DEIF AGC242/AGC243 丹控发电机组控制器船舶备件
DEIF AGC242 和 AGC243 是丹麦 DEIF 公司生产的高性能发电机组控制器,专为船舶电力系统设计,广泛应用于船舶发电系统的控制与保护。作为船舶备件,它们在保障船舶电力系统的稳定运行中发挥着关键作用。
1. 产品特点
多功能控制:AGC242/AGC243 具备全面的发电机组控制功能,包括同步、并网、负载分配、功率管理等,适用于单台或多台发电机组的并联运行。
高可靠性:采用工业级设计,适应船舶恶劣的运行环境,具备抗振动、抗冲击、耐高温和防潮能力。
灵活配置:支持多种配置选项,可根据船舶电力系统的具体需求进行定制,满足不同功率等级和运行模式的要求。
先进保护功能:内置多种保护功能,如过载、短路、逆功率、欠压、过压等,确保发电机组在异常情况下安全停机,避免设备损坏。
友好人机界面:配备直观的显示屏和操作界面,方便用户实时监控发电机组状态、调整参数和查看故障信息。
通信接口丰富:支持多种通信协议(如 Modbus、CANopen 等),可与船舶上的其他自动化系统(如监控系统、报警系统)无缝集成。
2. 技术参数
输入/输出:
模拟量输入:用于测量电压、电流、频率等参数。
数字量输入/输出:用于状态监测和控制信号的传输。
通信接口:支持 RS485、以太网等,方便与上位机或其他设备通信。
工作电压:通常为 24VDC 或 110VDC/220VAC(根据型号和配置)。
环境温度:适应 -25℃ 至 +70℃ 的工作环境,满足船舶在不同气候条件下的运行需求。
防护等级:IP56 或更高,具备防尘、防水能力,适合船舶甲板或机舱等恶劣环境。
3. 应用场景
船舶主发电机组控制:作为船舶主发电系统的核心控制单元,实现多台发电机的同步并联和负载分配。
应急发电机组控制:在主电源故障时,自动启动应急发电机组,确保船舶关键设备的持续供电。
船舶电站管理:通过集成电站管理系统(PMS),实现对全船电力系统的监控和优化管理。
新能源混合动力系统:支持与船舶上的其他能源(如锂电池、燃料电池)协同工作,实现混合动力系统的控制。
4. 优势与价值
提高系统可靠性:通过先进的控制算法和保护功能,确保发电机组在各种工况下稳定运行,减少故障停机时间。
降低运维成本:友好的人机界面和远程监控功能,方便船员进行设备维护和故障排查,降低运维难度和成本。
节能环保:优化发电机组的运行效率,减少燃油消耗和排放,符合国际海事组织(IMO)的环保要求。
兼容性强:支持与多种品牌和型号的发电机组、自动化系统兼容,方便船舶升级和改造。
5. 选购建议
确认需求:根据船舶电力系统的规模和配置,选择合适的型号(AGC242 或 AGC243)。
验证兼容性:确保控制器与现有发电机组、自动化系统兼容,避免集成问题。
关注售后服务:选择有良好售后服务的供应商,确保设备长期稳定运行。
参考案例:了解 DEIF 控制器在其他船舶上的应用案例,评估其性能和可靠性。
6. 典型应用案例
大型货轮:在多台发电机组并联运行的场景中,DEIF AGC243 实现负载均衡和故障切换,确保船舶电力系统的高可用性。
豪华邮轮:通过集成电站管理系统,优化全船电力分配,提升乘客舒适度和运营效率。
海洋工程船:在恶劣海况下,DEIF 控制器的抗振动和抗冲击能力确保设备稳定运行,保障作业安全。
DEIF AGC242/AGC243 控制器是船舶电力系统的核心设备,凭借其高性能、高可靠性和丰富的功能,成为船舶发电控制的理想选择。在选购时,建议根据船舶实际需求和系统配置,选择合适的型号,并确保与现有设备的兼容性。
DEIF AGC242/AGC243 Dan Control Generator Set Controller Ship Spare Parts
DEIF AGC242 and AGC243 are high-performance generator set controllers produced by DEIF in Denmark, specifically designed for ship power systems and widely used for control and protection of ship power generation systems. As spare parts for ships, they play a crucial role in ensuring the stable operation of the ship's power system.
1. Product features
Multi functional control: AGC242/AGC243 has comprehensive generator control functions, including synchronization, grid connection, load distribution, power management, etc., suitable for parallel operation of single or multiple generator sets.
High reliability: Adopting industrial grade design, it adapts to the harsh operating environment of ships and has the ability to resist vibration, impact, high temperature, and moisture.
Flexible configuration: Supports multiple configuration options and can be customized according to the specific needs of the ship's power system to meet the requirements of different power levels and operating modes.
Advanced protection function: Built in multiple protection functions, such as overload, short circuit, reverse power, undervoltage, overvoltage, etc., to ensure the safe shutdown of the generator set in abnormal situations and avoid equipment damage.
Friendly human-machine interface: equipped with intuitive display screen and operation interface, convenient for users to monitor the status of the generator set in real time, adjust parameters, and view fault information.
Rich communication interfaces: supports multiple communication protocols (such as Modbus, CANopen, etc.), and can be seamlessly integrated with other automation systems on the ship (such as monitoring systems, alarm systems).
2. Technical parameters
Input/Output:
Analog input: used to measure parameters such as voltage, current, frequency, etc.
Digital input/output: used for status monitoring and transmission of control signals.
Communication interface: Supports RS485, Ethernet, etc., facilitating communication with the upper computer or other devices.
Working voltage: typically 24VDC or 110VDC/220V AC (depending on model and configuration).
Environmental temperature: Suitable for working environments ranging from -25 ℃ to+70 ℃, meeting the operational needs of ships under different climatic conditions.
Protection level: IP56 or higher, with dust-proof and waterproof capabilities, suitable for harsh environments such as ship decks or engine rooms.
3. Application scenarios
Ship main generator control: As the core control unit of the ship's main power generation system, it achieves synchronous parallel connection and load distribution of multiple generators.
Emergency generator set control: In the event of a main power failure, the emergency generator set will automatically start to ensure continuous power supply to critical equipment on the ship.
Ship Power Station Management: By integrating the Power Station Management System (PMS), monitoring and optimized management of the entire ship's power system can be achieved.
New energy hybrid power system: supports collaborative work with other energy sources on board, such as lithium batteries and fuel cells, to achieve control of the hybrid power system.
4. Advantages and Value
Improve system reliability: Through advanced control algorithms and protection functions, ensure stable operation of the generator set under various working conditions, and reduce downtime caused by faults.
Reduce operation and maintenance costs: With a user-friendly human-machine interface and remote monitoring function, it facilitates equipment maintenance and troubleshooting for crew members, reducing the difficulty and cost of operation and maintenance.
Energy conservation and environmental protection: Optimize the operating efficiency of generator sets, reduce fuel consumption and emissions, and comply with the environmental requirements of the International Maritime Organization (IMO).
Strong compatibility: Supports compatibility with multiple brands and models of generator sets and automation systems, facilitating ship upgrades and renovations.
5. Selection suggestions
Confirm requirements: select the appropriate model (AGC242 or AGC243) based on the size and configuration of the ship's power system.
Verify compatibility: Ensure that the controller is compatible with existing generator sets and automation systems to avoid integration issues.
Pay attention to after-sales service: Choose suppliers with good after-sales service to ensure long-term stable operation of the equipment.
Reference case: Understand the application cases of DEIF controllers on other ships and evaluate their performance and reliability.
6. Typical application cases
Large cargo ship: In the scenario of multiple generator sets operating in parallel, DEIF AGC243 achieves load balancing and fault switching, ensuring high availability of the ship's power system.
Luxury cruise ship: By integrating a power station management system, optimizing the power distribution throughout the ship, improving passenger comfort and operational efficiency.
Marine engineering vessel: In harsh sea conditions, the anti vibration and anti impact capabilities of the DEIF controller ensure stable operation of the equipment and guarantee operational safety.
The DEIF AGC242/AGC243 controller is the core equipment of ship power systems, and with its high performance, high reliability, and rich functions, it has become an ideal choice for ship power generation control. When selecting, it is recommended to choose the appropriate model based on the actual needs and system configuration of the vessel, and ensure compatibility with existing equipment.
MOTOROLA | MVME187 | |
HONEYWELL | 51305896-200 NIM MODEM | |
Honeywell | 2MLR-CPUH/T | |
yokogawa | CP451-50 | |
MESTO | IOP371 | |
Consilium | NSAC-1 | |
ABB | PPC907BE101 3BHE024577R0101 | |
ABB | PPC905AE101 | |
ABB | PCD230 3BHE022291R0101 | |
ABB | PPD113 3BHE023784R2330 | |
ABB | 3BHE024747R0101 | |
ABB | SYN5201a-Z V271 | |
F35 010 30 982230416 | ||
ABB | 129740-002 | |
ABB | REF615C_E | |
GE | IS200AEPAH1A | |
B&R | X20CP1485-1 | |
VIBRO METER | IOC8T 200-580-000-111 | |
VIBRO METER | IOC4T 200-560-000-111 | |
GE | CPCI-5565PIORC-110000 | |
ABB | WT98 | |
GE | IS420UCSBH1A | |
GE | IS420ESWBH3A | |
GE | IS220PAICH2A | |
ABB | KUC711AE101 3BHB004661R0101 | |
MESTO | D201139L | |
ELAU | Max-4/11/03/032/99/1/1/00 | |
EMERSON | AI KJ3223X1-BA1 | |
EMERSON | DI KJ3203X1-BA1 | |
EMERSON | AI KJ3222X1-BA1 | |
EMERSON | DO KJ3204X1-BA1 | |
EMERSON | AO KJ3221X1-BA1 | |
A-B | SST-PB3-CLX-RLL | |
GE | IS220PAOCH1BD | |
GE | IS200TRLYS1BGG | |
KONGSBERG | RCU500 RCU501 RCU502 | |
FIREYE | 85IRF1-1 | |
ETHERWAN | 973G1600RPSA-BK | |
YOKOGAWA横河 | CP401-10 | |
SCHNEIDER | LXM62DD27A21000 | |
EPRO | PR6423/011-110+CON021 | |
KOLLMORGEN科尔摩根 | S406BA-CA-022 | |
ABB | PPD539A102 3BHE039770R0102 | |
ABB | PFRL101B-1.0kN 3BSE023315R0005 | |
PROSOFT | MVI69L-MBS |
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