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Company Information:

Company Name:
Intelligent Power & Energy Research Corp
Address:
PO Box 616
Fort Montgomery, NY
Phone:
(845) 781-0023
URL:
EIN:
201423902
DUNS:
172182615
Number of Employees:
6
Woman-Owned?:
No
Minority-Owned?:
No
HUBZone-Owned?:
No

Commercialization:

Has been acquired/merged with?:
N/A
Has had Spin-off?:
N/A
Has Had IPO?:
N/A
Year of IPO:
N/A
Has Patents?:
N/A
Number of Patents:
N/A
Total Sales to Date $:
$ 0.00
Total Investment to Date $
$ 0.00
POC Title:
N/A
POC Name:
N/A
POC Phone:
N/A
POC Email:
N/A
Narrative:
N/A

Award Totals:

Program/Phase Award Amount ($) Number of Awards
SBIR Phase I $239,765.00 3
SBIR Phase II $3,576,681.00 4

Award List:

Intelligent Tactical Electric Grid Control

Award Year / Program / Phase:
2006 / SBIR / Phase I
Award Amount:
$69,890.00
Agency / Branch:
DOD / ARMY
Principal Investigator:
Darrell D. Massie, Chief Technology Officer
Abstract:
The Intelligent Power Controller (IPC) will enable Tactical Electric Grids to operate with greater availability of power to critical loads and higher utilization of limited power generation capacity. Using a priority load assignment, the electrical demand can be managed through appropriate load… More

Develop plug and play architecture for Tactical power grids

Award Year / Program / Phase:
2007 / SBIR / Phase I
Award Amount:
$99,909.00
Agency / Branch:
DOD / OSD
Principal Investigator:
Darrell Massie, Chief Technology Officer
Abstract:
Executive Summary This proposal describes the methodology for applying architecture and intelligent control algorithms to enable plug-and-play capabilities for tactical power grids. The Intelligent Power & Energy Research Corporation (IPERC) and Infotility have developed a modeling system… More

Intelligent Demand Side Management for Electric Grids

Award Year / Program / Phase:
2007 / SBIR / Phase II
Award Amount:
$730,000.00
Agency / Branch:
DOD / ARMY
Principal Investigator:
Darrell D. Massie, Chief Technology Officer
Abstract:
The development of demand limiting technologies and dispatch algorithms is critical for efficient operation of both tactical and commercial power grids equipped with distributed generation sources. The objective of this research project is to create a final design, build and test a prototype… More

Develop plug and play architecture for Tactical power grids

Award Year / Program / Phase:
2009 / SBIR / Phase II
Award Amount:
$748,365.00
Agency / Branch:
DOD / OSD
Principal Investigator:
Darrell Massie, Vice President
Abstract:
Intelligent Power & Energy Research Corporation proposes a novel intelligent power management system that will manage sources and demand for optimal performance. The p intelligent power management system will have the following characteristics: A system that optimally coordinates, manages, and… More

Develop plug and play architecture for Tactical power grids

Award Year / Program / Phase:
2009 / SBIR / Phase II
Award Amount:
$1,348,170.00
Agency / Branch:
DOD / OSD
Principal Investigator:
Darrell Massie, Vice President – (845) 781-0023
Abstract:
Intelligent Power & Energy Research Corporation proposes a novel intelligent power management system that will manage sources and demand for optimal performance. The p intelligent power management system will have the following characteristics: A system that optimally coordinates, manages, and… More

Fuel Efficient Forward Operating Base (FOB)

Award Year / Program / Phase:
2011 / SBIR / Phase I
Award Amount:
$69,966.00
Agency:
DOD
Principal Investigator:
Darrell Massie, Vice President – (845) 781-0023
Abstract:
IPERC will further develop our Intelligent Power Controller (IPC), an intelligent power management system, to reduce fuel consumption, decrease maintenance requirements and improve operational capabilities for the US military. We will refine a plug-and-play power grid that can be used across a broad… More

Fuel Efficient Forward Operating Base (FOB)

Award Year / Program / Phase:
2013 / SBIR / Phase II
Award Amount:
$750,146.00
Agency:
DOD
Principal Investigator:
Darrell Massie, CEO – (845) 781-0023
Abstract:
The technical approach to this project is to design and develop an improved, three-phase grid connect unit (GCU) capable of switching loads up to 100 kW. The GCUs would be used in a system architecture where they allow for groups of loads to be"gathered"under a single generator. When the… More