Global Anti-Sway Crane Controller Market

Global Anti-Sway Crane Controller Market Size, Trends & Analysis - Forecasts to 2026 By Product (Feed Forward Systems, Blind Sway Prevention System), By Application (In Built System, Component), By End-Use (Manual Cranes, Automotate Cranes), By Region (North America, Asia Pacific, Europe, Latin America, Middle East & Africa); End-User Landscape, Company Market Share Analysis, and Competitor Analysis

Category Automotive & Transportation
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This report was recently updated on April 16 2024 with the latest and most recent market numbers

Anti-Sway Crane Controller Market Insights

Facilitating operations improved positioning precision, and increased turnaround time have encouraged the adoption of Anti-Sway Crane Controller. These systems can be installed as a component in the existing cranes or can be in-built in the manufacturing of new ones.

Any uplifting movement where ropes and cables are used results in the load sway which may pose a threat to the material container or people. The sway also causes longer operation hours and hamper the overall productivity. Thus, the Anti-Sway Crane Controller came in as a solution to achieve a better operation experience. The system reduces the pendulum motion and maintains weight shift while loading/unloading the material.

Anti-Sway Crane Controller is based on the oscillation model of mathematical calculations. The equipment height, angle, and swinging are kept under consideration while placing a camera for optical measurement. The cameras are fixed to measure the load movements continuously. Various algorithms are tried to meet the exact requirement such as high productivity and minimum weight management stress. Efficient algorithms guarantee maximum output reliability even in insufficient vision circumstances. 

Increased prevention programs in the industrial sector to safeguard the workers from accidents and achieving smooth operations has positively influenced the Anti-Sway Crane Controller Market. Enhancing productivity while maintaining safety during the loading and unloading of the material will fuel the product demand.

Precise loading & unloading of material is of keen importance in the industrial sector. Numerous parameters are involved to achieve these daily operations including but not limited to wind flow, speed direction, inclination, and container positioning. To overcome these challenges, the Anti-Sway Controller came in as a solution to provide smooth functioning and resolving the movement issues.

Accidents can be very expensive in terms of equipment damage, property destruction, worker injury, and a lawsuit from victims and property owners. As per the report published by Konecranes Training Institute, more than 37% of the accidents happened due to load disbalancing while swaying the load.

To overcome these collisions, the Konecranes UK claimed that the updated anti-sway crane controller can be installed in existing as well as new cranes. However, the cost of installation completely depends on the hoist model and compatibility. High costs associated with the software integration development to meet increasing operation proficiency may impact the price trend.

global anti-sway crane controller market

Anti-Sway Crane Controller Market: By Product

Feed Forward Systems and Blind Sway Prevention System are two types involved in the industry. Each operation type has different needs and requirements. Thus, the product demand is directly related to the purpose and usage. However, it is essential to use any one kind of system as a protective measure. Not every hoist operator is capable enough to manage the swaying effect on its own. It is a recommendation from government bodies and workers' safety organizations to put these systems in use.

The feed forward system’s slot in a camera and a baffler (reflector) is to give real-time movement data of load sways. The system also provides algorithm-based vibration movement and load-deflection angle. 

The blind sway prevention system is designed for hoists operating in a secluded place and is not influenced by the outside environment. Decreasing operation time, efficient load positioning, and reducing operator load are key properties provided by these system types.   

Anti-Sway Crane Controller Market: By Application

These systems are either installed as a component in existing hoists or can be installed in the manufacturing of new hoists. It is nearly not possible to replace all the existing cranes to have these integrated systems. Thus, these control systems are designed in such a way that they can be compatible with each hoist type. It is very cost-efficient to add the anti-sway controller as a component in the existing hoists as these winches went on regular repairing and update to avoid the collision. During this servicing, the systems can easily be installed without additional effort.

The new in built control systems offer advantages such as technology advancement and more comfort as the installation took place during the manufacturing. Rising demand for updated CMS will drive the demand in this segment.

Anti-Sway Crane Controller Market: By End-Use

Two types of cranes are available in the industry i.e. manual and automated. Both the hoists have their purposes and advantages. The anti-sway crane controller is built in such a way that it is compatible with both hoist types. Automated cranes are much more advanced and updated equipment which results in more precise operation in less duration. Easy setup, less maintenance, and availability of assist mode are major benefits involved in automated hoists.

asia pacific anti-sway crane controller market

Anti-Sway Crane Controller Market: By Region

The Asia Pacific region is projected to hold the largest market share by 2026. Expansion in the construction and transportation industry along with increasing investment in technologically advanced products will drive the regional industry growth. Heavy investment in automated systems to achieve higher efficiency in the loading/unloading during the shipping transportation.

North America will witness significant growth in the coming years. Increasing automotive production along with rising demand for more safe operations to avoid the heavy fines in lawsuits will influence the demand. The region has also witnessed a high collision rate due to weight fall and unstable load swing. The Middle East & Africa is projected to see the highest gains due to the high requirement from the oil & gas industries. The regional growth is also influenced by stringent labor laws and labor safety programs.

Anti-Sway Crane Controller Share and Competitor Analysis

Siemens, General Electric, Smart Crane, PT HWK, Konecranes, Inc, Dvesta Ltd, PAR Systems, Cranedge India Pvt. Ltd, Henan Weihua Heavy Machinery Co., Ltd, ABB, R&M Material Handling, TMEIC Corporation, Henan Yuntian Crane Co.,Ltd, Danfoss Drives, CATS GmbH & Co. KG, and Weite Technologies Co., Ltd are major industry participants.

The company's market share is highly competitive due to the presence of a large number of multinational companies in the industry. Product development and technology advancement are two major strategies witnessed in the industry.

Other key players include LEHNERT, Columbus McKinnon Corporation, Pinnacle Industrial Controls, ICRAS motion control solutions Oy, Magnetek, CAMotion Inc., RIMA Group, Rockwell Automation, Nidec Industrial Solutions, Liebherr, STAHL CraneSystems, and JASO Industrial.

Please note: This is not an exhaustive list of companies profiled in the report.

Chapter 1   Methodology

1.1    Market scope & definitions

1.2    Estimates & forecast calculation

1.3    Historical data overview and validation

1.4    Data sources

1.4.1    Secondary

1.4.2    Primary

Chapter 2   Report Outlook

2.1    Anti-sway crane controller industry overview, 2016-2026

2.1.1    Industry overview

2.1.2    Product overview

2.1.3    Application overview

2.1.4    End-Use overview

2.1.5    Regional overview

Chapter 3   Anti-Sway Crane Controller Market Trends

3.1    Market segmentation

3.2    Industry background, 2016-2026

3.3    Market key trends

3.3.1    Positive trends

3.3.2    Industry challenges

3.4    Prospective growth scenario

3.4.1    Application growth scenario

3.4.2    End-Use growth scenario

3.5    COVID-19 influence over industry growth

3.6    Porter’s analysis

3.7    PESTEL analysis

3.8    Value chain & supply chain analysis

3.9    Regulatory framework

3.9.1    North America

3.9.2    Europe

3.9.3    APAC

3.9.4    LATAM

3.9.5    MEA

3.10    Technology overview

3.11    Market share analysis, 2020

3.11.1    Company positioning overview, 2020

Chapter 4   Anti-Sway Crane Controller Market, By Product

4.1    Product Outlook

4.2    Feed Forward Systems

4.2.1    Market size, by region, 2016-2026 (USD Million)

4.3    Blind Sway Prevention System

4.3.1    Market size, by region, 2016-2026 (USD Million)

Chapter 5   Anti-Sway Crane Controller Market, By Application

5.1    Application Outlook

5.2    In built system in new cranes

5.2.1    Market size, by region, 2016-2026 (USD Million)

5.3    Component in existing control system

5.3.1    Market size, by region, 2016-2026 (USD Million)

Chapter 6   Anti-Sway Crane Controller Market, By End-Use

6.1    End-Use Outlook

6.2    Manual Cranes

6.2.1    Market size, by region, 2016-2026 (USD Million)

6.3    Automated Cranes

6.3.1    Market size, by region, 2016-2026 (USD Million)

Chapter 7   Anti-Sway Crane Controller Market, By Region

7.1    Regional outlook

7.2    North America

7.2.1    Market size, by country 2016-2026 (USD Million)

7.2.2    Market size, by product, 2016-2026 (USD Million)

7.2.3    Market size, by application, 2016-2026 (USD Million)

7.2.4    Market size, by end-use, 2016-2026 (USD Million)

7.2.5    U.S.

7.2.5.1    Market size, by product, 2016-2026 (USD Million)

7.2.5.2    Market size, by application, 2016-2026 (USD Million)

7.2.5.3    Market size, by end-use, 2016-2026 (USD Million)

7.2.6    Canada

7.2.6.1    Market size, by product, 2016-2026 (USD Million)

7.2.6.2    Market size, by application, 2016-2026 (USD Million)

7.2.6.3    Market size, by end-use, 2016-2026 (USD Million)

7.3    Europe

7.3.1    Market size, by country 2016-2026 (USD Million)

7.3.2    Market size, by product, 2016-2026 (USD Million)

7.3.3    Market size, by application, 2016-2026 (USD Million)

7.3.4    Market size, by end-use, 2016-2026 (USD Million)

7.3.5    Germany

7.2.5.1    Market size, by product, 2016-2026 (USD Million)

7.2.5.2    Market size, by application, 2016-2026 (USD Million)

7.2.5.3    Market size, by end-use, 2016-2026 (USD Million)

7.3.6    UK

7.3.6.1    Market size, by product, 2016-2026 (USD Million)

7.3.6.2    Market size, by application, 2016-2026 (USD Million)

7.3.6.3    Market size, by end-use, 2016-2026 (USD Million)

7.3.7    France

7.3.7.1    Market size, by product, 2016-2026 (USD Million)

7.3.7.2    Market size, by application, 2016-2026 (USD Million)

7.3.7.3    Market size, by end-use, 2016-2026 (USD Million)

7.3.8    Italy

7.3.8.1    Market size, by product, 2016-2026 (USD Million)

7.3.8.2    Market size, by application, 2016-2026 (USD Million)

7.3.8.3    Market size, by end-use, 2016-2026 (USD Million)

7.3.9    Spain

7.3.9.1    Market size, by product, 2016-2026 (USD Million)

7.3.9.2    Market size, by application, 2016-2026 (USD Million)

7.3.9.3    Market size, by end-use, 2016-2026 (USD Million)

7.3.10    Russia

7.3.10.1    Market size, by product, 2016-2026 (USD Million)

7.3.10.2    Market size, by application, 2016-2026 (USD Million)

7.3.10.3    Market size, by end-use, 2016-2026 (USD Million)

7.4    Asia Pacific

7.4.1    Market size, by country 2016-2026 (USD Million)

7.4.2    Market size, by product, 2016-2026 (USD Million)

7.4.3    Market size, by application, 2016-2026 (USD Million)

7.4.4    Market size, by end-use, 2016-2026 (USD Million)

7.4.5    China

7.4.5.1    Market size, by product, 2016-2026 (USD Million)

7.4.5.2    Market size, by application, 2016-2026 (USD Million)

7.4.5.3    Market size, by end-use, 2016-2026 (USD Million)

7.4.6    India

7.4.6.1    Market size, by product, 2016-2026 (USD Million)

7.4.6.2    Market size, by application, 2016-2026 (USD Million)

7.4.6.3    Market size, by end-use, 2016-2026 (USD Million)

7.4.7    Japan

7.4.7.1    Market size, by product, 2016-2026 (USD Million)

7.4.7.2    Market size, by application, 2016-2026 (USD Million)

7.4.7.3    Market size, by end-use, 2016-2026 (USD Million)

7.4.8    Australia

7.4.8.1    Market size, by product, 2016-2026 (USD Million)

7.4.8.2    Market size, by application, 2016-2026 (USD Million)

7.4.8.3    Market size, by end-use, 2016-2026 (USD Million)

7.4.9    South Korea

7.4.9.1    Market size, by product, 2016-2026 (USD Million)

7.4.9.2    Market size, by application, 2016-2026 (USD Million)

7.4.9.3    Market size, by end-use, 2016-2026 (USD Million)

7.5    Latin America

7.5.1    Market size, by country 2016-2026 (USD Million)

7.5.2    Market size, by product, 2016-2026 (USD Million)

7.5.3    Market size, by application, 2016-2026 (USD Million)

7.5.4    Market size, by end-use, 2016-2026 (USD Million)

7.5.5    Brazil

7.5.5.1    Market size, by product, 2016-2026 (USD Million)

7.5.5.2    Market size, by application, 2016-2026 (USD Million)

7.5.5.3    Market size, by end-use, 2016-2026 (USD Million)

7.5.6    Mexico

7.5.6.1    Market size, by product, 2016-2026 (USD Million)

7.5.6.2    Market size, by application, 2016-2026 (USD Million)

7.5.6.3    Market size, by end-use, 2016-2026 (USD Million)

7.5.7    Argentina

7.5.7.1    Market size, by product, 2016-2026 (USD Million)

7.5.7.2    Market size, by application, 2016-2026 (USD Million)

7.5.7.3    Market size, by end-use, 2016-2026 (USD Million)

7.6    MEA

7.6.1    Market size, by country 2016-2026 (USD Million)

7.6.2    Market size, by product, 2016-2026 (USD Million)

7.6.3    Market size, by application, 2016-2026 (USD Million)

7.6.4    Market size, by end-use, 2016-2026 (USD Million)

7.6.5    Saudi Arabia

7.6.5.1    Market size, by product, 2016-2026 (USD Million)

7.6.5.2    Market size, by application, 2016-2026 (USD Million)

7.6.5.3    Market size, by end-use, 2016-2026 (USD Million)

7.6.6    UAE

7.6.6.1    Market size, by product, 2016-2026 (USD Million)

7.6.6.2    Market size, by application, 2016-2026 (USD Million)

7.6.6.3    Market size, by end-use, 2016-2026 (USD Million)

7.6.7    South Africa

7.6.7.1    Market size, by product, 2016-2026 (USD Million)

7.6.7.2    Market size, by application, 2016-2026 (USD Million)

7.6.7.3    Market size, by end-use, 2016-2026 (USD Million)

Chapter 8   Company Landscape

8.1    Competitive analysis, 2020

8.2    Siemens

8.2.1    Company overview

8.2.2    Financial analysis

8.2.3    Strategic positioning

8.2.4    Info graphic analysis

8.3    Smart Crane

8.3.1    Company overview

8.3.2    Financial analysis

8.3.3    Strategic positioning

8.3.4    Info graphic analysis

8.4    General Electric

8.4.1    Company overview

8.4.2    Financial analysis

8.4.3    Strategic positioning

8.4.4    Info graphic analysis

8.5    Schneider Electric

8.5.1    Company overview

8.5.2    Financial analysis

8.5.3    Strategic positioning

8.5.4    Info graphic analysis

8.6    PT HWK

8.6.1    Company overview

8.6.2    Financial analysis

8.6.3    Strategic positioning

8.6.4    Info graphic analysis

8.7    Dvesta Ltd

8.7.1    Company overview

8.7.2    Financial analysis

8.7.3    Strategic positioning

8.7.4    Info graphic analysis

8.8    PAR Systems

8.8.1    Company overview

8.8.2    Financial analysis

8.8.3    Strategic positioning

8.8.4    Info graphic analysis

8.9    Cranedge India Pvt. Ltd

8.9.1    Company overview

8.9.2    Financial analysis

8.9.3    Strategic positioning

8.9.4    Info graphic analysis

8.10    Henan Weihua Heavy Machinery Co., Ltd.

8.10.1    Company overview

8.10.2    Financial analysis

8.10.3    Strategic positioning

8.10.4    Info graphic analysis

8.11    ABB

8.11.1    Company overview

8.11.2    Financial analysis

8.11.3    Strategic positioning

8.11.4    Info graphic analysis

8.12    R&M Material Handling

8.12.1    Company overview

8.12.2    Financial analysis

8.12.3    Strategic positioning

8.12.4    Info graphic analysis

8.13    TMEIC Corporation

8.13.1    Company overview

8.13.2    Financial analysis

8.13.3    Strategic positioning

8.13.4    Info graphic analysis

8.14    Henan Yuntian Crane Co.,Ltd

8.14.1    Company overview

8.14.2    Financial analysis

8.14.3    Strategic positioning

8.14.4    Info graphic analysis

8.15    Danfoss Drives

8.15.1    Company overview

8.15.2    Financial analysis

8.15.3    Strategic positioning

8.15.4    Info graphic analysis

8.16    Konecranes, Inc.

8.16.1    Company overview

8.16.2    Financial analysis

8.16.3    Strategic positioning

8.16.4    Info graphic analysis

8.17    CATS GmbH & Co. KG

8.17.1    Company overview

8.17.2    Financial analysis

8.17.3    Strategic positioning

8.17.4    Info graphic analysis

8.18    Weite Technologies Co., Ltd

8.18.1    Company overview

8.18.2    Financial analysis

8.18.3    Strategic positioning

8.18.4    Info graphic analysis

8.19    LEHNERT

8.19.1    Company overview

8.19.2    Financial analysis

8.19.3    Strategic positioning

8.19.4    Info graphic analysis

8.20    Columbus McKinnon Corporation

8.20.1    Company overview

8.20.2    Financial analysis

8.20.3    Strategic positioning

8.20.4    Info graphic analysis

8.21    Pinnacle Industrial Controls

8.21.1    Company overview

8.21.2    Financial analysis

8.21.3    Strategic positioning

8.21.4    Info graphic analysis

8.22    ICRAS motion control solutions Oy

8.22.1    Company overview

8.22.2    Financial analysis

8.22.3    Strategic positioning

8.22.4    Info graphic analysis

8.23    Magnetek

8.23.1    Company overview

8.23.2    Financial analysis

8.23.3    Strategic positioning

8.23.4    Info graphic analysis

8.24    CAMotion Inc.

8.24.1    Company overview

8.24.2    Financial analysis

8.24.3    Strategic positioning

8.24.4    Info graphic analysis

8.25    RIMA Group

8.25.1    Company overview

8.25.2    Financial analysis

8.25.3    Strategic positioning

8.25.4    Info graphic analysis

8.26    Rockwell Automation

8.26.1    Company overview

8.26.2    Financial analysis

8.26.3    Strategic positioning

8.26.4    Info graphic analysis

8.27    Nidec Industrial Solutions

8.27.1    Company overview

8.27.2    Financial analysis

8.27.3    Strategic positioning

8.27.4    Info graphic analysis

8.28    Liebherr

8.28.1    Company overview

8.28.2    Financial analysis

8.28.3    Strategic positioning

8.28.4    Info graphic analysis

8.29    STAHL CraneSystems

8.29.1    Company overview

8.29.2    Financial analysis

8.29.3    Strategic positioning

8.29.4    Info graphic analysis

8.30    JASO Industrial Cranes

8.30.1    Company overview

8.30.2    Financial analysis

8.30.3    Strategic positioning

8.30.4    Info graphic analysis

The Global Anti-Sway Crane Controller Market has been studied from the year 2019 till 2026. However, the CAGR provided in the report is from the year 2021 to 2026. The research methodology involved three stages: Desk research, Primary research, and Analysis & Output from the entire research process.

The desk research involved a robust background study which meant referring to paid and unpaid databases to understand the market dynamics; mapping contracts from press releases; identifying the key players in the market, studying their product portfolio, competition level, annual reports/SEC filings & investor presentations; and learning the demand and supply-side analysis for the Anti-Sway Crane Controller Market.

The primary research activity included telephonic conversations with more than 50 tier 1 industry consultants, distributors, and end-use product manufacturers.

Finally, based on the above thorough research process, an in-depth analysis was carried out considering the following aspects: market attractiveness, current & future market trends, market share analysis, SWOT analysis of the company and customer analytics.

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