With the development of electric power market, the centralized legacy energy management system (EMS) is hardly adaptive to the polytrope of market environment. Firstly the definitions of agent as well as multi-agent s...
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For accurate simulation of voltage stress on secondary circuits caused by very fast transient over-voltage in gas insulated substation (GIS), a sophisticated modeling of potential and current transformers (PT/CT) is o...
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For accurate simulation of voltage stress on secondary circuits caused by very fast transient over-voltage in gas insulated substation (GIS), a sophisticated modeling of potential and current transformers (PT/CT) is of vital importance. A new method is proposed to setup high frequency two-port circuit model of PT based on scattering parameters. First, the scattering parameters of PT are transformed in to Y-parameters and equivalent 'π' circuit model could be established. Second, vector fitting method is used to approximate admittances of equivalent 'π' circuit model by rational functions. At last, a circuit synthesis method for rational functions is applied to build circuit model. The simulation and measurement results are presented, which confirmed validity of the proposed model. The proposed method is effective and general, and overcomes the limitation of former methods. The model setup by this method can make simulation more accurate of conductive coupling through PT/CT in GIS.
Resonance mechanism is one of the theories that interpret powersystem low frequency oscillation. According to the resonance mechanism, power disturbance of prime mover can arouse powersystem forced low frequency osc...
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Resonance mechanism is one of the theories that interpret powersystem low frequency oscillation. According to the resonance mechanism, power disturbance of prime mover can arouse powersystem forced low frequency oscillations. Therefore, the causes of turbine power disturbance were analyzed. The coupling model between thermodynamicsystem of plant and powersystem was set up by MATLAB. The possibility of combustion ratio of boiler and control valve of governing system disturbance inducing the variation of turbine power was researched in detail. The simulation results indicate that powersystem low frequency oscillations of resonance mechanism might be caused by the disturbance of control valve, when it's frequency is consistent with or close to powersystem natural oscillations frequency. Because of the biggish inertia of boiler, the disturbance of combustion ratio cannot invoke powersystem low frequency oscillation of resonance mechanism.
Cascading trips caused by flow transferring are the crucial causation of a lot of well-known blackouts. It severely threatens the security and reliability of powersystems. Flow transferring relativity factor (FTRF) i...
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Cascading trips caused by flow transferring are the crucial causation of a lot of well-known blackouts. It severely threatens the security and reliability of powersystems. Flow transferring relativity factor (FTRF) is extended from single branch removal event to multi-branches removal event. According to refraction and reflection process of flow transferring, the calculation formula of FTRF for multi-branches chain removal event is deduced. Moreover, by using the relationship of node injection currents and branch currents, a method of post-fault branch current estimation and a flow transferring identification algorithm based on WAMS to distinguish flow transferring in transient period is presented. The simulation results of 10-generator 39-bus New England system show that the proposed estimation method and the identification algorithm work well.
The lack of quantitative stability analysis software for powersystem is one of the main reasons for losing good chance to implement the emergency control and even finally resulting in the large outage. Recently, the ...
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The lack of quantitative stability analysis software for powersystem is one of the main reasons for losing good chance to implement the emergency control and even finally resulting in the large outage. Recently, the rapidly developing wide area measurement system (WAMS) gives a new way for quick on-line quantitative transient stability assessment. Starting with the single machine energy function, the relationship between the variation rate of transient unbalance energy and multi-swing stability was analyzed in detail, and the corresponding characteristic of the variation rate of transient energy was proved. Then, a new multi-swing stability assessment criterion based on WAMS was proposed. Numerical simulations were conducted on 6-machine 22-bus system of China electric power research institute to demonstrate the effectiveness of this criterion.
Three design schemes of compensation currents for D-STATCOM in delta connection used for unbalanced load compensation are introduced. They are the schemes based on compensation principle of admittance, no zero sequenc...
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Three design schemes of compensation currents for D-STATCOM in delta connection used for unbalanced load compensation are introduced. They are the schemes based on compensation principle of admittance, no zero sequence component design and an optional design method of maximum minimizing phase current. Comparisons are made considering technical indexes and engineering significance among the proposed three schemes. In serious unbalanced operating conditions, the obvious difference in amplitude among the compensation currents in three phases may lead to one or two phase overloading and the compensation capability is restricted. The optional design makes the compensation currents in three phases to be equal or close to each other as possible as it can, which is helpful to ensure the D-STATCOM having high-usage and desirable compensation effect. Similar performance can be obtained to some extent with the simpler scheme of no zero sequence component design.
Aimed at the necessary on the automatic detection level in unattended substation, a new method which monitoring and diagnosis the high-voltage (HV) power equipment running state based on image processing is put forwar...
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Digital simulation is the guiding tool in powersystem operation and control. Thus, its veracity directly affects both the security and economical operation of a powersystem. Since the wide area measurement system (W...
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Digital simulation is the guiding tool in powersystem operation and control. Thus, its veracity directly affects both the security and economical operation of a powersystem. Since the wide area measurement system (WAMS) can provide synchronous dynamic data independent of models and parameters, this paper presents a simulation validation strategy based on WAMS to decouple the system into small areas with fewer components at different voltage levels. Therefore, by taking the measured data of WAMS as dynamic equivalent signals in digital simulation, the simulation validation work can be carried out in a much specified area and the wrong component causing the error can be found. The realization method of the simulation validation strategy proposed is also presented via the PSS/E simulation tool. Detailed case studies show the effectiveness of the method.
It is a trend to construct unattended substation in powersystem *** paper systematically analyses the superiority and limitation of MATLAB and Visual C++ and illustrates how to compile m-files to cpp-files by MATLAB ...
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Although the fault component impedance relay has many perfect performances, it is still restricted by high fault resistance. In order to improve its resistive tolerance and overcome unreliable operation, a new type re...
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Although the fault component impedance relay has many perfect performances, it is still restricted by high fault resistance. In order to improve its resistive tolerance and overcome unreliable operation, a new type relay with double circular characteristic is put forward, as well as its operating boundary and general operating equation are researched in this paper. The relay is comprised of two groups operation equations, one of them is calculated by sampling integral arithmetic to achieve its ultra-high speed while the other by Fourier arithmetic to enhance the relay capability against high resistance. dynamic simulation test has been made with a typical two sources system operating at 750 kV to verify the relay performance. Theoretical analyses and test results show that the fault component impedance relay with double circular characteristic is simple, reliable and secure with ultra-high speed and great capability against fault resistance.
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