Description
IS2020ISUCG3A Product Introduction
The specific application scope of the product
will depend on the needs of system integration and industrial application, but generally speaking, this type of embedded controller module can be applied to the following categories:
manufacturing processes, etc.
monitoring and control system.
of the controller module, as well as the specific needs of the customer.
designed to manage gas or steam turbines.
It has a CIMPLICITY graphical interface and an HMI with software suitable for running heavy-duty turbines.
be installed at the bottom of the cabinet. For a small setup that is easy to serve a triple redundant system, up to three components can be installed side by side.
he board can operate within a temperature range of 0 to 65 degrees Celsius without the need for a fan for cooling. NFPA Class 1. This board can be used for two applications.
Design and implementation of variable frequency transmission system based on ABB hardware architectureintroductionWith the increasing development of transmission technology and the increasing demand for actual use, variable frequency transmission systems have been widely used.As a Fortune 500 company in the world, ABB is a leader in the fields of power and automation technology and has strong capabilities in control systems, high-voltage, medium-voltage and low-voltage frequency conversion technology and transmission technology. Therefore, this article mainly relies on ABB”s control, frequency conversion and transmission technology, and uses related hardware products to design and implement the frequency conversion transmission system.To truly design and implement a usable variable frequency drive system, the entire system must be fully equipped, conveniently operable and compatible with a wide range of needs, so that it can be used without changing the control method and operation. According to the actual control needs, that is, combining frequency converters with different performances and variable frequency motors with different speeds or torques to quickly build and realize a variety of control requirements.1 System design purpose and compositionThe design purpose of this system is to control ABB inverters through local and remote control methods and complete 4 independent channels of closed-loop speed control to drive different test objects to rotate.The entire control system consists of the following four main components: remote control computer, panel industrial computer (touch screen), PLC and speed-regulating frequency converter. The system design block diagram is shown in Figure 1.In order to ensure the accuracy of motor speed control, an encoder module is added. The PLC can obtain the feedback of the rotary encoder in the frequency converter through the ProfibusDP protocol. The speed control is performed through the frequency converter for internal PID closed-loop control.2 System hardware implementation2.1 Control some hardwareThe control part of the hardware mainly refers to the sum of hardware that supports operators to use the equipment directly or indirectly and complete the functions of the equipment. Its main hardware includes computer control terminal, touch screen control terminal, PLC control unit, other auxiliary circuits and measurement and control components.2.2 Transmission hardwareThe transmission hardware mainly refers to the total number of equipment that can relatively independently perform a complete transmission function. Its main hardware includes frequency converters, variable frequency motors (configured with rotary encoders as needed) and other auxiliary circuits. Among them, the selection of motors and frequency converters should be based on the principle of selecting the motor first and then selecting the frequency converter. details as follows:First, according to the tangential speed at which the object under test is to complete rotation, select the motor speed according to the following formula:Secondly, choose based on several other important basic parameters of the motor, such as system hardness, torque, weight, etc. This system uses ABB”s variable frequency motor.Finally, select an appropriate frequency converter based on the motor power. In addition, the actual situation of the object being tested must also be taken into consideration, such as whether the rotating load belongs to the heavy-load usage of the frequency converter, etc.3Software systemSystem software includes three major categories in total, namely computer control software, touch screen software and PLC software. Among them, the PLC software, as the underlying software, is responsible for the interaction with the computer control software and touch screen software on the upper side, and the interaction with the frequency converter on the lower side. Therefore, from the architecture of the entire software system, it can be defined as a host and slave computer structure.3.1 System development platformThe software system has two control methods: remote and local. The development platforms for the three major categories of software are Windows operating system, LabVIEW[4] integrated development environment, CodesysV2.3, and CP400.3.2 System software architectureThe software of the entire system is divided into three types, namely remote control software, PLC control software and local control software. Among them, the remote control software runs under the Windows operating system and is developed under the LabVIEW integrated development environment; the PLC control software is developed under the CodesysV2.3 programming environment; the local control software runs on the touch screen computer and is developed under the CP400 environment. The relationship between the three software is shown in Figure 2.
DS200PLIBG2ACA From General Electric in the United States
IS200ICIAH1ABB High performance processor module GE
IS200ERDDH1ABA From General Electric in the United States
DS200SHVMG1A I/O excitation redundant module GE
IS200VCMIH1B Gas turbine system Mark VI
IS200VCCCH1B High performance processor module GE
IS410STCIS2A I/O excitation redundant module GE
IS200VVIBH1B Gas turbine system Mark VI
IS210AEBIH1ADB Processor/Controller Mark VI System
DS3820PSCB1C1B From General Electric in the United States
DS200PCCAG7A High performance processor module GE
IS200BPIIH1A Gas turbine system Mark VI
IS215WEMAH1B High performance processor module GE
DS200TCQAG1B Gas turbine system Mark VI
IS230TDBTH6A GE power control board
IS220PPROH1A From General Electric in the United States
IS200DSPXH1D From General Electric in the United States
IS200TBCIH1B From General Electric in the United States
IS220PAOCH1A High performance processor module GE
IS200VCMIH2B GE power control board
IS200ESELH1AAA I/O excitation redundant module GE
IS200PSCDG1A GE power control board
IS215UCVEM08B High performance processor module GE
IS200ICBDH1ABB High performance processor module GE
DS200ACNAG1A Gas turbine system Mark VI
IS200TBAIH1C High performance processor module GE
IS200DSPXH1DBD Gas turbine system Mark VI
IS200ERGTH1AAA From General Electric in the United States
IS200IGPAG2AED Processor/Controller Mark VI System
IS220PAICH1A Gas turbine system Mark VI
IS420UCSCH2A GE power control board
IS420PUAAH1A I/O excitation redundant module GE
DS200TCDAG1PR5A High performance processor module GE
IS200RAPAG1A High performance processor module GE
IS200DAMDG1AAA I/O excitation redundant module GE
IS200EPSMG2ADC GE power control board
IS200HFPAG1A I/O excitation redundant module GE
IS420YDIAS1B I/O excitation redundant module GE
IS200RAPAG1A From General Electric in the United States
IS210AEAAH1B High performance processor module GE
IS210AEAAH1B Gas turbine system Mark VI
DS200SLCCG4A High performance processor module GE
DS200ADMAH1A High performance processor module GE
IS215UCVEM01A High performance processor module GE
IS210MACCH2A High performance processor module GE
IS410JPDHG1A High performance processor module GE
IS215VCMIH2BB From General Electric in the United States
IS220PDIOH1B High performance processor module GE
GDS1168-PFF-PA-NF From General Electric in the United States
IS200IGDMH1AAA Processor/Controller Mark VI System
IS200TVIBH2B Gas turbine system Mark VI
IS220PSCAH1A Gas turbine system Mark VI
IS220PPDAH1A High performance processor module GE
IS420USBH1A I/O excitation redundant module GE
IS410STCIS2A GE power control board
IS200STCIH6AED Processor/Controller Mark VI System
IS200VTURH2BAC Processor/Controller Mark VI System
IS200VRTDH1B Processor/Controller Mark VI System
IS200SRTDH2ACB GE power control board
IS215AEPCH1C Processor/Controller Mark VI System
IS220PAOCH1A Gas turbine system Mark VI
DS200DTBDG1ABB GE power control board
IS420UCSCH1B Gas turbine system Mark VI
DS200PLIBG1ACA High performance processor module GE
IS200SSBAG1A GE power control board
IS200STAOH2AAA GE power control board