Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems

Micro-hydel plants are used in micro-grid or off-grid areas where there is an adequate availability of hydro potential. In general, micro-hydel systems are embedded with synchronous or asynchronous generator based electronic load controller (ELC) to have better frequency stability. Conventional ELC...

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Main Authors: Kumar B. Anil, Singh R.Raja, Mohan Harshit, Chelliah Thanga Raj
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201822505010
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spelling doaj-ca05b51d574548bb9069248fd9c0f5782021-02-02T00:50:29ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012250501010.1051/matecconf/201822505010matecconf_ses2018_05010Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating SystemsKumar B. AnilSingh R.RajaMohan HarshitChelliah Thanga RajMicro-hydel plants are used in micro-grid or off-grid areas where there is an adequate availability of hydro potential. In general, micro-hydel systems are embedded with synchronous or asynchronous generator based electronic load controller (ELC) to have better frequency stability. Conventional ELC operate the generator with full load capacity regulating the generator output voltage and frequency. The conventional controller has a demerit of less efficiently. This paper presents a reduced dump load strategy (RDLS) with fault detection and isolation (FDI) for reliable operation of micro-hydro generators. Proposed strategy protects the system from load disturbances and isolates the system during line fault and sensor fault. Reduced dump load strategy with FDI enhances the machine’s lifespan and protects the system from catastrophic failure. Practical implementation of developed reduced dump load strategy using Full Spectrum Simulator (FSS) with 3 HP generator is presented in this paper. The presented methodology includes coding based FSS for controlling the dump load and switching operation.https://doi.org/10.1051/matecconf/201822505010
collection DOAJ
language English
format Article
sources DOAJ
author Kumar B. Anil
Singh R.Raja
Mohan Harshit
Chelliah Thanga Raj
spellingShingle Kumar B. Anil
Singh R.Raja
Mohan Harshit
Chelliah Thanga Raj
Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
MATEC Web of Conferences
author_facet Kumar B. Anil
Singh R.Raja
Mohan Harshit
Chelliah Thanga Raj
author_sort Kumar B. Anil
title Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
title_short Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
title_full Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
title_fullStr Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
title_full_unstemmed Reduced Dump Load Strategy with FDI using FSS in Micro-Hydel Generating Systems
title_sort reduced dump load strategy with fdi using fss in micro-hydel generating systems
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Micro-hydel plants are used in micro-grid or off-grid areas where there is an adequate availability of hydro potential. In general, micro-hydel systems are embedded with synchronous or asynchronous generator based electronic load controller (ELC) to have better frequency stability. Conventional ELC operate the generator with full load capacity regulating the generator output voltage and frequency. The conventional controller has a demerit of less efficiently. This paper presents a reduced dump load strategy (RDLS) with fault detection and isolation (FDI) for reliable operation of micro-hydro generators. Proposed strategy protects the system from load disturbances and isolates the system during line fault and sensor fault. Reduced dump load strategy with FDI enhances the machine’s lifespan and protects the system from catastrophic failure. Practical implementation of developed reduced dump load strategy using Full Spectrum Simulator (FSS) with 3 HP generator is presented in this paper. The presented methodology includes coding based FSS for controlling the dump load and switching operation.
url https://doi.org/10.1051/matecconf/201822505010
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