Method and apparatus for converting human power to electrical power
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
F02B-063/04
F02B-063/00
F03G-007/08
F03G-007/00
H02K-007/10
H02K-007/18
출원번호
US-0824868
(2007-07-03)
등록번호
US-7504737
(2009-03-17)
발명자
/ 주소
Vasilovich,Linda A.
Hilgner,Richard K.
출원인 / 주소
Vasilovich,Linda A.
대리인 / 주소
Khorsandi Patent Law Group, A Law Corporation
인용정보
피인용 횟수 :
12인용 특허 :
32
초록▼
In an exemplary briefcase embodiment as depicted in FIG. 48, exemplary batteries (525) and (526) would be contained in very close proximity to an exemplary twelve-coil PMG assembly (300'). The exemplary twelve-coil PMG assembly (300') would comprise a twelve-coil stator (not visible) in between tw
In an exemplary briefcase embodiment as depicted in FIG. 48, exemplary batteries (525) and (526) would be contained in very close proximity to an exemplary twelve-coil PMG assembly (300'). The exemplary twelve-coil PMG assembly (300') would comprise a twelve-coil stator (not visible) in between two rotors (e.g., 217b). In an exemplary briefcase embodiment, exemplary batteries (525) and (526) would be separated from the exemplary twelve-coil PMG assembly (300') by magnetic shielding, including internal side magnetic shielding (510); exemplary batteries (525) and (526) would be further shielded from the magnetic flux of the exemplary twelve-coil PMG assembly (300') by, for example, open-face magnetic shielding panel (511), magnetic shielding internally encased in the sides and bottom of main base casing (507), and by magnetically shielded conduit (not shown). In the exemplary briefcase embodiment, exemplary batteries (525) and (526) would abut, that is, would be adjacent, or closely adjacent, to one face of internal side magnetic shielding (510); portions of the exemplary twelve-coil PMG assembly (300') would abut, that is, would be adjacent, or closely adjacent, to the opposite face of internal side magnetic shielding (510). A single large pulley wheel (534) would be mounted on a drive shaft (503) that would be connected to a manually operated crank (not visible) to turn a small pulley wheel (531) with a single pulley V-belt (532). Rotation of the small pulley wheel (531) would in turn rotate the generator shaft (521) to turn the rotors (217b and 217a (not visible)) to generate power to be stored in exemplary batteries (525 and 526).
대표청구항▼
What is claimed is: 1. A device for generating and storing electrical power, said device comprising: an at least a first battery for storing electrical power; an at least a first bridge rectifier connected to the at least the first battery; a permanent magnet generator alternator adapted for genera
What is claimed is: 1. A device for generating and storing electrical power, said device comprising: an at least a first battery for storing electrical power; an at least a first bridge rectifier connected to the at least the first battery; a permanent magnet generator alternator adapted for generating three-phase alternating electrical current, wherein the permanent magnet generator alternator is located in close proximity to the at least the first battery, the permanent magnet generator alternator comprising: a first structure comprising a plurality of electricity-conducting structures mounted in a substantially circular pattern equidistant from a first point in the first structure, each of the electricity-conducting structures of the plurality of electricity-conducting structures comprising a material adapted for conducting electricity, each of the electricity-conducting structures comprising a portion through which a magnetic flux can pass, wherein each of the electricity-conducting structures of the plurality of electricity-conducting structures is connected to the at least the first bridge rectifier, and wherein the plurality of electricity-conducting structures comprises a number of electricity-conducting structures that is divisible by the number three and is also divisible by the number two; two rotatable structures, coaxial to the first point of the first structure, mounted on each side of the first structure, wherein the first structure is stationary in relation to a rotation of the two rotatable structure, each rotatable structure comprising a respective plurality of permanent magnets mounted in a substantially circular pattern substantially equidistant from a respective center point in the respective rotatable structure such that the mounted permanent magnets expose alternating exposed magnetic poles, wherein the plurality of permanent magnets comprises a number of permanent magnets that is divisible by the number two; an aligning structure for aligning in counterposed magnet pairs, the alternating exposed magnetic poles of the respective permanent magnets mounted on one of the respective rotatable structures in counterposed magnetic polarity to the alternating exposed magnetic poles of the respective permanent magnets mounted on the respective opposing rotatable structure; a rotating structure for rotating the counterposed magnet pairs of the two rotatable structures relative to the electricity-conducting structures of the first structure; a manually operable crank connected to the rotating structure; and a first portion of magnetic shielding located between the permanent magnet generator alternator and the at least the first battery, wherein at least a portion of the permanent magnet generator alternator abuts the first portion of magnetic shielding, and wherein at least a portion of the first battery abuts the first portion of magnetic shielding. 2. The device of claim 1, wherein the number of electricity-conducting structures is greater than the number of permanent magnets. 3. The device of claim 1, wherein the rotating structure comprises: a first pulley wheel comprising a first pulley wheel center; a second pulley wheel comprising a second pulley wheel center; a first pulley wheel belt; a first shaft connected through the first pulley wheel center; wherein the manually operable crank is connected to the first shaft for rotating the first shaft; and a second shaft connected through the second pulley wheel center and extending through the respective center point in each of the respective rotatable structures and through the first point in the first structure. 4. The device of claim 1, wherein a star wiring connects the electricity-conducting structures of the plurality of electricity-conducting structures to the at least the first bridge rectifier. 5. The device of claim 1, said device further comprising: a first cutoff switch connected between the at least the first bridge rectifier and the at least the first battery, the first cutoff switch operable in an off position to stop a flow of electrical current charge from the first bridge rectifier to the at least the first battery, and to stop a drain of a charge from the at least the first battery to the first bridge rectifier. 6. The device of claim 1, said device further comprising: a docking station for connecting separate batteries for charging. 7. A device for generating and storing electrical power, said device comprising: an at least a first battery for storing electrical power; an at least a first bridge rectifier connected to the at least the first battery; a permanent magnet generator alternator adapted for generating alternating electrical current, wherein the at least the first battery is located within close proximity to the permanent magnet generator alternator, the permanent magnet generator alternator comprising: a first rotatable structure mounted on an axis, the first rotatable structure comprising a first plurality of permanent magnets mounted in the first rotatable structure, a second rotatable structure, the second rotatable structure comprising a second plurality of permanent magnets mounted in the second rotatable structure, the second rotatable structure mounted on the axis so that the first plurality of permanent magnets mounted in the first rotatable structure and the second plurality of permanent magnets mounted in the second rotatable structure, comprise counterposed pairs, a stationary structure mounted on the axis between the first rotatable structure and the second rotatable structure, the stationary structure comprising a plurality of electricity-conducting structures mounted in the stationary structure, wherein each electricity-conducting structure of the plurality of electricity-conducting structures is connected to the at least the first bridge rectifier, and wherein the at least the first bridge rectifier is connected to the at least the first battery, and a rotating structure for rotating the counterposed magnet pairs of the two rotatable structures relative to the electricity-conducting structures of the first structure; a manually operable crank connected to the rotating structure; and a first portion of magnetic shielding located between the permanent magnet generator alternator and the at least the first battery, wherein at least a portion of the permanent magnet generator alternator abuts the first portion of magnetic shielding, and wherein at least a portion of the first battery abuts the first portion of magnetic shielding. 8. The device of claim 7, wherein the number of electricity-conducting structures is greater than the first plurality of permanent magnets. 9. The device of claim 7, wherein a star wiring connects the electricity-conducting structures of the plurality of electricity-conducting structures to the at least the first bridge rectifier. 10. The device of claim 7, said device further comprising: a first cutoff switch connected between the at least the first bridge rectifier and the at least the first battery, the first cutoff switch operable in an off position to stop a flow of electrical current charge from the first bridge rectifier to the at least the first battery, and to stop a drain of a charge from the at least the first battery to the first bridge rectifier. 11. The device of claim 7, said device further comprising: a docking station for connecting separate batteries for charging.
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