Online Partial Discharge Monitoring for Long Cable Circuits: Configuration and Practice

For long cable circuits – urban feeders running kilometres through tunnels, industrial supply lines and connections to distributed generation – the cost of failure is high and the fault location effort is painful. These circuits are also the best candidates for continuous partial discharge (PD) monitoring: the investment in sensors and a monitoring unit pays off where periodic testing leaves months-long gaps.

Why long circuits need online monitoring

Periodic testing leaves gaps

A cable tested once a year is unprotected for the other 364 days. On a long circuit serving critical load, a defect that develops between tests goes unseen until it fails.

Fast-developing defects

Some failure mechanisms – especially at joints and terminations – can progress rapidly once started. Continuous monitoring catches the trend in hours, not months.

Localisation in long circuits

Online monitoring with multiple sensor points along a route supports section-level localisation, narrowing the search when an alarm fires.

Configuring an online cable monitoring system

1. Sensor placement

  • HFCT clamps at cable terminations, grounding points and cable links – the standard online coupling for cable PD.
  • Section monitoring – sensors at both ends and at intermediate link boxes split a long route into monitored sections.

2. Monitoring unit

  • Multi-channel acquisition for synchronised measurement across sensor points
  • PD amplitude, rate and pattern recording with baseline trending
  • Alarm output to the control room or asset platform

3. Communication

  • IoT gateway with LoRa, RS485 or Ethernet uplink to the monitoring platform
  • Remote access for engineers, so alarms reach the right desk

Interpreting online cable PD data

  • Baseline first – establish the circuit’s normal PD level; alarm on deviation.
  • Trends over thresholds – rising activity at a joint position is the actionable signal, not a single reading.
  • Patterns – phase-resolved patterns help distinguish genuine PD from noise and identify the defect family.
  • Coordinate with load – correlate activity with load cycles where possible.

Online monitoring and periodic testing together

The two approaches complement each other: periodic oscillating wave testing provides a high-sensitivity condition map at intervals, while online monitoring watches continuously between tests. A circuit flagged by either is investigated – often with a confirmatory offline test before excavation or joint replacement.

About HUWOR

Zhuhai Huawang Technology Co., Ltd. (HUWOR) supplies HFCT clamps, multi-channel PD monitors and IoT gateways for online cable monitoring, plus oscillating wave test sets for periodic diagnosis, supporting utilities and industry worldwide with OEM/ODM options and application guidance. Contact the HUWOR sales team for a long-circuit monitoring configuration.

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