The electrical control of this machine adopts the ABB ACS800 series full – variable – frequency system. This machine is equipped with two sets of mechanisms: the support mechanism and the opening – closing mechanism. Each set of mechanism consists of a frequency converter controlling a motor to form a closed – loop direct control system. The luffing and trolley mechanisms share one frequency converter for switching drive, while the gantry mechanism and the feeder are respectively driven by one frequency converter, and the open – loop scalar control mode is selected.
The overall control system of the machine uses the Siemens S7 – 300 series PLC with a modular structure. The PLC control cabinet communicates with the remote stations via the remote PROFIBUS communication method. It communicates with the central control room through the Ethernet port on the CPU and an external Ethernet switch. In the central control room, the overall operation status of the ship unloader and the status of components can be monitored and controlled.
This machine is equipped with a CMMS system, which can dynamically display the position status of the trolley and hoisting mechanism, equipment fault alarms, the status of various limit switches, and the on – off status of each circuit breaker and contactor in real – time. Three cameras collect video signals through a video capture card into the industrial computer. Users can monitor the signals from the CMMS and cameras on the monitors in the electrical room and the driver’s cab respectively through a frequency divider.
The communication between this machine and the central control room below the machine is achieved through the BreezeNET DS.11 series products of Alvarion Company to realize point – to – multi – point wireless networking.
Design, manufacturing and commissioning of the electrical control system for the 600T ship unloader of Huasheng Tianyuan

Electrical control system for the JMG3540 container gantry crane in Guangdong
This system employs a full variable – frequency control method. Hoisting mechanism: It uses the closed – loop vector control mode for speed regulation, with a Yaskawa CIMR – G7A4160 frequency converter. Trolley mechanism: The open – loop V/F control…

Electrical control system for the MQ4035 portal crane in Daxie, Ningbo
This electrical control system is controlled by the C200H series PLC from Omron (Note: The correct spelling is Omron) Corporation in Japan. The hoisting mechanism is driven by two wound – rotor asynchronous motors. The transmission solution involves connecting resistors…

The JMG3540 container gantry crane at the Old Huangpu Port Terminal
This system adopts a full variable – frequency control method. The hoisting mechanism is driven by a CIMR – G5A4300 frequency converter, using speed and torque control with vector technology. The gantry mechanism is driven by a CIMR – G5A4055…

Electrical control system for the 750t/h overhead grab ship unloader at the industrial port of Wuhan Iron and Steel Group
There are a total of eight ship unloaders in this project. The entire machines are equipped with Siemens 6SE70 multi – drive systems, which adopt an energy feedback mode, eliminating the need for braking resistors. Two parallel rectifier/feedback units are…

Design, manufacturing and commissioning of the electrical control system for the 600T fixed crane of Shanghai Fuxing Shipping Co., Ltd.
This system mainly consists of the main hoisting mechanism, auxiliary hoisting mechanism, and luffing mechanism. The ABB ACC600 series frequency converters are used for driving, and the frequency converters are shared by the dual – main hoisting and luffing mechanisms.…

Electrical control system for the 40.5t – 40m gantry crane in Guangdong
This system adopts a full variable – frequency control method. For the hoisting mechanism, the closed – loop vector control mode is selected for speed regulation, and the Yaskawa CIMR – G7A4160 frequency converter is used. For the trolley mechanism,…

Design, manufacturing and commissioning of the electrical control system for the MQ4025CZ portal crane at Chizhou Port
The hoisting mechanism is driven by two wound – rotor asynchronous motors. The transmission scheme involves connecting resistors in series with the rotor and using eddy – current braking for speed regulation. The luffing, slewing, and traveling mechanisms adopt variable…