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PVStationQualityOptimization&DistributedPVIndustryInnovationSummit Foru...

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发表于 2014-11-23 16:49:52 |只看该作者 |倒序浏览
Mar.19th-20th, 2015Shanghai China
With Chinese government’s policies on PV application being constantly issued, the construction of PV power plant in China has embarked on its grand journey. According to China’s National Energy Administration, the number of new PV power plant projects nationwide has reached 114 with a total investment of over 76 billion yuan. Many predict that the fourth quarter of this year will witness a new round of competition in PV plant installation towards the annual goal of 13GW installation capacity. However, the quality of PV power plants requires urgent improvement. Wide attention has been caused due to quality problems of the existing PV power plants, such as backing sheet cracking, coating attenuation and backplane burning of ground-based station components. Quality problems also lead to financial institutions’ unwillingness of financing projects.
In the end of June in 2014, Notice of Strengthening Construction and Operation Management of PV Power Plants was issued from China’s National Energy Administration to relevant government departments, PV plant investors, grid corporations and China Development Bank in order to regulate China’s PV power plant construction and operation management, improve efficiency of PV plants and insure the healthy development of the industry.
As the scale and quantity of China’s PV plants expanding, improvement and completion of commercialization of the industry is in urgent need, especially in terms of equity financing, financial analysis, equity transaction, insurance and follow-up improvement of stations.
At the same time, the distributed PV industry has gained unprecedented political support in approval, grid connection and subsidy in 2014. The goal, set by China’s National Energy Administration, of 2014 new installation capacity is 14 GW, with 8GW for the distributed and 6GW for other PV stations. The construction fund will exceed 140 billion yuan. By that time, China will become an emerging country in global PV application.
Upon China’s thriving in PV industry, we still have several considerations for its development. Do developers, investors and financing institutions have concerns about the reliability of PV power plants? How to optimize efficiency of future PV plants? What are the problems of the existing grid-connected PV power system? How to evaluate newly-built PV stations? Does the biggest obstacle in the way of distributed PV industry lie in financing model innovation or development of key technology? Will China’s PV industry embrace its spring with preferential policy support? All the above will be discussed and focused in the Meeting of PV Plant Quality Management & Distributed PV Innovation 2015.
Highlights of the Meeting:
The 1st meeting focusing PV industry market reform in 2015
Up-to-date news on China and global PV markets
Progress, opportunities and challenges of Asia-Pacific major projects
Market demands for PV plants, core technical components of distributed PV and supplementary equipment
Group researches on cutting-edge technologies and strategies, and practical experience sharing from industry elites
Comprehensive and professional discussions for efficiency promotion
Potential partnerships with suppliers for future cooperation
New technology acquirement and project information sharing
Professional analysis and valuable insights from industrial authorities
Excellent opportunities for business and talks with the high level
Topics of the Meeting:
Potential and opportunity of China’s PV industry
New policies of the U.S. PV industry and indicated chance for China
New policies of Japan PV industry
Innovative methods of Japanese PV station market development
Current development and future trend of Japanese solar battery technology
Promising market in India for Chinese products
Authentication and entrance requirements of American PV market despite trade disputes
Analysis of new policies on China’s distributed PV power
Up-to-date international PV technology roadmap
Photovoltaic pv agriculture, application of new opportunities
Overseas PV plant construction experience reference
Analysis on new technology standards and future trends of PV industry
Future development of BIPV
Quality of PV plant as foundation of benefits
Exploration on financing model innovation of PV plant projects
Status and prospect of third-party inspection and assessment of PV projects
High-quality plans of design, completion and construction of PV plant
Methods and tools for design optimization of PV plant
Research on the core of major PV plant
Future intelligent technology of PV plant
Technical alternatives for infrastructure construction of PV plant in various environment
Operation and maintenance alternatives of PV plant and rapid response from suppliers
Healthy environment building upon frequent merging among PV plants
Risk management of investment and financing
Analysis on power station failure mode and its influence
New modes of development and construction of PV station
Authentication as necessity of PV industry
Quality status and existing problems of PV plant system
Reliability of PV station demanded from developers, investors and financiers
Performance inspection and quality assessment of PV plant
Application of rooftop high-efficient components
Analysis on how to avoid risks of grid connection of distributed PV power
Diversity trend of financing modes
Features of EPC of distributed PV station projects
Innovative financing solutions for distributed PV
Analysis on kilowatt-hour cost calculation and affecting factors
Key researches on performance test and quality assessment of distributed PV station
Optimization of future PV plant’s efficiency and quality
Barriers to distributed PV development and solutions
Financial leasing mode to assist PV industry’s development
Mutual trust between financial insurance institutions and PV enterprises
Analysis on operation and maintenance of distributed PV plant
Leap upon technology progress and PV power generation cost reduction
Further advancement in PCE by TFSC
Key technology of distributed PV inverter
New technological requirement of grid connection
Efficiency of amorphous silicon/crystalline heterojunction solar cell
Development of thin film technology
Research on contact characteristics of metal and ultrathin amorphous silicon film
Design and application of innovative PV energy storage system
For more information:
Anne Wang  (T)+86 21-69891069 (E)  anne.wang@klexhibitions.com
Jason Qi     (T) +86 21-52848106 (E)  Jason.Qi@umechina.com
official website :www.klexhibitions.com/PV2015

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