首页> 外文会议>AEIT International Annual Conference >Nanogrid for Home Application for Micro CHP based on Free Piston Stirling Engine
【24h】

Nanogrid for Home Application for Micro CHP based on Free Piston Stirling Engine

机译:基于自由活塞斯特林引擎的微型热电联产家庭应用纳米网格

获取原文

摘要

The paper concerns on a micro Combined Heat and Power system based on Free Piston Stirling Engine (μCHP-FPSE) as prime mover for linear synchronous generator. One of the main problems related with this system is the need of a stable grid connection. Voltage sags or swells are a huge problem, at same way the discontinuity of the heating service in case of blackout as briefly described in the paper. Moreover, the μCHP-FPSE is generally characterized by high purchase costs that increase if a dedicated grid interface converter system is used to overcome the above-mentioned problems. To overcome the drawback caused by the above-mentioned problems and at the same time to reduce the purchase costs, the use of a Nanogrid for Home Application is proposed. The considered Nanogrid for Home Application consists of several converters, which are suitably controlled and interfaced to optimal manage the power flows. The operation of the Nanogrid is based on the use of an IGBT integrated intelligent power module, the related gate drivers and cooling technology in a set-up. This set-up realizes a compact hybrid system that integrate all in one a photovoltaic generator, a storage system, a μCHP-FPSE and a UPS system to supply uninterruptible loads.In the paper, after a brief description of the μCHP-FPSE behaviour, the Nanogrid, its possible configurations and the high costs of the μCHP-FPSE are analysed; then the optimal design of the whole system, considering the integration and interfacing of the μCHP-FPSE using the Nanogrid for Home Application is carried out. Finally, laboratory tests performed on a pre-industrial prototype are presented and discussed.
机译:本文研究了一种基于自由活塞斯特林发动机(μCHP-FPSE)作为线性同步发电机原动机的微型热电联产系统。与该系统有关的主要问题之一是需要稳定的电网连接。电压骤降​​或骤升是一个巨大的问题,与停电情况一样,如本文中简要描述的那样,在停电的情况下,供热服务的不连续性也是如此。而且,μCHP-FPSE通常以高购买成本为特征,如果使用专用的网格接口转换器系统来克服上述问题,则购买成本会增加。为了克服由上述问题引起的缺点并同时降低购买成本,提出了将纳米网格用于家庭应用。所考虑的用于家庭应用的Nanogrid由多个转换器组成,这些转换器经过适当控制和连接以优化管理功率流。 Nanogrid的运行基于对IGBT集成智能电源模块,相关栅极驱动器和冷却技术的使用。该设置实现了一个紧凑的混合系统,该系统将光伏发电器,存储系统,μCHP-FPSE和UPS系统集成在一起,以提供不间断负载。分析了Nanogrid,其可能的配置以及μCHP-FPSE的高成本;然后,考虑使用家用纳米网的μCHP-FPSE的集成和接口,对整个系统进行优化设计。最后,介绍并讨论了在工业化前原型上进行的实验室测试。

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