Title :
Design and implementation of a high-fidelity AC metering network
Author :
Jiang, Xiaofan ; Dawson-Haggerty, Stephen ; Dutta, Prabal ; Culler, David
Author_Institution :
Comput. Sci. Div., Univ. of California, Berkeley, CA, USA
Abstract :
We present the architecture, design, and preliminary evaluation of ACme, a wireless sensor and actuator network for monitoring AC energy usage and controlling AC devices in a large and diverse building environment. The ACme system consists of three tiers: the ACme node which provides a metering and control interface to a single outlet, a network fabric which allows this interface to be exported to arbitrary IP endpoints, and application software that uses this networked interface to provide various power-centric applications. The ACme node integrates an Epic core module with a dedicated energy metering IC to provide real, reactive, and apparent power measurements, with optional control of an attached load. The network comprises a complete IPv6/6LoWPAN stack on every node and an edge router that connects to other IP networks. The application tier receives and stores readings in a database and uses a Web server for visualization. Nodes automatically join the IPv6 subnet after being plugged in, and begin interactions with the application layer. We evaluate our system in a preliminary green building deployment with 49 nodes spread over several floors of a Computer Science Building and present energy consumption data from this preliminary deployment.
Keywords :
IP networks; energy consumption; personal area networks; telecommunication network routing; wireless sensor networks; AC metering network; ACme; IPv6/6LoWPAN; actuator network; application layer; arbitrary IP endpoints; edge router; energy consumption; wireless sensor network; Actuators; Application software; Automatic control; Buildings; Control systems; Fabrics; IP networks; Monitoring; Power measurement; Wireless sensor networks; AC; Architecture; Energy; Green; Measurement; Meter; Mote; Platform; Power; Sensor Network; Wireless;
Conference_Titel :
Information Processing in Sensor Networks, 2009. IPSN 2009. International Conference on
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4244-5108-1
Electronic_ISBN :
978-1-60558-371-6