{"id":255976,"date":"2024-10-19T16:55:25","date_gmt":"2024-10-19T16:55:25","guid":{"rendered":"https:\/\/pdfstandards.shop\/product\/uncategorized\/bs-en-61400-25-22015-tc\/"},"modified":"2024-10-25T12:24:34","modified_gmt":"2024-10-25T12:24:34","slug":"bs-en-61400-25-22015-tc","status":"publish","type":"product","link":"https:\/\/pdfstandards.shop\/product\/publishers\/bsi\/bs-en-61400-25-22015-tc\/","title":{"rendered":"BS EN 61400-25-2:2015 – TC"},"content":{"rendered":"
IEC 61400-25-2:2015 specifies the information model of devices and functions related to wind power plant applications. In particular, it specifies the compatible logical node names, and data names for communication between wind power plant components. This includes the relationship between logical devices, logical nodes and data. The names defined in the IEC 61400-25 series are used to build the hierarchical object references applied for communicating with components in wind power plants. Main changes with respect to the previous edition consist of: – harmonization with newer editions of IEC 61850 standards; – reduction of overlap between standards and simplification by increased referencing, – extension of data objects for operation of smart grids, – extended and enhanced semantics for existing data objects, etc.<\/p>\n
PDF Pages<\/th>\n | PDF Title<\/th>\n<\/tr>\n | ||||||
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165<\/td>\n | English CONTENTS <\/td>\n<\/tr>\n | ||||||
169<\/td>\n | FOREWORD <\/td>\n<\/tr>\n | ||||||
171<\/td>\n | INTRODUCTION <\/td>\n<\/tr>\n | ||||||
172<\/td>\n | 1 Scope <\/td>\n<\/tr>\n | ||||||
173<\/td>\n | 2 Normative references Figures Figure 1 \u2013 Conceptual communication model of the IEC\u00a061400-25 series <\/td>\n<\/tr>\n | ||||||
175<\/td>\n | 3 Terms and definitions 4 Abbreviated terms <\/td>\n<\/tr>\n | ||||||
178<\/td>\n | 5 General 5.1 Overview of logical node classes Figure 2 \u2013 Relationship of logical nodes Tables Table 1 \u2013 System specific logical nodes <\/td>\n<\/tr>\n | ||||||
179<\/td>\n | Table 2 \u2013 Wind power plant general logical nodes Table 3 \u2013 Logical nodes for modelling a wind turbine <\/td>\n<\/tr>\n | ||||||
180<\/td>\n | 5.2 Use of logical node classes Table 4 \u2013 Logical nodes for modelling a non-turbine device <\/td>\n<\/tr>\n | ||||||
181<\/td>\n | 5.3 Extensions of the information model 6 Wind power plant logical node classes 6.1 System specific logical nodes 6.1.1 Wind power plant common logical node class Figure 3 \u2013 Use of instances of logical nodes <\/td>\n<\/tr>\n | ||||||
182<\/td>\n | Table 5 \u2013 Wind power plant common logical node class <\/td>\n<\/tr>\n | ||||||
183<\/td>\n | 6.1.2 LN: Logical node zero Name: LLN0 6.1.3 LN: Physical device information Name: LPHD Table 6 \u2013 Logical node zero class <\/td>\n<\/tr>\n | ||||||
184<\/td>\n | 6.2 Wind power plant specific logical nodes 6.2.1 LN: Wind power plant general information Name: WPPD Table 7 \u2013 Physical device information class Table 8 \u2013 LN: Wind power plant general information (WPPD) <\/td>\n<\/tr>\n | ||||||
185<\/td>\n | 6.2.2 LN: Wind turbine general information Name: WTUR 6.2.3 LN: Wind turbine rotor information Name: WROT Table 9 \u2013 LN: Wind turbine general information (WTUR) <\/td>\n<\/tr>\n | ||||||
186<\/td>\n | 6.2.4 LN: Wind turbine transmission information Name: WTRM Table 10 \u2013 LN: Wind turbine rotor information (WROT) <\/td>\n<\/tr>\n | ||||||
187<\/td>\n | 6.2.5 LN: Wind turbine generator information Name: WGEN Table 11 \u2013 LN: Wind turbine transmission information (WTRM) <\/td>\n<\/tr>\n | ||||||
188<\/td>\n | 6.2.6 LN: Wind turbine converter information Name: WCNV Table 12 \u2013 LN: Wind turbine generator information (WGEN) <\/td>\n<\/tr>\n | ||||||
189<\/td>\n | 6.2.7 LN: Wind turbine transformer information Name: WTRF Table 13 \u2013 LN: Wind turbine converter information (WCNV) <\/td>\n<\/tr>\n | ||||||
190<\/td>\n | 6.2.8 LN: Wind turbine nacelle information Name: WNAC Table 14 \u2013 LN: Wind turbine transformer information (WTRF) <\/td>\n<\/tr>\n | ||||||
191<\/td>\n | 6.2.9 LN: Wind turbine yawing information Name: WYAW Table 15 \u2013 LN: Wind turbine nacelle information (WNAC) <\/td>\n<\/tr>\n | ||||||
192<\/td>\n | 6.2.10 LN: Wind turbine tower information Name: WTOW Table 16 \u2013 LN: Wind turbine yawing information (WYAW) Table 17 \u2013 LN: Wind turbine tower information (WTOW) <\/td>\n<\/tr>\n | ||||||
193<\/td>\n | 6.2.11 LN: Wind power plant meteorological information Name: WMET Table 18 \u2013 LN: Wind power plant meteorological information (WMET) <\/td>\n<\/tr>\n | ||||||
194<\/td>\n | 6.2.12 LN: Wind power plant alarm information Name: WALM 6.2.13 LN: Wind turbine availability information Name: WAVL Table 19 \u2013 LN: Wind power plant alarm information (WALM) <\/td>\n<\/tr>\n | ||||||
195<\/td>\n | 6.2.14 LN: Wind power plant active power control Name: WAPC Table 20 \u2013 LN: Wind turbine availability (WAVL) <\/td>\n<\/tr>\n | ||||||
196<\/td>\n | 6.2.15 LN: Wind power plant reactive power control Name: WRPC Table 21 \u2013 LN: Wind power plant active power control information (WAPC) <\/td>\n<\/tr>\n | ||||||
197<\/td>\n | 6.3 Data name semantic Table 22 \u2013 LN: Wind power plant reactive power control information (WRPC) <\/td>\n<\/tr>\n | ||||||
198<\/td>\n | Table 23 \u2013 Data name semantic <\/td>\n<\/tr>\n | ||||||
210<\/td>\n | 7 Common data classes 7.1 Basic concepts for common data classes (CDC) 7.1.1 Categories of common data classes <\/td>\n<\/tr>\n | ||||||
211<\/td>\n | 7.1.2 Structure of common data classes Table 24 \u2013 General table structure of a common data class (CDC) <\/td>\n<\/tr>\n | ||||||
212<\/td>\n | Table 25 \u2013 Common data class attributes Table 26 \u2013 Conditions for the presence of an attribute <\/td>\n<\/tr>\n | ||||||
213<\/td>\n | 7.2 Type definitions 7.2.1 General 7.2.2 BasicTypes 7.2.3 CommonACSITypes Table 27 \u2013 Basic types <\/td>\n<\/tr>\n | ||||||
214<\/td>\n | 7.2.4 ConstructedAttributeClasses Table 28 \u2013 AnalogueValue <\/td>\n<\/tr>\n | ||||||
215<\/td>\n | Table 29 \u2013 TimeStamp type <\/td>\n<\/tr>\n | ||||||
216<\/td>\n | Table 30 \u2013 TimeQuality definition Table 31 \u2013 TimeAccuracy <\/td>\n<\/tr>\n | ||||||
217<\/td>\n | 7.2.5 Originator Table 32 \u2013 Quality Table 33 \u2013 Unit <\/td>\n<\/tr>\n | ||||||
218<\/td>\n | 7.3 Wind power plant specific common data classes (CDC) 7.3.1 General Table 34 \u2013 Originator Table 35 \u2013 Values for orCat <\/td>\n<\/tr>\n | ||||||
219<\/td>\n | 7.3.2 Setpoint value (SPV) Table 36 \u2013 Wind power plant specific common data classes <\/td>\n<\/tr>\n | ||||||
220<\/td>\n | Table 37 \u2013 CDC: Setpoint value (SPV) <\/td>\n<\/tr>\n | ||||||
221<\/td>\n | 7.3.3 Status Value (STV) 7.3.4 Alarm (ALM) Table 38 \u2013 CDC: Status Value (STV) <\/td>\n<\/tr>\n | ||||||
222<\/td>\n | Table 39 \u2013 CDC: Alarm (ALM) <\/td>\n<\/tr>\n | ||||||
223<\/td>\n | 7.3.5 Command (CMD) <\/td>\n<\/tr>\n | ||||||
224<\/td>\n | 7.3.6 Event counting (CTE) Table 40 \u2013 CDC: Command (CMD) <\/td>\n<\/tr>\n | ||||||
225<\/td>\n | Table 41 \u2013 CDC: Event counting (CTE) <\/td>\n<\/tr>\n | ||||||
226<\/td>\n | 7.3.7 State timing (TMS) <\/td>\n<\/tr>\n | ||||||
227<\/td>\n | Table 42 \u2013 CDC: State timing (TMS) <\/td>\n<\/tr>\n | ||||||
228<\/td>\n | 7.3.8 Alarm Set Status (AST) 7.4 Common data classes inherited from IEC 61850-7-3 7.4.1 CDCs from IEC\u00a061850-7-3 (unchanged) Table 43 \u2013 CDC: Alarm Set Status (AST) <\/td>\n<\/tr>\n | ||||||
229<\/td>\n | 7.4.2 CDCs from IEC\u00a061850-7-3 (specialised) Table 44 \u2013 Specialized common data classes <\/td>\n<\/tr>\n | ||||||
230<\/td>\n | Table 45 \u2013 Wind power plant device name plate common data class specification WDPL <\/td>\n<\/tr>\n | ||||||
231<\/td>\n | 7.5 Common data class attribute semantics Table 46 \u2013 Common data class attribute semantic <\/td>\n<\/tr>\n | ||||||
236<\/td>\n | Annex\u00a0A (informative)Information model for statistical data and historical statistical data A.1 General A.2 Model for statistical and historical statistical data <\/td>\n<\/tr>\n | ||||||
237<\/td>\n | Figure A.1 \u2013 Conceptual model of statistical and historical statistical data (1) <\/td>\n<\/tr>\n | ||||||
238<\/td>\n | Figure A.2 \u2013 Conceptual model of statistical and historical statistical data (2) <\/td>\n<\/tr>\n | ||||||
239<\/td>\n | A.3 Logical node extension for statistical data A.3.1 Data for calculation method for analogue and statistical analogue values A.3.2 Data name semantics <\/td>\n<\/tr>\n | ||||||
240<\/td>\n | Table A.1 \u2013 Description of Data <\/td>\n<\/tr>\n | ||||||
241<\/td>\n | A.4 Common data class for statistical data A.4.1 Object reference setting group common data class (ORG) Table A.2 \u2013 Object reference setting group common data class specification <\/td>\n<\/tr>\n | ||||||
243<\/td>\n | Annex\u00a0B (normative)Value range for units and multiplier Table B.1 \u2013 SI units: base units Table B.2 \u2013 SI units: derived units <\/td>\n<\/tr>\n | ||||||
244<\/td>\n | Table B.3 \u2013 SI units: extended units Table B.4 \u2013 SI units: industry specific units <\/td>\n<\/tr>\n | ||||||
245<\/td>\n | Table B.5 \u2013 Multiplier <\/td>\n<\/tr>\n | ||||||
246<\/td>\n | Annex\u00a0C (normative)Logical nodes for state log, analogue log and report information C.1 LN: Wind turbine state log information Name: WSLG <\/td>\n<\/tr>\n | ||||||
247<\/td>\n | Table C.1 \u2013 LN: Wind turbine state log information (WSLG) <\/td>\n<\/tr>\n | ||||||
248<\/td>\n | C.2 LN: Wind turbine analogue log information Name: WALG <\/td>\n<\/tr>\n | ||||||
249<\/td>\n | Table C.2 \u2013 LN: Wind turbine analogue log information (WALG) <\/td>\n<\/tr>\n | ||||||
251<\/td>\n | C.3 LN: Wind turbine report information Name: WREP <\/td>\n<\/tr>\n | ||||||
252<\/td>\n | Table C.3 \u2013 LN: Wind turbine report information (WREP) <\/td>\n<\/tr>\n | ||||||
253<\/td>\n | Annex\u00a0D (informative)Wind power plant controller D.1 General Figure D.1 \u2013 Conceptual structure of the wind power plant control functions <\/td>\n<\/tr>\n | ||||||
254<\/td>\n | D.2 Active power control functions Figure D.2 \u2013 Schematic illustration of the active power limitation control function <\/td>\n<\/tr>\n | ||||||
255<\/td>\n | Figure D.3 \u2013 Schematic illustration of the gradient power control function Figure D.4 \u2013 Schematic illustration of the delta power control function <\/td>\n<\/tr>\n | ||||||
256<\/td>\n | Figure D.5 \u2013 Schematic illustration of a combined control \u2013 including gradient, delta and active power limitation control Figure D.6 \u2013 Schematic illustration of the apparent power control function <\/td>\n<\/tr>\n | ||||||
257<\/td>\n | D.3 Reactive power control functions Figure D.7 \u2013 Schematic illustration of the reactive power control function <\/td>\n<\/tr>\n | ||||||
258<\/td>\n | Figure D.8 \u2013 Schematic illustration of the power factor control function <\/td>\n<\/tr>\n | ||||||
259<\/td>\n | Figure D.9 \u2013 Schematic illustration of the voltage control function using reactive power control <\/td>\n<\/tr>\n | ||||||
260<\/td>\n | Annex\u00a0E (informative)List of mandatory logical nodes and data E.1 General Table E.1 \u2013 Mandatory system specific logical nodes Table E.2 \u2013 Mandatory wind turbine specific logical nodes Table E.3 \u2013 Mandatory wind power plant specific common data classes (CDC) Table E.4 \u2013 Mandatory common data classes inherited from IEC\u00a061850-7-3 <\/td>\n<\/tr>\n | ||||||
261<\/td>\n | Table E.5 \u2013 Mandatory common data classes inherited from IEC\u00a061850-7-3 and specialised <\/td>\n<\/tr>\n | ||||||
262<\/td>\n | Annex\u00a0F (informative)Control authority management F.1 General F.2 Functional description F.2.1 Local mode F.2.2 Local mode at station level <\/td>\n<\/tr>\n | ||||||
263<\/td>\n | F.3 Logical Node representation F.3.1 Local mode F.3.2 Diagram description Figure F.1 \u2013 Local mode <\/td>\n<\/tr>\n | ||||||
264<\/td>\n | F.4 Local mode at station level F.4.1 General F.4.2 Diagram description <\/td>\n<\/tr>\n<\/table>\n","protected":false},"excerpt":{"rendered":" Tracked Changes. Wind turbines – Communications for monitoring and control of wind power plants – Information models<\/b><\/p>\n |