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Safety-critical software in machinery applications
Timo Malm
, Matti Vuori
, Jari Rauhamäki
, Timo Vepsäläinen
, Johannes Koskinen
, Jari Seppälä
, Heikki Virtanen
, Marita Hietikko
, Mika Katara
Tampere University of Technology (TUT)
Research output
:
Book/Report
›
Report
1
Citation (Scopus)
Overview
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Keyphrases
Software Safety
100%
Safety-critical
75%
Programmable System
75%
Functional Safety
50%
Architecture Verification
50%
Defect numbers
50%
Agile Methods
50%
Safety-related
25%
All-phase
25%
Control System
25%
Architectural Design
25%
Security Threats
25%
Design Phase
25%
Program Development
25%
Functional Requirements
25%
Software Application
25%
Risk Modeling
25%
Formal Methods
25%
Software Vulnerability
25%
Requirements Specification
25%
Safety Process
25%
Validation Process
25%
System Life Cycle
25%
Development Method
25%
Verification Phase
25%
Software Design
25%
IEC 61508
25%
Agile Development
25%
Safety Principles
25%
Self-monitoring
25%
Specification Design
25%
Safety Standards
25%
Self-diagnosis
25%
Process Pattern
25%
Defect Density
25%
Hazard Model
25%
Program Size
25%
Security Principles
25%
Monitor Function
25%
Error Spreading
25%
Software Security
25%
Software Requirements
25%
Critical Code
25%
SELECT Method
25%
V-model
25%
Intuitional
25%
Security Hazards
25%
Validation Phase
25%
Diagnostic Functions
25%
INIS
safety
100%
applications
100%
computer codes
100%
machinery
100%
defects
26%
statistics
20%
design
13%
validation
13%
density
6%
control
6%
risks
6%
architecture
6%
size
6%
modeling
6%
monitoring
6%
errors
6%
testing
6%
security
6%
specifications
6%
connections
6%
control systems
6%
verification
6%
hazards
6%
Computer Science
Critical Software
100%
Agile Methods
50%
Functional Requirement
25%
Design Phase
25%
Validation Process
25%
Verification Phase
25%
Computer Hardware
25%
Agile Development
25%
Validation Phase
25%
Software Design
25%
software fault
25%
Related Factor
25%
Software Application
25%
Requirement Specification
25%
Related Requirement
25%
Security Principle
25%
Architectural Design
25%