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ABB REL650 Applications Manual

Also see for REL650 series: Technical manualProduct guideProduct guideTechnical manualCommissioning manual

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Contents
  1. Table Of Contents
  2. Table Of Contents
  3. Table Of Contents
  4. Table Of Contents
  5. Table Of Contents
  6. Table Of Contents
  7. Table Of Contents
  8. Table Of Contents
  9. Table Of Contents
  10. Table Of Contents
  11. Table Of Contents
  12. Table Of Contents
  13. Table Of Contents
  14. Table Of Contents
  15. Table Of Contents
  16. Table Of Contents
  17. Table Of Contents
  18. Table Of Contents
  19. Section 1 Introduction
  20. Product documentation
  21. Document revision history
  22. Symbols and conventions
  23. Document conventions
  24. Section 2 Application
  25. Available functions
  26. Control and monitoring functions
  27. Station communication
  28. Basic IED functions
  29. REL650 application examples
  30. Section 3 REL650 setting examples
  31. Calculating general settings for analogue TRM inputs 4I 1I 5U
  32. Calculating settings for Global base values for setting function GBASVAL
  33. Calculating settings for five zone distance protection quadrilateral and mho characteristic ZQMPDIS (21)
  34. Calculating general settings
  35. Calculating settings for zone 1
  36. Calculating settings for zone 2
  37. Calculating settings for zone 3
  38. Calculating settings for zone 4
  39. FDPSPDIS (21)
  40. Faulty phase identification with load encroachment for mho FMPSPDIS
  41. Principles for over-reach permissive communication logic
  42. Principles for under-reach permissive communication logic
  43. Principle for blocking scheme
  44. Principle for delta blocking scheme
  45. Calculating setting for current reversal and weak end infeed logic for distance protection ZCRWPSCH (85)
  46. Calculating setting for switch into fault logic voltage and current based ZCVPSOF
  47. Calculating settings for four step phase overcurrent protection
  48. Calculating settings for step 1
  49. Calculating settings for step 3
  50. Calculating settings for four step residual overcurrent protection zero or negative sequence direction EF4PTOC(51N_67N)
  51. Calculating settings for step 2
  52. Calculating settings for step 4
  53. Over-reach permissive logic
  54. Under-reach permissive logic
  55. Blocking scheme
  56. Calculating settings for current reversal and weak-end infeed logic for residual overcurrent protection ECRWPSCH (85)
  57. Calculating settings for breaker failure protection 3-phase activation and output CCRBRF (50BF)
  58. Setting example for a two-ended over-head transmission line in a high impedance network
  59. Calculating settings for phase preference logic PPLPHIZ
  60. Calculating settings for sensitive directional residual overcurrent protection SDEPSDE 67N
  61. Application manual
  62. Section 4 Analog inputs
  63. Relationships between setting parameter Base Current, CT rated primary current and minimum pickup of a protection IED
  64. Example 1
  65. Example 2
  66. Examples on how to connect, configure and set CT inputs for most commonly used CT connections
  67. Example on how to connect a wye connected three-phase CT set to the IED
  68. Example how to connect single-phase CT to the IED
  69. Setting of voltage channels
  70. Examples on how to connect a three phase-to-ground connected VT to the IED
  71. Local HMI
  72. LEDs
  73. Keypad
  74. Local HMI functionality
  75. Parameter management
  76. Five zone distance protection, quadrilateral and mho characteristic ZQMPDIS (21)
  77. System grounding
  78. Fault infeed from remote end
  79. Short line application
  80. Long transmission line application
  81. Parallel line application with mutual coupling
  82. Tapped line application
  83. Load encroachment
  84. Setting guidelines
  85. Setting of characteristic
  86. Quadrilateral characteristics
  87. Mho characteristics
  88. Phase selection with load enchroachment, quadrilateral characteristic FDPSPDIS (21)
  89. Resistive reach with load encroachment characteristic
  90. Minimum operate currents
  91. Additional distance protection directional function for ground faults ZDARDIR (21D)
  92. FunctionalityApplication
  93. Phase preference logic PPLPHIZ
  94. Power swing detection ZMRPSB (68)
  95. Basic characteristics
  96. Automatic switch onto fault logic, voltage and current based ZCVPSOF
  97. PHPIOC (50)
  98. Meshed network with parallel line
  99. Instantaneous phase overcurrent protection phase segregated output SPTPIOC (50)
  100. Meshed network without parallel line
  101. Identification
  102. Settings for steps 1 to 4
  103. nd harmonic restrain
  104. Four step phase overcurrent protection phase segregated output OC4SPTOC 51_67
  105. Example
  106. Instantaneous residual overcurrent protection EFPIOC (50N)
  107. Four step residual overcurrent protection, zero, negative sequence direction EF4PTOC (51N/67N)
  108. Settings for steps 1 and 4
  109. Common settings for all steps
  110. Sensitive directional residual overcurrent and power protection SDEPSDE (67N)
  111. Time delayed 2-step undercurrent protection UC2PTUC (37)
  112. Thermal overload protection, one time constant Fahrenheit/Celsius LFPTTR/LCPTTR (26)
  113. Breaker failure protection phase segregated activation and output CSPRBRF (50BF)
  114. Stub protection STBPTOC (50STB)
  115. Pole discrepancy protection CCRPLD (52PD)
  116. Directional overpower protection GOPPDOP (32)
  117. Directional underpower protection GUPPDUP (37)
  118. Negative sequence based overcurrent function DNSPTOC (46)
  119. Two step undervoltage protection UV2PTUV (27)
  120. Voltage instability mitigation
  121. Two step overvoltage protection OV2PTOV (59)
  122. Application
  123. Two step residual overvoltage protection ROV2PTOV (59N)
  124. Power supply quality
  125. Direct grounded system
  126. Settings for Two step residual overvoltage protection
  127. Loss of voltage check LOVPTUV (27)
  128. Underfrequency protection SAPTUF (81)
  129. Rate-of-change frequency protection SAPFRC (81)
  130. Current circuit supervision CCSRDIF (87)
  131. Negative sequence based
  132. Zero sequence based
  133. Dead line detection
  134. Breaker close/trip circuit monitoring TCSSCBR
  135. Synchronism check, energizing check, and synchronizing SESRSYN (25)
  136. Synchronism check
  137. Energizing check
  138. Voltage selection
  139. External fuse failure
  140. Application examples
  141. Single circuit breaker with single busbar
  142. Single circuit breaker with double busbar, external voltage selection
  143. Single circuit breaker with double busbar, internal voltage selection
  144. Double circuit breaker
  145. Autorecloser for 3-phase operation SMBRREC (79)
  146. Auto-reclosing operation OFF and ON
  147. Initiate auto-reclosing from CB open information
  148. Maximum number of reclosing shots
  149. Lock-out initiation
  150. Automatic continuation of the reclosing sequence
  151. Thermal overload protection holding the auto-reclosing function back
  152. Auto-recloser parameter settings
  153. Autorecloser for 1/3-phase operation STBRREC (79)
  154. Auto-reclosing operation Disabled and Enabled
  155. Control of the auto-reclosing open time for shot 1
  156. phase reclosing, one to five shots according to setting NoOfShots
  157. FirstShot=1ph + 1*2/3ph 1-phase, 2-phase or 3-phase reclosing in the first shot
  158. Transient fault
  159. STBRREC- Auto-recloser parameter settings
  160. Apparatus control
  161. Interaction between modules
  162. Interlocking
  163. Configuration guidelines
  164. Interlocking for busbar grounding switch BB_ES (3)
  165. Signals in double-breaker arrangement
  166. Signals in breaker and a half arrangement
  167. Signals from all feeders
  168. Configuration setting
  169. Interlocking for bus-section disconnector A1A2_DC (3)
  170. Interlocking for bus-coupler bay ABC_BC (3)
  171. Configuration
  172. Signals from bus-coupler
  173. Interlocking for breaker-and-a-half diameter BH (3)
  174. Interlocking for double CB bay DB (3)
  175. Interlocking for line bay ABC_LINE (3)
  176. Signals from bypass busbar
  177. Interlocking for transformer bay AB_TRAFO (3)
  178. Logic rotating switch for function selection and LHMI presentation SLGGIO
  179. Automation bits AUTOBITS
  180. Scheme communication logic with delta based blocking scheme signal transmit ZCPSCH(85)
  181. Blocking schemes
  182. Permissive schemes
  183. Intertrip scheme
  184. Delta blocking scheme
  185. Unblocking scheme
  186. Weak-end infeed logic
  187. Scheme communication logic for residual overcurrent protection ECPSCH (85)
  188. Weak-end infeed
  189. Tripping logic common 3-phase output SMPPTRC (94)
  190. Lock-out
  191. Single- and/or three-pole tripping
  192. Lock out
  193. Trip matrix logic TMAGGIO
  194. Fixed signals FXDSIGN
  195. Boolean 16 to integer conversion B16I
  196. Elapsed time integrator with limit transgression and overflow supervision TEIGGIO
  197. IEC61850 generic communication I/O functions SPGGIO
  198. Measurements
  199. Setting examples
  200. Measurement function application for a 380kV OHL
  201. Event counter CNTGGIO
  202. Limit counter L4UFCNT
  203. Disturbance report
  204. Binary input signals
  205. Analog input signals
  206. Consideration
  207. Measured value expander block MVEXP
  208. Connection of analog currents
  209. Insulation liquid monitoring function SSIML (71)
  210. Pulse counter PCGGIO
  211. Energy calculation and demand handling EPTMMTR
  212. IEC61850-8-1 communication protocol
  213. Horizontal communication via GOOSE
  214. DNP3 protocol
  215. Self supervision with internal event list
  216. Time synchronization
  217. Parameter setting group handling
  218. Product information PRODINF
  219. Primary system values PRIMVAL
  220. Summation block 3 phase 3PHSUM
  221. Global base values GBASVAL
  222. Authority check ATHCHCK
  223. Authorization handling in the IED
  224. Authority status ATHSTAT
  225. Denial of service
  226. Current transformer requirements
  227. Conditions
  228. Fault current
  229. General current transformer requirements
  230. Breaker failure protection
  231. Non-directional instantaneous and definitive time, phase and residual overcurrent protection
  232. Non-directional inverse time delayed phase and residual overcurrent protection
  233. Directional phase and residual overcurrent protection
  234. PXR (and old IEC 60044-6, class TPS and old British Standard, class X)
  235. Voltage transformer requirements
  236. SNTP server requirements
  237. Section 19 Glossary
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This manual is suitable for:
REL650 series
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