At one plant, the feed-water main line was throttled by an electric control valve, and operators noticed that the position feedback shown in the DCS disagreed with the local position indication on the actuator. Such "two numbers disagree" problems look simple, but without understanding the signal chain, troubleshooting becomes guesswork.
The feedback chain consists of two conversions:
1. On the actuator side: once the travel is properly set, the actuator converts the valve position (0–100% of travel) into a 4–20 mA current output — 4 mA at full close, 20 mA at full open;
2. On the DCS side: the DCS converts the received 4–20 mA back into a 0–100 position reading.
When the two displays disagree, one of the two conversions has gone wrong. Experience says the DCS configuration mapping 4–20 mA to 0–100 rarely fails; the problem is usually in the field.
1. Establish the field reference first: make sure the actuator's local indication matches the actual valve position — i.e., set the full travel correctly (true full-close and full-open) before any measurement;
2. Measure the loop current: insert a multimeter (DC current range) in series in the feedback loop. At full close it should read about 4 mA, at full open about 20 mA, proportionally in between;
3. Branch by the result:
- If the measured current does not correspond to the actual position → feedback board fault or zero drift in the actuator: re-adjust the feedback output; if the travel parameter has drifted (static operating point), re-set the travel and re-establish full close/open;
- If the current is correct but the DCS reading is wrong → check that point's configuration in the DCS (range, scaling) and the signal wiring for attenuation;
4. After the fix, run several full strokes to confirm linear tracking with no residual mid-travel offset.
The core of feedback-mismatch troubleshooting is one sentence: measure the 4–20 mA "common currency," and you will know which conversion lies. Establish the field reference (full travel) first, measure the loop current second (splitting the chain), and fix whichever segment is wrong — feedback board, zero point, travel setting, or DCS configuration. Going through these four usual suspects in that order closes almost every case.