Electric vehicle
09776492 ยท 2017-10-03
Assignee
Inventors
Cpc classification
B60K6/00
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
B60K2006/123
PERFORMING OPERATIONS; TRANSPORTING
H02J7/1415
ELECTRICITY
International classification
B60K1/04
PERFORMING OPERATIONS; TRANSPORTING
H02J7/14
ELECTRICITY
B60K6/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An electric vehicle (1) includes a charging circuit (11), a battery (12) and a driving electric motor (13), and an air compressor (14), an air storage tank (15), a turbine (16) and a generator (17). Air is compressed and stored in the air storage tank when the air compressor starts up. The air storage tank is provided with a switch valve, and under the control of the switch valve the air stored in the air storage tank is fed to the turbine. By means of providing an air compressor, an air storage tank, a turbine and a generator, and using air energy to generate power and using the battery to supply power in parallel, the continuous mileage of the electric vehicle is increased. In addition, the service life of the battery is prolonged, because the battery is used in a low depth of charge/low depth of discharge manner.
Claims
1. An electric vehicle, comprising: a charging circuit, a battery and a driving electric motor, wherein: the charging circuit, the battery and the driving electric motor are connected together in sequence; the electric vehicle further comprises: an air compressor, an air storage tank, a turbine and a generator, wherein the air compressor, the air storage tank, the turbine and the generator are connected together in sequence, and gas discharged from the turbine is guided to the battery to exhaust; air is compressed and stored in the air storage tank when the air compressor starts up; the air storage tank is provided with a switch valve, and the air stored in the air storage tank is fed to the turbine under the control of the switch valve; the turbine converts air energy of introduced air into kinetic energy to drive the generator to generate electrical power; and the generator is connected with the driving electric motor or the battery, for supplying power to the driving electric motor or for charging the battery during power generation.
2. The electric vehicle according to claim 1, wherein, the generator is connected respectively with the driving electric motor and the battery to supply power to the driving electric motor and to charge the battery during power generation.
3. The electric vehicle according to claim 2, further comprising: a power supply control apparatus, wherein, the power supply control apparatus comprises: a detection unit for detecting an amount of power generated by the generator and an amount of power required by the driving electric motor during running of the electric vehicle; a comparison unit for comparing an amount of generated power with an amount of required power, wherein, when the amount of generated power is greater than the amount of required power, the comparison unit sends out a first control signal, and otherwise, the comparison unit sends out a second control signal; and a control unit for, when receiving the first control signal, controlling the generator to provide an amount of the generated power equal to the amount of required power to the driving electric motor and to input a portion of the amount of generated power exceeding the amount of required power to the battery to charge the battery, and when receiving the second control signal, controlling the generator to provide all of the amount of generated power to the driving electric motor.
4. The electric vehicle according to claim 2, further comprising: a decompression valve, wherein: the decompression valve is connected between the air storage tank and the turbine, the decompression valve is used for decompressing air outputted by the air storage tank.
5. The electric vehicle of claim 2, wherein: gas from the turbine is exhausted to a passenger space of the electric vehicle under the control of the switch valve.
6. The electric vehicle according to claim 2, wherein, the air compressor is a direct current air compressor or an alternating current air compressor.
7. The electric vehicle according to claim 2, wherein, the generator is a direct current generator or an alternating current generator.
8. The electric vehicle according to claim 1, further comprising: a decompression valve, wherein: the decompression valve is connected between the air storage tank and the turbine, the decompression valve is used for decompressing air outputted by the air storage tank.
9. The electric vehicle according to claim 1, wherein: gas from the turbine is exhausted to a passenger space of the electric vehicle under the control of the switch valve.
10. The electric vehicle according to claim 1, wherein, the air compressor is a direct current air compressor or an alternating current air compressor.
11. The electric vehicle according to claim 1, wherein, the generator is a direct current generator or an alternating current generator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In order to more clearly illustrate embodiments of the present invention or technical solutions in existing technology, drawings assisting in describing the embodiments or existing technology are briefly introduced below. It is apparent that the drawings in the following description are only some embodiments of the present invention. A person having ordinary skills in the art can also obtain other drawings on the basis of these drawings without paying any creative work.
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DETAILED DESCRIPTION OF ILLUSTRATED EMBODIMENTS
(8) The novel electric vehicle provided by embodiments of the present invention can have an increased continuous mileage and a prolonged service life of the battery, and meanwhile is beneficial to the environment protection.
(9) Technical solutions in embodiments of the present invention will be illustrated clearly and entirely with the aid of the drawings in the embodiments of the present invention. Obviously, the described embodiments herein are only a part of embodiments, but not all of embodiments. Based on the embodiments of the present invention, all of other embodiments obtained by a skilled person in the art without paying any creative work should fall within the protection scope of the present invention.
(10) Refer to
(11) When the charging circuit 11 is connected to an external electrical power, the battery 12 is charged and supplies power to the driving electric motor 13.
(12) When connected to an external electrical power, the air compressor 14 may start up, and air is compressed and stored in the air storage tank 15.
(13) Specifically, the air compressor 14 is a direct current air compressor or an alternating current air compressor.
(14) The air storage tank 15 is provided with a corresponding switch valve, and under the control of the switch valve the stored air is fed to the turbine 16.
(15) The turbine 16 converts air energy of the introduced air into kinetic energy, thereby driving the generator 17 to generate electrical power.
(16) The generator 17 is used for supplying power to the driving electric motor 13 during power generation.
(17) Specifically, the generator is a direct current generator or an alternating current generator.
(18) In implementation of the novel electric vehicle provided by one embodiment of the present invention, the following beneficial effects can be achieved.
(19) By providing an air compressor, an air storage tank, a turbine and a generator, air energy can be utilized to generate power in parallel with power supplied by the battery. Thus, the continuous mileage of the electric vehicle is increased without causing environmental pollution. Meanwhile, due to the introduction of power generated by air energy, the battery is not a signal power supply and does not need to be continuously discharged for long periods. As a result, the battery can have an effect of shallow charge/discharge, and so the service life of the battery can be prolonged.
(20) Refer to
(21) When the charging circuit 21 is connected to an external electrical power, the battery 22 is charged and supplies power to the driving electric motor 23.
(22) When connected to an external electrical power, the air compressor 24 may start up, and air is compressed and stored in the air storage tank 25.
(23) Specifically, the air compressor 24 is a direct current air compressor or an alternating current air compressor.
(24) The air storage tank 25 is provided with a corresponding switch valve, and under the control of the switch valve the stored air is fed to the turbine 26.
(25) The turbine 26 converts air energy of the introduced air into kinetic energy, thereby driving the generator 27 to generate electrical power.
(26) The generator 27 is used for charging the battery 22 during power generation.
(27) Specifically, the generator is a direct current generator or an alternating current generator.
(28) In implementation of the novel electric vehicle provided by one embodiment of the present invention, the following beneficial effects can be achieved.
(29) By providing an air compressor, an air storage tank, a turbine and a generator, air energy can be utilized to generate power in parallel with power supplied by the battery. Thus, the continuous mileage of the electric vehicle is increased without causing environmental pollution. Meanwhile, due to the introduction of power generated by air energy, the battery is not a signal power supply and does not need to be continuously discharged for long periods. As a result, the battery can have an effect of shallow charge/discharge, and so the service life of the battery can be prolonged.
(30) Refer to
(31) When the charging circuit 31 is connected to an external electrical power, the battery 32 is charged and supplies power to the driving electric motor 33.
(32) When connected to an external electrical power, the air compressor 34 may start up, and air is compressed and stored in the air storage tank 35.
(33) Specifically, the air compressor 34 is a direct current air compressor or an alternating current air compressor.
(34) The air storage tank 35 is provided with a corresponding switch valve, and under the control of the switch valve the stored air is fed to the turbine 36.
(35) The turbine 36 converts air energy of the introduced air into kinetic energy, thereby driving the generator 37 to generate electrical power.
(36) The generator 37 is used for supplying power to the driving electric motor 33 and meanwhile charging the battery 32 during power generation.
(37) Specifically, the generator is a direct current generator or an alternating current generator.
(38) In implementation of the novel electric vehicle provided by one embodiment of the present invention, the following beneficial effects can be achieved.
(39) By providing an air compressor, an air storage tank, a turbine and a generator, air energy can be utilized to generate power in parallel with power supplied by the battery. Thus, the continuous mileage of the electric vehicle is increased without causing environmental pollution. Meanwhile, due to the introduction of power generated by air energy, the battery is not a signal power supply and does not need to be continuously discharged for long periods. As a result, the battery can have an effect of shallow charge/discharge, and so the service life of the battery can be prolonged.
(40) Refer to
(41) When the charging circuit 41 is connected to an external electrical power, the battery 42 is charged and supplies power to the driving electric motor 43.
(42) When connected to an external electrical power, the air compressor 44 may start up, and air is compressed and stored in the air storage tank 45.
(43) Specifically, the air compressor 44 is a direct current air compressor or an alternating current air compressor.
(44) The air storage tank 45 is provided with a corresponding switch valve, and under the control of the switch valve the stored air is fed to the turbine 46.
(45) The turbine 46 converts air energy of the introduced air into kinetic energy, thereby driving the generator 47 to generate electrical power.
(46) The generator 47 is used for supplying power to the driving electric motor 43 and/or charging the battery 42 by the power supply control apparatus 48 during power generation.
(47) Specifically, the generator is a direct current generator or an alternating current generator.
(48) The power supply control apparatus 48 is used for controlling the amount of power generated by the generator 47 to supply power to the driving electric motor 43 and/or charge the battery 42.
(49) Specifically, the power supply control apparatus 48 comprises a detection unit 481, a comparison unit 482 and a control unit 483, for which one may refer to
(50) The detection unit 481 for detecting the amount of power generated by the generator 47 and the amount of power required by the driving electric motor 43 during running of the novel electric vehicle.
(51) The comparison unit 482 for comparing the detected amount of generated power with the detected amount of required power, wherein, when the amount of generated power is greater than the amount of required power, the comparison unit sends out a first control signal, and otherwise, the comparison unit sends out a second control signal.
(52) The control unit 483 for, when receiving the first control signal, controlling the generator 47 to provide an amount of the generated power equal to the amount of required power to the driving electric motor 43 and to input a portion of the amount of generated power exceeding the amount of required power to the battery 42 to charge the battery; and when receiving the second control signal, controlling the generator 47 to provide all of the amount of generated power to the driving electric motor 43.
(53) In implementation of the novel electric vehicle provided by one embodiment of the present invention, the following beneficial effects can be achieved.
(54) By providing an air compressor, an air storage tank, a turbine and a generator, air energy can be utilized to generate power in parallel with power supplied by the battery. Thus, the continuous mileage of the electric vehicle is increased without causing environmental pollution. Meanwhile, due to the introduction of power generated by air energy, the battery is not a signal power supply and does not need to be continuously discharged for long periods. As a result, the battery can have an effect of shallow charge/discharge, and so the service life of the battery can be prolonged. In addition, by providing a power supply control apparatus, the amount of power generated by the generator is reasonably distributed, which is beneficial to protection of the battery.
(55) Refer to
(56) When the charging circuit 51 is connected to an external electrical power, the battery 52 is charged and supplies power to the driving electric motor 53.
(57) When connected to an external electrical power, the air compressor 54 may start up, and air is compressed and stored in the air storage tank 55.
(58) Specifically, the air compressor 54 is a direct current air compressor or an alternating current air compressor.
(59) The air storage tank 55 is provided with a corresponding switch valve, and under the control of the switch valve the stored air is fed to the turbine 56 by the decompression valve 58.
(60) The decompression valve 58 is used for decompressing the air outputted by the air storage tank 55.
(61) The turbine 56 converts air energy of the introduced air into kinetic energy, thereby driving the generator 57 to generate electrical power.
(62) Specifically, a vent of the turbine 56 is provided with an airway. The gas discharged by the vent is guided by the airway to the battery to exhaust, which avoids that the battery 52 works in a high temperature environment and helps to prolong the service life of the battery.
(63) Preferably, the vent of the turbine 56 is provided with a gas storage apparatus. The gas storage apparatus is provided with an opening facing to a passenger space in the novel electric vehicle, the opening is provided with a switch valve, the gas in the gas storage apparatus is exhausted from the opening to the passenger space of the novel electric vehicle when the switch valve is opened. Thereby, the passenger can enjoy the same cooling effect as that of an air conditioner without using any air conditioners, and therefore, energy can be saved.
(64) The generator 57 is used for supplying power to the driving electric motor 53 during power generation.
(65) Specifically, the generator is a direct current generator or an alternating current generator.
(66) In implementation of the novel electric vehicle provided by one embodiment of the present invention, the following beneficial effects can be achieved.
(67) Firstly, by providing an air compressor, an air storage tank, a turbine and a generator, air energy can be utilized to generate power in parallel with power supplied by the battery. Thus, the continuous mileage of the electric vehicle is increased without causing environmental pollution. Meanwhile, due to the introduction of power generated by air energy, the battery is not a signal power supply and does not need to be continuously discharged for long periods. As a result, the battery can have an effect of shallow charge/discharge, and so the service life of the battery can be prolonged.
(68) Secondly, by providing an airway, cold air exhausted by the above turbine is guided to the battery to exhaust, which avoids that the battery works in a high temperature environment and helps to prolong the service life of the battery.
(69) Thirdly, by providing a gas storage apparatus and an opening facing to the passenger space in the novel electric vehicle, the cold air exhausted by the turbine is discharged to the passenger space. Thereby, the passenger can enjoy the same cooling effect as that of an air conditioner without using any air conditioners, and therefore, energy can be saved.
(70) The above disclosure provides merely preferred embodiments of the present invention and certainly cannot be used to limit the scope of claims of the present invention. Therefore, any equivalent modification according to the present invention still falls in the protection scope of the present invention.