Intelligent Control Framework for the Feeding System in the Biomass Power Plant
This paper proposes an intelligent control framework for biomass drying process with flue gases based on FLC (fuzzy logic controller) and CAN (Controller Area Network) bus. In the operation of a biomass drying process, in order to get the biomass with the set-point low moisture content dried by wast...
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Online Access: | http://dx.doi.org/10.1051/matecconf/20153404007 |
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doaj-005efc063d7b45378473cf9e172781062021-02-02T01:41:46ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01340400710.1051/matecconf/20153404007matecconf_icmme2015_04007Intelligent Control Framework for the Feeding System in the Biomass Power PlantSun Jin0Zhu Xinglong1Cao Xiaowei2Ding Jing3Yangzhou UniversityYangzhou UniversityYangzhou UniversityYangzhou UniversityThis paper proposes an intelligent control framework for biomass drying process with flue gases based on FLC (fuzzy logic controller) and CAN (Controller Area Network) bus. In the operation of a biomass drying process, in order to get the biomass with the set-point low moisture content dried by waste high temperature flue gases, it is necessary to intelligent control for the biomass flow rate. Use of an experiment with varied materials at different initial moisture contents enables acquisition of the biomass flow rates as initial setting values. Set the error between actual straw moisture content and set-point, and rate of change of error as two inputs. the biomass flow rate can be acquired by the fuzzy logic computing as the output. Since the length of dryer is more than twenty meters, the integration by the CAN bus can ensure real-time reliable data acquisition and processing. The control framework for biomass drying process can be applied to a variety of biomass, such as, cotton stalk, corn stalk, rice straw, wheat straw, sugar cane. It has strong potential for practical applications because of its advantages on intelligent providing the set-point low moisture content of biomass feedstock for power generation equipment.http://dx.doi.org/10.1051/matecconf/20153404007 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sun Jin Zhu Xinglong Cao Xiaowei Ding Jing |
spellingShingle |
Sun Jin Zhu Xinglong Cao Xiaowei Ding Jing Intelligent Control Framework for the Feeding System in the Biomass Power Plant MATEC Web of Conferences |
author_facet |
Sun Jin Zhu Xinglong Cao Xiaowei Ding Jing |
author_sort |
Sun Jin |
title |
Intelligent Control Framework for the Feeding System in the Biomass Power Plant |
title_short |
Intelligent Control Framework for the Feeding System in the Biomass Power Plant |
title_full |
Intelligent Control Framework for the Feeding System in the Biomass Power Plant |
title_fullStr |
Intelligent Control Framework for the Feeding System in the Biomass Power Plant |
title_full_unstemmed |
Intelligent Control Framework for the Feeding System in the Biomass Power Plant |
title_sort |
intelligent control framework for the feeding system in the biomass power plant |
publisher |
EDP Sciences |
series |
MATEC Web of Conferences |
issn |
2261-236X |
publishDate |
2015-01-01 |
description |
This paper proposes an intelligent control framework for biomass drying process with flue gases based on FLC (fuzzy logic controller) and CAN (Controller Area Network) bus. In the operation of a biomass drying process, in order to get the biomass with the set-point low moisture content dried by waste high temperature flue gases, it is necessary to intelligent control for the biomass flow rate. Use of an experiment with varied materials at different initial moisture contents enables acquisition of the biomass flow rates as initial setting values. Set the error between actual straw moisture content and set-point, and rate of change of error as two inputs. the biomass flow rate can be acquired by the fuzzy logic computing as the output. Since the length of dryer is more than twenty meters, the integration by the CAN bus can ensure real-time reliable data acquisition and processing. The control framework for biomass drying process can be applied to a variety of biomass, such as, cotton stalk, corn stalk, rice straw, wheat straw, sugar cane. It has strong potential for practical applications because of its advantages on intelligent providing the set-point low moisture content of biomass feedstock for power generation equipment. |
url |
http://dx.doi.org/10.1051/matecconf/20153404007 |
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