Abstract:Expressions are derived that allow the current in a lightning return stroke to be calculated from a measurement of either the magnetic flux density or the radiation field (electric field intensity or magnetic flux density) of the discharge. Published magnetic field and radiation field data are of insufficient time resolution to allow an adequate current determination to be made.Most lightning current measurements have been made on strokes to tall buildings or towers and represent the current flowing at the lig… Show more
“…But, in order to show a clear connection between the solution instability and the condition number, further on there have to be used relation (11), which establish a percentage relation between the maximum error of the solution, as related to any perturbations, that may occur in the effect, or in the problem structure -the kernel matrix. Thus the perturbation acts on the effect -vector as:…”
Section: Regulariza Non Algorithmsmentioning
confidence: 99%
“…Some previous researches that were identified [9], [10], [11], [12], propose different versions of trial and error procedures for the reconstruction of the return current, using the measured field values, during lightning occurrence.…”
using direct measurements of lightning magnetic and electric field by inverse problem formulation it is performed the identification of the lightning return stroke current. The approach starts from Fredholm integral equations of the first kind as engineering models and uses modular regularization procedures based on a spatial and time dependent harmonic reconstruction of the lightning current. All the preliminary evaluations appear to be in good agreement with the actual characterization models for return stroke current of the lightning; moreover the precision as regarded to the effect is considerably improved.
“…But, in order to show a clear connection between the solution instability and the condition number, further on there have to be used relation (11), which establish a percentage relation between the maximum error of the solution, as related to any perturbations, that may occur in the effect, or in the problem structure -the kernel matrix. Thus the perturbation acts on the effect -vector as:…”
Section: Regulariza Non Algorithmsmentioning
confidence: 99%
“…Some previous researches that were identified [9], [10], [11], [12], propose different versions of trial and error procedures for the reconstruction of the return current, using the measured field values, during lightning occurrence.…”
using direct measurements of lightning magnetic and electric field by inverse problem formulation it is performed the identification of the lightning return stroke current. The approach starts from Fredholm integral equations of the first kind as engineering models and uses modular regularization procedures based on a spatial and time dependent harmonic reconstruction of the lightning current. All the preliminary evaluations appear to be in good agreement with the actual characterization models for return stroke current of the lightning; moreover the precision as regarded to the effect is considerably improved.
“…Therefore, the required equation system can be expressed by Equation (9) while Equations (6) to (8) are applied at the observation point for n max samples of electromagnetic fields where n max is the maximum number of time steps as follows:…”
Section: Evaluation Of Return Stroke Current Using Measured Electromamentioning
confidence: 99%
“…On the other hand, indirect methods can evaluate the return stroke current using measured fields and they can cover a greater number of lightning occurrences compared to direct measurement [7]. Different methods are available to evaluate the current although some of these methods only consider the fields measured at a far distance from the lightning channel and ignore the electrostatic and induction components of the fields [7][8][9][10][11][12]. Furthermore, some methods evaluate the current by using measured fields that are recorded up to intermediate distances from the lightning channel [3,[13][14][15], although they can only determine the current values at only selected sample frequencies The current model is a basic assumption in these methods.…”
Abstract-The lightning return stroke current is an important parameter for considering the effect of lightning on power lines. In this study, a numerical method is proposed to evaluate the return stroke current based on measured electromagnetic fields at an observation point in the time domain. The proposed method considers all field components and the full wave shape of the current without the use of a special current model as a basic assumption compared to previous methods. Furthermore, the proposed algorithm is validated using measured fields obtained from a triggered lightning experiment. The results show a good agreement between the simulated field based on the evaluated currents from the proposed method and the corresponding measured field at a remote observation point. The proposed method can determine current wave shapes related to a greater number of lightning occurrences compared to the direct measurement of the current.
“…A number of inverse procedure algorithms only consider the radiation component of the electromagnetic fields in order to simplify the field expressions [9][10][11][12][13]. This means such algorithms can only be used at far distances from a lightning channel at which point the radiation component of the electromagnetic fields has more effect on the total field.…”
Abstract-In this paper, an inverse procedure algorithm is proposed in the time domain to evaluate lightning return stroke currents along a lightning channel using measured magnetic flux density at an observation point while the current velocity along a lightning channel is assumed to be a height dependent variable. The proposed method considers all field components and it can evaluate the full shape of currents and the current velocity at different heights along a lightning channel. Moreover, a sample of measured magnetic flux density from a triggered lightning experiment is applied to the proposed algorithm and the evaluated currents and current velocities are validated using a measured channel base current and magnetic flux density at another observation point.
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