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Testing platform for performance, reliability and safety verification and validation of clean energy technologies

Testing platform for performance, reliability and safety verification and validation of clean energy technologies
清洁能源技术性能、可靠性和安全性验证与确认的测试平台
批准号:
494785-2016
负责人:
Gaber, Hossam
金额:
$2.7万
依托单位国家:
加拿大
项目类别:
Collaborative Research and Development Grants
财政年份:
2017
资助国家:
加拿大
项目状态:
已结题
起止时间:
2017-01-01 至 2018-12-31

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中文摘要
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英文摘要
This project is aiming at the development of testing platform to verify and validate the performance, reliability, and safety of clean energy technologies from Ever Force Energy Inc as Innovated Solar Booster, and Innovated MTG Generator. The proposed platform will be used to test innovative clean energy technology products from Ever Force Energy. The tests will include unit tests and integrated tests and compliance with national and international regulations to support the commercialization of our Canadian products in Canada and worldwide. The novelty of the research challenge can be emphasized with proposing that testing platform to be adapted for innovated technologies as Solar Booster, and Innovated MTG Generator. Those innovations need advanced treatment to analyze the products and to evaluate the reliability, verification and validation. The target products will include integration of renewable energy like solar and wind, energy storage within commercial and residential buildings, industrial facilities, and transportation infrastructures. The project will help the industrial partner to analyze and verify product features in terms of performance, reliability, and safety. The platform will also support the certification and compliance of these clean energy technologies with national and international standards. The objectives of the project are: (1) verification of the design and operation of clean energy technology products; (2)validation tests in different operating conditions; (3) measurement in different operating conditions and in view of constraints; (4) validation of the performance under the normal and severe conditions; (5) compliance study with Canadian and international standards as CSA, ISE, IEEE, ISA, and others; (6) development of co-simulation platform to validate different real time scenarios; (7) validation and test different temperature and weather conditions; (8) product integrated tests of different clean energy technologies within buildings, facilities, transportation and marine infrastructures and technologies; and (9) on-going testing and verification, and data analysis for post-installations and operations.
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