Abstract
One of the main causes of overloading electrical equipment by currents of higher harmonics is the great increasing of a number of non-linear electricity power consumers. Non-sinusoidal voltages and currents affect the operation of electrical equipment, reducing its lifetime, increases the voltage and power losses in the network, reducing its capacity. There are standards that respects emissions amount of higher harmonics current that cannot provide interference limit for a safe level in power grid. The article presents a method for determining a correction factor to the long-term allowable current of the cable, which allows for this influence. Using mathematical models in the software Elcut, it was described thermal processes in the cable in case the flow of non-sinusoidal current. Developed in the article theoretical principles, methods, mathematical models allow us to calculate the correction factor to account for the effect of higher harmonics in the current spectrum for network equipment in any type of non-linear load.
Cite
CITATION STYLE
Simutkin, M., Tuzikova, V., Tlusty, J., Tulsky, V., & Muller, Z. (2017). Method of Calculating the Correction Factors for Cable Dimensioning in Smart Grids. In IOP Conference Series: Materials Science and Engineering (Vol. 189). Institute of Physics Publishing. https://doi.org/10.1088/1757-899X/189/1/012028
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