.2Airbus
  • 11.3Honeywell
  • 11.4Lufthansa Technik
  • 11.5Aveasta Holdings
  • 11.6Accenture
  • 11.7CGI
  • 11.8Wipro
  • 11.9SITA
  • 11.10ARINC

12 Appendix

  • 12.1 Related Research