Network frequency regulation through dynamic load management

Dynamic Demand control technologies is an alternative solution towards the traditional ways of providing ancillary services, namely through large generators. It could lead to significant carbon dioxide reduction and may help facilitate the connection of greater amounts of intermittent renewable e...

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Main Author: Teo, Kai Yue.
Other Authors: Choi San Shing
Format: Final Year Project
Language:English
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10356/40430
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-404302023-07-07T17:09:29Z Network frequency regulation through dynamic load management Teo, Kai Yue. Choi San Shing School of Electrical and Electronic Engineering DRNTU::Engineering Dynamic Demand control technologies is an alternative solution towards the traditional ways of providing ancillary services, namely through large generators. It could lead to significant carbon dioxide reduction and may help facilitate the connection of greater amounts of intermittent renewable energy generation, such as solar and wind power. Dynamic Demand is the name of a semi-passive technology for regulating load demands on an electrical power grid. The report proposes the monitoring of the frequency of the power grid, such that individual, intermittent loads could be switched on or off at optimal moments to balance the overall system load with generation, reducing critical power mismatches. In principle, any appliance that operates on a duty cycle (such as industrial or domestic air conditioners, water heaters, heat pumps and refrigerators) could be used to provide a constant and reliable grid real power balancing service by timing their duty cycles in response to system load. When the frequency decreases, the dynamic-demand enabled appliance would be switch off, reducing the load on the grid and helping to restore the balance. When the frequency increases past the nominal value, the load would be switched on, using up the excess power. It is necessary the appliance will not stray out of its acceptable operating range. This project is to develop a mathematical model of the power system using Matlab Simulink. The behavior of the power system under the disturbance condition will be studied, with the incorporation of the active load control mechanism. Bachelor of Engineering 2010-06-15T08:19:41Z 2010-06-15T08:19:41Z 2010 2010 Final Year Project (FYP) http://hdl.handle.net/10356/40430 en Nanyang Technological University 43 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Teo, Kai Yue.
Network frequency regulation through dynamic load management
description Dynamic Demand control technologies is an alternative solution towards the traditional ways of providing ancillary services, namely through large generators. It could lead to significant carbon dioxide reduction and may help facilitate the connection of greater amounts of intermittent renewable energy generation, such as solar and wind power. Dynamic Demand is the name of a semi-passive technology for regulating load demands on an electrical power grid. The report proposes the monitoring of the frequency of the power grid, such that individual, intermittent loads could be switched on or off at optimal moments to balance the overall system load with generation, reducing critical power mismatches. In principle, any appliance that operates on a duty cycle (such as industrial or domestic air conditioners, water heaters, heat pumps and refrigerators) could be used to provide a constant and reliable grid real power balancing service by timing their duty cycles in response to system load. When the frequency decreases, the dynamic-demand enabled appliance would be switch off, reducing the load on the grid and helping to restore the balance. When the frequency increases past the nominal value, the load would be switched on, using up the excess power. It is necessary the appliance will not stray out of its acceptable operating range. This project is to develop a mathematical model of the power system using Matlab Simulink. The behavior of the power system under the disturbance condition will be studied, with the incorporation of the active load control mechanism.
author2 Choi San Shing
author_facet Choi San Shing
Teo, Kai Yue.
format Final Year Project
author Teo, Kai Yue.
author_sort Teo, Kai Yue.
title Network frequency regulation through dynamic load management
title_short Network frequency regulation through dynamic load management
title_full Network frequency regulation through dynamic load management
title_fullStr Network frequency regulation through dynamic load management
title_full_unstemmed Network frequency regulation through dynamic load management
title_sort network frequency regulation through dynamic load management
publishDate 2010
url http://hdl.handle.net/10356/40430
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