ENERGY SAVING CONTROL FOR TRACTION FREQUENCY-REGULATED ASYN-CHRONOUS ENGINE OF TROLLEYBUS
Journal Title: Електромеханічні і енергозберігаючі системи - Year 2018, Vol 4, Issue 44
Abstract
The article is devoted to the development and study of energy-saving control for a traction frequency-regulated asynchronous of engine trolleybus, which ensures the minimization of the total energy losses in this engine during the start-braking regime and the lowest power consumption of the trolleybus in steady-state operation. When conducting research, the methods of variational calculus, mathematical interpolation and simulation computer simulation were used. As a result of researches performed, refined analytical dependences were obtained to determine the current values of the efficiency of the trolleybus driving mechanism and the static moment of resistance on the traction motor shaft. The type of speed trajectories during acceleration and deceleration of the trolleybus, corresponding to the minimization of the total energy loss of its traction engine or the power consumption of the trolleybus in start-braking regimes, is established. The presence of optimal durations of acceleration and deceleration times, which ensure the minimization of the total energy losses of the traction engine in the start-braking regimes, is revealed. A calculated ratio is proposed for finding the established optimal speed of the traction engine, at which the overall energy consumption of the trolleybus is minimized. The electromechanical and energy processes in the traction frequency-regulated asynchronous engine of trolleybus are researched under steady state and start-braking regimes. Practical implementation of the obtained results allows to reduce to the minimum possible values the unproductive energy losses of the trolleybus during its movement.
Authors and Affiliations
Volodimir Volkov
DYNAMIC PROPERTIES AND TRAJECTORY SENSITIVITY OF VARIANTS OF POSITION ELECTROMECHANICAL SYSTEMS
Relevance. Positional electromechanical systems are essential for an automation of technological processes. The existing approach to the implementation of such systems consists in the generating of motion trajectory, whi...
THE RESEARCH ON FREQUENCY-CONTROLLED ELECTRIC DRIVE OPERATION MODES UNDER FAULT-TOLERANT CONTROL
Purpose. In the paper the results of research on developed systems for fault-tolerant vector control, which ensure operability of frequency-controlled electric drive with presence of damages in power circuit of induction...
ACCURACY ESTIMATION OF THE EQUIVALENT CIRCUIT PARAMETERS IDENTIFICATION OF SQUIRREL CAGE INDUCTION MOTOR
Purpose. To estimate the accuracy of T-shaped equivalent circuit parameters estimation of the squirrel cage induction motor taking into account errors in the initial experimental data. This will allow formulating the con...
MODELING OF MAGNETIC FIELD DISTRIBUTION IN MAGNETOELASTIC SENSOR CORE
Purpose. Application of mechanical pressure force to magnetoelastic sensor results in mechanical stress within the ferromagnetic core body of sensor and produces the variation of material permeability due to mechanical s...
CUTTING POWER STABILIZATION SYSTEM WITH A FRACTAL INTEGRAL-DIFFERENTIATION REGULATOR
Purpose. To analyze the possibilities and ways of implementing fractional integral-differential regulators for optimization the dynamic and static parameters of closed loop stabilizing the cutting power systems of machin...