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Description: 电力系统在台稳定计算式电力系统不正常运行方式的一种计算。它的任务是已知电力系统某一正常运行状态和受到某种扰动,计算电力系统所有发电机能否同步运行
1运行说明:
请输入初始功率S0,形如a+bi
请输入无限大系统母线电压V0
请输入系统等值电抗矩阵B
矩阵B有以下元素组成的行矩阵
1正常运行时的系统直轴等值电抗Xd
2故障运行时的系统直轴等值电抗X d
3故障切除后的系统直轴等值电抗
请输入惯性时间常数Tj
请输入时段数N
请输入哪个时段发生故障Ni
请输入每时段间隔的时间dt-power system stability in the Taiwan Power computing system is not the normal operating mode of calculation. Its mission is a known power system uptime status and be subject to some disturbance, computing power system all synchronous generator can run an operation Note : Please enter the initial power S0, shaped like a bi Please enter the infinite system bus voltage V0 Please enter the system equivalent reactance matrix B matrix B group has the following elements the line matrix into a normal operation of the system straight axis equivalent reactance Xd two fault systems running straight axis equivalent reactance X d 3 after resection of the fault system straight axis equivalent reactance Please enter the inertial time constant Tj Please enter the number of hours which N Please enter a tim
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Size: 1024 |
Author: 魏鹏 |
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Description: small signal stability analysis of SMIB
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Size: 18432 |
Author: Dhandayuthabani |
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Description: Transient stability analysis of SMIB in matlab/simulink
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Size: 13312 |
Author: gurunathan |
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Description: POWER SYSTEM STABILIZER MODEL FOR SMIB
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Size: 10240 |
Author: javad |
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Description: Hefron Phillips Model of the SMIB with SSSC
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Size: 1024 |
Author: sajjad91 |
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Description: this program for SMIB with statcom to damp power system stabil ity
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Size: 1024 |
Author: alla |
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Description: documentation and source code fro pss in smib
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Size: 1075200 |
Author: nagendra |
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Description: Two files
1. Data for Single machine Infinite Bus bar of power system. the generator data is based on MMF method which is described in Kundur, Power System Stability.
2. performance of Power System Stabilizer (PSS) for inter-area oscillations. The two area system is based on the example given in Kundur, Power System Stability.-Two files
1. Data for Single machine Infinite Bus bar of power system. the generator data is based on MMF method which is described in Kundur, Power System Stability.
2. performance of Power System Stabilizer (PSS) for inter-area oscillations. The two area system is based on the example given in Kundur, Power System Stability.
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Size: 23552 |
Author: Chaitanya |
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Description: gslf ia applied on SMIB system and load flow is carried
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Size: 2048 |
Author: j sudheer kumar |
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Description: Power system stabilizers (PSS) are now routinely used
in the industry to damp out power system oscillations. In this paper,
real-coded genetic algorithm (RCGA) optimization technique is
applied to design robust power system stabilizer for both singlemachine
infinite-bus (SMIB) and multi-machine power system. The
design problem of the proposed controller is formulated as an
optimization problem and RCGA is employed to search for optimal
controller parameters. By minimizing the time-domain based
objective function, in which the deviation in the oscillatory rotor
speed of the generator is involved stability performance of the
system is improved. The non-linear simulation results are presented
under wide range of operating conditions disturbances at different
locations as well as for various fault clearing sequences to show the
effectiveness and robustness of the proposed controller and their
ability to provide efficient damping of low frequency oscillations.-Power system stabilizers (PSS) are now routinely used
in the industry to damp out power system oscillations. In this paper,
real-coded genetic algorithm (RCGA) optimization technique is
applied to design robust power system stabilizer for both singlemachine
infinite-bus (SMIB) and multi-machine power system. The
design problem of the proposed controller is formulated as an
optimization problem and RCGA is employed to search for optimal
controller parameters. By minimizing the time-domain based
objective function, in which the deviation in the oscillatory rotor
speed of the generator is involved stability performance of the
system is improved. The non-linear simulation results are presented
under wide range of operating conditions disturbances at different
locations as well as for various fault clearing sequences to show the
effectiveness and robustness of the proposed controller and their
ability to provide efficient damping of low frequency oscillations.
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Size: 470016 |
Author: ali |
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Description: This paper deals with the damping technic of Low frequency oscillation in power system SMIB with SSSC compensator and HYBRID FUZZY CONTROLLER
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Size: 558080 |
Author: Vinner |
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Description: Analysis of UPFC damping controller for SMIB power system
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Size: 371712 |
Author: Vinner |
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Description: Power system stability is enhanced through a novel stabilizer developed around an adaptive fuzzy sliding mode approach which applies the Nussbaum gain to a nonlinear model of a single-machine infinite-bus (SMIB) and multi-machine power system stabilizer subjected to a three phase fault.
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Size: 404480 |
Author: john1990 |
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Description: In this paper, a method combining fuzzy logic and sliding mode controller is proposed for the robust control of power system Single-Machine Infinite-Bus (SMIB). The aim of this study is to overcome some shortcoming of conventional power system stabilizer (CPSS), fuzzy logic power system stabilizer (FPSS) and sliding mode controllers (SMC).
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Size: 418816 |
Author: john1990 |
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Description: This study compares the power system stabilizer based on sliding mode control with the fuzzy power system stabilizer for Single Machine Infinite Bus System (SMIB). Using the sliding mode control, a range is obtained for the changes in system parameters and a stabilizer is designed to have a proper performance in this wide range-This study compares the power system stabilizer based on sliding mode control with the fuzzy power system stabilizer for Single Machine Infinite Bus System (SMIB). Using the sliding mode control, a range is obtained for the changes in system parameters and a stabilizer is designed to have a proper performance in this wide range
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Size: 96256 |
Author: john1990 |
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Description: An interval type-2 fuzzy logic controller (IT2FLC) is proposed in this paper for the design of power system stabilizer (PSS) of a single machine infinite bus (SMIB) and multi machine
infinite bus (MMIB) system incorporated with an AC1A exciter.
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Size: 364544 |
Author: john1990 |
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Description: Small-Signal Stability
Analysis in SMIB Power
System mondal
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Size: 377856 |
Author: doctor20 |
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Description: In SMIB system, two RL series load is connected as parallel in receiving end and the three phase
circuit breaker is connected in between two RL load
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Size: 1024 |
Author: azad |
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Description: optimal power flow is illstrated using smib
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Size: 16384 |
Author: lembe
|
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Description: Simulation of Single Machine Infinite Bus System
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Size: 26624 |
Author: wegeje08 |
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