DocumentCode :
55140
Title :
Advances in Protective Device Interlocking for Improved Protection and Selectivity
Author :
Valdes, Marcelo E. ; Dougherty, John J.
Author_Institution :
GE Ind. Solutions, Plainville, CT, USA
Volume :
50
Issue :
3
fYear :
2014
fDate :
May-June 2014
Firstpage :
1639
Lastpage :
1648
Abstract :
The challenge for protection engineers is to balance protection and system reliability (selectivity). Engineers may bias toward protection at the cost of system reliability or toward desired (or code required) selectivity at the cost of protection. The need for compromise is often accepted as an unalterable reality. Simultaneously, the need for greater personnel safety has added a desire for space protection in addition to the usual bus protection imperative. The industry has provided devices, techniques, and schemes to minimize, or even eliminate, this compromise. Tools include smarter instantaneous sensing algorithms, differential protection, zone-selective interlocking, and arc-flash relays. Zone-selective interlocking is a cost-effective solution for low-voltage (LV) and medium-voltage (MV) applications. Today, zone-selective interlocking spans different voltages between inverse protection characteristics, such as short-time slopes and fast instantaneous protection, in both LV and MV systems. However, traditional schemes must still nest pickup current thresholds to accommodate sensing tolerances. Arc-flash relays have emerged as excellent space protectors but present concerns in LV applications. This paper reviews recent improvements in zone-selective interlocking capabilities and presents schemes, which are developed by the authors, that eliminate the need for nesting pickup levels of multiple devices and for successfully mixing arc-flash and current sensing devices into one system to simultaneously provide fast, reliable, and sensitive protection.
Keywords :
arcs (electric); circuit breakers; intelligent sensors; power system protection; power system reliability; relay protection; safety devices; LV applications; MV applications; arc-flash relays; balance protection; bus protection; current sensing devices; current thresholds; differential protection; inverse protection characteristics; low-voltage applications; medium-voltage applications; nesting pickup levels; personnel safety; protection engineers; protective device interlock; sensing tolerances; sensitive protection; short-time slopes; smarter instantaneous sensing algorithms; space protection; system reliability; zone-selective interlocking; Circuit breakers; Circuit faults; Fault currents; Power transformer insulation; Relays; Reliability; Timing; Arc Flash; Arc Flash Relay; Arc flash; Coordination; Instantaneous Blocking; Instantaneous Protection; Selectivity; ZSI; Zone-Selective-Interlocking; arc-flash relay (AFR); coordination; instantaneous blocking; instantaneous protection; selectivity; zone-selective interlocking (ZSI);
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2013.2285941
Filename :
6634249
Link To Document :
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