Description: In this project we have used Dynamic Matrix Control algorithm which is a strategy used in predictive control for predicting the proceeding control actions in a control system.
our plant is a Drum-type boiler-turbine system that is mainly used in power plants.
in this work DMC is used to prepare the control action needed to control the outlets of the different valves to control steam,water flow and the fuel consumption in an optimal way considering some observation parameters,such as water level,and steam pressure.-In this project we have used Dynamic Matrix Control algorithm which is a strategy used in predictive control for predicting the proceeding control actions in a control system.
our plant is a Drum-type boiler-turbine system that is mainly used in power plants.
in this work DMC is used to prepare the control action needed to control the outlets of the different valves to control steam,water flow and the fuel consumption in an optimal way considering some observation parameters,such as water level,and steam pressure.
Platform: |
Size: 1024 |
Author:hamed |
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Description: 水电站中长期优化调度主要是在满足电力系统出力要求以及下游综合用水要求等的前提下,合理地安排水库各个月份的发电流量,使得调度期内的总发电量最大。即在给定预报入库流量过程线、下游综合用水流量过程线、调度期起始水位和终止水位等条件下,通过总水量的合理运用使调度期内水电站的总发电量最大。-Long-term optimal operation of hydropower stations mainly in the power system to meet the output requirements, and integrated water requirements downstream of the premise, reasonable arrangements for generating reservoir flow each month, making the scheduling period, the largest amount of total power generation. That is forecast in a given inflow hydrograph, downstream water discharge hydrograph synthesis, scheduling and termination of the initial water level and water level conditions, the total amount of water through the rational use of the scheduling period, the total generating capacity of the largest hydropower station. Platform: |
Size: 2048 |
Author:涛哥 |
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Description: statcom connection
Abstract In deregulated power system, congestion management
is a major problem due to operational constraints.
Flexible AC transmission systems (FACTS) devices can be
a choice to control the power flow in congested lines. This
paper explores the use of two popular FACTS devices,
TCSC and STATCOM for power flow control in electrical
network and their capability to decongest the network. It
suggests the optimal location of TCSC and STATCOM
individually to relieve congestion with minimum power
losses, voltage regulation and cost of the device. The
proposed method has been verified on IEEE-14 bus system
for its effectiveness. Simulation work is carried out in
MATLAB software. Platform: |
Size: 7979 |
Author:Mariya |
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Description: ieee 14 bus
Abstract In deregulated power system, congestion management
is a major problem due to operational constraints.
Flexible AC transmission systems (FACTS) devices can be
a choice to control the power flow in congested lines. This
paper explores the use of two popular FACTS devices,
TCSC and STATCOM for power flow control in electrical
network and their capability to decongest the network. It
suggests the optimal location of TCSC and STATCOM
individually to relieve congestion with minimum power
losses, voltage regulation and cost of the device. The
proposed method has been verified on IEEE-14 bus system
for its effectiveness. Simulation work is carried out in
MATLAB software. Platform: |
Size: 29639 |
Author:Mariya |
Hits:
Description: 考虑网络约束、天然气节点约束、潮流约束的电-气耦合互补系统的最优出力情况(The optimal output of the electricity-gas coupled complementary system considering network constraints, natural gas node constraints, and power flow constraints) Platform: |
Size: 5120 |
Author:Lighterss |
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