
DC-link capacitor is one of the reliability-critical components in motor drive applications, which contributes to a considerable cost, size and failure. Its reliability performance depends on both inherent physical strength and external loading. The grid unbalances could alter the electro-thermal stresses of key components in a motor drive. Therefore, this digest investigates the impact of grid voltage amplitude and phase unbalances on the lifetime of DC-link capacitors used in a standard three-phase motor drive. The theoretical stress models and experimental measurements of the capacitor voltages and ripple currents are presented. The relationship between the DC-link capacitor lifetime and the level of unbalances and loads are discussed based on a 7.5 kW motor drive system. The results serve as a guideline to size the DC-link capacitors to be robust enough at the presence of grid unbalance conditions.
2606 Control and Optimization, Motor drive, 2208 Electrical and Electronic Engineering, 621, 2105 Renewable Energy, Sustainability and the Environment, Capacitor, Reliability, Unbalance, 2102 Energy Engineering and Power Technology, 620
2606 Control and Optimization, Motor drive, 2208 Electrical and Electronic Engineering, 621, 2105 Renewable Energy, Sustainability and the Environment, Capacitor, Reliability, Unbalance, 2102 Energy Engineering and Power Technology, 620
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