MVインバータの米国市場 : 2018-2031年

出版:Astute Analytica(アステュートアナリティカ) 出版年月:2023年4月

米国のMVインバータ市場、用途 (上流工程、その他)、変電所 (屋外、屋内)、ポンプ (遠心ポンプ、その他)、コンプレッサー (正容量型コンプレッサー、その他)、エンド ユーザー (石油およびガス、その他)、推計と予測、2018-2031年
US MV Inverters Market, By Application (Upstream Operations, Others), By Substations (Outdoor, Indoor), By Pumps, (Centrifugal Pumps, Others), By Compressors (Positive Displacement Compressor, Others), By End User (Oil and Gas, Others), Estimation & Forecast, 2018– 2031

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Market Introduction
The US MV inverters market held a market value of USD 41,997.10 million in 2022 and is likely to reach USD 57,921.29 million by the year 2031. The market is anticipated to register a CAGR of 3.71% during the forecast period.
An electronic device known as a medium-voltage inverter transforms direct current (DC) to alternating current (AC). In commercial and industrial environments, it powers machinery. The value of a MV inverter is found in its capacity to deliver steady, dependable power for heavy tasks. The power range that is typically used for business and industrial uses is below 6 MW. Due to their ability to manage high load currents and voltage fluctuations as well as their low maintenance costs, it has been noted that inverters under 6 MW are frequently used in the MV inverter market.
MV inverters are used to stabilize and regulate the power supply in the grid. As the grid becomes more decentralized and distributed, MV inverters are becoming increasingly important to ensure grid stability and reliability. Advancements in technology have led to the development of more efficient and reliable MV inverters, which are essential for the integration of renewable energy sources into the grid. As technology continues to advance, the demand for MV inverters is expected to increase further.
One of the main restraints in the US medium voltage (MV) inverters market is the complexity involved in the installation and maintenance of MV drives. These inverters require skilled professionals with specialized knowledge and training to install and operate them. The high voltage levels involved in the MV inverters also pose a risk to human safety, making it necessary to adhere to strict safety protocols. Additionally, the cost of acquiring and installing MV drives can be high, which limits their adoption in some industries. Overall, the complexity involved in MV inverter installation and maintenance can be a significant barrier to market growth.

Growth Influencers:
Rising Demand for Energy
As businesses and consumers become more conscious of their environmental impact, there is a growing demand for renewable energy sources like solar and wind power. This has led to an increase in the installation of renewable energy systems, which require MV inverters to convert DC power generated by solar panels or wind turbines into AC power for use in homes and businesses.
Usage of VFDs in Pumping Applications
he use of variable frequency drives (VFDs) in pumping applications has emerged as a key driver for the growth of the medium voltage (MV) inverter market. VFDs allow pumps to operate at variable speeds, which enables efficient control of the flow and pressure of liquids being transported through pipelines. By controlling the speed of the pump motor, VFDs can adjust the flow rate to match the actual demand, thereby reducing energy consumption and extending the lifespan of the equipment.
In addition, VFDs offer a number of benefits such as soft starting, precise speed control, and protection against overloads and other electrical faults. This makes them ideal for use in applications such as water and wastewater treatment, oil and gas, mining, and other industrial processes.
As the demand for energy-efficient and cost-effective solutions continues to grow in these industries, the use of VFDs in pumping applications is expected to increase, thereby driving the demand for MV inverters. With advancements in technology, MV inverters are becoming more affordable and easier to install, which is expected to further fuel their adoption in the coming years. Overall, the use of VFDs in pumping applications is expected to be a major driver for the growth of the MV inverter market.

Segments Overview:
The US MV inverters market is segmented into application, substations, pumps, compressors, and end user.
By Application
o Upstream Operations
o Midstream Operations
o Downstream Operations
The upstream operations segment held more than 65% of the market share in 2022.
By Substations
o Outdoor
o Indoor
The indoor segment is estimated to grow the fastest with a CAGR of more than 4% over the forecast period.
By Pumps
o Centrifugal Pumps
o Reciprocating Pumps
o Positive Displacement Pumps
o Others
The centrifugal pumps segment is projected to cross the mark of USD 10,000 million by 2029, in terms of revenue.
By Compressors
o Positive Displacement Compressor
o Dynamic Compressor
o Others
The positive displacement compressor segment is expected to hold an opportunity of more than USD 6,300 million from 2023 to 2031.
By End Users
o Oil and Gas
o Mining and Aggregate
o Chemical and Petrochemical
o Hoisting Machinery
o Others
The oil and gas segment held more than 55% of the market share in 2022.

Competitive Landscape

The major players operating in the US MV inverters market include ABB Ltd., Eaton Corporation PLC, Fuji Electric Co. Ltd., Hyosung Corporation, Inovance Technology Europe GmbH, Mitsubishi Electric Corporation, Schneider Electric SE, Siemens AG, Toshiba Corporation, Yaskawa Electric Corporation, Hitachi, Ltd., among others. The market share of the top four major players is close to 55%. In 2021, the energy segment of Hitachi Ltd. generated 12% of its total revenue.

The US MV inverters market report provides insights on the below pointers:
• Market Penetration: Provides comprehensive information on the market offered by the prominent players
• Market Development: The report offers detailed information about lucrative emerging markets and analyzes penetration across mature segments of the markets
• Market Diversification: Provides in-depth information about untapped geographies, recent developments, and investments
• Competitive Landscape Assessment: Mergers & acquisitions, certifications, product launches in the US MV inverters market have been provided in this research report. In addition, the report also emphasizes the SWOT analysis of the leading players.
• Product Development & Innovation: The report provides intelligent insights on future technologies, R&D activities, and breakthrough product developments
• Pricing Analysis: Pricing analysis of various components used in the manufacturing
• Manufacturing Cost Analysis: Cost-share of various components, cost analysis of tools
• Possible Applications of MV Inverters in the Oil & Gas Industry

The US MV inverters market report answers questions such as:

• What is the market size and forecast of the US MV inverters market?
• What are the inhibiting factors and impact of COVID-19 on the US MV inverters market during the assessment period?
• Which are the products/segments/applications/areas to invest in over the assessment period in the US MV inverters Market?
• What is the competitive strategic window for opportunities in the US MV inverters market?
• What are the technology trends and regulatory frameworks in the US MV inverters market?
• What is the market share of the leading players in the US MV inverters market?
• What modes and strategic moves are considered favorable for entering the US MV inverters market?


目次

Chapter 1.​ Research Framework​

1.1.​ Research Objective​

1.2.​ Product Overview​

1.3.​ Market Segmentation​

Chapter 2.​ Research Methodology​

2.1.​ Qualitative Research​

2.1.1.​ Primary & Secondary Sources​

2.2.​ Quantitative Research​

2.2.1.​ Primary & Secondary Sources​

2.3.​ Breakdown of Primary Research Respondents, By Region​

2.4.​ Assumption for the Study​

2.5.​ Market Size Estimation​

2.6.​ Data Triangulation​

Chapter 3.​ Executive Summary: The U.S. MV Inverters Market​

Chapter 4.​ The U.S. MV Inverters Market Overview​

4.1.​ Industry Value Chain Analysis​

4.1.1.​ Raw material​

4.1.2.​ Production​

4.1.3.​ Distribution​

4.1.4.​ End User​

4.2.​ Industry Outlook​

4.2.1.​ Possible Applications of MV Inverters in the Oil & Gas Industry​

4.3.​ PESTLE Analysis​

4.4.​ Porter’s Five Forces Analysis​

4.4.1.​ Bargaining Power of Suppliers​

4.4.2.​ Bargaining Power of Buyers​

4.4.3.​ Threat of Substitutes​

4.4.4.​ Threat of New Entrants​

4.4.5.​ Degree of Competition​

4.5.​ Market Dynamics and Trends​

4.5.1.​ Growth Drivers​

4.5.2.​ Restraints​

4.5.3.​ Challenges​

4.5.4.​ Key Trends​

4.6.​ Covid-19 Impact Assessment on Market Growth Trend​

4.7.​ Market Growth and Outlook​

4.7.1.​ Market Revenue Estimates and Forecast (US$ Mn), 2017 – 2030​

4.7.2.​ Market Volume Estimates and Forecast (000′ Units), 2017 – 2030​

4.7.3.​ Price Trend Analysis, By Application​

4.8.​ Competition Dashboard​

4.8.1.​ Market Concentration Rate​

4.8.2.​ Company Market Share Analysis (Value %), 2021​

4.8.3.​ Competitor Mapping​

Chapter 5.​ The U.S. MV Inverters Market, By Application​

5.1.​ Key Insights​

5.2.​ Market Size and Forecast, 2017 – 2030 (US$ Mn & 000′ Units)​

5.2.1.​ Upstream Operations​

5.2.1.1.​ Gas Lift​

5.2.1.2.​ Gas Gathering​

5.2.1.3.​ Reinjection of Gas for Pressure Maintenance​

5.2.1.4.​ Electric Submersible​

5.2.1.5.​ Chemical Reinjection​

5.2.1.6.​ Others​

5.2.2.​ Midstream Operations​

5.2.2.1.​ Gas Processing Operations​

5.2.2.2.​ Transmission and Distribution System​

5.2.2.3.​ Reducing the Gas Volume for Shipments or for Storage​

5.2.2.4.​ Transportation and Storage of Petroleum & Petrochemical Products​

5.2.2.5.​ Others​

5.2.3.​ Downstream Operations​

5.2.3.1.​ Heat Trains​

5.2.3.2.​ Oil Transfer​

5.2.3.3.​ Treating Cooling Water in the Processes​

5.2.3.4.​ Others​

Chapter 6.​The U.S. MV Inverters Market, By Substations ​

6.1.​ Key Insights​

6.2.​ Market Size and Forecast, 2017 – 2030 (US$ Mn & 000′ Units)​

6.2.1.​ Outdoor​

6.2.2.​ Indoor​

Chapter 7.​ The U.S. MV Inverters Market, By Pumps ​

7.1.​ Key Insights​

7.2.​ Market Size and Forecast, 2017 – 2030 (US$ Mn & 000′ Units)​

7.2.1.​ Centrifugal Pumps​

7.2.2.​ Reciprocating Pumps​

7.2.3.​ Positive Displacement Pumps​

7.2.3.1.​ Piston Pumps (Lift, Force Pump)​

7.2.3.2.​ Rotary pumps (Coil, Gear or Wing Pump)​

7.2.3.3.​ Diaphragm Pumps​

7.2.4.​ Others​

Chapter 8.​ The U.S. MV Inverters Market, By Compressors ​

8.1.​ Key Insights​

8.2.​ Market Size and Forecast, 2017 – 2030 (US$ Mn & 000′ Units)​

8.2.1. Positive Displacement Compressor​

8.2.1.1.​ Reciprocating Compressor (Diaphragm, Double and Single Acting)​

8.2.1.2.​ Rotary Compressor (Lobe, Screw, Liquid Ring, Scroll, Vane)​

8.2.2.​ Dynamic Compressor​

8.2.2.1.​ Centrifugal Compressor​

8.2.2.2.​ Axial Flow Compressor​

8.2.3.​ Others​

Chapter 9.​ The U.S. MV Inverters Market, By End User​

9.1.​ Key Insights​

9.2.​ Market Size and Forecast, 2017 – 2030 (US$ Mn & 000′ Units)​

9.2.1.​ Oil and Gas​

9.2.2.​ Mining and Aggregate​

9.2.3.​ Chemical and Petrochemical​

9.2.4.​ Hoisting Machinery​

9.2.5.​ Others​

Chapter 10.​ Company Profile (Company Overview, Financial Matrix, Key Product landscape, Key Personnel, Key Competitors, Contact Address, and Business Strategy Outlook)​

10.1.​ ABB Ltd.​

10.2.​ Eaton Corporation PLC​

10.3.​ Fuji Electric Co. Ltd.​

10.4.​ Hitachi, Ltd. ​

10.5.​ Hyosung Corporation​

10.6.​ Inovance Technology Europe GmbH​

10.7.​ Mitsubishi Electric Corporation​

10.8.​ Schneider Electric SE​

10.9.​ Siemens AG​

10.10.​ Toshiba Corporation​

10.11.​ Other Prominent Player​


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