@misc{9244367,
  abstract     = {{In many production and validation industries, cable verification is usually done using manual testing with a multimeter, a process that requires time and is prone to human errors.
The goal of this project was to develop an automatic cable verification device, with the capability of validating cable functionality and detecting potential faults, while also being able to read both analog and digital inputs.
The system was implemented using a Beckhoff PLC programmed in TwinCAT, where
various I/O modules were used to meet the required measurments for potential faults in cables that could be open circuit to short circuits. To verify that the system worked as intended, cables were manually constructed to simulate the different fault scenarios.
The resulting device successfully detected all possible fault scenarios, with a display that provided clear information around detected scenarios, where they were located moreover a representation of how the problem looks in the cable. The fault scenarios were even tested while being combined with each other that was also successful by the use of digital an analog measuring.
Compared to manual testing, the device reduced testing time significantly, completing a full cable measurement in 15 seconds rather than the minutes it typically required during the study. Future improvements can be made including an HMI that could make the measurement of different amounts of conductors more clear and a multiplexer that would reduce the size of the device}},
  author       = {{Sadiq, Mohid and Mezher, Hasan Khaled}},
  language     = {{swe}},
  note         = {{Student Paper}},
  series       = {{CODEN:LUTEDX/TEIE}},
  title        = {{Kabel-verifieringsenhet – Automatisera verifieringen av mätsignaler i kablar}},
  year         = {{2026}},
}

