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Developing Hybrid and Sustainable Energy Solutions for the Increasing Power and Mobility Needs of the Warfighter ,[object Object],P. D. Madden, PE,[object Object],CEO/General Manager,[object Object],Energy Technologies, Inc.,[object Object],T. D. Lowe, PhD,[object Object],VP of Sales,[object Object],Energy Technologies, Inc.,[object Object]
Wikipedia Definitions:,[object Object],Hybrid power systems, like the name implies, combine two or more modes of electricity generation together.,[object Object],Sustainable energy sources are most often regarded as including all renewable energy sources, such as hydroelectricity, solar energy, wind energy, wave power, geothermal energy, bioenergy, and tidal power.,[object Object]
“The U.S. Defense Department must change the way it uses energy on the battlefield as conflicts become longer and more expeditionary.”,[object Object],Deputy Defense Secretary William Lynn, April 26, 2011.,[object Object]
Traditional Deployed Power Sources,[object Object],[object Object]
  Tactical Quiet Generators
  Newer Intelligent Generators,[object Object]
  Wind Energy
  Fuel Cells,[object Object]
  Flexible Panels	Amorphous Silicon (a-Si)	Copper Indium Gallium Selenide (CIGS)	Cadmium Telluride (CdTe),[object Object]
Flexible Solar Panels,[object Object],• Most practical for deployable applications• 1 – 4500 watt panels• Much lighter weight than rigid panels• Less prone to damage vs. rigid panels • Flexible and can be folded at seams• Durable waterproof & UV resistant • Operating temperature range of -40° to 80°C • Complies with environmental Mil-Std 810F • Most can operate with punctures & holes at reduced power ,[object Object]
Ten Panel Solar Power System,[object Object],Solar Charge Controller,[object Object],Solar Panel Storage,[object Object],Solar Panel J-Box,[object Object],Batteries &Power Conversion,[object Object]
Solar Fly System Set Up,[object Object]
Typical Types of Wind Turbines,[object Object],[object Object]
  Vertical Axis Wind Turbine (VAWT),[object Object]
Transportable Wind Turbines,[object Object],•  Currently, HAWT are the most practical for deployment•  Compact size 3 or 5-blade turbines produce up to 3500 Watts•  Most models weigh 50 lbs. or less•  Quieter than typical wind turbines •  Available carbon fiber telescoping masts are strong yet light    weight. •  The entire system can be easily setup     by two people in only a few minutes.,[object Object]
Typical Types of Fuel Cells,[object Object],[object Object]
  Direct methanol (DMFC)
  Alkaline (AFC)
  Phosphoric Acid (PAFC)
  Solid Oxide (SOFC)
  Molten Carbonate (MCFC),[object Object]
Hybrid Powered Base,[object Object],DC from Tactical Vehicles,[object Object],Large Scale Solar Array,[object Object],Wind Turbine,[object Object],Micro Grid Controller Module,[object Object],Solar Panel Awnings,[object Object],Fuel Cell Power Plant,[object Object],UPS,[object Object],Hydrogen Fuel Reformer,[object Object],UPS,[object Object]
System Architecture Based on Modular MicroCell Design,[object Object]
Hybrid and sustainable energy management
System Electrical and Control Interface Diagram,[object Object]
The system is comprised of the following modules:,[object Object],Master Control & Configuration Display Module (MCCDM),[object Object],Hybrid Intelligent Micro Grid Controller (HIGC),[object Object],Generator Interface/Control Module (GIFC),[object Object],Intelligent AC Transfer Switch Module (ITSM),[object Object],Solar DC Charge Controller (SCCM),[object Object],Wind Generator DC Charge Controller (WCCM),[object Object],Vehicle NATO Connector Interface DC Charge Controller Module (VCCM),[object Object]
The system is comprised of the following modules:(continued),[object Object],Energy Storage Module & Controller (ESMC) Li-Ion Based,[object Object],Intelligent AC Power Distribution Unit (IAPDU),[object Object],AC PDU Interface Module (APDUIM),[object Object],Intelligent DC Power Distribution Unit (IDPDU),[object Object],DC PDU Interface Module (DPDUIM),[object Object],DC to AC Inverter Module Single Phase (IMSP),[object Object],DC to AC Inverter Module Three Phase (IMTP),[object Object],AC to DC Charger Module (ADCM),[object Object]
Master Control & Configuration Display Module (MCCDM),[object Object],[object Object]
  Tactical based Laptop computer or a larger Desk Top     depending on system size.
  Menu based human interface and configuration    data management.
  Allows specific configurations for power generation,    load balancing, automated module fault restoration   and system optimization.
  Data element modules contain and support    multi-level configuration access protection.  This module has three basic functions: ,[object Object],Configuration Set Up,[object Object],Monitoring,[object Object],Performance and Data Gathering,[object Object]
Micro Grid Computer System Software Architecture,[object Object]
N2 Chart with Micro Grid States and Modes,[object Object]
Hybrid Intelligent Grid Controller (HIGC),[object Object],[object Object]
 Modular and can be configured from 15 kW to over 750 kW based on  application
 Module takes the input power resource and distributes and controls as  configured without any dependence on additional controller modules
 Interface to support setting up a configuration via a portable device  when the master control and   configuration display module is not   configured in small applications
 Default configuration/operations reside  in this module for all battle short   algorithmic functions and actions,[object Object]
Intelligent AC Transfer Switch Module (ITSM),[object Object],The Intelligent Transfer Switch Module interfaces to power generating sources and is configured in a fall back configuration that will allow the power to be distributed to the AC support bus ,[object Object],ITSM has an intelligent interface that will operate based on the command requirements of the Hybrid Intelligent Grid Controller,[object Object],Upon loss of generating power, the HIGC can command the ITSM to disconnect from the generator and connect battery supplied inverters to the AC bus allowing continued operation of critical loads ,[object Object],ITSM can support a local grid power sources and switch to the grid power to the AC support bus ,[object Object],ITSM available in either 1-phase or 3-phase configurations,[object Object]
Solar DC Charge Controller (SCCM) ,[object Object],[object Object]
  Ability for programmable or manual recovery
  Seven standard charging or load control configurations
  Intelligent interface to HIGC
  Continuous self-testing and fault    notification
  Visual LED status indicators
  Remote battery sense capability
  Remote battery temperature sense,[object Object]
Wind Generator DC Charge Controller (WCCM) ,[object Object],[object Object]
  Ability for programmable or manual load limiting configuration
  Three standard charging or load control configurations
  Intelligent interface to HIGC
  Continuous self-testing and fault notification
  Visual LED status indicators

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Hybrid and sustainable energy management

  • 1.
  • 2.
  • 3.
  • 4.
  • 5. Tactical Quiet Generators
  • 6.
  • 7. Wind Energy
  • 8.
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 17. Direct methanol (DMFC)
  • 18. Alkaline (AFC)
  • 19. Phosphoric Acid (PAFC)
  • 20. Solid Oxide (SOFC)
  • 21.
  • 22.
  • 23.
  • 25.
  • 26.
  • 27.
  • 28.
  • 29. Tactical based Laptop computer or a larger Desk Top depending on system size.
  • 30. Menu based human interface and configuration data management.
  • 31. Allows specific configurations for power generation, load balancing, automated module fault restoration and system optimization.
  • 32.
  • 33.
  • 34.
  • 35.
  • 36. Modular and can be configured from 15 kW to over 750 kW based on application
  • 37. Module takes the input power resource and distributes and controls as configured without any dependence on additional controller modules
  • 38. Interface to support setting up a configuration via a portable device when the master control and configuration display module is not configured in small applications
  • 39.
  • 40.
  • 41.
  • 42. Ability for programmable or manual recovery
  • 43. Seven standard charging or load control configurations
  • 44. Intelligent interface to HIGC
  • 45. Continuous self-testing and fault notification
  • 46. Visual LED status indicators
  • 47. Remote battery sense capability
  • 48.
  • 49.
  • 50. Ability for programmable or manual load limiting configuration
  • 51. Three standard charging or load control configurations
  • 52. Intelligent interface to HIGC
  • 53. Continuous self-testing and fault notification
  • 54. Visual LED status indicators
  • 55. Remote battery sense capability
  • 56. Remote battery temperature sense
  • 57. Integrated or remote excess power burn off modules
  • 58.
  • 59. Ability for programmable or manual recovery
  • 60. Four standard charging or load control configurations
  • 61. Intelligent interface to HIGC
  • 62. Visual LED status indicators
  • 63. Remote battery sense capability
  • 64.
  • 65.
  • 66.
  • 67.
  • 68.
  • 69.
  • 70.
  • 71.
  • 72.
  • 73. Will operate based on the command requirements of the Hybrid Intelligent Grid Controller and/or manual mode
  • 74. Algorithms include assigned priority load shedding and sequential start-up and shut-down procedures
  • 75. AC version available in either 1-phase or 3-phase configurations
  • 76.
  • 77.
  • 78.
  • 79.
  • 80. Available in either 12, 24 or 48 VDC input configurations
  • 81. Monitoring and control interface to Hybrid Intelligent Grid Controller
  • 82.
  • 83.
  • 84. Available in either 12, 24 or 48 VDC output configurations
  • 85. Monitoring and control interface to Hybrid Intelligent Grid Controller
  • 86. Configurable to allow for accelerated charge rates for the batteries
  • 87.
  • 88.
  • 89.
  • 90.
  • 91.
  • 92.
  • 94.