ELECTRIC MOBILITY VEHICLE

DE102025100098A1Pending Publication Date: 2025-07-10HYUNDAI MOTOR CO LTD +1
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Patent Information

Application Number
DE102025100098
Authority / Receiving Office
DE · DE
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-05
Filing Date
2025-01-03
Publication Date
2025-07-10

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Abstract

A plurality of prefabricated mobiles can each drive autonomously, and a space optimized for the purpose can be provided by changing a composite shape of the prefabricated mobile in accordance with different purposes, so that the versatility can be improved.
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Description

BACKGROUND OF THE PRESENT DISCLOSURE Field of the present disclosure

[0001] The present disclosure relates to an electric mobility vehicle configured for autonomous driving and providing different spaces depending on the intended use. Description of the state of the art

[0002] Recently, urban air mobility (UAM), purpose-built vehicles (PBVs), and mobility transit hubs have come into the spotlight as future autonomous mobility vehicles, with various visions being developed and advanced technology developments being initiated.

[0003] Purpose-built mobility vehicles (PBVs) are ground-based electric vehicles that are not propelled by vehicle wheels, but by electric wheels that move freely through 360 degrees. These vehicles are not only used as a means of transportation but also provide personalized services to passengers while traveling to their destinations. Due to their individual design, they can function as urban shuttles, offer leisure spaces such as restaurants, cafes, and hotels, and be converted into various spaces such as hospitals, pharmacies, and other socially important facilities. For this purpose, the interior of a vehicle body can be customized using modular products tailored to the specific purpose.

[0004] However, interiors of special vehicles can be designed, personalized and diversified, although their modularization is limited to the interiors.

[0005] In order to meet future uses of electric vehicles, they must become more versatile, which requires the corresponding development of technologies.

[0006] The information contained in the Background section of the present disclosure is provided merely to facilitate understanding of the general background of the present disclosure and should not be construed as an acknowledgment or indication that this information constitutes prior art already known to a person skilled in the art. BRIEF DESCRIPTION OF THE INVENTION

[0007] Various aspects of the present disclosure relate to providing an electric mobility vehicle configured for autonomous driving and providing different spaces depending on the intended use.

[0008] According to one aspect, an electric mobility vehicle is provided, comprising: a plurality of prefabricated mobiles, each having a body with a base and a plate extending upwardly from the base, and a drive module attached to the base and configured to be drivable, wherein the bodies of the plurality of prefabricated mobiles are configured to be connected to one another, and the bodies of the prefabricated mobiles are connected to one another to define a space inside or outside the plate of the body.

[0009] The plate of the body of the prefabricated mobile may be provided as a plurality of plates on the base, and the bodies of the various prefabricated mobiles may be connected by the plates.

[0010] The body of the prefabricated mobile may have two panels, whereby the panels may be connected to each other in an orthogonal direction.

[0011] Upper and lower portions of the panel of the body may extend curvedly and be curved in a direction opposite to a direction in which the upper and lower portions of the panel meet.

[0012] Four prefabricated mobiles can be designed to be connected to each other, and the space can be defined by the bodies of the prefabricated mobiles.

[0013] The space can be formed inwardly if the plates of the prefabricated mobiles are assembled in a direction in which their surfaces face each other in a state in which the plates of the two prefabricated mobiles are joined so that their surfaces face each other, and the plates of the remaining two prefabricated mobiles are joined so that their surfaces face each other.

[0014] The prefabricated mobile may further comprise a roof and a floor that can be attached to or detached from upper and lower sections of the panel, respectively, wherein upper and lower sections of the assembled prefabricated mobile can be connected by the roof and the floor, respectively, to expand the space.

[0015] The roof and floor can be divided into a variety of roofs and floors and detachably connected to each other.

[0016] The prefabricated mobile may further comprise a wall portion detachably connected to the body, wherein at least one wall portion may be provided in the space formed inwardly by connecting the plurality of prefabricated mobiles.

[0017] A side section of the panel of the prefabricated mobile can be connected to side sections of the panels of the other prefabricated mobiles to form a support structure while the space is formed inward.

[0018] The prefabricated mobile may further comprise a roof and a floor which can be attached to or detached from upper and lower portions of the panel, respectively, wherein the roof and the floor can be attached to some of the prefabricated mobiles in an outward direction to form an outside space.

[0019] The prefabricated mobile may further comprise a detachable wall section, wherein the space formed to the outside may be closed when the wall section is attached to the roof and the floor.

[0020] A power supply may be provided in the space formed internally by the prefabricated mobile, wherein the power supply may be electrically connected to the prefabricated mobile.

[0021] Furthermore, a drive module configured to be mobile can be provided on the power supply.

[0022] The plurality of prefabricated mobiles may be electrically connected when the plurality of prefabricated mobiles are connected to each other by the bodies, and the plurality of prefabricated mobiles may share power and a control signal.

[0023] According to the electric mobility vehicle having the above-mentioned structure, the plurality of prefabricated mobiles can each drive autonomously, and the space optimized for the purpose of use can be provided by changing the assembled shape of the prefabricated mobile in accordance with different purposes of use, so that the versatility can be improved.

[0024] The methods and apparatus of the present disclosure have additional features and advantages that will be apparent from, or more particularly set forth in, the drawings attached hereto and the following detailed description, which drawings and description, taken together, serve to explain certain principles of the present disclosure. BRIEF DESCRIPTION OF THE DRAWINGS Fig. 1 is a view illustrating an exemplary prefabricated mobile of an electric mobility vehicle according to an exemplary embodiment of the present disclosure. Fig. 2 is a view exemplarily showing an assembled shape according to the exemplary embodiment of the electric mobility vehicle according to an exemplary embodiment of the present disclosure. Fig. 3 is a plan view of the assembled form according to the Fig. 2 shown exemplary embodiment. Fig. 4 is a view exemplarily showing an example in which a roof and a floor are formed in the assembled form according to the Fig. 2 shown exemplary embodiment. Fig. 5 is a view exemplarily showing an assembled shape according to another exemplary embodiment of the electric mobility vehicle according to an exemplary embodiment of the present disclosure. Fig. 6 is a plan view of the assembled form according to another embodiment of the invention. Fig. 5 shown exemplary embodiment.

[0025] It should be understood that the accompanying drawings are not necessarily to scale and present a somewhat simplified representation of various features illustrative of the principles of the present disclosure. The specific design features of the present disclosure contained herein, including, for example, specific dimensions, orientations, positions, and shapes, will be determined in part by the particular intended application and environment of use.

[0026] In the various figures of the drawings, reference numerals refer to the same or equivalent parts of the present disclosure. DETAILED DESCRIPTION

[0027] Reference will now be made in detail to various embodiments of the present disclosure(s), examples of which are illustrated in the accompanying drawings and described below. Although the present disclosure(s) will be described in connection with exemplary embodiments of the present disclosure, this description is not intended to limit the present disclosure(s) to these exemplary embodiments of the present disclosure. On the contrary, the present disclosure(s) are intended to cover not only the exemplary embodiments of the present disclosure, but also various alternatives, modifications, equivalents, and other embodiments that may be encompassed within the spirit and scope of the present disclosure as defined by the appended claims.

[0028] Various exemplary embodiments included in the present specification will be described in detail below with reference to the accompanying drawings. The same or similar components are denoted by the same reference numerals regardless of the reference numerals, and a repetitive description thereof will be omitted.

[0029] The suffixes "module", "unit", "part" and "section", used to describe components in the following description, are used together or interchangeably for convenience of description, but do not themselves have any distinguishable meanings or functions.

[0030] In the description of the embodiments included in this specification, specific descriptions of publicly known related technologies are omitted when it is determined that the specific descriptions might obscure the subject matter of the embodiments included in this specification. In addition, the accompanying drawings are intended only to facilitate the understanding of the embodiments included in this specification by those skilled in the art. The technical spirit of this specification is not limited by the accompanying drawings and includes all changes, equivalents, and alternatives within the spirit and technical scope of the present disclosure.

[0031] Terms containing ordinal numbers such as "first," "second," and the like may be used to describe various components, but these terms are not limiting. These terms are used only to distinguish one component from another.

[0032] When a component is described as being "coupled" or "connected" to another component, it is understood that one component may be directly coupled or connected to another component, and an intervening component may also be present between the components. When a component is described as being "directly coupled to" or "directly connected to" another component, it is understood that no intervening component is present between the components.

[0033] Expressions in the singular include expressions in the plural unless the context clearly indicates different meanings.

[0034] Throughout this specification, the terms "comprises", "having", "includes", "comprising", "containing", "has", "having" or other variations thereof are to be understood as inclusive and therefore specify the presence of stated features, integers, steps, operations, elements, components or combinations thereof, but do not preclude the presence or addition of one or more features, integers, steps, operations, elements, components or combinations thereof.

[0035] A controller may include a communication device configured to communicate with another control unit or a sensor to control a corresponding function, a memory configured to store an operating system, a logical instruction, and input / output information, and one or more processors configured to perform a determination, calculation, decision, or the like necessary to control the corresponding function.

[0036] Hereinafter, an electric mobility vehicle according to an exemplary embodiment of the present disclosure will be described with reference to the accompanying drawings.

[0037] As in Fig. 1 and Fig. 2, the electric mobility vehicle according to an exemplary embodiment of the present disclosure includes a plurality of prefabricated mobiles 100, each having a body 110 with a base 111 and a plate 112 extending upwardly from the base 111, and a drive module 120 mounted on the base 111 and configured to be movable.

[0038] The prefabricated Mobil 100 is a future mobility vehicle such as a robotic room or a mobility pavilion.

[0039] Robotic space is a spatial concept of a mobility vehicle that can be flexibly adapted to the respective purpose and situation through a software-based vehicle control system. Robotic technology can transform the space comfortably and safely, minimizing the user's physical effort and time expenditure. Furthermore, robotic space is a concept that can offer diverse experiences in the mobility vehicle through the variability of content and services via software, can provide different spaces as a means of transportation, and can develop into a new business platform by increasing the use of the space even when the robotic space is stationary.

[0040] The Mobility Pavilion serves to revitalize an urban area in a structurally weak region through the reuse and recycling of old mobility vehicles. The Mobility Pavilion is a concept that serves as a physical hub for connecting various mobility vehicles in a metropolitan area and is configured to enable different experiences with the means of transport by blurring the boundary between architecture and mobility vehicle. This means that, depending on the user, the Mobility Pavilion can serve as infrastructure in addition to its function as a mobility vehicle thanks to a structure optimized for assembly, expansion, and modification through modular construction methods.As described above, the Mobility Pavilion is a proposal for a recycling concept that creates new spaces by reusing old mobility vehicle modules that have served their intended purpose, as well as a proposal for future environmentally friendly and efficient urban infrastructures designed to create both spaces and vehicles in mobility vehicle production lines.

[0041] Now the prefabricated Mobil 100 for the realization of the robotic space or the mobility pavilion is described.

[0042] The prefabricated mobile 100 of the present disclosure includes the body 110 and the drive module 120.

[0043] In the present case, the body 110 includes the panel 112 configured to define an outer wall by extending upward from the base 111 configured to define a floor surface. The specifications of the base 111 and the panel 112 of the body 110 can be determined depending on a target load in accordance with the intended use, and an overall length and width of the body 110 can be determined in accordance with the intended use, thereby providing a space that, together with another prefabricated mobile 100, meets the intended use.

[0044] The drive module 120 may have integrated driving, steering, braking, and suspension functions and be configured for autonomous driving. The drive module 120 may be attached to the base 111 of the body 110 and provide mobility to the body 110, allowing the drive module 120 to move the body 110 to a desired destination or adjust the position of the body 110 according to the intended use by adjusting a height through the suspension function. The drive module 120 may be controlled by a controller, and the operation of the drive module 120 may be controlled by communication between the controllers of the various prefabricated mobiles 100.

[0045] The prefabricated mobile 100 of the present disclosure is provided as a plurality of prefabricated mobiles 100, wherein the bodies 110 of the prefabricated mobiles 100 may be connected to each other. Therefore, a locking structure may be attached to the base 111 or the plate 112 of the body 110 of each of the prefabricated mobiles 100, and various means, such as electromagnets and mechanical fittings, may be used as the locking structure.

[0046] Therefore, when the bodies 110 of the prefabricated mobiles are connected to each other, spaces can be formed inside or outside the panels 112 of the bodies 110. This means that the position of the space, the size of the space, and the like can be changed depending on the assembly directions and the assembled shapes of the prefabricated mobiles, so that the space suitable for the intended use can be provided.

[0047] The present disclosure will now be described in detail. The body 110 of the prefabricated mobile 100 may include a plurality of panels 112 provided on the base 111, and the bodies 110 of the various prefabricated mobiles may be connected by the panels 112.

[0048] As from Fig. 1 and Fig. 2, the body 110 has the base 111 and the plate 112, wherein the plate 112 is provided as a plurality of plates 112 on the base 111, so that a space S can be formed when the body 110 is connected to the body 110 of another prefabricated mobile 100.

[0049] The plate 112 may be configured to be attached to or detached from the body 110, and the overall length and width of the plate 112 are designed to suit the intended use, thereby enhancing versatility.

[0050] Furthermore, the prefabricated mobile 100 can be assembled with another prefabricated mobile 100. For this purpose, the prefabricated mobiles 100 can be configured such that the bodies 110 are connected to one another. Therefore, a locking structure can be attached to the plate 112 forming the body 110, wherein various means such as electromagnets and mechanical fittings can be used as the locking structure.

[0051] According to an exemplary embodiment of the present disclosure, as described above, various spaces can be defined by changing the number of prefabricated mobiles 100, the shape of the body 110 of the prefabricated mobile 100, and the connection positions of the various prefabricated mobiles 100 by using the plurality of prefabricated mobiles 100, so that spaces optimized for various uses can be provided.

[0052] Furthermore, the plurality of prefabricated mobiles 100 are electrically connected to each other by the bodies 110 so that the plurality of prefabricated mobiles 100 can share electrical energy and control signals.

[0053] That is, when the plurality of prefabricated mobiles 100 are connected by the bodies 110, the plurality of prefabricated mobiles 100 can be fixed by the locking structures and share electrical power and control signals through electrical connection or communication.

[0054] Therefore, the interconnected prefabricated Mobile 100 can function as a single module and can be separated or assembled by communicating or controlling with each other, thus providing the space suitable for different uses.

[0055] In an exemplary embodiment of the present disclosure, the body 110 of the prefabricated mobile 100 may include two panels 112, wherein the panels 112 may be connected to each other in an orthogonal direction.

[0056] As from Fig. 1 and Fig. 2, the two panels 112 are arranged orthogonally on a base 111 of the prefabricated mobile 100 so that the space S between the panels 112 can be defined. In an exemplary embodiment of the present disclosure, the body 110 of the prefabricated mobile 100 may have three panels 112 or only a single panel 112. However, the present disclosure is not limited thereto.

[0057] In an exemplary embodiment of the present disclosure, the two panels 112 are arranged orthogonally to provide efficient space through the connecting structure of each of the prefabricated mobiles 100. An exemplary embodiment is described in which the body 110 of the prefabricated mobile 100 includes the two panels 112.

[0058] Upper and lower portions of the plate 112 of the body 110 extend curvedly and may be curved in a direction opposite to a direction in which the plates 112 meet.

[0059] As from Fig. 2, the upper and lower portions of the plate 112 of the body 110 of the prefabricated mobile 100 may be curved so that the body 110 can be easily connected to the body 110 of another prefabricated mobile 100.

[0060] Since the upper and lower portions of the plate 112 extend curvedly, a space can be defined above and below the curved portions and the spatial utilization can be improved, so that the versatility can be increased in accordance with the purpose of use.

[0061] Since the upper and lower portions of the plate 112 of the prefabricated mobile 100 extend curvedly in the direction opposite to the direction in which the upper and lower portions of the plate 112 meet, the curved portions do not meet each other, and the curved portions have shapes that extend to the outer edges, thereby ensuring the connection with the plate 112 of another prefabricated mobile 100.

[0062] According to the exemplary embodiment of the present disclosure, four prefabricated mobiles 100 may be configured to be connected to each other such that the space S may be defined by the bodies 110 of the prefabricated mobiles 100.

[0063] That is, according to an exemplary embodiment of the present disclosure, the body 110 of the prefabricated mobile 100 includes the two plates 112 arranged orthogonally on the base 111, so that a space S having a quadrangular shape can be ensured when the four prefabricated mobiles 100 are connected. Of course, different spaces S can be defined by increasing or decreasing the number of prefabricated mobiles 100. The prefabricated mobiles 100 according to an exemplary embodiment of the present disclosure can define the quadrangular space S, simplifying the structure and facilitating the process of providing and modifying the space S.

[0064] An exemplary embodiment will now be described in which the prefabricated mobiles 100 of the present disclosure include a first prefabricated mobile 100a, a second prefabricated mobile 100b, a third prefabricated mobile 100c, and a fourth prefabricated mobile 100d.

[0065] As in Fig. 2 and Fig. 3, in the exemplary embodiment of the present disclosure, the space S within the panels 112 of the bodies 110 can be defined by joining the upper and lower portions of the panels 112 of the two prefabricated mobiles 100 together, joining the upper and lower portions of the panels 112 of the remaining two prefabricated mobiles 100, and then joining the upper and lower portions of another panel 112 to the assembled prefabricated mobiles 100.

[0066] With reference to Fig. 2, the first prefabricated mobile 100a and the second prefabricated mobile 100b are modularized because the plates 112 are connected to each other in a direction in which their surfaces face each other, and the third prefabricated mobile 100c and the fourth prefabricated mobile 100d are modularized because the plates 112 are connected to each other in a direction in which their surfaces face each other.

[0067] Since the upper and lower portions of the panels 112 of the first prefabricated mobile 100a and the second prefabricated mobile 100b are curved, the space can be easily provided by connecting the upper and lower portions. Similarly, the upper and lower portions of the panels 112 of the third prefabricated mobile 100c and the fourth prefabricated mobile 100d can be connected to each other.

[0068] In the present case, the plates 112 of the first prefabricated mobile 100a and the second prefabricated mobile 100b are connected to the plates 112 of the third prefabricated mobile 100c and the fourth prefabricated mobile 100d in a direction in which their surfaces face each other, so that the space S can be defined within the prefabricated mobile 100.

[0069] In addition, the prefabricated mobile 100 may also have a roof 200 and a floor 300 that can be attached to or detached from the upper and lower sections of the plate 112, respectively.

[0070] The overall lengths and widths of the roof 200 and the floor 300 can be designed according to the intended use, wherein the upper and lower sections of the prefabricated mobile 100 are connected to each other by the roof 200 and the floor 300, respectively, so that the space S arranged within the prefabricated mobile 100 can be expanded.

[0071] That is, the roof 200 and the floor 300 are connected to the panels 112 of the first prefabricated mobile 100a and the second prefabricated mobile 100b, and to the panels 112 of the third prefabricated mobile 100c and the fourth prefabricated mobile 100d, so that the prefabricated mobiles 100 are connected by the roof 200 and the floor 300. Furthermore, the space S between the prefabricated mobiles 100 can be determined depending on the size of the roof 200 and the floor 300, so that the space S optimized for the intended use can be provided according to the size of the roof 200 and the floor 300.

[0072] In addition, as in Fig. 4, the roof 200 and the floor 300 can be divided into a plurality of roofs and floors, wherein the plurality of roofs and floors can be detachably connected to each other, so that the size of the interior space S of the prefabricated mobile 100 can be adjusted more efficiently.

[0073] For example, the roof 200 and the floor 300 can be divided into four roofs and four floors if four prefabricated mobiles 100 are provided, and the utilization of the space S can be improved by selectively arranging the roofs 200 and the floors 300 according to the purpose of use.

[0074] As from Fig. 2, the prefabricated mobile 100 may further comprise a wall section 400 which is detachably connected to the body 110.

[0075] That is, the wall section 400 can be arranged in the interior space S defined by connecting the plurality of prefabricated mobiles 100 and serve as an interior wall. The wall section 400 can be provided as a plurality of wall sections 400 that support the interior space S defined by the prefabricated mobiles 100, or can be used in various forms depending on the intended use.

[0076] For example, the wall sections 400 are connected to the panels 112 of the first prefabricated mobile 100a and the second prefabricated mobile 100b as well as to the panels 112 of the third prefabricated mobile 100c and the fourth prefabricated mobile 100d, so that the wall sections 400 can be designed as interior walls of the interior space S defined by the prefabricated mobile 100.

[0077] The wall sections 400 can be used to provide various comfort functions in the space S defined by the prefabricated mobile 100 in accordance with the intended use, wherein the comfort of the space use can be provided by adding the function in accordance with the intended use.

[0078] As in Fig. 5 and Fig. 6, in another exemplary embodiment of the present disclosure, a lateral portion of the panel 112 of the prefabricated mobile 100 is connected to lateral portions of the panels 112 of the other prefabricated mobiles 100, thereby forming a support structure while forming the interior space S inward.

[0079] In relation to Fig. 5, the edge portions of the plate 112 of the prefabricated mobile 100 are connected to each other to define a surface, so that the space S is formed inwards.

[0080] That is, the plate 112 of the first prefabricated mobile 100a is connected to the second prefabricated mobile 100b and the third prefabricated mobile 100c, and the remaining plate 112 of the fourth prefabricated mobile 100d, which is not connected to the first prefabricated mobile 100a, is connected to the second prefabricated mobile 100b and the third prefabricated mobile 100c, so that the plate 112 of the prefabricated mobile 100 has a columnar shape and forms the support structure.

[0081] In addition, the space S is formed inwards by the prefabricated Mobil 100 so that the robust support structure can be configured and the interior space S can be used.

[0082] For example, a power supply 500 can also be provided in the interior space S defined by the prefabricated mobile 100. The power supply 500 can be a battery or a fuel cell. Since the power supply 500 is housed in the interior space S defined by the prefabricated mobile 100, the power supply 500 can be protected from the outside and easily electrically connected to the prefabricated mobile 100.

[0083] Furthermore, the drive module 120 configured to be movable can also be provided on the power supply 500, allowing a user to move to a desired position together with the prefabricated mobile 100. A device for attaching the power supply 500 to the prefabricated mobile 100 is not required, and the drive module 120 provided on the power supply 500 can be synchronized with the drive module 120 provided on the prefabricated mobile 100, allowing the power supply 500 to move stably.

[0084] The prefabricated mobiles 100 may each include the roof 200 and the floor 300, which can be attached to or detached from the upper and lower portions of the panel 112, respectively. Therefore, the roof 200 and the floor 300 can be attached to the outside of some of the prefabricated mobiles 100, so that the space S can be defined externally.

[0085] The overall lengths and widths of the roof 200 and the floor 300 can be designed according to the intended use. Since the space S is formed outwardly by the roof 200 and the floor 300, various uses can be realized by utilizing the corresponding space S.

[0086] Fig. 5 shows that the roof 200 and the floor 300 are provided to connect the first prefabricated mobile 100a and the second prefabricated mobile 100b, and the roof 200 and the floor 300 are provided to connect the third prefabricated mobile 100c and the fourth prefabricated mobile 100d. However, the space S can be formed externally by selectively attaching the roof 200 and the floor 300 to the prefabricated mobile 100 depending on the intended use.

[0087] In the present case, the prefabricated mobile 100 may further comprise the detachable wall portion 400, and the outwardly formed space S may be closed when the wall portion 400 is attached to the roof 200 and the floor 300.

[0088] That is, the wall section 400 can be arranged to seal the space S formed to the outside by the roof 200 and the floor 300, so that the wall section 400 can serve as an exterior wall. The plurality of wall sections 400 can be provided on the roof 200 and the floor 300 and close off the space S formed to the outside from the outside.

[0089] The wall section 400 can also be detachably connected to the panel 112 of the prefabricated mobile 100 and define a new space S. The wall section 400 can ensure not only the use of the space S formed externally between the roof 200 and the floor 300, but also the use of the space S of the prefabricated mobile 100.

[0090] In addition, the wall section 400 can form the support structure for the roof 200 and the floor 300 and ensure the stability of the space S formed to the outside by the roof 200 and the floor 300.

[0091] According to the electric mobility vehicle having the above-mentioned structure, the plurality of prefabricated mobiles 100 can travel autonomously, and the space S optimized for the purpose of use by changing the assembled shape of the prefabricated mobile 100 in accordance with various purposes of use can be provided, so that the versatility can be improved.

[0092] In an exemplary embodiment of the present disclosure, the vehicle may be referred to as being based on a concept that encompasses various means of transportation. In some cases, the vehicle may be interpreted as being based on a concept that encompasses not only various land transportation means such as cars, motorcycles, trucks, and buses traveling on roads, but also other means of transportation such as aircraft, drones, ships, etc.

[0093] For ease of explanation and precise definition in the appended claims, the terms "upper," "lower," "inner," "outer," "up," "down," "upward," "downward," "front," "rear," "back," "inside," "outside," "inward," "outward," "inside," "outside," "internal," "external," "forward," and "backward" are used to describe features of the exemplary embodiments with reference to the positions of those features as illustrated in the figures. It is further understood that the term "connect" or its derivatives refer to both direct and indirect connection.

[0094] The term "and / or" may include a combination of a plurality of related listed items or one of a plurality of related listed items. For example, "A and / or B" includes all three cases "A," "B," and "A and B."

[0095] In exemplary embodiments of the present disclosure, "at least one of A and B" may refer to "at least one of A or B" or to "at least one of combinations of at least one of A and B." Furthermore, "one or more of A and B" may refer to "one or more of A or B" or "one or more combinations of one or more of A and B."

[0096] In this specification, unless otherwise stated, the singular includes the plural unless the context clearly indicates otherwise.

[0097] It should be understood that in the exemplary embodiment of the present disclosure, a term such as "comprising" or "having" is intended to indicate that the features, numbers, steps, operations, elements, parts, or combinations thereof described in the specification are present, and does not exclude the possibility that one or more other features, numbers, steps, operations, elements, parts, or combinations thereof are added or present.

[0098] According to an exemplary embodiment of the present disclosure, components may be combined with each other to be implemented as a unit, or some components may be omitted.

[0099] The foregoing descriptions of specific exemplary embodiments of the present disclosure have been presented for purposes of illustration and description. They are not intended to be exhaustive or to limit the present disclosure to the precise forms disclosed, and, of course, many modifications and variations are possible in light of the above teachings. The exemplary embodiments were chosen and described in order to explain certain principles of the invention and their practical application to enable those skilled in the art to make and use various exemplary embodiments of the present disclosure, as well as various alternatives and modifications thereof. It is intended that the scope of the present disclosure be defined by the appended claims and their equivalents.

Claims

[1] Electric mobility vehicle comprising: a plurality of prefabricated mobiles, each comprising a body with a base and a plate extending upwards from the base, as well as a drive module mounted on the base and configured to be mobile, wherein the bodies of the plurality of prefabricated mobiles are configured to be connected to one another, and the bodies of the prefabricated mobiles are connected to one another to define a space inside or outside the panel of the body. [2] Electric mobility vehicle according to claim 1, wherein the plurality of plates are provided on the base and the bodies of the various prefabricated mobiles are connected by the plurality of plates. [3] Electric mobility vehicle according to claim 1, wherein the body of the prefabricated mobile comprises first and second plates and the first and second plates are connected to each other in an orthogonal direction. [4] An electric mobility vehicle according to claim 3, wherein upper and lower portions of the plate of the body extend curvedly and are curved in a direction opposite to a direction in which the upper and lower portions of the plate meet. [5] Electric mobility vehicle according to claim 3, wherein four prefabricated mobiles are intended to be connected to each other and the space is defined by the bodies of the four prefabricated mobiles. [6] The electric mobility vehicle according to claim 5, wherein the space is formed inwardly when the panels of the four prefabricated mobiles are assembled in a direction in which their surfaces face each other in a state in which the panels of two of the four prefabricated mobiles are connected so that surfaces of the two prefabricated mobiles face each other, and the panels of the remaining two of the four prefabricated mobiles are connected so that surfaces of the remaining two prefabricated mobiles face each other. [7] The electric mobility vehicle according to claim 6, wherein the four prefabricated mobiles further comprise a roof and a floor that can be attached to or detached from upper and lower portions of the panel, respectively, wherein upper and lower portions of the assembled four prefabricated mobiles are connected by the roof and the floor, respectively, to expand the space. [8] Electric mobility vehicle according to claim 7, wherein the roof and the floor are divided into a plurality of roofs and floors and are detachably connected to one another. [9] Electric mobility vehicle according to claim 6, further comprising a wall section detachably connected to the body, wherein at least one wall section is provided in the space formed by connecting the four prefabricated mobiles to the inside. [10] An electric mobility vehicle according to claim 5, wherein a lateral portion of the panel of the prefabricated mobile is connected to lateral portions of panels of other prefabricated mobiles to form a support structure while the space is formed inwardly. [11] The electric mobility vehicle according to claim 10, wherein the prefabricated mobile further comprises a roof and a floor which can be attached to or detached from upper and lower portions of the panel, respectively, the roof and the floor being attached to a predetermined number of the prefabricated mobiles in an outward direction to form an outward space. [12] An electric mobility vehicle according to claim 11, further comprising a detachable wall portion, wherein the outwardly formed space is closed when the wall portion is attached to the roof and the floor. [13] Electric mobility vehicle according to claim 10, wherein a power supply is provided in the space formed inwardly by the prefabricated mobile, and the power supply is electrically connected to the prefabricated mobile. [14] Electric mobility vehicle according to claim 13, wherein a drive module configured to be mobile is further provided on the power supply. [15] The electric mobility vehicle according to claim 1, wherein the plurality of prefabricated mobiles are electrically connected when the plurality of prefabricated mobiles are connected to each other by the bodies, and the plurality of prefabricated mobiles share power and a control signal.