IEEE Electrification Magazine - September 2015 - 10

TECHNOLOGY LEADERS

Lib Reused Battery of EV

Figure 16. A 20-kWh Lib.

Figure 15. A HEMs.

storage elements, such as batteries
and heat pumps (Figure 16).
Moreover, a transfer interception
by fast power line communication
(PLC) was examined. By this examination, smooth transfer to independent operation from the utility grid
was successful.

Between micro-EMSs and HEMs,
a communication operation for
asking for demand control from the
utility aide to house appliance side
was also examined. This is the earliest trail of auto demand response
before the design of open auto demand
response (ADR).

In Albuquerque, several distributed generators and energy storage
systems were installed next to the
Aperture Center building in the
Mesa del Sol area (Figures 17 and 18).
Distributed generators, PV systems,
gas engines, and fuel cells were installed (Figure 19). Also, energy storage

NEDO Project
PV Fluctuation Following
Order to Distributed Generators
and Thermal Storage

NEDO Microgrid-EMS

Independent Operation Possible Building
BEMS (Building Energy Management System), PV 50 kW,
Gas Engine (240 kW), Fuel Cell (80 kW),
Lead-Acid Battery (90 kW), Thermal Storage

Power Flow
Monitoring at
the Border of
the Microgrid

Substation

Monitoring
Charge and
Discharge

Other
Buildings

Battery Storage (PNM) PV System (PNM)
*PNM: Public Service of New Mexico Installed

Figure 17. The Albuquerque microgrid system.

10

Monitoring PV Output

I E E E E l e c t r i f i c ati o n M agaz ine / SEPTEMBER 2015

Residential Houses (with Smart Meter)



Table of Contents for the Digital Edition of IEEE Electrification Magazine - September 2015

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IEEE Electrification Magazine - September 2015 - Cover3
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http://www.nxtbook.com/nxtbooks/pes/electrification_september2015
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http://www.nxtbook.com/nxtbooks/pes/electrification_june2014
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