Lifetime of power electronic devices, in particular those used for wind turbines, is short due to the generation of thermal stresses in their switching device e.g., IGBT particularly in the case of high switching frequency. This causes premature failure of the device leading to an unreliable performance in operation. Hence, appropriate thermal assessment and implementation of associated mitigation procedure are required to put in place in order to improve the reliability of the switching device. This paper presents two case studies to demonstrate the reliability assessment of IGBT. First, a new driving strategy for operating IGBT based power inverter module is proposed to mitigate wire-bond thermal stresses. The thermal stress is characteri...
Insulated Gate Bipolar Transistor (IGBT) is the core power device in the fields of railways, new ener...
Field experiences have demonstrated that power semiconductor devices, such as insulated-gate bipolar...
Power electronic modules undergo electro-thermal stresses due to power losses that lead to several k...
Lifetime of power electronic devices, in particular those used for wind turbines, is short due to th...
Power electronic devices such IGBT (Integrated Gate Bipolar Transistor) are used in wide range of ap...
Power electronics plays a significant role in various applications such as renewable energy, aerospa...
Power electronic converters (PECs) are used for conditioning the flow of energy between renewable en...
This paper proposes an in situ diagnostic and prognostic (D&P) technology to monitor the health cond...
Lifetime of wind turbine inverters is below expectations therefore, novel design and drive strategie...
Lifetime estimation of power semiconductor devices, and IGBT devices in particular, used in the powe...
This paper investigates the lifetime of high power IGBTs (insulated gate bipolar transistors) used i...
One of the most crucial renewable energy sources today is solar energy. Power convertors play an imp...
Wind turbine reliability is an important issue for wind energy cost minimization, especially by redu...
Reliability is becoming more and more important as the size and number of installed Wind Turbines (W...
Insulated Gate Bipolar Transistor (IGBT) is the core power device in the fields of railways, new ener...
Field experiences have demonstrated that power semiconductor devices, such as insulated-gate bipolar...
Power electronic modules undergo electro-thermal stresses due to power losses that lead to several k...
Lifetime of power electronic devices, in particular those used for wind turbines, is short due to th...
Power electronic devices such IGBT (Integrated Gate Bipolar Transistor) are used in wide range of ap...
Power electronics plays a significant role in various applications such as renewable energy, aerospa...
Power electronic converters (PECs) are used for conditioning the flow of energy between renewable en...
This paper proposes an in situ diagnostic and prognostic (D&P) technology to monitor the health cond...
Lifetime of wind turbine inverters is below expectations therefore, novel design and drive strategie...
Lifetime estimation of power semiconductor devices, and IGBT devices in particular, used in the powe...
This paper investigates the lifetime of high power IGBTs (insulated gate bipolar transistors) used i...
One of the most crucial renewable energy sources today is solar energy. Power convertors play an imp...
Wind turbine reliability is an important issue for wind energy cost minimization, especially by redu...
Reliability is becoming more and more important as the size and number of installed Wind Turbines (W...
Insulated Gate Bipolar Transistor (IGBT) is the core power device in the fields of railways, new ener...
Field experiences have demonstrated that power semiconductor devices, such as insulated-gate bipolar...
Power electronic modules undergo electro-thermal stresses due to power losses that lead to several k...