Charging system for mechanical parking facilities and mechanical parking facilities equipped therewith
The charging system for mechanical parking facilities addresses safety risks by using a tensioned winding device and separate housings to keep charging cables aligned and prevent interference, ensuring safe and efficient charging operations.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2024-05-23
- Publication Date
- 2026-04-10
AI Technical Summary
Charging systems for mechanical parking facilities face safety risks due to charging cables getting caught or disconnected during pallet movement, hindering normal operation and posing safety hazards.
A charging system with a winding device that applies constant tension to the charging cable, ensuring it remains straight and avoids contact with the pallet, and includes separate housings for the charging and winding devices to prevent interference, along with indicator lights for status verification.
The system effectively prevents charging cable-related safety hazards and ensures smooth pallet movement by maintaining the cable's tension and alignment, allowing safe and efficient charging operations.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to a charging system for mechanical parking equipment.
Background Art
[0002] As a charging system for mechanical parking equipment, there are those proposed in Patent Documents 1 and 2, which include a pallet capable of mounting a vehicle and a charging connector provided on this pallet and connectable to the vehicle-side power supply port of the in-vehicle battery, and enable charging by connecting to a power source via the charging connector in a state where the vehicle is parked on the pallet. In addition, the applicant has obtained a patent regarding a storage body in the form of a long and narrow body for retractably winding and storing a charging cable connected to a charging device, as shown in Patent Document 3.
[0003] However, even if the storage body in the form of a long and narrow body of Patent Document 3 is applied to mechanical parking equipment, when the pallet moves out and moves with the charging cable grounded, protruding, or caught on other objects in a state where the charging cable is pulled out, the normal movement of the pallet may be hindered due to the charging cable, or the vehicle-side power supply port and the charging connector may come off, which may cause a risk of inhibiting safety.
Prior Art Documents
Patent Documents
[0004]
Patent Document 1
Patent Document 2
Patent Document 3
Summary of the Invention
Problems to be Solved by the Invention
[0005] The problem that this invention aims to solve is to provide a charging system for mechanical parking facilities that can suppress the occurrence of situations that impede safety due to charging cables. [Means for solving the problem]
[0006] The present invention provides a charging system for a mechanical parking facility, comprising a charging cable connected to a charging device and a winding device for winding the charging cable, wherein the winding device is mounted on a parking pallet. The winding device is configured to constantly apply tension to the charging cable in the winding direction, regardless of whether the charging connector at the end of the charging cable is set in a standby receiving section when not charging, and to prevent the charging cable from making contact with the pallet by this constant tension. In carrying out the present invention, the system can be configured such that an interlock release signal is issued to the mechanical parking control unit when two AND conditions are met: the charging cable is wound onto the winding device and the charging connector is set in the standby receiving unit. Furthermore, the system can be configured such that an interlock release signal is issued to the mechanical parking control unit only when the charging connector is set in the vehicle's vehicle-side power supply port. In addition, the winding device and the charging device can be configured as separate units in separate housings and mounted separately on the rear and left and right sides of the pallet. The winding device may also be provided with a cable exit hole for the charging cable below the standby receiving section, and the constant tension applied to the charging cable while the charging connector is set in the standby receiving section encourages the charging cable between the standby receiving section and the exit hole to be in a substantially straight line. Furthermore, the winding device can be equipped with indicator lights to allow the user to check the normal status, interlock status, and device malfunction, so that the user can recognize that the charging operation is being performed correctly and that the charging process has been completed correctly by checking the indicator lights. [Effects of the Invention]
[0007] This invention provides a charging system for mechanical parking facilities that can suppress the occurrence of situations that compromise safety due to charging cables. [Brief explanation of the drawing]
[0008] [Figure 1] A perspective view of a pallet for a mechanical parking system according to an embodiment of the present invention. [Figure 2] A diagram illustrating the control system configuration for the charging system of the mechanical parking facility. [Figure 3] An explanatory diagram of the internal structure of the winding mechanism of the mechanical parking system. [Figure 4] This is an explanatory diagram of the charging cable status at the standby position of the mechanical parking system, where (A) indicates the correct state and (B) indicates the incorrect state. [Figure 5] This diagram illustrates the operating state of the charging system for the mechanical parking equipment of the mechanical parking equipment. (A) shows a state where condition a of the first conditions is met but condition b is not met. (B) shows a state where condition b of the first conditions is met but condition a is not met. (C) shows a state where both condition a and condition b of the first conditions are met. (D) shows a state where the second condition is met. [Figure 6] (A) to (D) are explanatory diagrams showing examples of the arrangement of the charging device and winding device of the same mechanical parking system. [Figure 7] (A) is a perspective view showing the configuration of the winding device of the mechanical parking system, and (B) is a perspective view of the winding device from another direction. [Figure 8] Flowchart for releasing the interlock in the mechanical parking system. [Modes for carrying out the invention]
[0009] Embodiments of the present invention will be described below with reference to the drawings. (Overview of mechanical parking systems)
[0010] The mechanical parking system according to this embodiment includes a pallet 11 on which a parked vehicle can be mounted, and a mechanical parking control unit 14 (see Figure 2) that controls the movement and stopping of the pallet 11. Under the control of a vehicle-side power supply port (not shown), a predetermined power source moves and stops the pallet 11 in various directions (up, down, left, right, forward, and backward), enabling the parking of multiple vehicles within a limited land area.
[0011] With the increasing popularity of hybrid and electric vehicles, there is a growing need for a safe and efficient charging system for mechanical parking facilities that can provide onboard batteries for vehicles parked on pallets 11. This embodiment proposes a charging system for mechanical parking facilities that can achieve this.
[0012] The pallet 11 in this embodiment can be any pallet 11 used in a general mechanical parking system, but Figure 1 shows an example in which a floor 12 on which a vehicle parks and stops is provided, and side frames 13 that are one step higher than the floor surface of the floor 12 are provided on both the left and right sides of the floor 12. The length (edge width) of the side frames 13 in the left-right direction is set as appropriate. The height of the side frames 13 is set, for example, between 100 mm and 200 mm, and preferably set to 150 mm.
[0013] Pallet 11 is equipped with a charging device 21 connected to the external power supply of the mechanical parking system, and a winding device 31 that retracts and stores a charging cable 22 that supplies electricity from the charging device 21 to the vehicle. The charging device 21 does not necessarily have to be mounted on top of pallet 11; it may be placed in an appropriate location, such as above pallet 11, that can supply electricity to a vehicle parked on pallet 11. (Regarding the charging device 21)
[0014] The charging device 21 includes a charger main body 23 that can supply electricity from an external power source to the charging cable 22 at an appropriate voltage and current for charging, and a charger control unit that controls it. Hereinafter, without distinguishing between the charger main body 23 and the charger control unit, they will be described as the charger main body 23. In this example, the charging cable 22 is implemented as a continuous series of cables from the charger main body 23 to the vehicle via the winding device 31 without passing through a rotating electrical contact part or the like. When the charging connector 25 provided at the tip of the charging cable 22 is connected to a vehicle-side power supply port (not shown), the external power source and the in-vehicle battery of the vehicle are connected, and the in-vehicle battery is charged. (Regarding the winding device 31)
[0015] The winding device 31 includes a casing 36 installed on the side frame 13 of the pallet 11. Inside the casing 36, a winding device 31 for winding the charging cable 22 and a biasing part 38 are provided. The user pulls out the charging cable 22 against the tension constantly applied by the biasing part 38 and connects the charging connector 25 provided at its tip to a vehicle-side power supply port (not shown) of the in-vehicle battery of the vehicle for charging. When charging is completed, by simply returning the charging connector 25 to the standby receiving part 37, which is the standby position of the casing 36, the pulled-out charging cable 22 is wound into the casing 36 by the biasing part 38. (The charging cable 22)
[0016] The charging cable 22 is a charging cord in which a conductive member is coated with an insulator. In this example, a charging connector 25 is provided at the tip of the charging cable 22. The charging connector 25 is connected to a vehicle-side power supply port (not shown) when charging the in-vehicle battery of the vehicle. (The casing 36)
[0017] The casing 36 is a housing installed on the side frame 13 and has a pull-out hole 39 for the charging cable 22 on its side (the lower front in the example of Figure 1). The position of the pull-out hole 39 can be set as appropriate, but it is desirable that the position be such that the charging cable 22 pulled out from the pull-out hole 39 does not come into contact with the floor 12 of the pallet 11 or the side frame 13. The length of the casing 36 in the left-right direction is set to, for example, 100 mm or less, preferably 60 mm, so that the casing 36 is installed on the side frame 13. The height of the casing 36 is set to, for example, 500 mm or less, preferably 250 mm. (Winding device 31)
[0018] In this example, the winding device 31 is equipped with two guides, a first guide 41 and a second guide 42, as shown in Figure 3. The charging cable 22 is stretched between the first guide 41 and the second guide 42, using them as a winding axis, for one round trip or more turns. Winding and unwinding of the charging cable 22 is performed by moving the first guide 41 and the second guide 42 closer together and further apart. The first guide 41 and the second guide 42 are moved closer together and further apart by moving at least one of them, but in this example, the first guide 41 is fixed and the second guide 42 is moved (moved left and right in the figure) to move closer together and further apart. The unwound charging cable 22 can be pulled out from the winding device 31 through an outlet hole 39.
[0019] In many conventional cord reels, the cord for winding the cord onto a rotating reel is separated from the power supply cord that supplies power to this cord, and the two cords are electrically connected by a rotating electrical contact. While it is possible to implement a cord with such a rotating electrical contact, the winding device 31 according to this embodiment is advantageous in that it can make the charging cable 22 a continuous series of cords from the charger body 23 to the charging connector 25 without going through an electrical contact, thereby suppressing the possibility of leakage or short circuits. Specifically, the charging cable 22 drawn out from the charger body 23 is passed inside the side frame 13 of the pallet 11 and introduced into the casing 36 from the bottom of the casing 36, reaches the second guide 42 along the first guide 41, folds back at the second guide 42 and returns to the first guide 41. If one round trip is sufficient, it returns to the first guide 41 or is guided by another guide and led out from the pull-out hole 39. If the cable makes more than two round trips, it is guided from the first guide 41 back to the second guide 42, then back again to the first guide 41, or guided by another guide and led out through the pull-out hole 39. In this case, if the first guide 41 and the second guide 42 are implemented as pulleys as shown in Figure 3, it is desirable that they be circular reel-shaped with grooves formed to receive the charging cable 22 at each turn. The first guide 41 and the second guide 42 can be implemented in various forms that can feed the charging cable 22, rather than being pulleys. For example, they may be non-rotatable with low frictional resistance, or they may be a combination of multiple feed rollers. (Guide mechanism)
[0020] The support shaft of the first guide 41 is supported by the casing 36, while the second guide 42 moves while being guided by a guide mechanism. The guide mechanism comprises a slide section 43 and a guide section 44, and the support shaft of the second guide 42 is supported by the slide section 43, which moves while being guided by the guide section 44. The direction of movement of the second guide 42 (the direction in which the guide section 44 extends) can be changed to various directions such as up, down, forward, backward, left, right, and diagonally.
[0021] The sliding portion 43 is biased to move upward by the biasing portion 38. The biasing portion 38 may be a spring such as a constant-load spring, or other biasing means such as a weight may be used as a substitute or in combination.
[0022] When the charging cable 22 is not yet extended, the sliding part 43 and the second guide 42 are located away from the first guide 41 (at the far right in Figure 3). When the user pulls the tip of the charging cable 22 coming out of the pull-out hole 39 of the casing 36, the sliding part 43 and the second guide 42 move against the biasing part 38 and approach the first guide 41, and the charging cable 22 is pulled out. When the pulling stops and the charging cable 22 becomes free, the tension of the biasing part 38 causes the sliding part 43 and the second guide 42 to move away from the first guide 41, and the charging cable 22 is wound up. Although not shown in the diagram, shock absorbers such as coil springs can also be provided at the movable ends of the slide section 43 (the left and right ends in the diagram). (Regarding the standby receiving unit 37)
[0023] The standby receiving portion 37, which is the standby position for the charging connector 25, is provided on the upper part of the casing 36 in this example. This standby receiving portion 37 is cylindrical in shape and receives the insertion portion at the tip of the charging connector 25, and a locking portion (not shown) for the charging connector 25 is provided as needed.
[0024] This locking portion can engage with a latch (not shown) protruding from the upper tip of the charging connector 25, and the user can perform the connection by simply inserting the tip of the charging connector 25 into the standby receiving portion 37 in the same manner as when connecting to the vehicle for charging, and the latch will engage with the locking portion. The standby receiving portion 37 is provided with a connector detection sensor 32, which detects whether the charging connector 25 is properly inserted. When pulling out the charging cable 22 for charging, the user pulls the lever on the charging connector 25 to release the latch from the locking portion and pulls the charging connector 25 out of the standby receiving portion 37, and then extends the charging cable 22 until the charging connector 25 reaches the vehicle-side power supply port (not shown) of the vehicle. (Regarding constant tension)
[0025] As mentioned above, the charging cable 22 is constantly subjected to tension in the winding direction by the biasing part 38. This function will be explained for four states: the standby position of the charging connector 25, the pulling out of the charging cable 22, the setting of the charging connector 25 into the vehicle-side power supply port (not shown), and the winding of the charging cable 22. (Status of charging cable 22 in standby position)
[0026] The charging cable 22 is constantly subjected to tension in the unwinding direction by the biasing unit 38, and this tension is applied not only when the charging cable 22 is being unwound, but also when it has been set in the standby receiving unit 37, which is the standby position. As a result, the charging cable 22 extends almost straight from the charging connector 25 set in the upper standby receiving unit 37 to the lower outlet hole 39. This almost straight extension does not mean a perfectly straight line in mathematical terms, but rather that it extends without sagging, touching the pallet 11, or overhanging, as shown in Figure 4(B). The length of the charging cable 22 and the maximum separation distance between the two guides 41 and 42 (i.e., the maximum winding amount) are set so that the second guide 42 separates from the first guide 41, allowing the charging cable 22 to be wound up to a length that does not sag when the charging connector 25 is set in the standby receiving unit 37. Of course, the winding mechanism of the winding device 31 could be configured to wind the cable even shorter, but when the charging connector 25 is set in the standby position, it is not possible to wind the cable any further due to the length of the charging cable 22, so the maximum separation distance (i.e., maximum winding amount) was set. A winding device detection sensor 33 is provided on the guide section 44 or casing 36 to detect when the second guide 42 or the slide section 43 has reached this maximum separation distance. (Drawer for charging cable 22)
[0027] When the user pulls the tip of the charging cable 22, the charging cable 22 is pulled out while under tension in the winding direction. At that time, as described above, the second guide 42 and the sliding part 43 move closer to the first guide 41 against the biasing part 38. Because tension is constantly applied in this way, even when the user pulls out the charging cable 22 for charging, the charging cable 22 is prevented from touching the pallet 11 or other objects more than necessary. (Setting to the vehicle's power supply port)
[0028] During charging, the charging connector 25 is set into the vehicle-side power supply port (not shown). Generally, simply inserting the tip of the charging connector 25 correctly into the vehicle-side power supply port (not shown) completes the setup by the latch (not shown) of the charging connector 25 engaging with the locking part (not shown) of the vehicle-side power supply port (not shown). Since tension is constantly applied to the charging cable 22, even if the user pulls out the charging cable 22 excessively, the charging cable 22 will not touch the pallet 11 but will remain suspended in the air.
[0029] Furthermore, by setting the length of the charging cable 22 to be such that it is suspended in the air when the vehicle is stopped in a proper position such as a wheel chock, it is possible to suppress the occurrence of inappropriate situations such as the charging cable 22 getting caught on something or protruding outside the pallet 11 when the charging connector 25 is set in the vehicle-side power supply port (not shown). (Charging cable 22 gets caught)
[0030] When charging is complete, the user disconnects the vehicle-side power supply port (not shown) from the charging connector 25 and returns it to the standby receiving section 37 of the casing 36 of the winding device 31. At this time, tension is constantly applied to the charging cable 22, so the charging cable 22 is automatically wound onto the winding device 31. (Regarding the configuration of the control system)
[0031] Next, the configuration of the control system for the mechanical parking equipment charging system according to this embodiment will be described, mainly with reference to Figure 2. The charger body 23 and the external power supply 20 are electrically connected by an appropriate power cable or the like. The charger body 23 and the charging connector 25 are connected by a series of charging cables 22. The charger unit 23 and the mechanical parking control unit 14 are connected by a communication cable. The charger body 23 and the winding device 31 are connected by a communication line capable of sending contact signals. Furthermore, the above-mentioned communication cables and lines can be of various communication types, and communication can be wireless as well as wired.
[0032] For more details, the winding device 31 is equipped with indicator lights 40 (see Figure 7), such as LEDs, so that the user can check the normal status, interlock status, and device malfunction. The charger body 23 is configured to send control signals to the indicator lights 40 to prompt the display of selected colors or other indicators. The user can recognize that the charging operation is being performed correctly or that the charging process has been completed correctly by checking the indicator lights 40. The position, size, and number of indicator lights 40 can be changed as appropriate, but in the example in Figure 7, the indicator lights 40 are placed in two locations, the upper part (inside the standby receiving section 37 in Figure 7) and the lower part, when viewed from the front along the direction of vehicle entry, so that the user can easily see them whether they are in or out of the vehicle. The indicator lights 40 in the lower part of the casing 36 are positioned perpendicular to the pallet 11. The indicator lights 40 in the upper part of the casing 36 are positioned to form an obtuse angle with respect to the pallet 11. With this configuration, the indicator lights 40 can be clearly seen by the user when standing near the winding device 31 or when inserting or removing the charging connector 25. Furthermore, when viewed from the rear (as in the front view when viewed facing the direction of vehicle entry), the indicator lights 40 are further positioned perpendicular to the pallet 11 on the upper part of the casing 36. By positioning the indicator lights 40 not only on the front side of the casing 36 (the side into which the vehicle enters the pallet 11) but also on the rear side (the opposite side from which the vehicle enters the pallet 11), the indicator lights 40 can be seen from both the front and rear sides of the casing 36, making it possible to install the winding device 31 in a reversed position. If the winding device 31 can be installed in a reversed position, the position of the winding device 31 can be selected to shorten the route from the winding device 31 to the vehicle-side power supply port, thereby improving safety and the connectivity of the charging connector 25. (Connector detection sensor 32)
[0033] The connector detection sensor 32 detects whether the charging connector 25 is properly set in the standby receiving unit 37. More specifically, the connector detection sensor 32 can be implemented as a contact-type sensor such as a limit switch or a non-contact-type sensor such as a proximity sensor. The connector detection sensor 32 can be placed at an appropriate position on the charging connector 25, and when the connector detection sensor 32 detects the charging connector 25, the connector detection sensor 32 emits a charging connector detection signal to the charger body 23. (Winding device detection sensor 33)
[0034] Next, the winding device detection sensor 33 detects when the charging cable 22 has been wound onto the winding device 31 to the maximum winding length mentioned above. More specifically, the connector detection sensor 32 can be implemented as a contact-type sensor such as a limit switch or a non-contact-type sensor such as a proximity sensor, which can detect when the second guide 42 has reached a position where the distance between the first guide 41 and the second guide 42 is the maximum separation distance (i.e., the maximum winding length). This winding device detection sensor 33 can be installed on the casing 36 or guide section 44 of the winding device 31, and is positioned appropriately so as to detect when the second guide 42 or slide section 43 has reached the above position. By detecting the second guide 42 or slide section 43 with the winding device detection sensor 33, a cable winding detection signal is sent from the winding device detection sensor 33 to the charger body 23. (Power supply detection sensor 34)
[0035] The power supply detection sensor 34 detects when the charging connector 25 is connected to a vehicle-side power supply port (not shown) and charging is in progress, or when power is supplied. More specifically, the power supply detection sensor 34 can be placed at an appropriate position between the charger body 23 and the charging connector 25, and the power supply detection sensor 34 causes the winding device detection sensor 33 to emit a power supply signal to the charger body 23.
[0036] Upon receiving these signals, the charger unit 23 issues an interlock release signal to the mechanical parking control unit 14 when either of the pre-set first condition or second condition is met. (First condition)
[0037] The first condition is an AND condition that satisfies both of the following conditions a and b. Condition a is that the issued charging connector detection signal is received by the charger unit 23. Condition b is that the issued cable winding detection signal is received by the charger unit 23. (Second condition)
[0038] The second condition is that the issued interlock release signal is received by the connector detection sensor 32. When either of these first and second conditions is met, the control device of the charger body 23 issues an interlock release signal to the mechanical parking control unit 14. Upon receiving this interlock release signal, the mechanical parking control unit 14 grants permission to move the pallet 11 by fulfilling other conditions for moving the pallet 11 (for example, the condition that the operator has pressed down the operation button). (Operating state)
[0039] The specific operating conditions will be explained with reference to Figures 5 and 8. Figure 5(A) shows a state in which condition a of the first conditions described above is met, but condition b is not (in Figure 8, when S210 is Yes, S220 is No, and S230 is No). Specifically, it shows a state in which the charging connector 25 is set in the standby receiving unit 37 and a charging connector detection signal is emitted and received by the charger body 23, but the charging cable 22 has not been wound up to the maximum separation distance (i.e., maximum winding amount) by the winding device 31 and the cable winding detection signal has not been received by the charger body 23. In this state, the interlock release signal is not emitted, and for example, the indicator light 40 lights up red to indicate the interlock state.
[0040] Figure 5(B) shows a state in which condition b of the first condition described above is met, but condition a is not (in Figure 8, when S210 is No and S230 is No). Specifically, it shows a state in which the charging cable 22 has been wound up to the maximum distance (i.e., the maximum winding amount) by the winding device 31 and the cable winding detection signal has been received by the charger body 23, but the charging connector 25 has not been set in the standby receiving unit 37 and the charging connector detection signal has not been received by the charger body 23. Even in this state, the interlock release signal is not issued, and for example, the indicator light 40 lights up red to indicate the interlock state.
[0041] Figure 5(C) shows a state in which both conditions a and b of the first condition described above are met (in Figure 8, when S210 is Yes and S220 is Yes). Specifically, this shows a state in which both the cable winding detection signal and the power supply signal are received by the charger body 23. In this state, an interlock release signal is issued, and for example, the indicator light 40 lights up yellow.
[0042] Figure 5(D) shows the case where the second condition described above is met (in Figure 8, when S210 is No and S230 is Yes, or when S210 is Yes, S220 is No, and S230 is Yes). In this proper charging state, the interlock release signal is issued, and for example, the indicator light 40 lights up green.
[0043] Thus, the interlock release signal is issued and the pallet 11 becomes movable only in two cases: when the charging connector 25 is set in the standby receiving unit 37 and the charging cable 22 is properly wound up (Figure 5(C)), or when it is properly set in the vehicle-side power supply port (not shown) of the vehicle on the pallet 11 (Figure 5(D)). Therefore, when moving the pallet 11, the risk of the pallet 11 being hindered or an accident occurring during movement due to the charging cable 22 being unnecessarily pulled out too far from the winding device 31 is suppressed. (Separate cabinet)
[0044] The charging device 21 and the winding device 31 may be housed together, but it is preferable to configure them in separate housings, as shown in Figures 6(A) and 6(B), so that they can be mounted separately on the left, right, front, and rear of the pallet 11. This allows them to be positioned on the left, right, front, and rear of the pallet 11 in accordance with the location of the vehicle-side power supply port (not shown) of the vehicle, as shown in Figures 6(C) and 6(D). Since the winding device 31 (casing 36) having the charging connector 25 can be positioned near the vehicle-side power supply port of the vehicle, the charging cable 22 from the charging device 21 to the casing 36 can be positioned on the back side of the pallet 11, etc., so that the charging cable 22 does not become an obstacle. This makes it possible to suppress the occurrence of safety-impairing incidents caused by the charging cable 22.
[0045] In this case, it is preferable that the charging device 21 be positioned at a height that avoids interference with the vehicle, such as being lower than the wheel stop (not shown) on the floor 12 of the pallet 11 or lower than the bottom surface of the vehicle body (not shown) from the floor 12. More preferably, it is preferable to position it behind the wheel stop (not shown) on the floor 12 of the pallet 11. The height of the housing of the charging device 21 is set to, for example, 120 mm or less, preferably 100 mm or less, taking into consideration the minimum ground clearance of the vehicle. The housing of the charging device 21 is formed of, for example, metal, so that the charging device 21 is protected even if a vehicle accidentally drives over the housing.
[0046] Furthermore, it is preferable that the winding device 31, when mounted on the side frame 13 of the pallet 11, be lower than the vehicle's side mirrors and not protrude beyond the side frame 13 to the left or right. By setting the sum of the height of the side frame 13 and the height of the casing 36 to 700 mm or less, collision with the vehicle's side mirrors can be prevented. [Explanation of Symbols]
[0047] 11: Palette 12: Floor part 13: Side frame 14: Mechanical parking control unit 20: External power supply 21:Charging device 22: Charging cable 23:Charger body 25: Charging connector 31: Winding device 32: Connector detection sensor 33: Winding device detection sensor 34: Power detection sensor 36: Casing 37: Standby receiving unit 38: Encouraging part 39: Drawer hole 40: Indicator light 41: First Guide 42: Second Guide 43: Slide section 44: Guide Section
Claims
1. A charging system for a mechanical parking facility, comprising a charging cable connected to a charging device and a winding device for winding up the charging cable, wherein the winding device is mounted on a parking pallet, The pallet comprises a floor on which a vehicle parks and stops, and side frames provided on both sides of the floor that are higher than the floor. The winding device is mounted on the side frame, The winding device applies constant tension to the charging cable in the winding direction, regardless of whether the charging connector at the tip of the charging cable is set in the standby receiving section when not charging, and the constant tension is configured to prevent the charging cable from coming into contact with the pallet, characterized in that it is configured in this way for a charging system for mechanical parking equipment.
2. A charging system for a mechanical parking facility comprising a charging cable connected to a charging device and a winding device for winding up the charging cable, wherein the winding device is mounted on a parking pallet, The winding device applies constant tension to the charging cable in the winding direction, regardless of whether the charging connector at the tip of the charging cable is set in the standby receiving section when not charging, and is configured to prevent the charging cable from coming into contact with the pallet by applying constant tension. A charging system for mechanical parking equipment, characterized in that an interlock release signal is issued to the mechanical parking control unit when two AND conditions are met: the charging cable is wound onto the winding device and the charging connector is set in the standby receiving unit.
3. The charging system for mechanical parking equipment according to claim 1, characterized in that an interlock release signal is issued to the mechanical parking control unit on the condition that the charging connector is set in the vehicle-side power supply port of the vehicle.
4. A charging system for a mechanical parking facility comprising a charging cable connected to a charging device and a winding device for winding up the charging cable, wherein the winding device is mounted on a parking pallet, The winding device applies constant tension to the charging cable in the winding direction, regardless of whether the charging connector at the tip of the charging cable is set in the standby receiving section when not charging, and is configured to prevent the charging cable from coming into contact with the pallet by applying constant tension. A charging system for a mechanical parking facility, characterized in that the winding device and the charging device are configured as separate units in separate housings and are mounted separately on the rear side and left and right sides of the pallet.
5. A charging system for a mechanical parking facility comprising a charging cable connected to a charging device and a winding device for winding up the charging cable, wherein the winding device is mounted on a parking pallet, The winding device applies constant tension to the charging cable in the winding direction, regardless of whether the charging connector at the tip of the charging cable is set in the standby receiving section when not charging, and is configured to prevent the charging cable from coming into contact with the pallet by applying constant tension. The winding device is provided with a cable exit hole for the charging cable below the standby receiving section, and the constant tension applied to the charging cable while the charging connector is set in the standby receiving section encourages the charging cable between the standby receiving section and the exit hole to be substantially straight. This is a charging system for a mechanical parking facility.
6. A charging system for a mechanical parking facility comprising a charging cable connected to a charging device and a winding device for winding up the charging cable, wherein the winding device is mounted on a parking pallet, The winding device applies constant tension to the charging cable in the winding direction, regardless of whether the charging connector at the tip of the charging cable is set in the standby receiving section when not charging, and is configured to prevent the charging cable from coming into contact with the pallet by applying constant tension. A charging system for mechanical parking equipment, characterized in that the winding device is equipped with indicator lights so that the user can confirm the normal status, interlock status, and device malfunction, and the system is configured so that the user can recognize that the charging operation is being performed correctly or that the charging process has been completed correctly by checking the indicator lights.
7. The charging system for mechanical parking equipment according to claim 6, characterized in that the indicator light is provided on both the side into which a vehicle enters the parking pallet and the side opposite to the side into which the vehicle enters.
8. A mechanical parking system comprising: a charging system for a mechanical parking system according to any one of claims 1 to 7; the pallet on which the winding device is mounted; and a mechanical parking control unit for controlling the movement and stopping of the pallet.
Citation Information
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