How To Protect Your Power Supply From Dangerous Currents And Voltages



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ids ACOS 300 Protection equipment for medium and highvoltage grids

ACOS 300 Protection Devices Already minor incidents, such as branches dropping on overhead lines or underground cables damaged by construction works, may lead to short circuits or earth faults and, consequently, cause hazard to valuable equipment through dangerous currents and voltages. In the worst of cases, even human life may be put at risk. Power failures resulting from such incidents can lead to incalculable risks. Moreover, power infeeds from renewable energy sources and their volatility put additional strains on power grids. Therefore, efficient solutions for energy distribution networks and decentralised power generation plants are in ever-increasing demand, to help ensure a secure energy supply and protect persons and valuable equipment against damage. The increasing degree of network automation through safe network protection technology reduces the staff's workload, thereby also leading to a further reduction of costs. With the protection equipment family ACOS 300, IDS GmbH offers innovative grid protection technology. ACOS 300 is designed for the reliable protection of medium-voltage grids and transformers on the high-voltage level, and for their monitoring and control. The ACOS 300 series features the following highlights: Complete portfolio of overcurrent, distance and differential protection functions for mediumand high-voltage systems Comprehensive control and monitoring functions 3,5 colour touch display Integrated web server Configuration via function plan according to IEC 61131-3 Full communication capability according to IEC 61850 and IEC 60870-5-103/-104. Furthermore, a wide range of additional functions is available as protection reserve. For the implementation of individual protection concepts in medium-voltage grids, the following protection devices with integrated control function (combined protection) are available: ACOS 351 for non-directional overcurrent-time protection ACOS 353 for directional overcurrent-time protection ACOS 354 for distance protection ACOS 355 for line differential protection ACOS 357 for motor protection The following devices (combined protection) have been specially designed for the protection of highperformance two-winding and three-winding transformers: ACOS 392 for transformer differential protection for two-winding transformers ACOS 395 for transformer differential protection for three-winding transformers IDS protection devices are suitable for seamless integration into the digital station automation system IDS SAS and into third-party systems.

Overcurrent Protection and Earth-Fault Protection Earth fault protection: Double earth fault Tripping characteristic overcurrent protection Tripping characteristic earth fault protection Overcurrent Protection All ACOS 300 devices include an overcurrent protection function as a standard. The simplest variant, ACOS 351, is designed for non-directional overcurrent protection. Tripping takes place either independently of the current, or current-dependent, with inverse characteristics according to IEC 60255-151, Edition 1.0, 2009-08 and IEEE. In addition to overcurrent protection, ACOS 353 includes several voltage protection functions. Based on a voltage evaluation, a direction decision is made, thereby ensuring selectivity even in bidirectional powerlines. The desired tripping range can be set using different parameters. Earth-Fault Protection Earth faults or ground faults are frequently occurring faults in grid operation. In grids with effective neutral earthing, dangerous currents may occur at the point of fault, which have to be eliminated as quickly as possible. The standard configuration scope of each ACOS 300 device also includes earth fault protection functions, which are similar to the overcurrent-time protection function; the total current measured at the neutral point and the calculated zero current, respectively, serve as characteristic quantity. Overcurrent protection: Single-sided feed Overcurrent protection: Double-sided feed

Distance Protection and Line Differential Protection Tripping characteristic line differential protection Tripping characteristic distance protection Distance Protection Line Differential Protection An algorithm that is specially adapted to insulated and deleted networks ensures reliable, safe and selective operation. Up to five zones can be parameterised using an individually configurable polygon. A protection function against inadvertent energizing ensures quick reactions to an existing fault (e.g. after an automatic reclosing) upon connection. If a double earth fault is detected, the distance protection function switches one of the two affected phases off, depending on which phase has been prioritized. The now single-phase earth fault is finally eliminated through an earth overcurrent protection function. This protection function is based on a comparison of the synchronised scanned currents at both line ends. If the detected differential current is too high, a tripping signal is generated. Distance protection: meshed topology Line differential protection Error currents caused by transmission faults of the transformers are taken into account in a tripping characteristic and do not induce tripping. The benefits of the line differential protection function also include selectivity and quick tripping across the entire protection range.

Trafo Differential Protection and Motor Protection Tripping characteristic neutral point differential protection Tripping characteristic transformer differential protection Transformer Differential Protection Motor Protection A comparison of measured currents (primary, secondary and tertiary) takes place after numerical adaptation of switching groups and amplitudes and after an evaluation of the second and fifth harmonic for transformer inrush stabilisation. If the detected differential current is too high, a tripping command is generated. Additionally, the zero-current differential protection function compares the summation current measured at the neutral point with the calculated zero-current component of the three phases. If the parameterized deviation is exceeded, tripping is induced. Other important features of the transformer differential protection function for two- and three-winding transformers are selectivity and instantaneous tripping across the entire protection range. Electrical motors are the heart of driving systems in industrial installations. Apart from the standard configuration of the non-directional overcurrenttime protection device ACOS 351, the following additional functions that are specially designed for the protection of motors against thermal and mechanic overload up to the megawatt range are available: undervoltage protection start-up monitoring anti-jam protection undercurrent monitoring prevention of thermal overload caused by an excessive number of start-ups per hour Three-winding transformer Motor protection

Control, Parameterisation and Diagnostics Fault log Voltage Fault log Current Front view Web server Local Control, Parameterisation and Diagnostics Control, Parameterisation and Diagnostics via Web Server ACOS protection devices can be easily operated via the 3.5 colour touch display and four capacitative touch keys. Indications on the display are, to a large extent, freely configurable and can be adapted to the user s requirements. A web server that is accessible via ordinary web browsers provides several additional servicing functions, namely online parameterisation firmware update online visualisation of measured values, logical statuses, event lists and system characteristics upload of fault logs in COMTRADE format administration of passwords archiving of documentation (user manuals, configuration descriptions etc.) Parameter changes, as well as the display of measured values and logical statuses, can be easily done online. Furthermore, it is possible to carry out system settings with regard to the station bus, FO-cables, Ethernet and serial communication. Any and all event signals can be visualised in an event list. Devices are passwort-protected for safer access.

Communication and Engineering Display configurator Function plan Communication The following standard protocols can be used for system communication: IEC 61850 IEC 60870-5-103 IEC 60870-5-104 Communication can be done via one of the following interfaces: 1 x 10/100Base-TX Ethernet 1 x 10/100Base-FX Ethernet 1 x serial RS 485/422 1 x serial optical interface A 10/100Base-TX Ethernet interface serves as service interface. Communication between devices (e.g. differential protection devices) takes place via FO cables. Time synchronisation is done either serially (DCF77) or via NTP. Engineering Tool The engineering tool included in the ACOS protection equipment is designed for intuitive operation and enables the user to make the following settings: off-line parameterisation of protection and control functions hardware and software configuration system settings communication settings creation of static and dynamic displays, e.g. single-line diagrams, switches, measured values User-defined interlocks can be implemented quickly and easily via the graphic function chart. The four display levels (Normal, Master, Designer, Administrator) enable a comprehensive overview, thus facilitating work with the engineering tool even more.

Tests and Certificates The protection devices of the ACOS 300 series are certified according to the following standards: Criteria Insulation resistance Surge voltage AC withstand voltage Interference immunity (EMC) Electrostatic discharge Radiated radio-frequency electromagnetic fields Burst Surge Conducted radio-frequency common mode Power frequency magnetic fields Voltage dips and short interruptions Damped oscillatory waves Emitted interference Radiated disturbances Conducted disturbance at main ports Communication protocol Norm EN 60255-5, Class III EN 60255-5, Class III EN 61000-4-2, IEC 60255-22-2 EN 61000-4-3, IEC 60255-22-3 EN 61000-4-4, IEC 60255-22-4 EN 61000-4-5, IEC 60255-22-5 EN 61000-4-6, IEC 60255-22-6 EN 61000-4-8 EN 61000-4-11 IEC 60255-22-1, EN 61000-4-18 EN 55011, IEC 60255-25 EN 55011, IEC 60255-255 IEC 61850 Certificate Level A IEC 61850-6, 7-1, 7-2, 7-3, 7-4 und 8-1 IDS GmbH Nobelstraße 18 D-76275 Ettlingen Phone +49 7243218-0 Fax +49 72 43 218-1 00 E-Mail info@ids.de Internet www.ids.de November 2011, Technical modifications reserved

ACOS 300 Technical Data ids Feature Value Supply voltage Power supply backup time CPU 2 x 500 MHz Display and control elements 60-300 V DC/85-265 V AC 200 ms 4 capacitive touch keys (ON, OFF, scrolling, LED acknowledgement) 16 LED (configurable, 3 colours) Visualisation 3.5 TFT colour touch display; 320*240 pixels Service interface Communication interfaces (optional) Communication protocols Digital input No. of inputs Signalling-circuit voltage Plug-in connector Digital output No. of outputs Switching voltage Switching capacity Breaking capacity (L/R = 40 ms) Constant load Plug-in connector Digita output (Trigger module) No. of outputs Switching voltage Switching capacity Breaking capacity (L/R = 40 ms) Making capacity Constant load Plug-in connector Voltage measurement (adjustable) No. of inputs Nominal voltage Accuracy Plug-in connector Currrent measurement (adjustable) No. of voltage inputs Nominal current Accuracy Plug-in connector Housing Building type Slots Material Dimensions (WxHxD in mm) Ambient conditions Storage temperature Operation temperature Relative air humidity 1x Ethernet 10/100 Base-TX Combined Ethernet/COM interface (Ethernet Over Board) 1 x Ethernet 10/100Base-TX 1 x Ethernet 10/100Base-FX 1 x RS 485/RS 422 1 x serial optical IEC 61850 IEC 60870-5-103 IEC 60870-5-104 12 (optionally extendable) 60V DC, 110 V DC, 220 VDC 16-way, on the back 8 (optionally extendable) 250 V AC/DC at 220 V DC: 0.2 A 8 A 16-way, on the back 4 (independent trigger circuits) 110 V DC/220 V DC bei 220 V DC: 4 A 30 A 8 A 12-way, on the back 4 100V/ 3, 100V, 200V/ 3, 200V +/- 0.5 % 8-way, on the back 4 1A/5A (optional: channels 4: 0.2A/1A) +/- 1 % 8-way, on the back 19/2 Rack 7 Aluminium chromed 235 x 132,5 x 242-40 C +70 C -10 C +55 C max. 90% (without condensation) November 2011, Technical modifications reserved IDS GmbH Nobelstraße 18 D-76275 Ettlingen Phone +49 72 43 218-0 Fax +49 72 43 218-1 00 E-Mail info@ids.de Internet www.ids.de

ACOS 300 Protection Functions Protection function IEC ANSI ACOS 351 non-directional overcurrent protection ACOS 353 directional overcurrent protection ACOS 354 distance protection ACOS 355 line differential protection ACOS 357 motor protection ACOS 392 two-winding transformer protection ACOS 395 three-winding transformer protection Definite time-overcurrent protection I>>> 50 Overcurrent-time protection I>, I>> 51 Directional overcurrent protection I Dir>, I Dir>> 67 Instantaneous earth-fault overcurrent Io>>> 50N Overcurrent-time relay, earth Io>, Io>> 51N Directional earth-fault overcurrent Io Dir>, Io Dir>> 67N Line differential protection 3IdL> 87L Distance protection Z< 21 Power swing detection and blocking I2h> 68 Unbalanced load protection I2> 46 Thermal overload T> 49 Transformer differential earth-fault 3IdT> 87T 2 W 3 W Differential earth-fault protection REF 87N Overvoltage protection U>, U>> 59 Undervoltage protection U<, U<< 27 Residual voltage earthfault protection Uo>, Uo>> 59N Phase-sequence monitoring U2> 47 Frequency protection f<, f<<, f>, f>> 81 Rate-of-frequency-change protection df/dt 81R Overfluxing V/Hz 24 Synchro-check SYNC 25 Automatic reclosing 0 -> 1 79 Voltage transformer monitoring 60 Breaker failure protection CBFP 50BF Motor starting protection 48 Undercurrent protection 37 Restart interlock 66 Directional power monitoring P>, P< 32