Foundation Level - CPRE FL

The Foundation Level addresses the advanced beginner in Requirements Engineering and provides the core knowledge of this topic.

The Foundation Level addresses the advanced beginner in Requirements Engineering and provides the core knowledge of this topic.


I. I.
This flashcard set covers the basics of requirements engineering, tailored for primary school students. It delves into key concepts like requirements, systems, and change management, exploring various techniques, diagrams, and documentation processes. The flashcards also highlight the importance of stakeholder involvement, quality assurance, and conflict resolution in project management. Ideal for young learners, this set provides a solid foundation for understanding the fundamentals of requirements engineering and its practical applications.
Karten
79
Lernende
10
Sprache
Englisch
Kategorie
Informatik
Stufe
Grundschule
Erstellt / Aktualisiert
22.04.2018 / 26.01.2025

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EO 7.6.2 Knowing the types of requirements conflicts

During the conflict analysis various conflict types are distinguished, in respect to the requirements, which require various strategies for conflict resolution. The various conflict types are:

  • Interest conflict – Stakeholders have factually different needs or divergent personal interests (note that this conflict type includes conflicts of both objective and subjective nature. Objective interest conflicts root in factually different stakeholder needs, while subjective ones are caused by divergent personal interests of involved people.)
  • Data conflict– Stakeholders interpret given information differently or have information deficits.
  • Value conflict – Stakeholders have divergent values and preferences
  • Relationship conflicts – There are emotional problems in personal relationships between stakeholders
  • Structural conflict – Conflict roots in stakeholders being on different hierarchy and decision power levels in an organization

EO 7.6.3 Knowing the various conflict resolution techniques

In practice, the causes of conflict are frequently mixed. In the resolution of a conflict, all relevant stakeholders should be considered. For conflict resolution there exist a number of conflict resolution techniques, namely:

  • Agreement
  • Compromise
  • Voting
  • Definition of variants
  • Overruling
  • Consider-all-facts
  • Plus-minus-interesting
  • Decision matrix

EO 7.6.4 Knowing the documentation for conflict resolution

After resolving the conflict, the conflict should be suitably documented. This should record, in particular:

  • cause of the conflict
  • involved stakeholders
  • opinions of the various stakeholders
  • the means of resolving the conflict
  • potential alternatives
  • the decisions and the reasons for the decisions

EO 8.1.1 Knowing the purpose and definition of attribute schemes

To manage the system’s requirements over the whole lifecycle of the system, it is necessary to collect requirements’ information as attributes in as structured a way as possible. The definition of the attribute structure for requirements is done through an attribute scheme, which can be defined either in tabular form or in the form of an information model.

Attribute schemes are frequently defined and adapted for a specific project on the basis of specific conditions. This includes:

  • Specific properties of the project
  • Constraints of the organization
  • Domain rules
  • Constraints of the development process

EO 8.1.2 Knowing important attribute types for requirements

Typical attributes are:

  • Identifier
  • Name
  • Description
  • Source
  • Stability
  • Risk
  • Priority

The "legal obligation" can also be saved as additional requirement’s information in the form of an attribute.

EO 8.2.1 Mastering and using views on requirements

In practice, the amounts of requirements in a project and the number of dependencies among these requirements are evermore increasing. In order to keep the complexity of the requirements manageable for the project staff, it is necessary to selectively access and thereby filter the requirements depending on the current task. Two kinds of view formation are distinguished:

  • Selective views: showing a subset of the attribute values from requirements selected by defined selection criteria
  • Condensed views: showing condensed information about requirements selected by defined selection criteria

EO 8.3.1 Knowing methods for prioritizing requirements

Requirements are prioritized, at various times and during various activities, according to various criteria. Preparing prioritization of requirements is based on a simple system:

  • Determining the goals and constraints for the prioritization
  • Determining the prioritization criteria
  • Determining the relevant stakeholders
  • Selection of the artifacts to be prioritized

EO 8.3.2 Mastering and using techniques for prioritizing requirements

Based on the results of these activities, one or more techniques for prioritization are selected and the prioritization itself carried out. Among the prioritization techniques are:

  • Ranking and top-ten technique
  • Single-criterion classification
  • Kano classification
  • Prioritization Matrix According to Wiegers

EO 8.4.1 Knowing the benefits of requirements traceability

Within the management of requirements, the requirements’ traceability information is recorded, organized and maintained.
The benefits of requirements traceability involves:

  • Simplification of verifiability
  • Identification of unneeded properties in the system
  • Identification of unneeded requirements
  • Support of impact analysis
  • Support of reusability
  • Support of determination of accountability
  • Support for maintenance and administration

EO 8.4.2 Mastering and using classes of traceability relationships

With respect to the requirements’ traceability relationships, three classes of traceability relationships are distinguished:

  • Pre-requirements-specification traceability
  • Post-requirements-specification traceability
  • Traceability between requirements

EO 8.4.3 Mastering and using forms of representation for traceability relationships

Only such information should be recorded for which there exists a clear use. The traceability of requirements can be represented in various ways. Typical representation forms are:

  • Text-based references and hyperlinks
  • Trace matrices
  • Trace graphs

EO 8.5.1 Mastering and using versioning of requirements

Requirements’ versioning and configuration makes it possible, over the lifecycle of a system or product, to have specific development states of requirements and requirements documents available. The version number of a requirement has at least two components:

  • Version
  • Increment

EO 8.5.2 Mastering and using the formation of requirements configurations

A requirements configuration comprises a defined set of logically related requirements, whereby at most one version of each requirement is contained in the requirements configuration. The formation of requirements configurations are defined in two dimensions:

  • Product dimension: the individual requirements of the requirements foundation
  • Version dimension: the various change states of a requirement

Requirements configurations have several typical properties:

  • Logical connection of the requirements in a configuration
  • Consistency of the requirements within a requirements configuration
  • Unique identifier of the requirements configuration
  • Immutability of the requirements within the requirements configuration
  • Basis for rollbacks to earlier versions of the requirements base

EO 8.5.3 Mastering and using the formation requirements baselines

Requirements baselines are specific requirements configurations, which comprise stable versions of requirements and often define the delivery increments of the system (system releases) as well.

EO 8.6.1 Knowing the importance of requirements changes

Requirements change over the entire lifecycle of a system. The changes to the requirements are managed and processed in a systematic change management process. In this change management process, the Change Control Board is responsible for processing the incoming change requests.

EO 8.6.2 Knowing the functions and members of a Change Control Board

The tasks of the Change Control Board are:

  • Classification of incoming change requests
  • Determination of the effort for performing the change
  • Assessment of the change requests in respect to effort-benefit
  • Definition of new requirements based on incoming change requests
  • Deciding whether to accept or reject a change request
  • Prioritization of the accepted change requests
  • Assign accepted change requests to change projects

Typical member of the Change Control Board are the change manager, contractor, architect, user representative, quality manager and requirements engineer.

EO 8.6.3 Mastering and using the elements of a requirements change request

If changes to requirements are deemed necessary, these are documented in the form of change requests and submitted to the Change Control Board. A change request contains at least the following information:

  • Identifier of the change request
  • Title of the change request
  • Description of the necessary change
  • Justification of the need for the change
  • Date filed
  • Applicant
  • Priority of the change as seen by the applicant.

EO 8.6.4 Mastering and using different classes of change requests

There are three types of change requests:

  • Corrective changes
  • Adaptive changes
  • Exceptional changes

EO 8.6.5 Mastering and using a process to handle change requests

The process of change management provides the following steps:

  • Impact analysis and assessment of the change
  • Prioritization of the change request
  • Assignment of the change to a change project
  • Communication of the acceptance/rejection of the change request

EO 8.7.1 Knowing the importance of requirements measurements

Based on the requirements validation and management information such as errors, attributes, traces or changes, the quality of the requirements documents and processes can be analyzed. This enables the identification of improvement possibilities. Typical measurements include

  • Requirements change rates
  • Requirements errors

EO 9.1 Knowing the eight features of a requirements management tool

Many system development tools can also support RE, e.g. test management or configuration management tools, Wikis, office software or visualization software. Also modeling tools are important for RE in order to create and analyze information as models. Requirements management tools are intended only for RE. They should feature the following characteristics:

  • manage various information
  • manage logical relationships between information
  • identify artifacts uniquely
  • make information accessible flexibly and securely, e.g. through access control
  • support views over the data
  • organize the information, e.g. through assignment of attributes and formation of hierarchies
  • generate reports over the information
  • generate documents out of the information

Standard office tools support these features only to a limited extent, specialized tools refine these, e.g. through traceability management.

EO 9.2 Knowing the five aspects in the introduction of requirements engineering tools

Only after the introduction of RE procedures and techniques can an appropriate tool be sought. The tool introduction requires clear RE responsibilities and procedures. In the process, the following aspects are to be considered:

  • Consider necessary resources
  • Avoid risks by means of pilot projects
  • Evaluation according to defined criteria
  • Take into account costs beyond license costs
  • Instruct employees

EO 9.3 Knowing the seven views of requirements engineering tools

The variety of aspects to be considered when evaluating RE-tools can be structured using the following seven views:

  • Project view (e.g. support for project planning)
  • User view (especially usability)
  • Product view (functionality)
  • Process view (methodological support)
  • Provider view (e.g. vendor services)
  • Technical view (e.g. interoperability, scalability)
  • Economic view (costs)

Clear criteria are to be defined for each view.

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