Grid Connection of wind Solar Hybrid Renewable Energy System with Active Power Filter Functionality
| dc.contributor.guide | Vinatha, U | |
| dc.coverage.spatial | ||
| dc.creator.researcher | Jayasankar, V N | |
| dc.date.accessioned | 2022-07-19T11:03:01Z | |
| dc.date.available | 2022-07-19T11:03:01Z | |
| dc.date.awarded | ||
| dc.date.completed | 2019 | |
| dc.date.registered | ||
| dc.description.abstract | The incorporation of the abundantly available wind and solar energy to the grid using power electronic converter based interfaces makes a reliable hybrid renewable energy system. Assigning harmonic mitigation property to the grid interfacing inverter to mitigate the current harmonics created by the non-linear loads at the load centres, is a cost-effective solution. The inverter controller consists of an outer DC-link voltage control loop and an inner current harmonic mitigation loop. The limitations of existingDC-link voltage controllers are poor stability margin, steady-state error and chattering problem. The widely used pq theory based inner loop controller offers poor performance under non-ideal grid voltage conditions. The conventional low pass filter based fundamental component extraction methods used in pq theory possess some limitations such as additional time delays and low-frequency oscillations.The main focus of this research is the design, simulation, implementation and analysis of a grid-tied wind-solar hybrid renewable energy system with shunt and series active filtering functionalities, under different system conditions. A Backstepping controller based outer loop, with enhanced DC-link loss compensation capability is proposed for the shunt active filter to overcome the limitations of the existing DC-link voltage controllers. The limitations of conventional low pass filter based fundamental component extraction methods are overcome by employing a self-tuning filter in the inner loop of the shunt active filter. An additional self-tuning filter is incorporated to improve the effectiveness of pq theory under non-ideal grid conditions. A self-tuning filter and a Fuzzy logic-based voltage controller are employed to control the series active filter effectively. A laboratory prototype of the shunt active power filter is implemented.The control algorithm is realised in Xilinx Basys-3 FPGA. | |
| dc.description.note | ||
| dc.format.accompanyingmaterial | None | |
| dc.format.dimensions | ||
| dc.format.extent | ||
| dc.identifier.uri | http://hdl.handle.net/10603/393181 | |
| dc.language | English | |
| dc.publisher.institution | Department of Electrical and Electronics Engineering | |
| dc.publisher.place | Mangaluru | |
| dc.publisher.university | National Institute of Technology Karnataka | |
| dc.relation | ||
| dc.rights | university | |
| dc.source.university | University | |
| dc.subject.keyword | Engineering | |
| dc.subject.keyword | Engineering and Technology | |
| dc.subject.keyword | Engineering Electrical and Electronic | |
| dc.title | Grid Connection of wind Solar Hybrid Renewable Energy System with Active Power Filter Functionality | |
| dc.title.alternative | ||
| dc.type.degree | Ph.D. |
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