KG

Krishna Kumar Gupta

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4 records found

Journal article (2026) - Niraj Kumar Dewangan, Jeevan N. D., Krishna Kumar Gupta, Abhinandan Routray, Hani Vahedi
The reliable performance of multilevel inverters (MLIs) is critical to the advancement of power electronic systems used in renewable energy conversion, microgrid operation, and electric vehicle technologies. However, these systems are often susceptible to open-circuit faults in power switches, which can adversely affect output waveform quality and overall system stability if not detected early. This study presents an intelligent fault detection and localization strategy based on a fuzzy inference system (FIS) for a reduced device count cross-connected-source MLI. The proposed diagnostic framework employs output voltage and current signals as diagnostic parameters, enabling precise identification of fault conditions. A comprehensive set of fuzzy rules is developed to differentiate between single and double switch faults under diverse fault inception angles. Real-time validation is carried out using the dSPACE DS1202 controller in a hardware-in-the-loop environment. The findings confirm that the proposed FIS-based approach achieves high fault classification accuracy, rapid response time, and strong adaptability across varying operating conditions, highlighting its suitability for real-time condition monitoring in modern power conversion systems. ...
Journal article (2022) - Anekant Jain, Krishna Kumar Gupta, Sanjay K. Jain, Pallavee Bhatnagar, Hani Vahedi
The battery charging power electronics interface of an electric vehicle (EV) must be capable of bidirectional power flow to enable both grid-to-vehicle (G2V) and vehicle-to-grid (V2G) operations. In the presence of a single/three-phase AC supply, the front-end of the EV charger employs a power factor correction (PFC) rectifier, which should have the bidirectional capability to facilitate V2G mode. A conventional active rectifier functions in boost mode while performing PFC and voltage regulation. In most of the currently available EVs, however, the battery nominal voltage is low and, hence, a downstream high step-down DC-DC converter and high voltage DC bus capacitor are required in the charging interface. To overcome these issues, this work proposes a bidirectional AC-to-DC buck rectifier topology that can operate in G2V and V2G modes, both in single-and three-phase versions. The proposed topology utilizes the switched capacitors principle to achieve self-balancing of voltages in the capacitors. In addition, it is highly modular in structure. This paper describes the proposed topology, its working and modulation and its applications. The hardware proto model is used to validate the proposed power converter and the control approach to achieve PFC and voltage regulation. In addition, a comparison with other topologies is presented to demonstrate its competence. ...
Journal article (2022) - Anilkumar Chappa, Shubhrata Gupta, Lalit Kumar Sahu, Krishna Kumar Gupta, Hani Vahedi
Multilevel inverters (MLIs) are widely employed in high power and high voltage applications due to their advantages like better power quality and lower voltage stress across power switches compared to the traditional two-level inverter. However, the utilization of higher number of power semiconductor devices and capacitors results in less reliability. In this regard, a fault-tolerant MLI (FTMLI) with asymmetrical source configuration is developed which can tolerate the open-circuit and short-circuit switch failures (single and multiple switch faults). The proposed topology preserves the output power and balances the capacitor's voltage under pre and postfault conditions. Further, a new switching scheme is proposed to reduce the ripple content in the capacitor's voltage. Further, under postfault operation uses less number of conducting switches resulting in a better efficiency. The proposed FTMLI generates a higher number of voltage levels with less number of component counts when compared with recently proposed topologies. Moreover, this comparative study reveals the prevalence of the proposed converter in the recent literature. The conducted experimental test proves the effectiveness and fault-tolerant feature of the proposed topology. ...
Conference paper (2021) - Anekant Jain, Sanjay K. Jain, Krishna Kumar Gupta, Hani Vahedi, Pallavee Bhatnagar
An extensive use of electric vehicles (EVs) is evolving as an important solution to counter environmental pollution, rapid exhaustion of fossil fuels and insecurity caused by fluctuations in the price of petroleum products in the international market. The integration of EVs to the grid is required for the future enhancement of the transportation system. Grid integration of EVs also presents an interesting opportunity to solve the issues faced due to intermittent nature of renewable energy sources (RES) connected to the grid. The charging of EVs must be well coordinated with the grid otherwise it will result into an uncertain large electric load, causing peak-load and grid issues. Thus, the EV technology presents opportunities as well as challenges to the electricity grid. The development in EV technologies, battery systems, and different charging methodologies are reviewed with special focus on vehicle to grid technology as a solution to many grid issues, especially with RES connected to it. This paper presents a brief overview of these issues and various solutions. ...