The course covers research design principles and all main quantitative evaluation methods: randomised experiments, instrumental variables, sharp and fuzzy regression discontinuity designs, regression methods, matching methods and longitudinal methods (before-after, difference-in-differences and synthetic controls).
The course covers research design principles and all main quantitative evaluation methods: randomised experiments, instrumental variables, sharp and fuzzy regression discontinuity designs, regression methods, matching methods and longitudinal methods (before-after, difference-in-differences and synthetic controls).
About this training course This 5 full-day course provide a comprehensive understanding of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, HART protocol, control valves, actuators, and smart technology. This course will focus on maximizing the efficiency, reliability, and longevity of these systems and equipment by providing an understanding of the characteristics, selection criteria, common problems and repair techniques, preventive and predictive maintenance. This course is a MUST for anyone who is involved in the selection, applications, or maintenance of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology because it covers how these systems and equipment operate, the latest maintenance techniques, and provides guidelines and rules that ensure their successful operation. In addition, this course will cover in detail the basic design, operating characteristics, specification, selection criteria, advanced fault detection techniques, critical components and all preventive and predictive maintenance methods in order to increase the reliability of these systems andequipment and reduce their operation and maintenance cost This course will provide the following information for modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology: Basic Design Specification Selection Criteria Sizing Calculations Enclosures and Sealing Arrangements Codes and Standards Common Operational Problems All Diagnostics, Troubleshooting, Testing, and Maintenance Practical applications of smart instrumentation, SCADA, and Distributed Control Systems, control valves, actuators, etc in the following industries will be discussed in detail: Chemical and petrochemical Power generation Pulp and paper Aerospace Water and sewage treatment Electrical power grids Environmental monitoring and control systems Pharmaceutical plants Training Objectives Equipment Operation: Gain a thorough understanding of the operating characteristics of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Diagnostics and Inspection: Learn in detail all the diagnostic techniques and inspections required of critical components of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Testing: Understand thoroughly all the tests required for the various types of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Maintenance and Troubleshooting: Determine all the maintenance and troubleshooting activities required to minimize the downtime and operating cost of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Repair and Refurbishment: Gain a detailed understanding of the various methods used to repair and refurbish modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Efficiency, Reliability, and Longevity: Learn the various methods used to maximize the efficiency, reliability, and longevity of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Sizing: Gain a detailed understanding of all the calculations and sizing techniques used for modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Design Features: Understand all the design features that improve the efficiency and reliability of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Selection: Learn how to select modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology by using the performance characteristics and selection criteria that you will learn in this course Equipment Enclosures and Sealing Methods Learn about the various types of enclosures and sealing arrangements used for modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Commissioning: Understand all the commissioning requirements for modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Codes and Standards: Learn all the codes and standards applicable for modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Equipment Causes and Modes of Failure: Understand the causes and modes of failure of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology System Design: Learn all the requirements for designing different types of modern control systems, digital control, distributed control systems (DCSs), supervisory control and data acquisition (SCADA) systems, industrial instrumentation, control valves, actuators, and smart technology Target Audience Engineers of all disciplines Managers Technicians Maintenance personnel Other technical individuals Training Methods Your specialist course leader relies on a highly interactive training method to enhance the learning process. This method ensures that all participants gain a complete understanding of all topics covered. The training environment is highly stimulating, challenging, and effective because the participants will learn by case studies which will allow them to apply the material taught to their own organization. Each delegate will receive a copy of the following materials written by the instructor: Industrial Instrumentation and Modern Control Systems Practical Manual (400 pages) Trainer Your specialist course leader has more than 32 years of practical engineering experience with Ontario Power Generation (OPG), one of the largest electric utility in North America. He was previously involved in research on power generation equipment with Atomic Energy of Canada Limited at their Chalk River and Whiteshell Nuclear Research Laboratories. While working at OPG, he acted as a Training Manager, Engineering Supervisor, System Responsible Engineer and Design Engineer. During the period of time, he worked as a Field Engineer and Design Engineer, he was responsible for the operation, maintenance, diagnostics, and testing of gas turbines, steam turbines, generators, motors, transformers, inverters, valves, pumps, compressors, instrumentation and control systems. Further, his responsibilities included designing, engineering, diagnosing equipment problems and recommending solutions to repair deficiencies and improve system performance, supervising engineers, setting up preventive maintenance programs, writing Operating and Design Manuals, and commissioning new equipment. Later, he worked as the manager of a section dedicated to providing training for the staff at the power stations. The training provided by him covered in detail the various equipment and systems used in power stations. In addition, he has taught courses and seminars to more than four thousand working engineers and professionals around the world, specifically Europe and North America. He has been consistently ranked as 'Excellent' or 'Very Good' by the delegates who attended his seminars and lectures. He written 5 books for working engineers from which 3 have been published by McGraw-Hill, New York. Below is a list of the books authored by him; Power Generation Handbook: Gas Turbines, Steam Power Plants, Co-generation, and Combined Cycles, second edition, (800 pages), McGraw-Hill, New York, October 2011. Electrical Equipment Handbook (600 pages), McGraw-Hill, New York, March 2003. Power Plant Equipment Operation and Maintenance Guide (800 pages), McGraw-Hill, New York, January 2012. Industrial Instrumentation and Modern Control Systems (400 pages), Custom Publishing, University of Toronto, University of Toronto Custom Publishing (1999). Industrial Equipment (600 pages), Custom Publishing, University of Toronto, University of Toronto, University of Toronto Custom Publishing (1999). Furthermore, he has received the following awards: The first 'Excellence in Teaching' award offered by PowerEdge, Singapore, in December 2016 The first 'Excellence in Teaching' award offered by the Professional Development Center at University of Toronto (May, 1996). The 'Excellence in Teaching Award' in April 2007 offered by TUV Akademie (TUV Akademie is one of the largest Professional Development centre in world, it is based in Germany and the United Arab Emirates, and provides engineering training to engineers and managers across Europe and the Middle East). Awarded graduation 'With Distinction' from Dalhousie University when completed Bachelor of Engineering degree (1983). Lastly, he was awarded his Bachelor of Engineering Degree 'with distinction' from Dalhousie University, Halifax, Nova Scotia, Canada. He also received a Master of Applied Science in Engineering (M.A.Sc.) from the University of Ottawa, Canada. He is also a member of the Association of Professional Engineers in the province of Ontario, Canada. POST TRAINING COACHING SUPPORT (OPTIONAL) To further optimise your learning experience from our courses, we also offer individualized 'One to One' coaching support for 2 hours post training. We can help improve your competence in your chosen area of interest, based on your learning needs and available hours. This is a great opportunity to improve your capability and confidence in a particular area of expertise. It will be delivered over a secure video conference call by one of our senior trainers. They will work with you to create a tailor-made coaching program that will help you achieve your goals faster. Request for further information post training support and fees applicable Accreditions And Affliations
ISO 37001 Lead Implementer training enables you to develop the necessary expertise to support an organization in establishing, implementing, managing and maintaining an Anti-bribery Management System (ABMS) based on ISO 37001 About This Course During this training course, you will also gain a thorough understanding of the global anti-corruption best practices of Anti-bribery Management Systems and effectively prevent, detect and address bribery before it negatively impacts an organization's reputation and profits. After mastering all the necessary concepts of Anti-bribery Management Systems, you can sit for the exam and gain "Certified ISO 37001 Lead Implementer' credential. By holding this Certificate, you will be able to demonstrate that you have the practical knowledge and professional capabilities to implement ISO 37001 in an organization. Learning objectives Acknowledge the correlation between ISO 37001 and other standards and regulatory frameworks Master the concepts, approaches, methods and techniques used for the implementation and effective management of an ABMS Learn how to interpret the ISO 37001 requirements in the specific context of an organization Learn how to support an organization to effectively plan, implement, manage, monitor and maintain an ABMS Acquire the expertise to advise an organization in implementing Anti-bribery Management System best practices Educational approach This training is based on both theory and best practices used in the implementation of an ABMS Lecture sessions are illustrated with examples based on case studies Practical exercises are based on a case study which includes role playing and discussions Practice tests are similar to the Certification Exam Prerequisites A foundational understanding of ISO 37001 and knowledge of implementation principles. What's Included? Refreshments & Lunch (Classroom only) Course Slide Deck Official Study Guides CPD Certificate The Exam Accreditation Assessment Delegates sit a combined exam, consisting of in-course quizzes and exercises, as well as a final 12 question, essay type exam on Day 4 of the course. The overall passing score is 70%, to be achieved within the 150 minute time allowance. Exam results are provided within 24 hours, with both a Certificate and a digital badge provided as proof of success. Provided by This course is Accredited by NACS and Administered by the IECB. Who Should Attend? Professionals looking to implement and maintain an Anti-Bribery Management System Compliance officers
The Microsoft Certified Associate is a new breed of Microsoft certification. It is referred to as a ‘role-based certification’. According to Microsoft, role-based certifications show that individuals that possess them are keeping pace with today’s technical roles and requirements. They allow a learner to skill up and prove their expertise to employers and peers, plus get the recognition and opportunities they’ve earned
Microsoft Project Orange Belt® 2016: In-House Training This workshop gives participants a full insight into creating effective schedules using Microsoft® Project 2016, allowing you to estimate, coordinate, budget, staff, and control projects and support other users. This workshop gives participants a full insight into creating effective schedules using Microsoft® Project 2016, allowing you to estimate, coordinate, budget, staff, and control projects and support other users. This workshop provides the eBook Dynamic Scheduling with Microsoft® Project 2013, and is kept up to date with the framework of knowledge outlined by the Project Management Institute's PMBOK® Guide and the Practice Standard for Scheduling. What you Will Learn You'll learn how to: Understand what's new in Project 2016 Explain where Project 2016 fits in the Microsoft® EPM solution Initialize Project 2016 to start project planning Create a well-formed project schedule Understand task types and the schedule formula Assign resources and costs to tasks Analyze resource utilization and optimize the schedule Set a baseline and track progress Create and manage project reports Customize views and fields Apply Earned Value Management Understand the basics of managing multiple projects Getting Started Introductions Course structure Course goals and objectives Concepts of Project Management Getting Started with Project 2016 Project 2016: What's New and General Overview Setting Up a New Project Schedule (templates, options, save, etc.) Setting the Project Calendar Entering Tasks The planning processes Importing tasks (Word, Excel, SharePoint) Synchronizing with SharePoint Tasks List Creating and managing the WBS (include tasks, manually scheduled tasks, summary tasks, milestones, and custom WBS coding) Entering Estimates Tendencies in estimating The rolling wave approach Entering duration and work estimates Types of tasks Entering Dependencies The principle of dynamic scheduling Choosing the right Type of dependency Entering dependencies in Project 2016 Different applications of dependencies Entering Deadlines, Constraints, and Task Calendars Use of deadlines and constraints Entering deadlines and constraints in Project 2016 Entering Resources and Costs Types of resources Entering resources in Project 2016 Calendars and resources Entering costs in Project 2016 Entering Assignments Assignments in a schedule Assignments and task types Entering assignments in Project 2016 Assignments, budgets, and costs Optimizing the Schedule The critical path method (CPM) and the resource critical path (RCP) Resource leveling Optimizing time, cost, and resources in Project 2016 Updating the Schedule The baseline Updating strategies and situations Prepare the status and forecast report in Project 2016 Reporting Using reports Using Visual Reports Formatting and printing in Project 2016 Customizing fields in Project 2016 Earned Value Management (EVM) Overview of EVM Applying EVM with Project 2016 Evaluating the Project Evaluating the project performance Project benefits and results Templates for future projects Summary and Next steps Tools and checklist Best practices checklist Certification options
During this 2 day course, you will develop a learning-based action plan to use in your workplace ensuring that you can put the learning into action.
During this 2 day course, you will develop a learning-based action plan to use in your workplace ensuring that you can put the learning into action.
During this 2 day course, you will develop a learning-based action plan to use in your workplace ensuring that you can put the learning into action.
Microsoft Project Blue Belt® 2013: In-House Training This course introduces Project Server 2013 features that expedite scheduling projects and simplify managing tasks within an enterprise environment. Learn different aspects of Project Server and their benefits to varying roles in the enterprise, and gain hands-on experience and insights on best practices from SMEs around the world. This course introduces Project Server 2013 features that expedite scheduling projects and simplify managing tasks within an enterprise environment. Learn different aspects of Project Server and their benefits to varying roles in the enterprise, and gain hands-on experience and insights on best practices from SMEs around the world. What you Will Learn You'll learn how to: Identify the project's life cycle Understand the Enterprise Project Management (EPM) environment Apply the basic project management principles to selecting, initiating, planning, executing, monitoring and controlling, and closing your Project 2013 schedules Take advantage of new features Explain Project Server 2013 views and project sites Meet deadlines and budget restrictions Keep the workloads of your resources within their available limits Efficiently update your schedule Take advantage of the standard reports, custom views, and visual reports for your projects Take a brief look at the Business Intelligence potential Efficiently and effectively manage your project(s) and programs Work comfortably within Project Server 2013 or Project Online Getting Started with Microsoft® Project Server 2013 Describing the EPM context Discovering Project Server 2013 and Project Online Differentiating the users of Project Server 2013 Working with Project Professional 2013 and Project Server 2013 Recognizing the Life Cycle within EPM Projects and Portfolio Management Portfolio management and governance Originating new initiatives within EPTs and workflows Prioritizing initiatives, analyzing scenarios, optimizing, and selecting the portfolio Initiating Projects Initiating processes with Project Professional, SharePoint lists, Enterprise Projects, and Resource Plans Importing projects and managing project owner and permissions Planning Projects - Scope and Schedule Management Planning context and framework Scheduling in PWA Using the Deliverables feature Planning Projects - Staffing Management Plan Building a project team Managing resource availability Reviewing the assignment cycle Resolving resource overallocation Planning Projects - Cost Components, Baseline, and Consolidated Schedules Developing components of the Cost Management Planning processes Working with the baseline in projects and programs or master schedules Improving the Collaboration in the Project Sites Creating the Project Sites Developing components of the Risk Management Plan and Issues Tracking Linking planning documents Additional apps and customization Executing Projects Understanding executing processes Managing resources using Build Team and other features Working with timesheets Reporting administrative time Configuring personal settings Monitoring and Controlling Projects - Tracking Task and Project Progress Understanding the Monitoring and Controlling processes Task progress and updates in PWA including considerations for different tracking methods Task progress and updates in Project Professional 2013 Monitor and Control Projects - Measuring Performance and Reporting Progress Understanding status reports Reviewing performance metrics and progress reports Taking advantage of preloaded reports at the Business Intelligence Center Considerations for defining custom reports Closing Projects Reviewing the closing processes and closing tasks to updates Supporting the closing process