Dr. Avin Mathew CTO MIMOSA

Slides:



Advertisements
Similar presentations
ThinkEnergyGroup Energy.Personnel.Fast!. Weve engineered a professional approach to energy staffing. ThinkEnergyGroup.
Advertisements

Linking Technology and Defense. Introduction It stands for Product Life Cycle Support It is an International Standard It is an information standard It.
Plant Engineering Life Cycle Conference 2005; 11 April Dalip Sud The Application of ISO Part 4.
© 2010 Invensys. All Rights Reserved. The names, logos, and taglines identifying the products and services of Invensys are proprietary marks of Invensys.
Vendor Briefing May 26, 2006 AMI Overview & Communications TCM.
FIATECH’s Capital Projects Technology Roadmap: how we can use it today Ric Jackson Director The FIATECH Consortium National Streamlining Conference Washington,
Plant Information Model (PIM) Breakout N1 – (1:00pm – 2:30pm), Monday, June 16, 2014 Russell Adams – EPRI Consultant Laurent Perkins, Bentley Kent Freeland,
Experience, Technology and Focus in Mid Market CRM Soffront Asset management: An Overview.
Hasso Drathen page 1 ARC Conference Orlando January 2004 welcome.
Open Cloud Architectures for Smart Manufacturing Workshop
VALUE CHAIN ANALYSIS : An Overview
Energy Performance Contracting Approach David Birr President Synchronous Energy Solutions.
Process Engineer’s Role in Project Management Dr Abdullah Malik.
Product Lifecycle Management Cost of Quality Pasi Kaipainen, Mika Huhta.
3rd Annual Energistics Standards Summit Standards – Benefits across Industries Michael Strathman Aspen Technology, Inc 23 October 2008.
ANALYSI Web: ANALYSIS LTD Gandijeva 76A Novi Beograd tel/fax:
FIATECH FIATECH ADI Programmers Circle 2006 Onno Paap, Fluor Corporation.
© Dr. John T. Whiting All Rights Reserved Slide 1 The Rationale for Integrating IT Assets into the Strategic Business.
Construction Work Packaging
Achieving Interoperability for Equipment Supply Chains Mark Palmer FIATECH AEX Project Leader National Institute of Standards and Technology.
Value and Supply Chain Management. What is Logistics? The Institute of Logistics defines logistics as the management of the flow of goods, information.
Software Requirements Engineering: What, Why, Who, When, and How
Optimising Services Delivery in the Water Industry
Session 3: Project Development Agenda The Voice of a Technologist Utility Project Development Reliability Concepts Residential Project Development Homework.
Acquisition of Services DAU Acquisition Community Conference April 17, 2007.
FORUM: Design for Maintainability CII Construction Project Improvement Conference September 11-13, 2005 Austin, Texas George Conner Richard Danks Robert.
Life cycle services for automation products
Cmpe 589 Spring 2006 Lecture 2. Software Engineering Definition –A strategy for producing high quality software.
© 2015, Fiatech Asset Lifecycle Information Management (and some cool stuff) Ralph Rio Research Director ARC Advisory Group D&B Project.
Manufacturing Plant maintenance Materials management Quality management.
1 Margaret Christison Head of Product Data Standards Product Information Standards Defence Logistics 2004.
McDonough Bolyard Peck Educational Series Building Commissioning Presented by: Doug Wrenn Steve Baxter July
An Operations and Maintenance Information Open System Alliance Building ISDDs Dr. Avin Mathew CTO MIMOSA
Click to edit Master title style Planning and Designing a Lean Manufacturing Facility.
How to Sell the Benefits of Marketing Procurement Internally.
© 2012 IBM Corporation How fit are we for Purpose? Beginning with the End in Mind. Oliver Wignall IBM UK PLM Capability Lead.
Copyright © 2006 WBF. All rights reserved. Jean Vieille - Psynapses1 Industrial Information Systems ISA88/95 based Functional Definition Jean Vieille,
 SOFTCON SYSTEMS PVT. LTD. (SSPL) offers unique, creative and practical automation solutions in the field of Process & Power on an LSTK / EPC basis with.
An Operations and Maintenance Information Open System Alliance An Operations and Maintenance Information Open System Alliance The Oil and Gas Interoperability.
©MIMOSA 2015 Enabling Collaborative Asset Life-cycle Management using Standards-based Interoperability ©2015 MIMOSA Enabling Industry to Gain Value from.
Construction Work Packaging
Arkom Engineering Consultants
Product Lifecycle Management
Joint MIMOSA/Fiatech Industry Standard Datasheet Definitions Workshop Houston, Texas August 4-5, 2015.
Uniper Energy Services
Schlenker, H. , R. Kluge, and J. Koehl
How to Pass SMRP (Society of Maintenance
Fully Integrated and Automated Project Processes – The Vision
Industry Standard Datasheet Definition Project
Evaluating Onsite Design Project Team
Setting the Standard for Product Support
AP 231: Process Design and Process Specifications of Major Equipment
The Life Cycle of a Project – START to FINISH
SALES: HOW TO USE THIS PRESENTATION
BU IS GIG Chemical, Oil & Gas
Across the entire value chain
By: David Hoang Martin Hoffman
A Process View of the Supply Chain
Lifecycle Data Management An EPC&M Perspective
1 Stadium Company Network. The Stadium Company Project Is a sports facility management company that manages a stadium. Stadium Company needs to upgrade.
OIIE/OGI Pilot Phase 3 Pilot Overview
How to Prepare Data Sheets for Datasheet Definitions Ron Montgomery
An one hundred thousand foot view of IT IM World
Project delivery RIBA stages Define design deliver Key Objectives 1 2
Define Your IT Strategy
Delivering Efficiency with Performance Contracting
Summary June 3, 2019 Alan T. Johnston MIMOSA President
OGI Pilot Demo: Condition Based Maintenance
Capability Maturity Model
Presentation transcript:

Dr. Avin Mathew CTO MIMOSA amathew@mimosa.org Using ISDDs Dr. Avin Mathew CTO MIMOSA amathew@mimosa.org

Estimated Benefits of Interoperability 5% reduction in equipment capital costs From internal study of a large owner/operator in conjunction with its EPCs and suppliers 8% total project capital cost, 14% reduction in project schedule, 5-15% reduction in annual maintenance cost Studies from CII and NIST

Fiatech O&M Information Needs Survey Survey of ten process industry companies Equipment Specifications Instrument Datasheets High value to operations 70% As delivered 43% With manipulation 57% High value to maintenance 90% 100% 44% 50% 66%

Fiatech O&M Information Needs Survey Six out of nine companies claimed that 50% or less of information required by O&M was in an immediate usable form Primary driver for O&M "evergreen" data maintenance is safety and regulatory requirements

Where are Equipment Datasheets used? Engineering / Design Capture engineering design requirements Simulation and testing Metric by which to measure project completeness Procurement RFQ and bid tabulation from supplier responses Capture supplier model characteristics

Where are Equipment Datasheets used? Completions / Commissioning / Startup Capture as-built asset characteristics Configuration of MES / Control Systems Instrumentation calibration Operations Set points for alarms and alerts Process simulation and optimization Maintenance Compare against supplier product data sheet for make/model matchup Instrument calibration Input to reliability modelling Decommissioning / Disposal Regulatory requirements for sale?

Pre-populate datasheets from previous phases (e.g. design basis) Align engineering terminology across teams using industry RDLs as a base Automate technical comparison of vendor offerings; determine if RFQ responses fall within distribution of RFI responses Matchup requirements against product datasheets from equipment suppliers Select project specific templates from ISDDs for structured data entry by engineers Plan / Program / Contract Engineer / Design Procure Fabricate / Construct Complete / Commission / Start-up Operate / Maintain Decommission / Dispose Handover machine-interpretable datasheets for immediate loading into engineering master data system to compare against the physical asset and configuring O&M systems Determine design % completeness by analyzing filled in datasheet properties required by equipment type for each phase Pre-populate datasheets from previous phases (e.g. design basis) as engineers choose equipment to design

Use Case Structured Data Exchange Avoid transcribing data at each stage Reduce long-term operational cost Improve data quality Improve time to market Owner/Operators </> XML CCOM </> XML CCOM EPCs Suppliers </> XML CCOM

Use Case Convert Semi-structured to Structured Data Continue using existing data entry work process using spreadsheets Make actionable / structured data easily consumable API Instances </> XML ASME Instances CCOM Instances Convert ISA Instances Linear Instances PIP Instances </> XML ISDDs

Use Case Generate Linear Data Sheet Templates Tailor template according to stage Ensure consistent experience and validation Structured data is easily consumable </> XML ISDDs Generate Linear Templates Project Characteristics (applicability, constraints current stage)

Extensible ISDDs

Maturity Model

Dr. Avin Mathew CTO MIMOSA amathew@mimosa.org Using ISDDs Dr. Avin Mathew CTO MIMOSA amathew@mimosa.org