Construction Project Monitoring & Control
Construction Project Monitoring & Control, available at $27.99, has an average rating of 4.65, with 22 lectures, based on 29 reviews, and has 116 subscribers.
You will learn about Project Monitoring and Control Processes Critical Path Method and Precedence Diagram Methods to measure the activities and entire project percentage of completion Earned Value Analysis (EVA) CV, CPI, SV, SPI, VAC, ETC, EAC, and TCPI (useful for PMP exam) Variance Analysis Performance Analysis Forecasting Analysis Trend Analysis Reserve Analysis Validity of EVA Schedule Updating Project Crashing (or acceleration) Time-Cost Tradeoff This course is ideal for individuals who are Project Managers or Project Owners or Project Planners or Project Estimators or Contractors or Consultants or Designers or Engineers or Potential Engineers in USA or Canada acquiring their Professional Engineering (P.E. or PEng.) registration or Engineering students It is particularly useful for Project Managers or Project Owners or Project Planners or Project Estimators or Contractors or Consultants or Designers or Engineers or Potential Engineers in USA or Canada acquiring their Professional Engineering (P.E. or PEng.) registration or Engineering students.
Enroll now: Construction Project Monitoring & Control
Summary
Title: Construction Project Monitoring & Control
Price: $27.99
Average Rating: 4.65
Number of Lectures: 22
Number of Published Lectures: 22
Number of Curriculum Items: 22
Number of Published Curriculum Objects: 22
Original Price: CA$34.99
Quality Status: approved
Status: Live
What You Will Learn
- Project Monitoring and Control Processes
- Critical Path Method and Precedence Diagram
- Methods to measure the activities and entire project percentage of completion
- Earned Value Analysis (EVA)
- CV, CPI, SV, SPI, VAC, ETC, EAC, and TCPI (useful for PMP exam)
- Variance Analysis
- Performance Analysis
- Forecasting Analysis
- Trend Analysis
- Reserve Analysis
- Validity of EVA
- Schedule Updating
- Project Crashing (or acceleration)
- Time-Cost Tradeoff
Who Should Attend
- Project Managers
- Project Owners
- Project Planners
- Project Estimators
- Contractors
- Consultants
- Designers
- Engineers
- Potential Engineers in USA or Canada acquiring their Professional Engineering (P.E. or PEng.) registration
- Engineering students
Target Audiences
- Project Managers
- Project Owners
- Project Planners
- Project Estimators
- Contractors
- Consultants
- Designers
- Engineers
- Potential Engineers in USA or Canada acquiring their Professional Engineering (P.E. or PEng.) registration
- Engineering students
Note: The course contents can be applicable to non-construction projects
Projects in general, and construction projects particularly, goes through different stages from their inception to their closeout. In the simplest terms, a typical project starts as a “concept” which develops with time going through different phases such as designing, bidding, procuring, executing, and closing. In the absence of applying a proper monitoring and control at each of these phases, one should not expect a successful project. WHY? Simply because construction projects are dynamic in nature. In construction, no project, almost, is executed as planned. For instance, changes are very likely to happen. Moreover, problems related to procurements, resource availability, productivity, financial acquisition, communications, quality, stakeholder engagements, etc. are common in construction project. Such factors can lead to delays in project completion and/or cost overruns.
Thus, to avoid or minimize such pitfalls, it is of extreme importance to apply adequate periodical monitoring and control to your project. “Monitoring” is comparing the project’s actual performance against its planned performance (i.e. baseline), while “Control” is taking preventive and corrective actions to bring the possibly deviated project back on track.
Accordingly, in this course, we will discuss and implement the common practices that are applied to project monitoring and control. The course is divided into five sections that are briefly described as follows:
Section (1): The different project monitoring and control processes (e.g. validate scope, control scope, control schedule, control cost, monitor communications, etc.) will be discussed along with their integration. In addition, a review of project scheduling (critical path method and precedence diagram) will be discussed with example as the project schedule is a crucial prerequisite for applying monitoring and control.
Section (2): The different methods that are commonly used to measure the percentage completion of each “activity” in your project will be discussed with examples. This is followed by understanding and implementing how the percentage completion of the entire “project” can be measured.
Section (3): Measuring the work progress (whether for each activity or the entire project as discussed in section 2) is an important input to apply what is known as “Earned Value Analysis” (EVA). EVA is an integrated time-cost approach that is used to monitor and analyze the project performance with respect to time and cost. Thus, in this section the main concept and objectives of EVA will be discussed. This is followed by understanding three important measures that are to be determined periodically and used to define the project performance. To define the project’s current performance and expected future performance, different analysis tools will then be discussed with examples (i.e. variance analysis, performance analysis, trend analysis, forecasting analysis, and reserve analysis). Finally, important practical concerns and consideration with respect to the validity of EVA will be discussed.
Section (4): Nothing can better represent your project’s actual current and expected future time performance like updating your project schedule. Thus, in this section we will discuss the main types of information required and collected when preparing a report to apply schedule updating. This is followed by understanding how schedule updating is carried with applying different examples.
Section (5): The concept, uses, and methods of project crashing (or project acceleration) as a control tool will be discussed. We will understand that project crashing is not necessarily used only for project control, but it can be carried also for other purposes. One of the common analysis methods of project crashing is the “Time-Cost Tradeoff”, which will be also discussed with important practical considerations in this final section.
Best wishes and good luck.
Course Curriculum
Chapter 1: SECTION (1): INTRODUCTION
Lecture 1: Lec. (1.1) Overview
Lecture 2: Lec. (1.2) Project Monitoring and Control Processes
Lecture 3: Lec. (1.3) Critical Path Method
Lecture 4: Lec. (1.4) Precedence Diagram
Lecture 5: Examples to be applied
Chapter 2: SECTION (2): MEASURING WORK PROGRESS
Lecture 1: Lec. (2.1) Activity Percent Complete
Lecture 2: Lec. (2.2) Project Percent Complete
Chapter 3: SECTION (3): EARNED VALUE ANALYSIS (EVA)
Lecture 1: Lec. (3.1) EVA Objectives
Lecture 2: Lec. (3.2) Key Dimensions
Lecture 3: Lec. (3.3) Variance and Performance Analysis
Lecture 4: Lec. (3.4) Trend Analysis
Lecture 5: Lec. (3.5) Forecasting Analysis 1 (ETC & EAC)
Lecture 6: Lec. (3.6) Forecasting Analysis 2 (VAC & TCPI)
Lecture 7: Lec. (3.7) EVA Formulas Summary
Lecture 8: Lec. (3.8) EVA Implementation 1
Lecture 9: Lec. (3.9) EVA Implementation 2
Lecture 10: Lec. (3.10) Reserve Analysis
Lecture 11: Lec. (3.11) EVA Practical Concerns
Chapter 4: SECTION (4): SCHEDULE UPDATING
Lecture 1: Lec. (4.1) Schedule Updating Concept, Required Info, and Steps
Lecture 2: Lec. (4.2) Schedule Updating Implementations
Chapter 5: SECTION (5): PROJECT CRASHING
Lecture 1: Lec. (5.1) Project Crashing Concept, Uses, and Methods
Lecture 2: Lec. (5.2) Time-Cost Tradeoff
Instructors
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Mohamed Elabbasy, Ph.D, PMP
Assistant Professor
Rating Distribution
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- 2 stars: 0 votes
- 3 stars: 1 votes
- 4 stars: 9 votes
- 5 stars: 19 votes
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