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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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.
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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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.
With rapid development of wind power generation, it's necessary to study the dynamic characteristics of wind power generators when a fault occurs in the grid to assure the safe and stable operation of the wind far...
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With rapid development of wind power generation, it's necessary to study the dynamic characteristics of wind power generators when a fault occurs in the grid to assure the safe and stable operation of the wind farm. At present, the widely used wind power generators in the whole world are squirrel cage induction generator (SCIG) and doubly fed induction generator (DFIG). The models of SCIG wind power generation system and DFIG wind power generation system connected with the grid are built, and their transient operation characteristics are studied. A new control measure is put forward to improve the transient performance of the DFIG, which is proved effective through the simulation. Also the impact of the control measure on the SCIG running in parallel with the DFIG is also investigated.
A new method for hybrid non-linear state estimation with phasor measurement unit (PMU) is proposed, in which the direct voltage phasor measurement is transformed into indirect equivalent branch current measurement to ...
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A new method for hybrid non-linear state estimation with phasor measurement unit (PMU) is proposed, in which the direct voltage phasor measurement is transformed into indirect equivalent branch current measurement to conduct the hybrid iteration with SCADA measurement. The indirect measurement errors caused by constructing the equivalent current modification are also analyzed and calculated in detail. The accuracy of the hybrid estimation algorithm is analyzed qualitatively and calculated quantitatively. The theoretic analysis and simulation results demonstrate that the proposed method has higher estimation precision and better performance in convergence time and filtering effect.
Distributed generation is regarded as the developing direction of the powersystem in 21 century. Because distributed generation always connects with the distribution system, which has great influence on every aspects...
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Distributed generation is regarded as the developing direction of the powersystem in 21 century. Because distributed generation always connects with the distribution system, which has great influence on every aspects of powersystem. This paper studied the influence of distributed generation on load modeling. When the influence of distributed generation is not negligible, the composite induction motor load model can't effectively describe the actual load characteristic. This paper proposes a new load model-asynchronous generator +ZIP. The validity of the proposed load model is also testified via the comparison and contrast from a great deal of simulations. Then, composite induction-motor and asynchronous generator +ZIP load models were unified in one program.
The interactions between AC and DC systems in the steady-state condition of powersystems are investigated. Through a sensitivity analysis, the influence of DC control parameters on the operation of AC/DC systems and ...
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The interactions between AC and DC systems in the steady-state condition of powersystems are investigated. Through a sensitivity analysis, the influence of DC control parameters on the operation of AC/DC systems and that of AC control parameters on other AC parameters with the DC system existing are discussed. The sensitivity matrices and the influence factors between AC and DC systems are analyzed from various points of view. The sensitivity analysis made in this paper is expected to be of practical significance in such problems as load flow control, parameter regulation, voltage estimation, etc.
The radiation and propagation of electromagnetic (EM) waves generated from PD caused by the obstruction of main transformer components are studied by FDTD simulation in order to get more information for PD location an...
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In an AC/DC large-scale interconnection power grid, there are many problems to be solved. Among these, small-signal stability is extremely important. In this paper, based on the reallocating -damping theory of PSS, re...
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In an AC/DC large-scale interconnection power grid, there are many problems to be solved. Among these, small-signal stability is extremely important. In this paper, based on the reallocating -damping theory of PSS, reallocating-damping theory of HVDC modulation is proposed, that variation of gain of HVDC modulation doesn't influence the system general damping. It is also proved that reallocating-damping theory unifies PSS and HVDC modulation, which are both damping control measures. Mathematics deduction is given in detail. The possible negative effect caused by PSS and HVDC modulation is analyzed. A number of cases are tested such as a 12-generator system, 2DC system and a real powersystem.
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