SUBSTATION
Relay TCC Coordination Calculator — IEC 60255-151
IDMT upstream/downstream relay pair coordination, CTI check, and instantaneous element grading per IEC 60255-151.
What is IDMT protection?+
Inverse Definite Minimum Time (IDMT) relays operate faster at higher fault currents. The operating time follows a standard curve formula t = TMS × k / ((I/Is)^a − 1) per IEC 60255-151, where Is is the pickup current, TMS is the time multiplier, and k/a are curve-dependent constants. This provides both fast clearance at high fault levels and time-grading discrimination at lower levels.
What are the IEC 60255-151 curve types?+
IEC 60255-151 defines four IDMT curve types: Standard Inverse (SI, k=0.14, a=0.02) for general distribution; Very Inverse (VI, k=13.5, a=1.0) for fuse-like characteristics and cable protection; Extremely Inverse (EI, k=80.0, a=2.0) for motor protection and earth faults; and Long Time Inverse (LTI, k=120.0, a=1.0) per IEEE C37.112 §5.4 for very large machines.
What is CTI and why must it be ≥ 0.2s?+
Coordination Time Interval (CTI) is the operating time difference between the upstream and downstream relay at the same fault current: CTI = t_upstream − t_downstream. A minimum CTI of 0.2s (IEC 60255-151 §6.2) allows the downstream relay to trip and the circuit breaker to interrupt the fault before the upstream relay reaches its operating time, ensuring selectivity. If CTI < 0.2s, both relays may trip, causing unnecessary loss of supply.
How does the instantaneous element improve selectivity?+
The instantaneous (definite time) element provides very fast clearance (typically 50–80ms) at high fault currents above I_inst, independent of the IDMT curve. For correct selectivity, the upstream instantaneous pickup must be set higher than the downstream (I_inst_up > I_inst_dn) so that only the downstream relay responds to faults in its protection zone. The upstream instantaneous typically covers bus faults only.
When should I use EI vs SI curves?+
Standard Inverse (SI) is used for general overcurrent protection where the characteristic needs to coordinate with fuses. Extremely Inverse (EI) provides much faster operation at high multiples of Is and is preferred for motor protection, earth fault protection, and applications where the fault current ratio is high. Very Inverse (VI) is a good compromise and matches fuse characteristics closely. EI gives better discrimination when the fault current at the remote end of a feeder is only slightly above the pickup.
How do I choose TMS for grading?+
Start from the most downstream relay and set the smallest TMS that gives acceptable operating times (typically TMS_dn = 0.1–0.2). Then calculate the upstream TMS such that t_up = t_dn + CTI at the maximum through-fault current. Working upstream, each relay's TMS is set to give CTI ≥ 0.2s above the relay below. Typical TMS steps of 0.1–0.2 per grading level are common in distribution networks.