WP CO Column Status and Progress October 7th, 2010 Johannes Gutleber PR-101005-a-JGU, October 7th, 2010 J. Gutleber 1 R. Gutleber.

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Presentation transcript:

WP CO Column Status and Progress October 7th, 2010 Johannes Gutleber PR a-JGU, October 7th, 2010 J. Gutleber 1 R. Gutleber

Current Phase (Elaboration) PR a-JGU, October 7th, 2010 J. Gutleber 2 Focus on requirements, architecture, design Prototype implementation and technology evaluation Prepare development setup

Goals for 2010 (Reminder) PR a-JGU, October 7th, 2010 J. Gutleber 3 Complete architecture and implementing first components Complete and MTS design and demo core functionality Complete PCC design and demo core functionality Make PCO FED ready for production Elaborate ProShell design and API skeleton Demonstrate use of RMS, database filler, PVSS filler Have development infrastructure (HW, SW) operational

MACS COLUMN 2010 PR a-JGU, July 27th, 2010 J. Gutleber 4

Column Overview Functional vertical cut through the control system architecture for confirming technology choices Refining the design Improving project cost/time estimate Providing users with a working infrastructure skeleton To be replicated for each subsystem Leads to a scalable system In terms of performance In terms of management PR a-JGU, July 27th, 2010 J. Gutleber 5 Presentation tier (1) Processing tier (2) Equipment tier (3) Frontend tier (4)

Column Scope PR a-JGU, October 7th, 2010 J. Gutleber 6

Column Scope PR a-JGU, October 7th, 2010 J. Gutleber 7 NI 8 slot PXI crate, 8110 RT CPU (Core 2 Quad), Labview RT 2010 NI FlexRio adapter Spartan 6 FPGA in-house developed board MRF Generator & Fanout C#,STM based inhouse developed C#, ProShell inhouse C#, ProShell inhouse C#, CNAO extended C#, Inhouse developed Word and XML files

STATUS REPORT PR a-JGU, June 24th, 2010 J. Gutleber 8

Plan Adaptations Provide FECOS earlier than foreseen (January 2011) Beam Diagnostics and Instrumentation Suppliers to implement with FECs with the framework SADS postponed lack of manpower ProShell Provide showcase earlier than foreseen (January 2011) ProShell design slowed down due to lack of manpower Beam Interlock System technology evaluation slowed down due to lack of manpower PR a-JGU, October 7th, 2010 J. Gutleber 9

Architecture Overview PP a-MBE_Project Overview.pptx M. Benedikt 10

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 11

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 12 Single point of entry into the system Shows operator and expert panels Configurable per user and work place

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 13 Generic display of multiple device data Manipulation of device data ScratchPad to temporarily override configuration data

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 14 Define properties of all devices (types) Keep configuration data for all devices Define the system configuration

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 15 Import device definition from file into RMS Export from RMS to PVSS and other systems

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 16 Allocate sets of devices for operation Handle interaction between BDCS and accelerator Ensure conflict-free concurrent operation

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 17 Distribute data where OPC is not fast enough Integrate data from third-party suppliers

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 18 Provide framework to ensure integration with control system Provide tools for front-end controller programming Provide hook into main timing system

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 19 Distribute events during cycles in real-time Distribute beam stamp and UTC timestamp Provide stability pulses

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 20 Interface to power converters Provide set-points and set-point sequences Acquire status and measurement data Relay measurements to analysis framework Relay measurements in near real-time for visualization

Current Activities PP a-MBE_Project Overview.pptx M. Benedikt 21 Interface power converter with PCC (PCO FEC) Provide data and triggers Acquire measurements

JANFEBMARAPRMAYJUNJULAUGSEPOCTNOVDEC PCC Def. Column Time Frame 2010 PR a-JGU, January 20 th, 2010 J. Gutleber 22 Framework Agreement FECOS Definition PCO Interface PCO Interface Definition/Implementation MTS Definition MTS development PCC development Column Demo 1 SW engineer Contractor Production FECOS development Repo Sw. Adoption Repo Sw. Package 1 Power Converter Interface Recommendation Tech. Eval. 1 engineer WP JP Postponed PVSS/C#, environment, testing ProShell Definition RMS not available Skeleton Development Postponed FECOS development Specification and Development Beam Interlock System

SUMMARY AND OUTLOOK PR a-JGU, February 5th, 2010 J. Gutleber 23

Summary Ahead of Time FECOS development and documentation In Time Main Timing System Power Converter Controller Power Converter Controller real-time link ProShell development Behind Schedule Beam Interlock System Using RMS (database entry, integration of GUI in PVSS) ProShell design PR a-JGU, October 7th, 2010 J. Gutleber 24

Outlook Presentations should clarify where we are Identify showstoppers Where do we lag behind Where are we in time Where are we doing well! Identify synchronization points with other WPs What are WP plans Where do they stand Need to elaborate common schedule PR a-JGU, October 7th, 2010 J. Gutleber 25