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Summary Business Analysis - Part BPM

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complete summary of slides and lecture content of BPM part, course given by Prof. dr. Jochen De Weerdt.

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Summary
BPM
Business Analysis
[D0I68a-D0I81a]
1ste Master HIRB




Zeno Cominotto

,Inhoud
BPM1. Introduction to BPM..................................................................................... 3
1. The world of Business Process Management (BPM).........................................3
2. The BPM lifecycle............................................................................................ 3
3. Process discovery: as-is process modelling.....................................................4
BPM2. Essential Process Modelling.........................................................................5
1. Process modelling languages..........................................................................5
2. Process modelling with BPMN: control-flow.....................................................6
3. Process modelling with BPMN: subprocesses..................................................6
4. Process modelling with BPMN: repetition........................................................7
BPMN3. Advanced Process Modelling.....................................................................8
1. Process modelling with BPMN: events.............................................................8
2. Process modelling with BPMN: exceptions......................................................8
3. Resource modelling......................................................................................... 9
4. Data modelling................................................................................................ 9
BPMN4. Declarative Process Modelling.................................................................10
2. Declarative process modelling......................................................................10
3. Declare.......................................................................................................... 11
4. Declare constraints and execution................................................................11
BPM5. Process Model Verification, Validation and Certification............................12
1. Process model quality assurance..................................................................12
2. Syntactic quality – Verification......................................................................12
3. Semantic quality – Validation........................................................................12
4. Pragmatic quality – Certification....................................................................12
BPM6. Decision Modelling with DMN.....................................................................13
1. Process Modelling and decisions...................................................................13
2. Decision Model and Notation (DMN)..............................................................13
3. Decision requirements modelling..................................................................14
4. DMN decision logic........................................................................................ 15
5. Decision tables.............................................................................................. 16
6. Expression language for decision logic (FEEL)...............................................17
BPM7. Qualitative Process Analysis......................................................................17
2. Value-added analysis & waste analysis.........................................................17
3. Issue documentation..................................................................................... 18
4. Root cause analysis....................................................................................... 18
BPM8. Quantitative Process Analysis....................................................................19

, 2. Flow analysis................................................................................................. 19
Cycle time analysis........................................................................................ 19
4. Simulation..................................................................................................... 20
BPM9. Process Redesign....................................................................................... 21
2. Business Process Reengineering (BPR).........................................................21
3. Heuristic process redesign............................................................................ 22
Popular redesign heuristics............................................................................... 22
BPM10. Process Automation................................................................................. 23
2. Bridging the gap: A five step approach.........................................................23
3. Business Process Management Systems (BPMS)...........................................24
BPMN11. Process Mining – Process Discovery......................................................25
2. Process discovery.......................................................................................... 25
3. The Alpha algorithm...................................................................................... 25
4. Heuristic process discovery...........................................................................26
5. Other process discovery approaches............................................................26
6. Event data..................................................................................................... 27
BPM12. Process Mining – Conformance Checking.................................................27
1. Introduction to Conformance Checking (= Relay).........................................27
2. Measuring fitness.......................................................................................... 27
2. Measuring precision...................................................................................... 28
3. Measuring generalization and simplicity.......................................................29
BPM13. Process Mining – Extension and Tooling..................................................29
1. Extension techniques.................................................................................... 29
2. Predictive Process Mining.............................................................................. 29

,BPM1. Introduction to BPM
1. The world of Business Process Management (BPM)
BPM = body of principles, methods and tools to design, analyse, execute &
monitor business processes (BP)
How to engage? 2 options: Continuous Process Improvement (CPI) OR Business
Process Re-Engineering (BPR) (as-is improvement OR start from 0)
Processes and Outcomes: Positive delivers value, Negative reduces value
Core elements of a process

Activities Business Objects (Data)
- Active elements - Artifacts that undergo state
- State-changing, time- changes (sales order etc.)
consuming
Events Actors
- Passive elements (conditions) - Entities performing process
- Atomic, instantaneous activities
- Humans and systems


Process perspectives: Control flow perspective (what needs to be done and
when?), Data perspective (what do we need to work on?), Resource
Perspective(who’s doing the work?)

2. The BPM lifecycle




Process identification: identify org. BPs and prioritize management to understand
org. and maximize value of BPM initiatives
1. Designation phase: process architecture
 Enumerate main process, determine scop

, 2. Evaluation phase: Prioritized Process Portfolio
 Prioritize based on importance, health and feasibility
Process enumeration:




 No direct hierarchical link, more direct link
Process scoping: Specialization (general); Horizontal (upstream); vertical (main
processes)
Value chain modelling: chain of processes an organization perform to deliver
value to customers and SH  mechanism to group high-level BP according to
order relation
Identifying horizontal boundaries in value chains
1. Change of a key business object
2. Change of granularity of main business object
3. Change in frequency
4. Change in intermediate outcome/resolution/objective
3 main steps: imagine it, build it, sell it
Artifacts for vertical scoping
focus of process enumeration
o Value chains (high level – 3-7 processes)
o Root/main processes (abstract)
o Subprocesses (detailed)
o Process tasks (atomic)

Reference model: template to design process architecture
- Ex. APQC Process Classification Framework (PCF) => industry-neutral =>
benchmarking
o 4 levels: categories, process group, process, activity

Evaluation phase (process selection)
1. Importance
2. Health
3. Feasibility (subjective)

3. Process discovery: as-is process modelling
1. defining the setting: assembling a team that will work on the process
2. gathering information: understanding the process, different methods

, 3. conducting the modelling task: organizing the creation of the process
model, gives guidance for mapping out process in systematic way


 RACI matrix to find SH
Challenge 1: fragmented process knowledge
Challenge 2: Domain experts think on instance level
Challenge 3: knowledge about process modelling is rare
Elicitation techniques used at the process discovery stage
Evidence-based
1. Document analysis
2. Observation
3. Process mining
4. Interview-based: structured vs.
unstructured
5. Workshop-based




Organizing the gathered material and conducting the modelling task
1. Identify the process boundaries
a. Condition? Result? Perspective?
2. Identify activities and events
a. List, cards  first entire assignment, then start
3. Identify resources and handovers
4. Identify control flow




BPM2. Essential Process Modelling
1. Process modelling languages
Petri nets: mathematically sound, no discrepancy between model and actual
behaviour. BUT, certain issues with how you can model behaviour correctly
Notation: (P, T, F, m0) = Places, Transitions, Flows, initial marking
Execution : transition fires when contains at least 1 token in each of its input
places => consumes one token from each input place and produces one in its
output places
Workflow nets: subclass of petri nets, used for modelling purposes
One input place, one output place, strongly connected
Invisible path from output to input

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