Energy Management Control Systems for Electric and Hybrid Electric Vehicles
- 总结
- Researchers at Purdue University have developed an electric powered and regenerative braking power management system for an electric vehicle of any size, similar to a hybrid electric-human powered recumbent cycle driven by a brushless DC hub motor. The regenerated braking energy is captured using ultracapacitors and later transferred to the auxiliary battery or used directly to power the vehicle as needed. Because ultracapacitors can absorb large amounts of energy very quickly, they offer significant efficiency advantages over battery only regenerative braking systems. When desired, the flow of energy can be reversed in order to power the vehicle, especially in situations where sudden acceleration is required. The system is also modular. By using a unique printed circuit board similar to a mother board of a personal computer, users are able to add different functions by connecting auxiliary devices as needed. Lastly, this system, working additively with the human powered aspect of the travel, adds to the overall riding experience, leading to an increased value of the electric vehicle.
- 技术优势
- Stores captured energy to ultracapacitor to recharge the battery or for later useFaster acceleration than battery only Modular and customizable to all electric-powered and hybrid-powered vehicles
- 技术应用
- Clean EnergyGreen TechnologyEnergy Storage
- 详细技术说明
- Athula KulatungaPurdue Engineering TechnologyGrid Efficiency LabIR PEDAL Lab
- *Abstract
-
- *Background
- The global increase in energy prices has led to renewed interest in several fields of research. Increasing energy prices motivate scientists, engineers, and technologists to develop new ways of harnessing energy to improve overall system efficiency. Because transportation is such a major consumer of energy, even small improvements in efficiency can have a large impact on overall energy consumption. The use of electric vehicles to improve how we use energy for transportation is the challenge at hand.
- *IP Issue Date
- Oct 29, 2013
- *IP Type
- Utility
- *Stage of Development
- Prototype Testing Validated
- *Web Links
- Purdue Office of Technology CommercializationPurdueInnovation and EntrepreneurshipAthula KulatungaPurdue Engineering TechnologyGrid Efficiency LabIR PEDAL Lab
- 国家
- United States
- 申请号码
- 8,567,547
- 国家/地区
- 美国

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