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RIS citation export for THPHA215: A Control Architecture Proposal for Sirius Beamlines

TY - CONF
AU - Moraes, M.A.L.
AU - Caliari, R.M.
AU - Geraldes, R.R.
AU - Moreno, G.B.Z.L.
AU - Piton, J.R.
AU - Sanfelici, L.
AU - de Almeida, H.D.
ED - Schaa, Volker RW
ED - Costa, Isidre
ED - Fernández, David
ED - Matilla, Óscar
TI - A Control Architecture Proposal for Sirius Beamlines
J2 - Proc. of ICALEPCS2017, Barcelona, Spain, 8-13 October 2017
C1 - Barcelona, Spain
T2 - International Conference on Accelerator and Large Experimental Control Systems
T3 - 16
LA - english
AB - With the increased performance provided by 4th generation synchrotron light sources, precise motion control and event synchronization are essential factors to ensure experiment resolution and performance. Many advanced beamline systems, such as a new high-dynamic double crystal monochromator (HD-DCM), are under development for Sirius, the new machine under construction in Brazil. Among the expected performance challenges in such applications, complex coordinated movements during flyscans/continuous scans, hardware synchronization for pump­-and-­probe experiments and active noise suppression are goals to be met. Two architectures are proposed to cover general-purpose and advanced applications. The HD-DCM controller was implemented in a MATLAB/Simulink environment, which is optimized for RCP. Hence, its software must be adapted to a more cost-effective platform. One candidate controller is the NI cRIO. The portability of both MATLAB and NI PXI, the present standard control platform at LNLS, codes to cRIO is evaluated in this paper. Control resolution, acquisition rates and other factors that might limit the performance of these advanced applications are also discussed.
PB - JACoW
CP - Geneva, Switzerland
SP - 1947
EP - 1952
KW - ion
KW - controls
KW - hardware
KW - Linux
KW - EPICS
DA - 2018/01
PY - 2018
SN - 978-3-95450-193-9
DO - 10.18429/JACoW-ICALEPCS2017-THPHA215
UR - http://jacow.org/icalepcs2017/papers/thpha215.pdf
ER -