DESIGN AND ANALYSIS OF THE CONTROL SYSTEM OF HIGH VOLTAGE (400KV DC) POWER SUPPLY FOR NEUTRON GENERATOR
Published In: INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTER SCIENCE AND ELECTRONICS ENGINEERING
Author(s): P.S. ADHIKARI , RAM KUMAR PAUL , TARUN PATEL
Abstract: The ‘Neutron Generator Facility’ is operational at PURNIMA, BARC. The Neutron Generator is a 300KeV electrostatic DC accelerator. A 400 kV, 10mA DC power supply is being used for acceleration of deuteron beam. The HV power supply generates 400 kV from 3 phase Mains. The basic logic to generate 400 kV consists of following stages: Three phase Mains → Three phase Converter → High Frequency Inverter → Step-Up Transformer → Balanced CW Multiplier. The converter is controlled by SCR firing card & Converter control card and Inverter Protection Card controls the Inverter. Present project is to design a new PC based control system for SCR Firing, Converter & Inverter circuit to provide local and remote operation
- Publication Date: 03-Feb-2020
- DOI: 10.15224/978-981-07-1403-1-221
- Views: 0
- Downloads: 0
DESIGN AND ANALYSIS OF THE CONTROL SYSTEM OF HIGH VOLTAGE (400KV DC) POWER SUPPLY FOR NEUTRON GENERATOR
Published In: INTERNATIONAL CONFERENCE ON ADVANCES IN COMPUTER SCIENCE AND ELECTRONICS ENGINEERING
Author(s): P.S. ADHIKARI , RAM KUMAR PAUL , TARUN PATEL
Abstract: The ‘Neutron Generator Facility’ is operational at PURNIMA, BARC. The Neutron Generator is a 300KeV electrostatic DC accelerator. A 400 kV, 10mA DC power supply is being used for acceleration of deuteron beam. The HV power supply generates 400 kV from 3 phase Mains. The basic logic to generate 400 kV consists of following stages: Three phase Mains → Three phase Converter → High Frequency Inverter → Step-Up Transformer → Balanced CW Multiplier. The converter is controlled by SCR firing card & Converter control card and Inverter Protection Card controls the Inverter. Present project is to design a new PC based control system for SCR Firing, Converter & Inverter circuit to provide local and remote operation
- Publication Date: 03-Feb-2020
- DOI: 10.15224/978-981-07-1403-1-221
- Views: 0
- Downloads: 0