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At the heart of this industry growth is the surge in solar capacity across key APAC economies, particularly China, India, Australia, and emerging Southeast Asian nations. China, the world’s largest solar energy producer, continues to lead in the deployment of solar tracker systems in utility-scale projects. With policies such as the 14th Five-Year Plan emphasizing green energy, China’s solar sector is integrating advanced tracking systems to enhance performance, reduce the levelized cost of electricity (LCOE), and meet growing domestic and international energy demands. Similarly, India’s National Solar Mission and its ambitious target of 280 GW of solar capacity by 2030 are fueling investments in high-efficiency solar parks, where trackers are increasingly being adopted to optimize land use and energy yield in diverse climates.
According to the research report “Asia-Pacific Solar Tracker Market Outlook, 2030” the market is projected to grow with 18.02% CAGR by 2025-30.Australia is another major contributor to the growth of the solar tracker market in the region. With expansive open land, high solar irradiance, and a well-established grid infrastructure, Australia’s solar farms have quickly embraced tracking technology especially single-axis trackers to boost the performance of large-scale installations. The country’s shift towards decentralized renewable energy and its growing commercial solar sector further supports the adoption of solar trackers that can offer long-term economic benefits and energy efficiency.
Southeast Asian countries, including Vietnam, Thailand, and the Philippines, though at earlier stages of solar tracker deployment, are showing promising interest as solar power becomes more viable amid rising electricity demand and the gradual phasing out of coal-based generation. The tropical climate and growing availability of financing mechanisms make these markets increasingly attractive for solar developers, many of whom are now incorporating tracking systems to ensure projects are both cost-effective and competitive. A notable trend driving adoption is the integration of bifacial solar panels with solar trackers.
These panels capture sunlight on both sides, and when coupled with solar trackers especially single-axis systems they can significantly increase energy generation. This synergy is particularly appealing in regions with high albedo surfaces like deserts or reflective soil, which are common in parts of Australia, India, and western China. As solar developers in APAC become more ROI-focused, this combination is becoming standard practice for utility-scale projects aiming to enhance output without proportionately increasing capital expenditure.
Market Drivers
- Massive Utility-Scale Solar Expansion in China & India: The APAC region is witnessing a surge in mega solar projects, especially in China and India, which collectively dominate the regional solar capacity. These projects are increasingly deploying single-axis trackers to maximize output, especially in arid and semi-arid zones like Inner Mongolia or Rajasthan, where solar irradiation is high and land is expansive.
- Government-Led Renewable Energy Targets and Auctions: Many APAC governments are setting ambitious renewable energy goals such as India’s 500 GW target by 2030 and Australia’s state-level clean energy mandates backed by solar auction schemes and subsidies. These frameworks promote the use of advanced technologies like trackers to improve project bankability and meet aggressive production quotas.
Market Challenges
- Harsh Climatic and Geographic Conditions: From typhoon-prone Southeast Asia to dusty desert zones in Western China and India, the region’s diverse and extreme environments can pose serious durability and performance challenges for solar trackers. This necessitates robust engineering and higher O&M efforts, driving up costs in challenging terrains.
- Inconsistent Grid Infrastructure and Curtailment Issues: In some APAC countries, especially in developing economies, grid congestion and inadequate transmission infrastructure can lead to frequent solar power curtailment. Even if trackers increase energy generation, grid bottlenecks may undermine output realization, affecting ROI for tracker-integrated projects.
Market Trends
- Hybrid Projects with Energy Storage: The APAC market is seeing rapid growth in solar-plus-storage hybrid systems, especially in remote areas of Australia, the Philippines, and Indonesia. Trackers paired with battery storage systems are becoming a preferred model to stabilize power output and enhance system reliability, particularly for off-grid and island applications.
- Localization of Tracker Manufacturing: With the rise in solar deployment, countries like China, India, and Australia are encouraging domestic tracker manufacturing to reduce import dependence, cut costs, and create jobs. This localization trend is not only improving supply chain efficiency but also enabling design adaptations for regional conditions.
The dominance of single-axis trackers in the Asia-Pacific (APAC) solar tracker market is primarily driven by their ideal balance of performance enhancement and economic feasibility, especially for the region’s rapidly expanding utility-scale solar projects. Countries like China, India, Australia, and several Southeast Asian nations are experiencing a solar boom, with governments pushing aggressive renewable energy targets to meet rising power demand and reduce carbon footprints. Single-axis trackers, which follow the sun’s movement from east to west, are highly suited to the broad plains and semi-arid zones found across much of APAC, where land availability is less constrained than in urban centers.
These trackers significantly improve energy output by 15-25% over fixed-tilt systems while remaining more affordable and less complex to install and maintain compared to dual-axis systems. This makes them a preferred choice for developers looking to optimize returns on large-scale installations without overextending capital budgets. Furthermore, the maturing solar ecosystem in APAC, including local manufacturing of tracker components and increasing technical expertise, supports their deployment at scale.
Solar Photovoltaic (PV) technology is leading in the Asia-Pacific solar tracker market due to its scalability, declining costs, and strong alignment with the region’s high solar energy potential and government-led renewable energy initiatives.
In the Asia-Pacific (APAC) region, Solar Photovoltaic (PV) systems have become the dominant application for solar trackers primarily because of their unmatched adaptability, rapidly falling prices, and synergy with the region’s climatic conditions and energy policies. Countries such as China, India, Japan, Australia, and emerging Southeast Asian economies are heavily investing in solar PV infrastructure to meet their growing electricity demands while transitioning toward cleaner energy sources. Solar PV modules are not only easier to deploy across varied terrains from deserts to agricultural lands but they also integrate seamlessly with single-axis and dual-axis tracking systems, which improve their energy output.
The massive scale of solar parks being developed in APAC makes PV technology an ideal choice due to its lower levelized cost of electricity (LCOE), quick installation time, and wide availability of skilled labor and components. Government incentives, feed-in tariffs, and renewable portfolio standards further accelerate PV adoption across the region. Additionally, the advancements in bifacial PV modules paired with trackers are unlocking higher efficiency levels, making PV an even more attractive investment for both utility-scale and commercial projects.
Active solar trackers are leading in the Asia-Pacific solar tracker market due to their superior energy yield capabilities and suitability for large-scale solar installations, which are rapidly expanding across the region.
The dominance of active solar trackers in the Asia-Pacific (APAC) solar tracker market is primarily driven by their ability to significantly enhance energy generation by automatically adjusting the orientation of solar panels to follow the sun’s movement throughout the day. This feature makes them highly effective for utility-scale solar farms, which are proliferating across key APAC countries such as China, India, and Australia due to rising energy demands and strong governmental support for renewable energy development. Active trackers, particularly single-axis systems, offer a practical balance between cost and efficiency, boosting solar energy output by up to 25-35% compared to fixed-tilt systems.
In APAC, where solar radiation levels are high and land availability is relatively abundant in many areas, deploying active trackers helps maximize return on investment for solar developers. Technological advancements, increased domestic manufacturing, and favorable policy frameworks such as subsidies and renewable energy targets have further reduced the cost barriers to adopting active trackers. As nations in the region aim to meet climate goals and ensure energy security through solar expansion, active solar trackers present a logical and effective solution for scaling up solar production with optimized performance, cementing their leading position in the regional market.
China is leading in the Asia-Pacific solar tracker market due to its vast solar power capacity, strong government policies, and large-scale investments in solar infrastructure and manufacturing.
China’s leadership in the Asia-Pacific solar tracker market stems from its dominant position as the world’s largest solar energy producer and a global hub for solar technology manufacturing. The Chinese government has aggressively supported solar energy development through strategic initiatives like the 14th Five-Year Plan, large-scale subsidies, and mandatory renewable energy targets, which have resulted in a rapid and extensive deployment of solar farms across the country. In particular, utility-scale solar power projects where solar trackers are most beneficial have flourished in regions such as Inner Mongolia, Gansu, and Xinjiang, where land is plentiful and solar irradiance is high.
Solar trackers, especially single-axis and active types, have become increasingly favored for these installations to enhance energy yields and maximize efficiency. Moreover, China houses leading tracker manufacturers like Arctech Solar and TrinaTracker, which benefit from economies of scale, continuous innovation, and government incentives, allowing for more cost-effective deployment of advanced tracking systems. The country's comprehensive and vertically integrated solar supply chain from polysilicon production to module and tracker manufacturing further reinforces its dominance in both the domestic and export markets.
- In February 2024, Antaisolar entered into a supply agreement with Larsen & Tourbo Limited to deliver a solar tracker project in India. These single axis trackers featuring single lew drive, cost efficiency and stability along with 18.5% to 24% of increase in power generation will be installed. The supply order will boost the company’s position in the industry.
- In November 2023, GameChange Solar signed a memorandum of understanding with Bison Energy to jointly bring five solar projects with over 125MW in Australia. The partnership comprises of supply of Genuis Tracker by GameChange Solar to develop projects of Bison Energy in Victoria and New South Wales. Therefore, the collaborative effort will support enhance the company’s presence and expand its customer base across the region.
- In August 2022, in Mundra, Gujarat, the joint venture Jash Energy operates a solar tracker facility with a 3 GW annual manufacturing capacity. All essential components for Arctech solar tracker products are likely to be produced at the factory, which covers an area of more than 16 acres.
Considered in this report
- Historic Year: 2019
- Base year: 2024
- Estimated year: 2025
- Forecast year: 2030
Aspects covered in this report
- Solar Tracker Market with its value and forecast along with its segments
- Various drivers and challenges
- On-going trends and developments
- Top profiled companies
- Strategic recommendation
By Technology
- Solar Photovoltaic (PV)
- Concentrated Solar Power (CSP)
- Concentrated Photovoltaic (CPV)
By Installation Type
- Ground-Mounted
- Rooftop-Mounted
The approach of the report:
This report consists of a combined approach of primary as well as secondary research. Initially, secondary research was used to get an understanding of the market and listing out the companies that are present in the market. The secondary research consists of third-party sources such as press releases, annual report of companies, analyzing the government generated reports and databases.After gathering the data from secondary sources primary research was conducted by making telephonic interviews with the leading players about how the market is functioning and then conducted trade calls with dealers and distributors of the market. Post this we have started doing primary calls to consumers by equally segmenting consumers in regional aspects, tier aspects, age group, and gender. Once we have primary data with us we have started verifying the details obtained from secondary sources.
Intended audience
This report can be useful to industry consultants, manufacturers, suppliers, associations & organizations related to this industry, government bodies and other stakeholders to align their market-centric strategies. In addition to marketing & presentations, it will also increase competitive knowledge about the industry.Table of Contents
Companies Mentioned (Partial List)
A selection of companies mentioned in this report includes, but is not limited to:
- Arctech Solar Holding Co., Ltd.
- Trina Solar Co., Ltd.
- PV Hardware (PVH)
- Antaisolar
- GameChange Solar
- Nextracker Inc.
- Array Technologies, Inc.
- Gonvarri Solar Steel S.L.
- Ideematec Deutschland GmbH
- Soltec Power Holdings SA
- FTC Solar Inc.
- Jurchen Technology GmbH