Since restarting at the end of 2009, the LHC has reached a new energy record in March 2010 with the two 3.5 TeV beams. To achieve the performance required for the good functioning of the accelerator, the currents in the main circuits (Main Bends and Main Quadrupoles) must be controlled with a higher precision than ever previously requested for a particle accelerator at CERN: a few parts per million (ppm) of nominal current. This paper describes the different challenges that were overcome to achieve the required precision for the current control of the main circuits. Precision tests performed during the hardware commissioning of the LHC illustrate this paper
The design of the latest CERN particle accelerator for high energy particle physics research, the La...
Challenges for precision measurements at the LHC are discussed and a proposal how to move forward to...
The LHC accelerator project will require an accuracy of similar to 10**-**6 in the control of curren...
The LHC will require an unprecedented precision of a few ppm in the control of the current in the ma...
The magnet power converters for LHC were procured in three parts, power part, current transducers an...
The LHC will require over 1700 magnet power converters, some of which will need an unprecedented pre...
The Large Hadron Collider (LHC) is the next accelerator being constructed on the CERN site. It will ...
The initial results from integration testing of the LHC magnet power converters revealed problems of...
The Large Hadron Collider (LHC) particle accelerator project will require an accuracy of a few parts...
Power converters in the accelerator context are often required to deliver a performance that is unus...
Measurement and Acquisition for High Precision Power Converter Current Regulation for Particles Acce...
CERN's next generation particle accelerator, the large hadron collider (LHC) requires accurate curre...
The initial results from integration testing of the LHC magnet power converters revealed problems of...
The accurate measurement of power converter currents is essential to controlling and delivering stab...
One of the most stringent requirements during the energy ramp of the Large Hadron Collider (LHC) is ...
The design of the latest CERN particle accelerator for high energy particle physics research, the La...
Challenges for precision measurements at the LHC are discussed and a proposal how to move forward to...
The LHC accelerator project will require an accuracy of similar to 10**-**6 in the control of curren...
The LHC will require an unprecedented precision of a few ppm in the control of the current in the ma...
The magnet power converters for LHC were procured in three parts, power part, current transducers an...
The LHC will require over 1700 magnet power converters, some of which will need an unprecedented pre...
The Large Hadron Collider (LHC) is the next accelerator being constructed on the CERN site. It will ...
The initial results from integration testing of the LHC magnet power converters revealed problems of...
The Large Hadron Collider (LHC) particle accelerator project will require an accuracy of a few parts...
Power converters in the accelerator context are often required to deliver a performance that is unus...
Measurement and Acquisition for High Precision Power Converter Current Regulation for Particles Acce...
CERN's next generation particle accelerator, the large hadron collider (LHC) requires accurate curre...
The initial results from integration testing of the LHC magnet power converters revealed problems of...
The accurate measurement of power converter currents is essential to controlling and delivering stab...
One of the most stringent requirements during the energy ramp of the Large Hadron Collider (LHC) is ...
The design of the latest CERN particle accelerator for high energy particle physics research, the La...
Challenges for precision measurements at the LHC are discussed and a proposal how to move forward to...
The LHC accelerator project will require an accuracy of similar to 10**-**6 in the control of curren...