首页> 外文会议>5th IET International Conference on Renewable Power Generation 2016 >Advanced control of a fully integrated renewable and CHP heated, cooled and powered building
【24h】

Advanced control of a fully integrated renewable and CHP heated, cooled and powered building

机译:对完全集成的可再生和热电联产供暖,制冷和动力建筑物的高级控制

获取原文
获取原文并翻译 | 示例

摘要

Commercial Buildings are no longer just national heat and power network energy loads, but they are becoming part of a smarter grid and include their own heat and power generation too. A building integrated approach of Combined Heat and Power (CHP) generation and photovoltaic power generation (PV) known as Combined Heat and power with PV (CHPV) is emerging as an energy supply solution in the design of sustainable commercial buildings and local energy systems. The merits for the building user/owner of this approach are; to reduce life time energy running costs; reduce carbon emissions to contribute to UK's 2020/2030 climate change targets and provide a more resilient energy supply solution. Soft target markets for CHPV are building clusters such as; public buildings such as hospitals, colleges, universities and buildings and private sector complexes such as retail parks and science parks. The control methodology of CHPV systems is the main research challenge to provide reliable system performance to enhance the successful deployment of these systems. The CHPV solution provides all heating, ventilating and air-conditioning (HVAC) facilities as well as electrical power supply. This power is generated by a locally connected CHP system to a private wire network (PWN) which simultaneously allows the utilisation of building side installed PV power generation to be shared with all buildings in the cluster/complex. This paper presents a novel CHPV system design topology for robust, reliable and high performance control of building temperatures and the local energy system's power supply. This system's topology includes; a PV array installed on the building and backup/supplementary power provided by the national grid. The advanced control system solution presented in this paper, aims to achieve desired building temperatures using thermostatic control whilst simultaneously tracking a specified national grid power demand profile. The results from simulations presented in the paper show the efficacy of the novel control strategy of CHPV to control energy utilisation of the building's heat and power whilst tracking a required national grid power demand.
机译:商业建筑已不再只是国家的热力和电力网络的能源负荷,而是正在成为更智能电网的一部分,并且也包括自己的热力和发电。建筑用热电联产(CHP)和光伏发电(PV)的集成方法(称为“ PVPV热电联产”)正在成为可持续商业建筑和本地能源系统设计中的能源供应解决方案。该方法对建筑用户/所有者的好处是;减少终身能源运行成本;减少碳排放,为英国的2020/2030气候变化目标做出贡献,并提供更具弹性的能源供应解决方案。 CHPV的软目标市场正在建设集群,例如;医院,学院,大学和建筑物等公共建筑,以及零售公园和科学园等私营部门综合体。 CHPV系统的控制方法是提供可靠的系统性能以增强这些系统的成功部署的主要研究挑战。 CHPV解决方案可提供所有供暖,通风和空调(HVAC)设施以及电源。该电力由本地连接的CHP系统生成至专用有线网络(PWN),同时允许与群集/综合体中的所有建筑物共享使用建筑物侧安装的PV发电。本文提出了一种新颖的CHPV系统设计拓扑,可对建筑物温度和本地能源系统的电源进行鲁棒,可靠和高性能的控制。该系统的拓扑包括:安装在建筑物上的光伏阵列以及国家电网提供的备用/辅助电源。本文介绍的高级控制系统解决方案旨在通过恒温控制实现所需的建筑物温度,同时跟踪指定的国家电网电力需求曲线。本文提供的模拟结果表明,CHPV新型控制策略在跟踪建筑物所需的国家电网电力需求的同时,可控制建筑物的热量和电力的能源利用效率。

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