Executive Summary
Japan Wind Development Co., Ltd.,
Rokkasho, Aomori, Japan
Amidst growing concerns about the depletion of fossil fuels and the effects of climate changes caused by rising CO2 emissions and other factors, there is a growing push to generate power from wind, solar, biomass, and other renewable energy sources and thereby create a more sustainable society.
Japan Wind Development Co., Ltd. (JWD) is a specialist in wind power generation technology with vast knowledge and expertise in this field. JWD is building and providing all necessary support services for a nationwide wind power generation network.
In May 2008, JWD completed construction of a wind farm near Rokkasho village in Aomori Prefecture, in northern Honshu. This smart grid wind farm is the first facility of its type to use sodium sulfur (NAS) batteries to store electricity for supply to the national power grid. These batteries are charged at night, when the demand for power is lower, and the stored electricity can be supplied to the grid together with the electricity generated by the windmills during the daylight hours. This ensures a steady supply of power to the grid even during those periods when power production falls as the result of low wind speed.
To control the transmission of power from the Rokkasho wind farm to the national power grid, Tokyo Densan, a Yokogawa representative and systems integrator, successfully installed STARDOM network-based controllers and FA-M3 range-free controllers.
Facility Overview
Windmills: 1,500 kW x 34 units
NAS batteries: AC/DC converter 2 MW x 17 units
Transmission capacity: 51 MW
Transformer: Primary (154 kV/60 MVA), secondary (22 kV/60 MVA)
The Challenges and the Solutions
Steady power supply by reliable control system
To ensure a stable supply of power to the national grid even when power production dips as the result of low wind speed, the Rokkasho wind farm utilizes large-capacity NAS batteries.
The STARDOM network-based control system and FA-M3 range-free controllers play an important role in smoothing out the supply of this power to the grid. A power monitoring & control system and a battery control system are both configured in the dual redundant STARDOM controllers. FA-M3 range-free controllers are utilized to monitor and control each windmill. Controllers from other vendors are integrated with this system via an OPC interface. Factoring in the fluctuations in power production as a result of varying wind conditions, a power generation scheduling system calculates operation plan parameters and a power output pattern, based on which instructions are issued to each FA-M3 controller. The actual power output can be monitored on a trend graph. The operating status of each of the 34 windmills and the charge status for each of the 17 battery units can also be monitored together with various other types of operation data.
This power monitoring & control system carries out the following main functions:
- Operation planning and monitoring
Using the power generation scheduling system, operators can access the weekly operation plan data they need to draw up an operation plan for the next day. At their stations, operators can view graphic displays showing the power sales target, power generation plan, and battery charge-discharge plan. - Associated power monitoring
Operators can view data on total power output for the entire facility, battery charge status, and transformer operation status. - Windmill monitoring
For each windmill, data on power output, wind direction and speed, and operating status is displayed. - Battery monitoring
For each battery, the charge-discharge rate, charge status, and operation status is displayed. - Remote monitoring and control
Operations can also be monitored and controlled wherever network access is available.
Central control room
Total system configuration
Customer Satisfaction
The integrated control system allows JWD to manage the operation of each of its windmills and provide a steady supply of power to the national power grid. JWD plans to begin constructing wind farms outside Japan, and to this end is working together with Yokogawa and Tokyo Densan to develop the necessary high-speed systems and equipment. Through this development of renewable energy facilities, JWD hopes to make a lasting and significant contribution to the building of a more sustainable society.
行业
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可再生能源
使用可再生能源可以保护环境,使社会和工业更接近实现可持续性发展的目标。然而与传统能源相比,在其快速发展的道路上存在着一些阻碍,如生产成本较高、电网供电不稳定等。作为控制系统和仪表行业的企业,横河电机一直致力于帮助各行业客户实现稳定运营、提高工厂生产效率。基于VigilantPlant实现平稳运营的理念,横河电机的解决方案可促进可再生能源的使用。
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电力
在20世纪70年代中期,横河电机发布EBS电子控制系统,从而正式进入电力行业。从那时起,横河电机一直坚持不断发展技术和能力,旨在为客户提供更好的服务和解决方案。
横河电机凭借着电力解决方案网络,在充满活力的电力市场中发挥着积极的作用。通过结合资源和行业知识,使得团队合作更加紧密。横河电机的电力专业人员们将携手合作,为客户提供适合其复杂要求的解决方案。
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风力发电
风是一种取之不尽的自然能源,人类已经以各种方式使用了数千年。现在使用风能发电的风力发电厂正在运行。近年来,世界各地已经建造了许多使用风力涡轮机的风力发电厂,海上风力发电厂现在越来越受欢迎,特别是在欧洲。
横河电机的控制器广泛应用于许多风电厂。此外,横河电机还在日本的一个风电厂安装了一个集成监控系统,该系统采用34兆瓦的电池存储系统。横河电机提供各种测量和控制技术,通过提高运营效率和远程集中监控多个风力发电系统,确保稳定的电力供应。
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FCN-RTU
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通用数据服务器(VDS)
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过程控制PLC/RTU
我们的过程控制PLC和远程终端单元(RTU)可以帮助用户优化从工厂到远程位置的操作。