COUPLING DEVICE FOR CHARGING ELECTRICAL ENERGY STORAGE MEANS OF A VEHICLE

The mobile coupling device enables safe and easy autonomous charging by allowing rotational movement and magnetic retention, addressing the need for human intervention and reducing damage risks while being lightweight and easy to handle.

FR3138785B1Active Publication Date: 2025-07-04MOB ENERGY
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Patent Information

Application Number
FR2022008205
Authority / Receiving Office
FR · FR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-08-09
Publication Date
2025-07-04
Estimated Expiration
2042-08-09

AI Technical Summary

Technical Problem

Existing vehicle charging solutions require human intervention for connection, risk vehicle damage during coupling, and are cumbersome due to heavy additional energy accumulators.

Method used

A mobile coupling device with a base, housing, and interface module that allows rotational movement for easy connection to both an electrical power supply source and vehicle energy storage, featuring idler wheels, shock absorbers, and magnetic retention for safe and easy charging.

Benefits of technology

Facilitates autonomous charging without direct vehicle connection, reduces risk of damage, and minimizes user handling burden by keeping the device lightweight and easy to maneuver.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to a coupling device (2) configured to be positioned between an electrical energy supply source and an electric vehicle in order to allow the charging of the electrical energy storage means of said vehicle. The coupling device has a suitcase shape and comprises casters (232) to facilitate its movement. The coupling device (2) comprises an interface module (22) intended to be connected to the source. This interface module (22) is movable in rotation between a deployed position and a retracted position. Figure to be published with the abstract: Fig. 4
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Description

Title of the invention: COUPLING DEVICE FOR RECHARGING ELECTRICAL ENERGY STORAGE MEANS OF A VEHICLE FIELD OF THE INVENTION

[0001] The present invention relates to the technical field of systems for charging / recharging electrical energy storage means of a vehicle comprising an electric motor.

[0002] Such a system can in particular but not exclusively be used for charging / recharging storage means in a space-restricted environment, such as a parking area composed of parking spaces and / or on-street parking spaces.

[0003] In the context of the present invention, the term "in-building parking" refers to parking areas organized in delimited spaces in an enclosed space with controlled access, such as an above-ground, underground or surface parking lot. The term "on-street parking" refers to parking areas organized in spaces - delimited or not - in an open space, whether paid for or free of charge. BACKGROUND OF THE INVENTION

[0004] Document US9592742 is known in the state of the art, describing a charging device, motorized and equipped with various output cables, which can be moved in a parking lot to the vicinity of an electric vehicle. This device allows the recharging of an electric vehicle from batteries stored in the device. A disadvantage of this solution is that it requires human intervention in order to move and connect the charging device to the vehicle.

[0005] To overcome this drawback, document KR 2020 / 0037548 proposes a vehicle charging / recharging solution based on the use of an autonomous charging / recharging robot containing batteries, as well as a magnetic interface box. The interface box comprises an electrical connection cable, the end of which is intended to be connected to the storage means of the vehicle to be charged / recharged, and a connection socket intended to be connected to the charging robot. The operating principle of the solution described in KR 2020 / 0037548 is as follows. The user places the magnetic interface box on the electric vehicle and commands its recharging. Following this request, the autonomous robot moves to the vicinity of the vehicle and comes into contact with the connection socket of the interface box to allow the transfer of electrical energy to the electrical energy storage means of the vehicle.A disadvantage of the solution described in KR 2020 / 0037548 is that there is a risk of degradation of the . vehicle when coupling the charging robot to the interface box. Furthermore, the user must carry the interface box - the weight of which is significant due to the presence of the magnet and the various electrical connection elements it contains - to install it on their vehicle, which constitutes a significant constraint.

[0006] Also known from the company "Zipcharge" is an additional energy accumulator intended for electric vehicles. Similar to what exists for smartphones with external batteries, this additional energy accumulator is capable of extending the autonomy of the electric vehicle. This additional energy accumulator has the shape of a suitcase on wheels and includes batteries for storing electrical energy. It is supposed to be transported in the trunk of each electric vehicle and to be removed from the trunk to allow partial charging of the storage means of the electric vehicle. Due to the presence of batteries, such an additional accumulator has a weight of 20 kg, which can make its handling (installation and removal from the trunk of the vehicle) difficult.Furthermore, such an additional energy accumulator does not allow a complete recharge of the electric vehicle (it only allows the vehicle's autonomy to be extended, for example to reach a charging station).

[0007] An aim of the present invention is to propose a coupling device making it possible to overcome at least one of the aforementioned drawbacks. Such a coupling device is intended to be coupled: • on the one hand with an electrical power supply source, such as an autonomous mobile unit (i.e. autonomous charging robot) including batteries, and • on the other hand with means for storing electrical energy in a vehicle, to enable the power source to be coupled to the vehicle in order to charge / recharge the vehicle's storage means.

[0008] BRIEF DESCRIPTION OF THE INVENTION

[0009] To this end, the invention proposes a mobile coupling device for the electrical connection of electrical energy storage means of a vehicle to an electrical energy supply source, the device comprising: • a base including casters, • a housing mounted on the base, said housing including a front face, and a cavity opening onto the front face, • a set of connecting members for the electrical connection of the coupling device to the vehicle, and • an interface module for the electrical connection of the coupling device to the electrical power supply source, said module interfacing comprising: • a housing including a sole, and • at least one connection terminal mounted in the housing and intended to cooperate with means of connection of the power source, each connection terminal extending along an axis perpendicular to the sole, remarkable in that the interface module is fixed to the housing by a pivot connection to allow rotational movement of the interface module relative to the housing between: • a retracted position in which the interface module extends into the cavity, the sole of the interface module and the front face of the housing being substantially coplanar in the retracted position, and • a deployed position in which the interface module extends at least partially outside the cavity, the sole of the interface module extending in a plane substantially perpendicular to the front face of the housing in the deployed position.

[0010] In the context of the present invention, the term "electrical energy storage means" means either a capacitor (i.e. a passive system comprising two electrodes and an insulator), or a supercapacitor (i.e. a system comprising at least two electrodes, an electrolyte and at least one separator), or a lithium battery (i.e. a system comprising at least one anode, at least one cathode and an electrolyte solution between the anode and the cathode).

[0011] Preferred but non-limiting aspects of the coupling device according to the invention are as follows: • the pivot connection may include a rotary damper; • the housing may further comprise a front opposite the sole, said front including an orifice in which each connection terminal is housed so that each connection terminal is oriented in a direction opposite to the ground in the deployed position; • the front of the housing may comprise at least one blind alignment hole intended to cooperate with an alignment pin of the electrical power supply source when connecting said source to the interface module; • the housing may include at least one pull tab extending outwardly; • the traction tab may extend outward from the front in a direction opposite to the sole; • the accommodation may include restraint means intended to cooperate with additional retaining means provided in the housing when the interface module is in the retracted position; • the retaining means may comprise at least one magnet and the complementary retaining means comprise at least one associated counter-magnet, each magnet being positioned on the housing so as to come opposite its associated counter-magnet when the interface module (22) is in the retracted position; • the sole of the housing may comprise at least one through light provided under said and at least one connection terminal; • the sole of the housing may comprise at least one stud extending in projection towards the outside of the housing; • each plot can include: • a cylinder fixed to an external face of the sole, said cylinder being made of an elastic material, and • a layer of metallic material fixed on the free end of the cylinder; • the electrical power supply source may be a self-contained mobile unit, the front face of the housing comprising at least one positioning marker positioned around the cavity; • each positioning marker may be of the optical marker and / or electromagnetic resonance marker type; • the housing may further comprise a rear face opposite the front face, said rear face including a shock absorber intended to absorb shocks in the event of contact of the rear face with the vehicle; • the shock absorber may consist of at least one layer of non-abrasive flexible material, such as an elastomer; • the housing may include a hook for suspending a connection component from the set of connecting members; • the set of connecting organs may include: • a first connection component for charging / recharging the storage means in alternating current, and / or • a second connection component for charging / recharging direct current storage means; • the device may also include a grip handle attached to the housing. Brief description of the drawings

[0012] Other advantages and characteristics of the coupling device according to the invention are will emerge better from the following description of several variants of execution, given as non-limiting examples, from the attached drawings in which:

[0013] [Fig.l] is a schematic representation of a system for charging / recharging electrical energy storage means of a vehicle comprising an electric motor,

[0014] [Fig.2] is a schematic perspective representation of a coupling device including an interface module arranged in a deployed position,

[0015] [Fig.3] is a schematic perspective representation of the coupling device in which the interface module is arranged in a retracted position,

[0016] [Fig.4] is a schematic representation in side view of the coupling device in which the interface module is in an intermediate position,

[0017] [Fig.5] is a schematic representation of an idler wheel of the coupling device,

[0018] [Fig.6] is a schematic perspective representation of a housing of the coupling device,

[0019] [Fig.7] is another schematic perspective representation of the case,

[0020] [Fig.8] is a schematic perspective representation of a housing of the interface module,

[0021] [Fig.9] is a schematic perspective representation of the interface module,

[0022] [Fig. 10] is a schematic perspective representation of a connection terminal of the interface module. DETAILED DESCRIPTION OF THE INVENTION

[0023] Various embodiments of the invention will now be described with reference to the figures. In these various figures, equivalent elements are designated by the same numerical reference.

[0024] 1. Presentation of a loading system including the coupling device

[0025] With reference to [Fig. 1], an example of a charging / recharging solution for an electric motor vehicle 1 including a coupling device 2 according to the invention is illustrated.

[0026] In this solution, the coupling device 2 makes it possible to electrically connect an autonomous mobile unit 3 - forming a source of electrical energy supply - to electrical energy storage means (not shown) of the vehicle 1.

[0027] More specifically, the coupling device 2 comprises a set of connecting members 21 for the electrical connection of the coupling device 2 to the vehicle 1. This set of connecting members 21, which will be described in more detail below, is intended to be connected by the user to an electrical plug 11 of the vehicle 1, said electrical plug 11 being electrically connected to the storage means of the vehicle. 1.

[0028] The coupling device 2 also comprises an interface module 22 for the electrical connection of the coupling device 2 to the autonomous mobile unit 3.

[0029] In particular, the autonomous mobile unit 3 is configured to pair with the interface module 22 without external intervention in order to ensure the passage - by wire or by induction - of electrical energy from the autonomous mobile unit 3 to the coupling device 2. This electrical energy is then transmitted to the storage means of the vehicle 1 via the set of connecting members 21. In particular, the autonomous mobile unit 3 comprises a docking module 31 capable of moving in vertical translation to connect to the interface module 22.

[0030] The fact that the connection of the autonomous mobile unit 3 to the coupling device 2 is carried out “on the ground” - via the vertical translational movement of a docking module 31 - makes it possible to limit the risks of damage to the vehicle 1, in particular compared to an autonomous loading / recharging solution based on the connection of a charging / recharging device directly with the vehicle 1 (or with a coupling module fixed to the vehicle 1).

[0031] 2. Coupling device e

[0032] With reference to Figures 2 to 4, the coupling device 2 comprises: • a base 23, • a box 24 mounted on the base 23, • a gripping handle 25 fixed to the housing 24, • the set of connecting members 21 for the electrical connection of the coupling device 2 to the vehicle 1, and • the interface module 22 for the electrical connection of the coupling device 2 to the electrical power supply source.

[0033] 2.1. Base

[0034] The base 23 makes it possible to support the housing 24 of the coupling device 2. The base 23 comprises a substantially flat chassis 231. The chassis 231 can be of different shapes and be made of different materials.

[0035] In the embodiment illustrated in Figures 2 to 4, the chassis 231 has a rectangular shape. It consists of a frame composed of two transverse profiles. These profiles can be of flat, L-shaped, U-shaped, H-shaped, or even square, circular or rectangular section.

[0036] The base 23 also comprises four idler rollers 232 (non-motorized) fixed to the chassis 231. These idler rollers 232 make it easier for a user to move and guide the coupling device 2.

[0037] The idler rollers 232 may be band rollers. More specifically and with reference to [Fig. 5], each rear idler roller 232 may comprise a rim circular carrier 2321 and a band 2322 extending around the rim 2321. The rim 2321 is rotatably mounted around a hub 2323, arranged in its center and with which the rim 2321 is secured by spokes or a flange, solid or openwork. The use of band rollers makes it possible to distribute the weight of the coupling device on a line of contact between the roller and the ground. This limits the risks of degradation of the ground surface, in particular compared to the use of spherical rollers which induce point contact with the ground.

[0038] Advantageously, the band 2322 of each idler wheel 232 can be made of a material having a hardness greater than 60 shore A, preferably greater than 80 shore A, and even more preferably greater than or equal to 90 shore A. This makes it possible to limit the risks of deformation of the band when crossing an obstacle due to the weight of the coupling device 2.

[0039] Each idler wheel 232 is fixed to the frame 231 at the ends of the transverse profiles. This makes it possible to increase the stability of the coupling device 2.

[0040] Each idler wheel 232 is pivotable about a vertical pivot axis A-A' substantially orthogonal to the rotation axis 2323 of the rim 2321. More precisely, each idler wheel 232 comprises a support yoke 2324 including at least one lateral cheek 2325 whose lower end carries the rim 2321. This support yoke 2324 is pivotally mounted about the axis A-A'. Preferably, each idler wheel 232 is eccentric, that is to say an idler wheel in which the rotation axis 2323 of the rim 2321 is offset relative to the vertical pivot axis A-A'. This makes it easier to turn the coupling device on itself, and therefore to handle it by the user.

[0041] Preferably, at least two idler wheels 232 are offset relative to the housing 24, that is to say that these idler wheels 232 do not extend under the housing 24. Advantageously, the offset idler wheels may be the idler wheels closest to a rear face 242 of the housing 24. This makes it possible to limit the risks of the coupling device 2 tipping over when the autonomous mobile unit 3 is docked to the interface module 22.

[0042] The base 23 is capable of receiving the housing 24 on which the set of connecting members 21, the interface module 22, and the handle 25 are fixed. The housing 24 can be fixed on the base 23 by any means known to those skilled in the art (welding, bolting, gluing, stapling, riveting, etc.).

[0043] Since the coupling device 2 does not incorporate batteries, its weight is relatively limited. In particular, the total weight of the coupling device 2 is less than 10 kilograms (preferably less than 7 kilograms), which facilitates its handling by the user.

[0044] 2.2. Case

[0045] The housing 24 makes it possible to support the set of connecting members 21, the interface module 22, the handle 25 as well as a network of electrically conductive cables (not shown) for electrically connecting the set of connecting members 21 to the interface module 22.

[0046] The housing 24 may be parallelepipedal in shape. With reference to FIGS. 6 and 7, the housing 24 comprises: • a front face 241, • a rear face 242 opposite the front face 241, • a pair of side faces 243 between the front 241 and rear 242 faces, • a base 244 intended to come into contact with the base 23, the front faces 241, rear 242 and side 243 extending perpendicular to the bottom 244 in a direction opposite to the base 23, and • an upper cover 245 opposite the bottom 244.

[0047] The housing 24 also comprises a cavity 246 intended to receive the interface module 22, as will be described in more detail below. This cavity 246 is a through cavity. More precisely, the cavity 246 opens onto the front 241 and rear 242 faces of the housing 24. The cavity 246 is delimited by a pair of vertical internal walls (parallel to the side faces 243) and an oblique upper internal wall (extending between the vertical internal walls).

[0048] The front face 241 is the face of the housing 24 at which the autonomous mobile unit 3 is intended to come into contact when connecting the docking module 31 to the interface module 22.

[0049] Advantageously, the coupling device 2 may comprise one (or more) positioning marker(s) 247 mounted on the front face 241 of the housing 24, and arranged around the cavity 246. This (or these) positioning marker(s) 247 is (are) configured to be detected by one (or more) sensor(s) (not shown) of the autonomous mobile unit 3. This (or these) positioning marker(s) allows the autonomous mobile unit 3 to facilitate the detection of its position relative to the front face 241 of the coupling device 2.

[0050] In the embodiment illustrated in [Fig.6], the coupling device 2 comprises two positioning markers 247 arranged on either side of the cavity 246. The presence of two (or more than two) positioning markers 247 allows the autonomous mobile unit 3 to facilitate the detection of its orientation relative to the front face 241 of the coupling device 2.

[0051] Different solutions can be proposed for the positioning marker(s) 247, among which: • an active optical solution in which each positioning marker 247 comprises a light source - such as a light-emitting diode - (LED) - arranged around the cavity 246, and / or • a passive optical solution in which each positioning marker 247 comprises a reflective element - such as a self-adhesive panel - arranged around the cavity 246, and / or • an electromagnetic solution in which each positioning marker 247 comprises a passive resonant electrical circuit arranged around the cavity 246.

[0052] The advantage of using a passive solution is to limit the electrical energy consumption by the coupling device 2. The advantage of using a passive optical solution is to limit the emission of electromagnetic waves likely to disturb the operation of the coupling device 2 and / or the autonomous mobile unit 3.

[0053] In all cases, the autonomous mobile unit 3 comprises one (or more) sensor(s) adapted to interact with the positioning marker(s) 247. This (or these) sensor(s) may consist of: • a light detector - such as a camera - when the positioning marker(s) 247 consist of one or more optical marker(s), and / or • a resonant circuit when the positioning marker(s) 247 consist of one (or more) resonant electrical circuit(s).

[0054] As illustrated in [Fig.7], the housing 24 also comprises a hook 2421 on its rear face 242. This hook 2421 makes it possible to suspend a connection component from the set of connecting members 21.

[0055] Advantageously, the rear face 242 (and / or the hook 2421) may comprise one (or more) shock absorbers 2422 intended to absorb shocks in the event of contact between the rear face 242 or the hook 2421 and the bodywork of the vehicle 1. In fact, the rear face 242 of the housing 24 is intended to come opposite the vehicle 1.

[0056] In the event that the coupling device 2 is pressed against the bodywork of the vehicle 1, the shock absorber (or shock absorbers) makes it possible to limit the risks of damage (scratching, denting) to the bodywork of the vehicle 1. The shock absorber 2422 (or the shock absorbers) may be of any type known to those skilled in the art. In the embodiment illustrated in [Fig.7], each shock absorber 2422 consists of a layer of non-abrasive flexible material, such as foam.

[0057] 2.3. Set of connecting members

[0058] The set of connecting members 21 makes it possible to electrically connect the coupling device 2 to the vehicle 1. The set of connecting members 21 comprises different connection components to adapt to the different types of existing electric vehicles.

[0059] In particular, the set of connecting members 21 comprises a first connection component 211 allowing alternating current (AC) charging / recharging of the means vehicle storage supporting this charging / recharging mode. This first connection component 211 comprises an electrical socket intended to receive vehicle connection means adapted to charging / recharging with alternating current. As illustrated in Figures 2 to 4, this electrical socket can be mounted in a side face 243 of the housing 24. Advantageously, this electrical socket can be covered with a pivoting cover, in particular to avoid the risks of fouling of the electrical socket, or even the penetration of water into the electrical socket (for example in the event of rain).

[0060] The set of connecting members 21 further comprises a second connection component 212 allowing direct current (DC) charging / recharging of the vehicle storage means supporting this charging / recharging mode. This second connection component 212 comprises an electrically conductive cable, and a connection head at the free end of the electrically conductive cable. This connection head is intended to be inserted into vehicle connection means 1 adapted to direct current charging / recharging.

[0061] The reader will have understood that the set of connecting members 21 (and in particular each of the connection components 211, 212) is electrically connected to the interface module 22 (and in particular to one (or more) connection terminal(s) of the interface module which will be described below) to allow the passage of the electric current delivered by the autonomous mobile unit 3 (via the interface module 22) to the vehicle 1 (via the set of connecting members 21). This electrical connection is ensured by the network of electrically conductive cables contained in the housing 24.

[0062] 2.4. Interface module

[0063] The interface module 22 allows the electrical connection of the coupling device 2 to the autonomous mobile unit 3. The interface module 22 comprises: • a housing 221 illustrated in [Fig.8], and • at least one connection terminal 222 mounted in the housing 221, said at least one connection terminal 222 being intended to cooperate with complementary connection means (not shown) of the docking module 31.

[0064] With reference to [Fig.8], the housing 221 comprises a sole 2211, a facade 2212 opposite the sole 2211, and four side walls 2213, 2214, 2215 between the sole 2211 and the facade 2212.

[0065] More precisely, the side walls 2213, 2214, 2215 are composed of: • an oblique wall 2213 narrowing upwards from the sole 2211, • a straight wall 2214 opposite the oblique wall 2213, and • two transverse walls 2215 between the oblique 2213 and straight 2214 walls, so that the cross-section of the housing 221 is advantageously that of a right-angled trapezoid.

[0066] The presence of an oblique wall 2213 makes it possible to limit the risks of friction of the interface module 22 against the upper internal wall of the cavity 246 when tilting from a retracted position to a deployed position.

[0067] Each connection terminal 222 is accessible via at least one orifice 2216 made in the facade 2212 of the housing 221. As illustrated in [Fig. 10], each connection terminal 222 comprises: • one (or more) guide barrel(s) CG extending along an axis B-B' perpendicular to the facade 2212 on the one hand and to the sole 2211 on the other hand, and • one (or more) CE electrical connector(s) placed in the guide barrel, so that each connection terminal 222 is accessible in a direction B-B' going from the facade 2212 towards the sole 2211. Thus, each connection terminal 222 is visible and accessible from the facade 2212 of the housing 221.

[0068] As illustrated in Figures 8 and 9, the facade 2212 of the housing 221 comprises one (or more) blind hole(s) 2221 (in particular four). This(these) blind hole(s) 2221 is(are) intended to cooperate with one(s) of alignment pin(s) (of complementary shape) of the docking module 31 when connecting the autonomous mobile unit 3 to the coupling device 2. Each blind hole 2221 has for example the shape of a half cone whose large base is closer to the facade 2212 and the small base is closer to the sole 2211. These blind hole(s) 2221 and pin(s) make it easier to align the docking module 31 with the interface module 22 when connecting the autonomous mobile unit 3 to the coupling device 2.

[0069] With reference to figures 2 to 4, the interface module 22 is fixed to the housing 24 at the cavity 246. Advantageously, the interface module 22 is fixed to the housing 24 by a pivot connection 26 to allow the rotational movement of the interface module 22 relative to the housing 24 between: • a retracted position (see [Fig. 3]) in which the interface module 22 extends into the cavity 246, the sole 2211 of the interface module 22 and the front face 241 of the housing 24 being coplanar in the retracted position, and • a deployed position in which the interface module 22 extends (at least partially) outside the cavity 246, the sole 2211 of the interface module 22 extending in a plane perpendicular to the front face 241 of the housing 24 in the deployed position.

[0070] The positioning of the interface module 22 in the retracted position makes it possible to limit the risks of debris (or water in the event of rain) falling into the orifice 2216 of the housing 221 containing the connection terminal 222. It also makes it possible to reduce the size of the coupling device 2 in order to facilitate: • handling of the coupling device 2, for example for moving it from a docking station to the vehicle 1 to be charged / recharged, and • storing the coupling device 2 in a restricted space in the docking station.

[0071] Positioning the interface module 22 in the deployed position allows it to extend outwardly from the housing 24, so that the connection terminal 222 is oriented upwards (the ground defining a downward orientation). In the deployed position, the connection terminal 222 is therefore accessible from the “above”. The autonomous mobile unit 3 can then electrically connect the connection means of the docking module 31 to the connection terminal 222 by positioning the docking module 31 in line with the connection terminal 222 and moving the docking module 31 vertically towards the ground.

[0072] The pivot connection 26 comprises: • axle heads 261 extending outwardly from the vertical internal walls of the cavity 246, and • bearings 2218 arranged in the transverse walls 2215 of the housing 221.

[0073] More precisely, each axle head 261 projects outwards from a respective vertical internal wall of the cavity 246. Each axle head 261 is intended to cooperate with a respective bearing 2218 arranged on a respective transverse wall 2215 of the housing 221.

[0074] The axle heads 261 are configured to journal in the bearings 2218, and allow rotation of the interface module 22 about the pivot link 26 between the retracted and deployed positions, as illustrated in [Fig.4].

[0075] The pivot connection 26 may also comprise one (or more) rotary damper(s). More specifically, at least one of the heads of the axis 261 may be associated with a rotary damper. This makes it possible to avoid excessively abrupt rotational movements of the interface module 22 around the pivot connection 26, in particular when moving from the retracted position to the deployed position. The rotary damper (or dampers) may be of any type known to those skilled in the art.

[0076] As illustrated in [Fig.8] and 9, the housing 221 may comprise one (or more) traction tab(s) 2222 extending outwardly from the facade 2212 in a direction opposite to the sole 2211. This (or these) traction tab(s) 2222 makes it easier for the user to move the interface module 22. In particular, the application by the user of a pressing force on the traction tab 2222 (for example with his foot) causes the interface module 22 to tilt towards the retracted position.

[0077] The housing 221 may also comprise retaining means 2217. These retaining means 2217 are intended to cooperate with complementary retaining means 248 provided in the housing 24. These retaining means 2217 and complementary retaining means 248 make it possible to maintain the interface module 22 in the retracted position in the absence of an external force applied by the user of the coupling device 2.

[0078] The retaining means 2217 and complementary retaining means 248 may be of any type known to those skilled in the art. For example, in the embodiment illustrated in FIGS. 6 and 9, the oblique wall 2213 of the housing 221 comprises one (or more) permanent magnet(s), and the oblique wall of the cavity 246 of the housing 24 comprises one (or more) counter-magnet(s). Each magnet of the housing 221 is intended to cooperate with a respective counter-magnet of the cavity 246. More precisely, the magnets and counter-magnets are positioned on the oblique walls of the housing 221 and of the cavity 246 so that when the interface module 22 is in the retracted position, each magnet extends opposite its associated counter-magnet.

[0079] Advantageously, the sole 2211 of the housing 221 may comprise one (or more) stud(s) 2219 on its external face. This (these) stud(s) 2219 is (are) intended to come into contact with the ground when the interface module 22 is in the deployed position. This makes it possible to maintain the sole 2211 at a non-zero distance from the ground, in order to limit the risks of degradation (scratches, cracks, etc.) of the external face of the sole 2211.

[0080] Each pad 2219 may comprise a cylinder made of an elastic material. This allows the pad to absorb shocks, in particular when the interface module 22 moves from the retracted position to the deployed position (without the pad(s), the external face of the sole 2211 would strike the ground, which could cause damage to the latter). This also allows the interface module 22 to compensate for any irregularities in the ground. By being crushed more or less during the connection of the docking module 31 to the interface module 22, the pad(s) 2219 make it possible to guarantee a calibrated force support and to ensure adequate positioning of the connection terminal(s) 222 relative to the complementary connection means of the docking module 31. Each pad 2219 may further comprise a metal layer at the free end of each elastic cylinder in order to reduce the wear of the pads 2219.

[0081] In certain embodiment variants, the sole 2211 of the housing 221 may comprise one (or more) through-light(s) provided under the connection terminal(s) 222. This (these) through-light(s) makes it possible to facilitate the evacuation of water likely to flow into the orifice of the facade 2212 when the interface module 22 is in the deployed position, for example in the event of rain.

[0082] 2.5. Handle

[0083] The handle 25 makes it easier for the user to grip the coupling device 2. In the embodiment illustrated in [Fig.6], the handle 25 has the shape of an inverted “U” and is fixed to the cover 245 of the housing 24.

[0084] It is obvious to those skilled in the art that the handle 25 may have other shapes and / or be fixed to another component of the housing 24.

[0085] For example, in one embodiment, the handle 25 has the shape of a knob cylinder and is fixed to the rear face 242 of the housing 24.

[0086] In another embodiment, the handle 25 consists of a recess made in the cover 245 of the housing 24.

[0087] 3. Operating principle

[0088] The operating principle of the coupling device 2 according to the invention will now be described in more detail.

[0089] It is assumed here that the user has parked his vehicle in a parking area and wishes to recharge the storage means of his vehicle 1.

[0090] In a first step, the user equips himself with a coupling device 2 stored in a parking docking station. He grasps the handle 25 of the coupling device 2 and rolls it on the ground to bring it close to his vehicle 1.

[0091] Once the coupling device 2 is close to his vehicle 1, the user electrically connects one of the connection components 211, 212 of the set of connecting members 21 (depending on the type of recharging (i.e. AC or DC) desired) to the connection means of his vehicle 1.

[0092] The user then applies a pushing force to the front 2212 of the interface module 22 from the rear face 242 of the housing 24, for example with the foot. This force applied by the user “counters” the magnetic force between the retaining means 2217 and the complementary retaining means 248, so that the interface module 22 moves in rotation around the pivot connection 26.

[0093] The interface module 22 switches from the retracted position to the deployed position. When the interface module 22 is close to the deployed position, its movement is slowed by the rotary damper. The pads 2219 come into contact with the ground: the interface module 22 is then in the deployed position.

[0094] The user orients the coupling device 2 so that the rear face 242 of the box 24 faces the vehicle 1. The user then orders the recharging of the storage means of his vehicle from a parking area management service.

[0095] Once the coupling device 2 is installed, the autonomous mobile unit 3 detects, using the image acquisition means, the coupling device 2 associated with the vehicle 1 for which the user wishes to charge / recharge the energy storage means. This detection may be based on color, shape or any other technical solution known to those skilled in the art for the detection of an object of interest.

[0096] The autonomous mobile unit 3 moves towards the vehicle 1 to electrically connect to the coupling device 2. The autonomous mobile unit 3 detects the markers 247 arranged on the front face 241 of the housing 24 and determines its position and orientation relative to the coupling device 2. The autonomous mobile unit 3 recalculates its position and orientation periodically to ensure precise positioning of the docking module 31 relative to the interface module 22.

[0097] The autonomous mobile unit 3 centers a receiving niche extending under the docking module 31 relative to the interfacing module 22 thanks to the detection of the markers 247. This receiving niche is intended to receive the portion of the interfacing module 22 extending in projection from the housing 24 in the deployed position. When the receiving niche is centered relative to the interfacing module 22, the autonomous mobile unit 3 advances towards the coupling device 2 so that the interfacing module 22 enters the receiving niche.

[0098] When the docking module 31 extends in line with the interface module 22 (and in particular when the connection means of the docking module 31 are above the connection terminals 222), the autonomous mobile unit 3 stops.

[0099] The autonomous mobile unit 3 then controls (via a control module of the mobile unit such as a processor, a microcontroller or any other type of control module known to those skilled in the art) the movement of the docking module 31 vertically towards the ground. The docking module 31 moves vertically towards the interface module 22. The alignment pin(s) penetrate(s) into the blind hole(s) 2221 formed in the front 2212 of the interface module 22. The complementary frustoconical shapes: • of the alignment pin(s), and • of the blind hole(s) 2221 allow (by friction when inserting the pin(s) into the blind hole(s)) to adjust the position of the interface module 22 relative to the docking module 31.

[0100] When the alignment pin(s) has (have) completely penetrated into the blind hole(s) 2221, the connection means of the docking module 31 are plugged into the connection terminals 222 of the interface module 22. The autonomous mobile unit 3 immobilizes the docking module 31 and the recharging of the storage means of the vehicle 1 can begin.

[0101] Once the storage means of the vehicle 1 are recharged, the autonomous mobile unit 3 moves the docking module 31 in a vertical direction opposite the ground (i.e. towards The connection means emerge from the connection terminals 222 of the interface module 22.

[0102] The autonomous mobile unit 3 can then move to charge / recharge the energy storage means of another vehicle.

[0103] When the user returns to his vehicle 1, the user applies a pressing force on the traction tab 2222, for example with his foot. The force applied by the user tilts the interface module 22 which moves in rotation around the pivot connection 26 from the deployed position to the retracted position.

[0104] The user then disconnects the connection component 211, 212 from his vehicle 1, and stores the coupling device 2 in the docking station.

[0105] 4. Conclusions

[0106] The coupling device described above makes it easier to charge / recharge energy storage means in a vehicle. It also makes it possible to limit the number of charging terminals required in a parking area.

[0107] The reader will have understood that numerous modifications can be made to the invention described above without materially departing from the new teachings and advantages described here.

Claims

1. Claims Mobile coupling device (2) for the electrical connection of electrical energy storage means of a vehicle (1) to an electrical energy supply source, said electrical energy supply source being an autonomous mobile unit (3) including a docking module capable of moving in vertical translation, and the device comprising: • a base (23) including casters (232), • a housing (24) mounted on the base (23), said housing (24) including a front face (241), and a cavity (246) opening onto the front face (241), • a set of connecting members (21) for the electrical connection of the coupling device (2) to the vehicle (1), and • an interface module (22) for the electrical connection of the coupling device (2) to the electrical power supply source, said interface module (22) comprising • a housing (221) including a sole (2211) and a facade (2212) opposite the sole, and • at least one connection terminal (222) mounted in the housing (221) and intended to cooperate with connection means of the power source, each connection terminal (222) extending along an axis (B-B') perpendicular to the sole (2211), characterized in that the interface module (22) is fixed to the housing (24) by a pivot connection (26) to allow rotational movement of the interface module (22) relative to the housing (24) between: • a retracted position in which the interface module (22) extends into the cavity (246), the sole (2211) of the interface module (22) and the front face (241) of the housing (24) being substantially coplanar in the retracted position, and • a deployed position in which the interface module (22) extends at least partially outside the cavity (246), the sole (2211) of the housing (22) extending in a plane substantially perpendicular to the front face (241) of the housing (24) in the deployed position, the front (2212) of the housing (22) including an orifice in which each connection terminal (222) is housed so that each connection terminal (222) is oriented in a direction opposite to the ground in the deployed position in order to allow the electrical connection of the interface module (22) to the docking module by a vertical translational movement of said docking module.

2. A coupling device according to claim 1, wherein the pivot link (26) comprises a rotary damper.

3. Coupling device according to claim 1, in which the front (2212) of the housing (221) comprises at least one blind alignment hole intended to cooperate with an alignment pin of the electrical power supply source when connecting said source to the interface module (2).

4. A coupling device according to any one of claims 1 to 3, wherein the housing (221) comprises at least one outwardly projecting pull tab (2222).

5. A coupling device according to claims 1 and 4 taken in combination, wherein the pull tab (2222) projects from the front (2212) in a direction opposite to the sole (2211).

6. Coupling device according to any one of the preceding claims, in which the housing (221) comprises retaining means (2217) intended to cooperate with complementary retaining means (248) provided in the housing (24) when the interface module (22) is in the retracted position.

7. Coupling device according to claim 6, wherein the retaining means (2217) comprise at least one magnet and the complementary retaining means (248) comprise at least one associated counter-magnet, each magnet being positioned on the housing (221) so as to come opposite its associated counter-magnet when the interface module (22) is in the retracted position.

8. Coupling device according to any one of the preceding claims, in which the sole (2211) of the housing (221) comprises at least one through-light provided under said and at least one connection terminal (222).

9. Coupling device according to any one of the preceding claims, in which the sole (2211) of the housing (221) comprises at least one stud (2219) extending projecting towards the outside of the housing (221).

10. Coupling device according to claim 9, in which each stud (2219) comprises: • a cylinder fixed to an external face of the sole (2211), said cylinder being made of an elastic material, and • a layer of metallic material fixed on the free end of the cylinder.

11. A coupling device according to any preceding claim, wherein the front face (241) of the housing (24) comprises at least one positioning marker (247) positioned around the cavity (246).

12. Coupling device according to claim 11, wherein each positioning marker (247) is of the optical marker and / or electromagnetic resonance marker type.

13. Coupling device according to any one of the preceding claims, in which the housing (24) further comprises a rear face (242) opposite the front face (241), said rear face including a shock absorber (2422) intended to absorb shocks in the event of contact of the rear face (242) with the vehicle (1).

14. A coupling device according to claim 13, wherein the damper consists of at least one layer of non-abrasive flexible material, such as an elastomer.

15. Coupling device according to any one of the preceding claims, in which the housing (24) comprises a hook (2421) for suspending a connection component (211) from the set of connecting members (21).

16. Coupling device according to any one of the preceding claims, in which the set of connecting members (21) comprises: • a first connection component (211) for charging / recharging the storage means in alternating current (AC), and / or • a second connection component (212) for charging / recharging the storage means in direct current (DC).

17. A coupling device according to any preceding claim, which further comprises a gripping handle (25) attached to the housing (24).