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Advanced Technology in Municipal Water Management

Advanced Technology in Municipal Water Management. June 11, 2001. Agenda. Part 1 - Vision Background The Region of Waterloo Vision Part 2 - Realizing the Vision - Phase 1 Business Requirements Business Model Implementation Overview Part 3 - The Solution Technology Solution Overview

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Advanced Technology in Municipal Water Management

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  1. Advanced Technology in Municipal Water Management June 11, 2001

  2. Agenda • Part 1 - Vision • Background • The Region of Waterloo Vision • Part 2 - Realizing the Vision - Phase 1 • Business Requirements • Business Model • Implementation Overview • Part 3 - The Solution • Technology Solution Overview • TIS Demonstration

  3. Part 1 – Vision

  4. Background • In early 1997 the Region of Waterloo Water Services Division enlisted the assistance of Chartwell an IT Consulting firm and Proctor and Redfern (now Earth Tech) an Engineering Firm to conduct a study for a potential system • In 1998, a TIS pilot project was initiated to give Regional staff the opportunity to see how the proposed system would work. • In 1999 the Waterloo Region had a demonstration of the POMS project at the City of Toronto Water and Wastewater Division, • In Fall of 1999, the Waterloo Region initially scoped the project and developed the detailed requirements for phase 1. • In January 2000, the Waterloo Region approved the implementation of the first phase of the Technical Information System.

  5. Waterloo Region Vision CMMS GIS HYDROGEO LIMS MENU OF INFORMATION Categories which contain menu items & indicators WQDB FIS TIS VERIFICATION Audit process acts against exceptions SCADA POSTING FORMS Designed from needs assessment Waterloo Model applies predefined calculations on information determined by the corporation SCADA System Spreadsheets Reports

  6. Part 2 – Realizing the VisionPhase I

  7. Phase One TIS Objectives • SCADA data access • Provide ready access to all measurement data from SCADA system • Regional self-sufficiency • Make the staff of the Region as self-sufficient as possible to maintain and extend TIS • Extensible TIS infrastructure • Implement an extensible hardware and software infrastructure to meet future TIS and corporate requirements.

  8. Phase One TIS Business Requirements

  9. TIS model TIS business model

  10. Phase One TIS Performance Indicators • Water demand • by region, customer, system & pressure zone • Available in storage • by region, municipality, system, pressure zone & reservoir • Water production • by region, system & facility • Water elevation • by reservoir • Water pressure • by facility • Water consumption • by municipality

  11. TIS Project Plan Scope Phase Sept 99 Detailed Requirements Nov-Dec 99 Prototype Phase Jan-Mar 2000 Final Development and Testing April - October 2000 Implemen-tation and Training November - February 2001

  12. Project Resources • Jorge Cavalcante, Waterloo Manager Water Services • John Micholosky, Supervisor SCADA • Joe Pierra, SCADA Analyst • Walter Gasparini, Director of Technology • Nigel Roberts Manager, InformationSystems • Fenghui Wang, Waterloo DBA • Brian Van Kessel, Chartwell Project Manager • Susan Finley, Chartwell Configuration/Technology • Karen Holtze, Chartwell Configuration/Technology • Ben Kosic, Chartwell Partner Technology • Ian Gilmour, Chartwell Business Architect • Teodor Giles, Chartwell Configuration • Alacrity / Cherniak Resources

  13. Part 3 – The Solution

  14. ARM (Alacrity Results Management) System • Object oriented technology written in IBM’s VisualAge SmallTalk (see www.ibm.com), using a fully objected oriented database (Gemstone/S), a Brokat Technologies product (see www.brokat.com). • Reports are generated using Seagate Software’s Crystal Reports -- a sophisticated and robust reporting tool (see www.crystaldecisions.net). • ARM product supported by Cherniak Software, a 23 year old Canadian software development company(see www.CherniakSoftware.com)

  15. Alacrity Results Management (ARM) Benefits • Integrates information from multiple sources • Provides both automatic and manual information entry • Very flexible configuration facility • Consolidates information in multiple hierarchies • Provides user defined: • calculations • reports • statuses and status relationships • Information can be viewed at multiple levels, e.g. entire region, single station, single pump, etc. • All information allows for full drill-down to source, including calculations involved • Provides on-line graphs and reports

  16. Configuration Management (Define Model, Build Model) Knowledge Model (KM) 2001 plan Region Region plan Region Rent Branch Branch plan Branch Rent The OM is automatically generated from the KM. Build Operational Model (OM)

  17. Logical Layers in ARM User Interface Strong separation between each layer. Conversion Network Domain Knowledge Model The domain contains both data (state) and behaviour. Operational Model

  18. Physical Layers in ARM IBM Visual Age Crystal Reports User Interface GemBuilder Forwarders Date converters Replicants Number converters TCP/IP Network (works over Internet) GemStone/S Domain

  19. External System Interfaces External Data Sources webMethods VB Widgets Crystal Reports Auto CSV file I/O Manual CSV file I/O ActiveX IBM Visual Age CORBA is supported by GemStone. An ODBC interface to GemStone is available. GemStone TopLink TopLink is an Object to SQL mapping tool. SQL Databases Oracle Sybase Informix

  20. TIS Demonstration

  21. Questions and Answers

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