Journal Article

·2002

A new loss minimization approach for underground primary feeders

Fahri Pekiner YTU

Abstract

As distribution system investment and energy costs continue to increase, more distribution engineers are attempting to evaluate loss calculations for power systems. The optimization of underground primary feeders requires a proper approach of evaluating the cost of feeder losses. This paper derives an approach for the losses of underground primary feeder in urban areas. The present worth method is used to properly account for conditions of load growth, loss factor and energy cost inflation. The total cost equations of feeder to be used for long-range planning are derived considering energy and demand cost components. In the developed approach, for a given voltage level, load and annual growth rates of load, loss factor and energy costs, the optimum cable size of a primary feeder can be obtained by the derived expressions. A sensitivity analysis is included to determine the effect of changing input values such as load growth, loss factor and energy cost.

Keywords

Load factor Range (aeronautics) Minification Investment (military) Load profile Total cost Energy (signal processing) Power (physics) Voltage AC power Inflation (cosmology) Primary energy Power factor Reliability engineering Engineering Renewable energy Mathematical optimization Electrical engineering Economics Mathematics Statistics Electricity Structural engineering Microeconomics

Subject Areas

Power System Reliability and Maintenance ·Safety, Risk, Reliability and Quality ·Physical Sciences
Thermal Analysis in Power Transmission ·Control and Systems Engineering ·Physical Sciences
Optimal Power Flow Distribution ·Electrical and Electronic Engineering ·Physical Sciences

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