Vehicle solar power generation equipment
A movable solar panel system for vehicles addresses power generation limitations and design compromise by deploying and retracting panels using slide rails, enhancing capacity and protecting against wind and damage.
Patent Information
- Application Number
- JP2024533172
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-07-11
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2042-07-11
AI Technical Summary
Existing solar power generation systems for vehicles, when installed on the roof, hood, or sides, face limitations in power generation capacity and compromise vehicle design.
A movable solar power generation panel system is integrated with a fixed panel on the vehicle roof, utilizing slide rails and a deployment mechanism to increase panel area when parked and retract when driving, housed in a waterproof compartment to prevent damage and wind resistance.
Enhances power generation capacity while maintaining vehicle design integrity by deploying and retracting panels as needed, reducing wind resistance and damage, and providing shade or canopy functions.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a solar power generation device for a vehicle, and more particularly to a solar power generation device for a vehicle that can be retrofitted to an electric vehicle. [Background technology]
[0002] Electric vehicles such as EVs and PHVs that can be charged from an external power source are known. These vehicles are equipped with solar panels on their roofs or elsewhere, and electricity generated by sunlight is supplied to the drive battery and auxiliary battery. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Japanese Patent Application Publication No. 2014-165948 Summary of the Invention [Problem to be solved by the invention]
[0004] However, if solar panels are installed only on the roof of a vehicle, the amount of power generated by the solar panels is limited, and if solar panels are also installed on the hood or sides of the vehicle, the design of the vehicle is diminished.
[0005] The present invention was made in consideration of the problems associated with the conventional technology, and its purpose is to provide a solar power generation device for a vehicle that can increase the amount of power generated by the solar power generation panel while preventing a decline in design by installing the solar power generation panel only on the roof of the vehicle. [Means for solving the problem]
[0006] As a result of extensive research into achieving the above-mentioned objective, the inventors discovered that the above-mentioned objective could be achieved by providing a movable solar power generation panel that can be deployed and stored in addition to a solar power generation panel fixed to the roof of a vehicle, and thus completed the present invention.
[0007] That is, the solar power generation device of the present invention is a solar power generation device that is installed on a base carrier on the roof of a vehicle, and includes a frame, a clamp that fixes the frame to the base carrier, a slide rail, and a solar power generation panel. The solar power generation panel has a fixed panel fixed to the frame and positioned at the top, and a movable panel positioned below the fixed panel, The slide rail has a fixed rail fixed to the frame, a movable rail supporting the movable panel, and the movable panel is deployed and stored. death, At least the slide rail and the movable panel are housed in a housing, The slide rail includes a slide lock mechanism and a spring that biases the movable panel in a direction to accommodate the movable panel, and the movable panel is accommodated in the housing by releasing the slide lock mechanism. It is characterized by: [Effects of the Invention]
[0008] According to the present invention, a fixed solar power generation panel and a movable solar panel that is supported by slide rails below the solar power generation panel and can be deployed and stored are provided, thereby making it possible to provide a solar power generation device for vehicles that can increase the amount of power generated by the solar power generation panel while preventing a decline in design. [Brief explanation of the drawings]
[0009] [Figure 1] 1 is a schematic view showing an example of a state in which a movable panel of a solar power generation device for a vehicle according to the present invention is stored. [Figure 2] 1 is a schematic diagram showing an example of a state in which a movable panel of a solar power generation device for a vehicle according to the present invention is unfolded. [Figure 3] 1 is a schematic diagram showing an example of a solar power generation device for a vehicle having a plurality of movable panels. [Figure 4] 1 is a system configuration diagram of a solar power generation device for a vehicle according to the present invention; DETAILED DESCRIPTION OF THE INVENTION
[0010] The solar power generation device for a vehicle of the present invention will now be described in detail. The vehicle solar power generation device of the present invention is a retrofittable vehicle solar power generation device that is installed on a base carrier on the roof of a vehicle and can be used as is without changing the vehicle's charging system, and is equipped with a frame, clamps that secure the frame to the base carrier, slide rails, and a solar power generation panel.
[0011] As shown in Figure 1, the solar power generation panel is configured with multiple power generation panels arranged approximately parallel to one another in the vertical direction, with a fixed panel fixed to a frame at the top and a movable panel that can be deployed and stored below this fixed panel.
[0012] The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and the movable rail slides to deploy and retract the movable panel.
[0013] As shown in Figure 2, the movable panel protrudes from the fixed panel when deployed, increasing the panel area and enhancing solar power generation capacity when parked. Also, as shown in Figure 1, when stored, it tucks under the fixed panel, preventing increased air resistance when driving or in strong winds and preventing the movable panel from being damaged by wind resistance.
[0014] Furthermore, since the solar power generation device for vehicles of the present invention is attached to the base carrier of the roof of the vehicle by means of a clamp, it can be easily attached to and detached from the vehicle.
[0015] Therefore, for example, when driving on a highway for a long period of time, it is expected that the amount of power consumed due to increased air resistance will be greater than the amount of power generated by sunlight.Also, when parking for a long period of time, such as when camping, it can be easily attached and solar-generated power can be used.
[0016] As shown in FIG. 3, the number of the movable panels is not limited to one, but can be multiple layers depending on the required area of the photovoltaic power generation panel.
[0017] The vehicle solar power generation device preferably has a housing. By housing the slide rail and the movable panel in the housing, wind can be prevented from entering between the fixed panel and the movable panel when the device is stored, thereby reducing wind noise during driving.
[0018] Furthermore, if the housing is waterproof, it is possible to prevent breakdowns in electronic devices such as the control device described below, and corrosion and damage to various parts such as the slide rails.
[0019] The housing may be a separate member from the frame or may be a member formed integrally with the frame. The top surface of the housing may be formed by a fixed panel.
[0020] The deployment direction of the movable panel may be such that it is deployed in the front of the vehicle and exposed to the outside of the housing, or may be such that it is deployed to the side of the vehicle and exposed to the outside of the housing.
[0021] When the movable panel is deployed in front of the vehicle, it acts as a canopy that prevents sunlight from shining into the vehicle through the windshield, preventing the temperature inside the vehicle from rising and reducing discomfort when getting in. When the movable panel is deployed to the side of the vehicle, it can provide shade to the side of the vehicle.
[0022] When the movable panel is deployed in front of the vehicle, it is located above the driver's line of sight and is easily overlooked, so a stopper is provided on the slide rail to prevent the tip of the movable panel from protruding further forward than the front end of the vehicle, thereby avoiding the risk of other vehicles colliding with the movable panel while parking.
[0023] The slide rail preferably includes a slide lock mechanism and a spring that biases the movable panel in a direction to accommodate the movable panel.
[0024] The slide lock mechanism prevents the movable panel from being stored in the housing by the spring when the movable panel is deployed, and by simply manually releasing this slide lock mechanism, the biased spring allows the movable panel to be easily stored in the housing.
[0025] Furthermore, even if an abnormality occurs, the movable panel can be stored in the housing simply by releasing the slide lock mechanism, so the movable panel can be stored quickly and easily, and danger in the event of an abnormality can be avoided.
[0026] The vehicle solar power generation system can include, as needed, a storage battery, a solar charger, a power conversion device, an actuator, a charging cable, and a control device that controls these devices within the housing. Figure 4 shows a system configuration diagram of the vehicle solar power generation system.
[0027] vinegar Actuators installed on the ride rail Ta The control device may operate an actuator to deploy or retract the movable panel, thereby enabling the movable panel to be automatically deployed or retracted according to the situation.
[0028] For example, based on the amount of power generated by the solar panels, the movable panels can be deployed when power is being generated to further increase the amount of power generated, and can be retracted when power is not being generated, such as at night or during rainy weather, thereby preventing the movable panels from accidentally breaking down.
[0029] In addition, when the control device detects that the distortion of the slide rail has exceeded a predetermined value using a distortion sensor or pressure sensor installed on the slide rail, the movable panel can be stored to prevent the movable panel from being blown away by strong winds and being damaged.
[0030] Furthermore, if the slide rail is equipped with the slide lock mechanism and the spring in addition to the actuator, even if the actuator fails, the movable panel can be stored by manually or by using a control device to release the slide lock mechanism.
[0031] The vehicle solar power generation device may include a storage battery within the housing. If the vehicle solar power generation device itself has a storage battery, it can store the power generated by the solar power generation panel, making it possible to supply power even when the solar power generation panel is not generating power.
[0032] When the amount of electricity stored in the storage battery reaches or exceeds the upper charge limit, the control device stops the supply of electricity generated by the solar panel to the storage battery. This prevents the storage battery from overcharging and breaking down. The amount of electricity stored in the storage battery can be known from its voltage value.
[0033] When charging of the storage battery from the solar power generation panel is stopped, the control device preferably operates the actuator to store the movable panel, thereby preventing accidental breakdown of the movable panel.
[0034] As shown in Figure 4, the solar power generation panel and the storage battery are connected via a solar charger, and the control device controls the output voltage and output current of the solar power generation panel using the solar charger, performs maximum power point tracking control of the solar power generation panel, and controls charging by reducing the voltage to a level that can be charged into the storage battery.
[0035] The vehicle solar power generation device may include a power conversion device within the housing. The power conversion device can convert the voltage of the storage battery into a voltage appropriate for an external power supply destination and supply the converted voltage.
[0036] Examples of supply voltages include DC 48V, DC 20V, and DC 12V for charging the drive battery and auxiliary battery of an electric vehicle, as well as AC 100V and AC 200V for supplying power to home appliances.
[0037] The control device preferably stops the supply of power to the outside when the amount of stored power in the storage battery is below a lower discharge limit, thereby preventing the storage battery from being over-discharged and accelerating deterioration.
[0038] The vehicle solar power generation device preferably includes a charging cable that can be connected to a charging port of the vehicle. By connecting the vehicle solar power generation device to the charging port of the vehicle with a charging cable that runs outside the vehicle, it becomes possible to supply power from the storage battery to the vehicle's drive battery and auxiliary battery via the power conversion device, thereby extending the vehicle's cruising range.
[0039] The charging cable may be fixedly connected to the power conversion device or may be a detachable cable that can be connected to the power conversion device. In addition, if the charging cable is long enough, it can supply power not only to the vehicle equipped with the vehicle solar power generation device but also to other vehicles.
[0040] When the charging cable is connected to a charging port of a vehicle, it is preferable that the control device converts the voltage of the storage battery and supplies the converted voltage to an external device when the amount of charge stored in the storage battery is equal to or greater than a charging start voltage value. When the power supply reaches the lower discharge limit, the supply to the outside is stopped, and when the amount of electricity stored in the storage battery is restored by the solar power generation panel and the voltage exceeds the charging start voltage, the power supply is resumed. Note that this charging start voltage is a voltage value lower than the charging upper limit.
[0041] This means that even if the storage battery has a low stored amount of power and is unable to charge the vehicle's drive battery, etc., if the charging cable is connected to the vehicle's charging port, the vehicle's drive battery, etc. can be automatically charged when the solar power generation panel generates power and the storage battery's stored amount increases.
[0042] In addition, it is preferable that the control device unfolds the movable panel to increase the amount of power generated by the solar power generation panel when the charging cable is connected to the vehicle's charging port, and retracts the movable panel when the charging cable is disconnected.
[0043] The movable panel can be deployed and retracted automatically depending on whether or not the charging cable is connected to the vehicle's charging port, making it possible to automatically deploy and retract the movable panel without having to deploy it when the vehicle is stopped for a short time.
[0044] The vehicle solar power generation system is preferably provided with a residential outlet, which allows the use of general household electrical appliances.
[0045] The housing is preferably provided with cooling fins, which allow heat generated by electronic devices such as power converters and control devices to escape to the outside of the housing, thereby preventing breakdowns in the electronic devices.
[0046] Furthermore, if the cooling fins are provided on the underside of the housing, the electronic device can be cooled by the air flowing between the housing and the roof of the vehicle, and the design can be prevented from being impaired.
[0047] The control device preferably includes a memory unit that stores the amount of power generated by the solar panel over time, the amount of power stored in the storage battery, the amount of power supplied to the outside, and the time when the charging cable was connected to the charging port.
[0048] This makes it possible to predict the power usage patterns of users of vehicle solar power generation devices, and before the amount of power supplied to the outside increases, the movable panels of the solar power generation panels can be deployed to increase the amount of electricity stored in the storage battery, in preparation for supplying to the outside.
[0049] In addition, when the charging cable is connected to the vehicle's charging port, the supply from the storage battery to the drive battery is terminated by the time the charging cable is to be removed from the charging port, which is predicted from the information stored in the memory unit, i.e., the time the user is predicted to start driving the vehicle.
[0050] When the supply of power to the drive battery ends, the amount of power stored in the storage battery is at the lower discharge limit. This prevents excess power from being stored in the storage battery while the vehicle is running, making it possible to extend the vehicle's cruising range.
[0051] In addition, solar power is generated by fixed panels while the vehicle is traveling, increasing the amount of electricity stored in the battery, so electricity can be used immediately upon arrival.
[0052] The control device preferably includes a communication unit that communicates with external devices such as smartphones via a mobile phone line, Wi-Fi, Bluetooth, or the like.
[0053] The control device transmits the information stored in the storage unit in response to a request from an external device connected via wireless communication, thereby enabling the user to know information such as the amount of power stored in the storage battery from the external device.
[0054] It is also possible for the external device to issue an instruction to the control device to supply power from the storage battery to the vehicle's drive battery.
[0055] When the charging cable is connected to the charging port of the vehicle, the control device receives instructions from the external device and supplies power from the storage battery to the vehicle's drive battery.
[0056] This means that even when the charging cable is connected to the charging port in a different pattern from that stored in the memory unit, the power from the storage battery can be transferred to the drive battery and the amount of electricity stored in the storage battery can be reduced to the lower discharge limit by the time the user wants to drive the vehicle, thereby extending the vehicle's driving range. [Explanation of symbols]
[0057] 1. Solar panels 11 Fixed Panel 12 Movable Panel 2 slide rails 21 Fixed rail 22 Movable rail 23 Spring 24 Slide lock mechanism 25 Actuators 26 Strain sensor (pressure sensor) 3 Frame (chassis) 4 Clamp 5. Solar Charger 6. Storage battery 7 Power conversion equipment 71 Charging cable 72 Residential outlets 8 Control Device 81 Storage section 82 Communications Department 100 Base Carrier 200 Drive Battery 210 charging port 300 Home appliances 400 External equipment
Claims
1. A solar power generation device installed on a base carrier on the roof of a vehicle, a frame, a clamp for fixing the frame to the base carrier, a slide rail, and a solar power generation panel; the solar power generation panel is a fixed panel fixed to the frame and positioned at the top; a movable panel located below the fixed panel, The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and deploys and stores the movable panel; At least the slide rail and the movable panel are housed in a housing, A solar power generation device for a vehicle, characterized in that the slide rail is equipped with a slide lock mechanism and a spring that biases the movable panel in the direction of storing it, and the movable panel is stored within the housing by releasing the slide lock mechanism.
2. At least the slide rail and the movable panel are housed in a housing, the movable panel is deployed forward of the vehicle and exposed to the outside of the housing, 2. The solar power generating device for a vehicle according to claim 1, wherein a stop member provided on the slide rail prevents the leading end of the movable panel from protruding forward beyond the leading end of the vehicle.
3. At least the slide rail and the movable panel are housed in a housing, 2. The solar power generating device for a vehicle according to claim 1, wherein the movable panel is extended to the side of the vehicle and exposed to the outside of the housing.
4. A solar power generation device installed on a base carrier on the roof of a vehicle, a frame, a clamp for fixing the frame to the base carrier, a slide rail, and a solar power generation panel; the solar power generation panel is a fixed panel fixed to the frame and positioned at the top; a movable panel located below the fixed panel, The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and deploys and stores the movable panel; At least the slide rail and the movable panel are housed in a housing, A control device and an actuator are provided in the housing, The actuator is provided on the slide rail, The control device operates the actuator to deploy and retract the movable panel, The control device operates the actuator based on the amount of power generated by the solar power generation panel to deploy and retract the movable panel.
5. A solar power generation device installed on a base carrier on the roof of a vehicle, a frame, a clamp for fixing the frame to the base carrier, a slide rail, and a solar power generation panel; the solar power generation panel is a fixed panel fixed to the frame and positioned at the top; a movable panel located below the fixed panel, The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and deploys and stores the movable panel; At least the slide rail and the movable panel are housed in a housing, A control device and an actuator are provided in the housing, The actuator is provided on the slide rail, The control device operates the actuator to deploy and retract the movable panel, The solar power generation device for a vehicle is characterized in that the control device operates the actuator to store the movable panel when the distortion of the slide rail is equal to or greater than a predetermined value.
6. A solar power generation device installed on a base carrier on the roof of a vehicle, a frame, a clamp for fixing the frame to the base carrier, a slide rail, and a solar power generation panel; the solar power generation panel is a fixed panel fixed to the frame and positioned at the top; a movable panel located below the fixed panel, The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and deploys and stores the movable panel; At least the slide rail and the movable panel are housed in a housing, A control device and an actuator are provided in the housing, The actuator is provided on the slide rail, The control device operates the actuator to deploy and retract the movable panel, A storage battery is provided in the housing, The power generated by the solar panel is stored in the storage battery. the control device stops charging the storage battery from the solar power generation panel when the amount of stored power in the storage battery is equal to or greater than a charge upper limit value; The vehicle solar power generation device is characterized in that the control device operates the actuator to store the movable panel when charging of the storage battery from the solar power generation panel is stopped.
7. A solar power generation device installed on a base carrier on the roof of a vehicle, a frame, a clamp for fixing the frame to the base carrier, a slide rail, and a solar power generation panel; the solar power generation panel is a fixed panel fixed to the frame and positioned at the top; a movable panel located below the fixed panel, The slide rail has a fixed rail fixed to the frame and a movable rail supporting the movable panel, and deploys and stores the movable panel; At least the slide rail and the movable panel are housed in a housing, A control device and an actuator are provided in the housing, The actuator is provided on the slide rail, The control device operates the actuator to deploy and retract the movable panel, A storage battery is provided in the housing, The power generated by the solar panel is stored in the storage battery. the control device stops charging the storage battery from the solar power generation panel when the amount of stored power in the storage battery is equal to or greater than a charge upper limit value; A power conversion device is provided in the housing, converting the voltage of the storage battery and supplying it to an external device; the control device stops supplying power to the outside when the amount of stored power in the storage battery is less than a lower discharge limit value; The control device includes a storage unit, the storage unit stores, over time, the amount of power generated by the solar power generation panel, the amount of power stored in the storage battery, the amount of power supplied to the outside, and the time when the charging cable was connected to the charging port; The control device includes: When the charging cable is connected to the vehicle's charging port, Based on a pattern of connecting the charging cable to the charging port predicted from the information stored in the storage unit, A solar power generation system for a vehicle, characterized in that the supply of power from the storage battery to the vehicle's drive battery is terminated by a predicted time when the amount of power in the vehicle's drive battery will start to decrease.
8. A solar power generation device for a vehicle as described in Claim 7, further characterized in that it is provided with a charging cable that is connected to a charging port of the vehicle.
9. The control device includes a communication unit, 8. The solar power generating device for a vehicle according to claim 7, wherein the information stored in the storage unit is transmitted to an external device.
10. The control device When the charging cable is connected to the vehicle's charging port, 10. The solar power generation device for a vehicle according to claim 9, wherein power is supplied from the storage battery to a drive battery of the vehicle in response to an instruction from an external device.
Citation Information
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