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ABB 216VC62A Numerical Generator Protection

来源: | 作者:FAN | 发布时间 :2025-05-19 | 363 次浏览: | Share:
ABB  216VC62A  Numerical Generator Protection
Features
• Modular hardware
• Selectable protection functions
• Multitude of applications
• Menu-assisted setting with PC
• Fully numerical signal processing
• Continuous self-monitoring of hardware
• Cyclical testing routines mostly performed by the software
• Setting of parameters and recording of the settings by PC
• Display of measured values
• Display of events, their acknowledgment and printout
• Disturbance recording
• Self-documentation
• Long-term stability
• Communication and coordination with station control
• Two design versions available; REG216 / REG216 Classic


Application

The REG216 is intended for the protection of generators and block transformers.
The modular hardware and software design allows an extremely flexible installation.
Simplicity of adaption to the size of the primary system and the desired protection schemes are achieved through the combination of a software library and hardware modules.
Economic solutions can thus be achieved in the full range of applications for which it is intended.
The REG216 software system offers a library of protective functions.
Functions suitable for generator and transformer protection are listed in the table below.
Different degrees of redundancy can be selected.
Availability and reliability of the protection can be chosen to suit the application by duplicating e.g. auxiliary supply units of the whole system.
Standard interfaces make REG216 compatible with different process control systems.
Data exchange with higher process control levels are possible, e.g. one-way reporting of digital states and events, measured values and protection parameters.
REG216 and REG216 Classic differ with regard to the binary process connection:REG216 uses the E/A-module 216GD61a.
The REG216 Classic uses the modules 216GE61 / 216GA61 and 216GA62.


Protection functions

All protection functions required for the stand-alone protection of generators, power transformers and feeders are available.
The system therefore replaces several relays of a conventional protection scheme for such power system equipment.
The table on page 2 gives a survey of the most significant protection functions.

The desired protection functions to suit the particular application can simply be selected from a comprehensive library using the personal computer. 

No knowledge of computer programming is required.

All setting ranges are extremely wide to make the protection functions suitable for a multitude of applications.
The following main parameters can be set:
• Allocation of processing units
• Input channel or channels
• Pick-up setting
• Time delay
• Definition of the operating characteristic
• Tripping logic
• Control signal logic.
Setting a corresponding parameter enables the protection functions to be "connected" to particular input channels.
Digital input and output signals can also be internally combined logically:
• The tripping outputs of each protection function can be assigned to channels of the tripping auxiliary relay assembly in a manner corresponding to a matrix
• The pick-up and tripping signals can be assigned to the channels of the signalling auxiliary relay assembly.
• Provision is available for blocking each protection function with a digital signal
(e.g. digital inputs or by using the tripping signal of another protection function).
• External signals applied to the digital inputs can be processed in any desired fashion.

• Digital signals can be combined to perform logical functions e.g. 

External enabling or blocking signals with the output signals of an internal protection function and then used to block one of the other protection functions.

Remote in- and outputs (RIO580)
Using the process bus type MVB, remote in and output units 500RIO11 can be connected to the REG216 terminals.
The input and out put channels can be extended to a large number by using the RIO580 remote input/output system.
Installing 500RIO11 I/O units close to the process reduces the wiring dramati cally, since they are accessible via fibre optic link from the REG216 terminals.
Analog signals can also be connected to the system via the 500AXM11 from the RIO580
family:
• DC current 4...20 mA
0...20 mA-20...20 mA
• DC voltage 0...10 V-10...10 V
• Temp. sensor Pt100, Pt250, Pt1000,
Ni100, Ni250, Ni1000.


Hardware

The REG216 equipment comprises two main  assemblies which are physically separated from each other and linked by standard prefabricated screened cables:
• Interfaces to the primary system (CTs, PTs and auxiliary relays), which provide DC isolation and a barrier to electromagnetic interference
• Parallel bus and associated electronic units (e.g. analog inputs and data processors/ for signal conditioning and processing.
The complete protection scheme comprises relatively few hardware modules allowing subsequent expansion of electronic units and the interfaces. 21 units of rack space is avail able per equipment frame


Product overview

1. Model and positioning

Model name: ABB 216VC62A Digital Generator Protection Device Product positioning: A multifunctional digital protection and monitoring device designed specifically for medium and large generators, supporting full lifecycle protection of generators, suitable for scenarios such as thermal power, hydropower, gas power generation, and industrial self owned power plants. It can provide accurate fault detection, rapid protection actions, and comprehensive equipment status monitoring.

2. Core values

Triple protection system: integrated electrical quantity protection, non electrical quantity protection, and system level redundancy design

Digital technology: high-speed data processing based on microprocessors, supporting IEC 61850 communication, compatible with smart grid architecture

Flexible configuration: Through software defined protection logic, adapt to different types of generators (synchronous/asynchronous generators, rotating excitation/static excitation systems)


Core protection function

Non electrical quantity protection

Temperature monitoring: Supports 6-channel PT100/PT1000 winding temperature and bearing temperature input, temperature rise rate protection (5 ℃/min warning, 10 ℃/min trip)

Mechanical protection: vibration amplitude monitoring (4-20mA input), shaft displacement protection (± 2mm measurement range, accuracy 0.1% FS)

Process interlocking: Integrated with 3 process signal inputs (such as turbine trip, low lubricating oil pressure), supporting dual redundant interlocking of hard wiring and communication

Auxiliary functions

Wave recording and event recording: Supports 8-channel synchronous wave recording (sampling rate 1000Hz), stores the last 100 fault wave recordings (each lasting 10 seconds)

State monitoring: Real time calculation of generator power factor, efficiency, and winding thermal aging index (based on IEEE Std 120-2018 model)

Remote operation and maintenance: Built in web server, supporting real-time monitoring through mobile app (WiFi module optional)


Technical Parameter

1. Electrical parameters

Rated voltage: AC 100V/220V (voltage input), DC 24V/110V/220V (power input, ± 15% fluctuation adaptation)

Rated current: 5A/1A (current input, compatible with CT secondary side)

Frequency range: 45-65Hz

Protection accuracy: Current/voltage: ± 0.5% FS, frequency: ± 0.01Hz

Communication interface: 2 x IEC 61850-9-2 LE fiber optic interface, 1 x Modbus TCP/RTU, 1 x RS485 (supports Profibus DP)

2. Machinery and Environment

Dimensions: 19 inch rack mounted (482mm × 260mm × 180mm), 3U height

Installation method: panel installation/rail installation (optional bracket required)

Working temperature: -40 ℃~+70 ℃ (no fan self cooling), humidity 5%~95% (no condensation)

Protection level: IP40 (front panel), compliant with IEC 61000-6-2 industrial electromagnetic compatibility standard

Working principle

Data Collection Layer

Sensor access: Collect voltage/current transformer signals through high-precision ADC (24 bits), supporting Roche coil/traditional CT/PT

Synchronization timing: Supports IEEE 1588v2 precision timing (accuracy ≤ 1 μ s) to ensure synchronization of waveform data between multiple devices

Execution Layer

Trip output: 8 independent trip contacts (configurable for hold/pulse mode), supporting trip signal self hold (requiring external reset)

Warning output: 4-channel warning contacts (such as overload warning, high temperature), contact capacity 24VDC/2A


Typical application scenarios

1. Protection scheme for thermal power generators

Configuration: Single 216VC62A device+redundant CT/PT circuit

Core functions:

Generator outlet circuit breaker failure protection (in conjunction with busbar protection device)

Rotor grounding protection (injection type DC detection, grounding resistance measurement range 0.1k Ω~10M Ω)

Plant power switching interlock (real-time communication with fast switching device, switching time ≤ 80ms)

2. Protection scheme for hydroelectric generators

Special Features:

Turbine overspeed protection (redundant judgment of two out of three speed signals, adjustable operating speed from 115% to 150% of rated speed)

Low frequency oscillation suppression (PSS power oscillation damper, phase compensation range ± 180 °)

Non full phase protection (supports inconsistent detection of 2-phase/3-phase circuit breakers, action time ≤ 50ms)


Key advantages

1. Technological leadership

High speed processing platform: using ARM Cortex-A9 dual core processor (400MHz), protecting logic operation cycle ≤ 1ms

Adaptive algorithm: dynamically adjust protection settings based on real-time parameters of the generator (such as load and temperature) to avoid misoperation/refusal to operate

2. Engineering convenience

One click tuning tool: ABB Relion ®  The Manager software automatically generates protection settings (enter the generator nameplate parameters)

Plug and play design: supports hot swapping (requires power to be disconnected first), automatically loads configuration files after module replacement (via SD card)

3. Reliability design

Triple redundancy: CPU redundancy+power redundancy+communication redundancy (redundant modules need to be selected)

Fault self diagnosis: Real time monitoring of internal temperature, memory verification, clock synchronization status of the device, self diagnosis cycle of 100ms

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