首页> 外文会议>2018 IEEE International Conference on Industrial Electronics for Sustainable Energy Systems >Hardware-in-the-loop simulation based testing of power conditioning systems
【24h】

Hardware-in-the-loop simulation based testing of power conditioning systems

机译:基于硬件在环仿真的功率调节系统测试

获取原文
获取原文并翻译 | 示例

摘要

Although it is very popular among environmentalists, the replacement of fossil-fuel based generation with new age renewable energy (RE) creates problems in grid operation and stability. The intermittent nature of these resources as well as their inverter-based connection structure hinder the traditional operation of electrical networks. Consequently, the RE penetration level has been kept low to limit their impact on the infrastructure. In order to maximize RE potential, novel solutions are required and smart inverters with advanced inverter capabilities can be just that. Coupled with battery energy storage systems (BESS), they can manage RE intermittent behavior and provide auxiliary services such as frequency and voltage support. However, large scale deployment of these power conditioning systems (PCS) at distribution level can create enormous problems. To cope with this challenge, their behavior should be closely scrutinized and interoperable operation must be guaranteed with a series of tests before actual deployment. Smart Grid International Research Facility Network (SIRFN) has the services of 15 distinct labs to develop standard testing protocols and knowledge on best practices. A consortium of labs around the globe ran tests in their facilities and developed standard testing procedures for BESS. Building on that experience, IEEE P2004 project aims at developing standard hardware-in-the-loop (HIL) testing procedures for PCS. This will improve the testing capabilities since different systems can be easily modeled and verified in HIL. This paper documents these standardized testing efforts and the role of Fukushima Renewable Energy Institute, a part of SIRFN and IEEE P2004, in achieving these goals.
机译:尽管它在环保主义者中非常受欢迎,但是用新时代的可再生能源(RE)替代基于化石燃料的发电会在电网运行和稳定性方面造成问题。这些资源的间歇性及其基于逆变器的连接结构阻碍了电网的传统运行。因此,可再生能源的渗透率一直保持较低水平,以限制其对基础设施的影响。为了最大限度地提高可再生能源的潜力,需要新颖的解决方案,而具有先进逆变器功能的智能逆变器也可以做到这一点。结合电池储能系统(BESS),它们可以管理RE间歇性行为并提供辅助服务,例如频率和电压支持。但是,在配电级大规模部署这些功率调节系统(PCS)会产生巨大的问题。为了应对这一挑战,应仔细检查其行为,并且必须在实际部署之前通过一系列测试来保证可互操作性。智能电网国际研究设施网络(SIRFN)为15个不同的实验室提供服务,以开发标准测试协议和最佳实践知识。全球实验室联合会在其设施中进行了测试,并开发了BESS的标准测试程序。基于这一经验,IEEE P2004项目旨在为PCS开发标准的硬件在环(HIL)测试程序。由于可以在HIL中轻松地对不同的系统进行建模和验证,因此这将提高测试能力。本文记录了这些标准化的测试工作以及SIRFN和IEEE P2004的一部分福岛可再生能源研究所在实现这些目标中的作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号