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Real Time Net Zero Energy Building Energy Manager with Heterogeneous Wireless Ad hoc Network Adaptable To IoT Architectures

机译:具有适用于IoT架构的异构无线Ad hoc网络的实时净零能耗建筑能耗管理器

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摘要

Significant energy consumption by buildings from utility grid has made researchers revisit existing Building Energy Management Systems (BEMS). Most of the developing countries have taken a green initiative of Net Zero Energy Buildings (NZEB) to reduce carbon foot print and fast depletion of conventional energy sources. Though the integration of solar and wind based systems to grid is successful in recent years, residential building energy management systems with renewable energy sources is still an evolving research area. Monitoring, control and actuation systems should be tightly coupled with the help of any to any device communication namely Internet of Things (IoT) to realize an efficient NZEB. In this paper a real time NZEB is proposed and developed with bi-directional wireless sensor and actuation system. Proposed NZEB central server collects and maintains a database of on site solar generation, battery state of charge and load power consumption data of a building with help of IEEE 802.15.4 and IEEE 802.11 wireless networks. Proposed system was deployed as a test bed with sensing, control, actuation and server modules and connecting them with a bi-directional wireless network architecture similar to IoT. Data observed at experimental test bed confirm that developed system can estimate on site solar power generation, state of charge on battery bank and load power consumption with negligible error. A simulation study with experimental data collected at NZEB test bed shows that NZEB can optimally schedule loads between local generation and utility grid thereby minimizing peak demand on the grid.
机译:公用电网中建筑物的大量能源消耗使研究人员重新审视了现有的建筑物能源管理系统(BEMS)。大多数发展中国家已经采取了“零净能耗建筑”(NZEB)的绿色倡议,以减少碳足迹和传统能源的快速消耗。尽管近年来将基于太阳能和风能的系统集成到电网中很成功,但具有可再生能源的住宅建筑能源管理系统仍是一个不断发展的研究领域。监视,控制和执行系统应在任何设备通信(即物联网(IoT))的帮助下紧密结合,以实现高效的NZEB。本文提出并开发了一种实时NZEB,它具有双向无线传感器和驱动系统。拟议中的NZEB中央服务器借助IEEE 802.15.4和IEEE 802.11无线网络收集并维护一个建筑物的现场太阳能发电,电池充电状态和负载功耗数据的数据库。拟议的系统被部署为具有传感,控制,致动和服务器模块的测试平台,并将它们与类似于IoT的双向无线网络架构连接起来。在实验台上观察到的数据证实,开发的系统可以估算出现场的太阳能发电量,电池组的充电状态以及负载功耗,而误差可忽略不计。通过在NZEB测试床上收集的实验数据进行的仿真研究表明,NZEB可以在本地发电和公用电网之间最佳地调度负荷,从而最大程度地降低电网的峰值需求。

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