HOPSCOTCH TRAMPOLINE
20220409942 ยท 2022-12-29
Inventors
Cpc classification
A63B24/0087
HUMAN NECESSITIES
A63B2225/50
HUMAN NECESSITIES
A63B2220/05
HUMAN NECESSITIES
A63B2220/17
HUMAN NECESSITIES
A63B2225/20
HUMAN NECESSITIES
A63B69/0057
HUMAN NECESSITIES
A63B71/022
HUMAN NECESSITIES
A63B5/22
HUMAN NECESSITIES
A63B2024/0096
HUMAN NECESSITIES
A63B71/0622
HUMAN NECESSITIES
International classification
Abstract
A hopscotch trampoline has a trampoline with a bed suspended across a trampoline frame. The bed has a bed center, a bed middle, and a bed periphery. A trampoline length is greater than a trampoline width. A hopscotch field is formed on the bed. The hopscotch field includes successive areas. The successive areas are at least partially linearly oriented. Contact sensors mounted on each area and the contact sensors are electrically connected by an electrical connection and electrically connected to a control panel harness. A middle crossbar can extend underneath the bed and connecting a right vertical post to a left vertical post.
Claims
1. A hopscotch trampoline comprising: a. a trampoline having a bed suspended across a trampoline frame, wherein the bed has a bed center, a bed middle, and a bed periphery, wherein a trampoline length is greater than a trampoline width; and b. a hopscotch field formed on the bed, wherein the hopscotch field includes successive areas, wherein the successive areas are at least partially linearly oriented.
2. The hopscotch trampoline of claim 1, further including: contact sensors mounted on each area, wherein the contact sensors are electrically connected by an electrical connection and electrically connected to a control panel harness.
3. The hopscotch trampoline of claim 1, further including a middle crossbar extending underneath the bed and connecting a right vertical post to a left vertical post.
4. The hopscotch trampoline of claim 1, further including a right hand rail and a left hand rail.
5. The hopscotch trampoline of claim 1, wherein the successive areas on the hopscotch field have lights with at least one light for each successive area, wherein the lights illuminate the successive areas in a sequence during play.
6. The hopscotch trampoline of claim 1, wherein the successive areas on the hopscotch field have lights with at least one light for each successive area, wherein the lights illuminate the successive areas in a sequence before play.
7. The hopscotch trampoline of claim 1, further including: a. a beam emitter configured for operation by a first player, wherein the beam emitter is configured to emit a beam; b. a player one target, wherein the player one target includes a sensor and a camera, wherein the camera is mounted so that it has a view of the bed center, the bed middle and the bed periphery, wherein the player one target is connected to a wide area network; c. a processor, electrically connected to the camera, wherein the processor is configured to generate a geometric model from an image or a video of the first player; d. a second player terminal configured as a wireless device with a touchscreen, wherein the second player terminal is configured to connect to the wide area network; e. a first player avatar generated on the touchscreen, wherein the first player avatar is generated from the geometric model; and f. a hitbox defined on the first player avatar, wherein the touchscreen is configured to score hits on the first player avatar during play.
8. The trampoline video game of claim 7, further including a first player hit point bar.
9. The trampoline video game of claim 7, further including a second player hit point bar.
10. The trampoline video game of claim 7, further including a coordinate space having a coordinate definition on the wireless device and displayed on the touchscreen, wherein the coordinate definition includes an X axis, a Y axis, and a Z-axis.
11. The trampoline video game of claim 7, further including a projectile defined on the coordinate space, wherein the hit box is defined in the coordinate definition, wherein the hit box has a hit box X coordinate centroid, a hit box Y coordinate centroid, and a hit box Z coordinate centroid.
12. The trampoline video game of claim 7, wherein the processor is configured to provide a first player starting hit point amount which is a first player's hit points when starting the game, wherein the first player loses hit points when the second player scores a hit on the first player.
13. The trampoline video game of claim 12, wherein the processor is configured to connect to a server that hosts a number of other players to provide a massively multiplayer online trampoline hopscotch game.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0034] The following call out list of elements can be a useful guide in referencing the elements of the drawings. [0035] 20 Trampoline [0036] 21 Trampoline Legs [0037] 22 Spring Cover [0038] 23 Bed Periphery [0039] 24 Bed Middle [0040] 25 Player 1, First Player [0041] 26 Beam Emitter [0042] 27 Frame [0043] 28 Bed Center [0044] 29 Enclosure [0045] 30 Player One Target [0046] 31 Sensor [0047] 32 Camera [0048] 33 Processor [0049] 34 First Transceiver [0050] 35 Wireless Signal [0051] 36 Second Transceiver [0052] 37 Router 1 [0053] 38 Wide Area Network [0054] 39 Router 2 [0055] 40 Player 2 Terminal [0056] 41 Wireless Device [0057] 42 Touchscreen [0058] 43 Wireless Transceiver [0059] 44 main player one target [0060] 45 player to base station [0061] 46 server [0062] 47 cloud [0063] 51 Player 1 Avatar [0064] 52 Player 1 Hit Point Indicator [0065] 53 Player 2 Hit Point Indicator [0066] 54 Projectile Hit Box [0067] 55 Projectile First Position [0068] 56 Projectile Second Position [0069] 57 Projectile Third Position [0070] 58 Projectile Path [0071] 60 Coordinate Definition [0072] 61 X Axis [0073] 62 Y Axis [0074] 63 Z Axis [0075] 64 Hit Box X-Coordinate Centroid [0076] 65 Hit Box Y-Coordinate Centroid [0077] 66 Hit Box Z Coordinate Centroid [0078] 67 Reticle [0079] 68 Projectile [0080] 69 Ammunition Bar [0081] 70 Application [0082] 71 Speaker [0083] 72 Starting Hit Point Indicator [0084] 73 First Player Decay Indicator [0085] 74 Second Player Decay Indicator [0086] 75 First Player Damage Indicator [0087] 76 Second Player Damage Indicator [0088] 77 First Player Hit Point Bar [0089] 78 Second Player Hit Point Bar [0090] 80 Player One Target Body [0091] 81 Forward Face [0092] 82 Cradle [0093] 83 Device Connection [0094] 84 Player One Terminal [0095] 85 Player One Touchscreen [0096] 90 Player Three Terminal [0097] 91 Player Three Sensor [0098] 92 Player Three Terminal Camera [0099] 93 Player Three Terminal Processor [0100] 94 Third Transceiver [0101] 95 Player Three Touch Screen [0102] 101 First Area [0103] 102 Second Area [0104] 103 Third Area [0105] 104 Fourth Area [0106] 105 Fifth Area [0107] 106 Sixth Area [0108] 107 Seventh Area [0109] 108 Eighth Area [0110] 109 Ninth Area [0111] 110 Tenth Area [0112] 111 Long Bed [0113] 112 Hopscotch Field [0114] 119 Right First Foot [0115] 120 Second Right Foot [0116] 121 First Right Vertical Post [0117] 122 Second Right Vertical Post [0118] 123 Third Right Vertical Post [0119] 124 Fourth Right Vertical Post [0120] 125 First Left Vertical Post [0121] 126 Second Left Vertical Post [0122] 127 Third Left Vertical Post [0123] 128 Fourth Left Vertical Post [0124] 129 Middle Foot [0125] 130 Handle Cover [0126] 131 Control Panel [0127] 132 Middle Foot Cover [0128] 133 Middle Crossbar [0129] 134 Electrical Connection [0130] 135 Control Panel Harness [0131] 141 Contact Sensor [0132] 142 Light [0133] 143 Speaker
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0134] As seen in
[0135] The first player 25 has a beam emitter 26 that can shoot a beam that can be received at a first player target 30. The first player target 30 has a sensor 31, a camera 32, and a processor 33. The processor 33 is connected to a first transceiver 34. The camera 32 he pointed at the trampoline bed center 28 and can determine the location of the first player 25. When the first player is jumping on the bed center 28, the bed middle 24, or the bed periphery 23, the processor provides a status of the first player.
[0136] The processor communicates wirelessly from a first transceiver 34. The first transceiver 34 send a wireless signal 35 to a second transceiver 36 that connects to a first router 37. The first router 37 then connects to a wide area network 38 and through the wide area network communicates with a second router 39. The second router 39 communicates with a wireless transceiver means 43 on a second player terminal 40.
[0137] The second player terminal 40 is a wireless device 41 that has a touchscreen 42. The touchscreen displays a field having coordinate definition 60 on a coordinate space. The coordinate definition defines metes and bounds of the coordinate space to define a virtual play area. The coordinate definition includes an X axis 61, a Y axis 62, and a Z axis 63. The processor 33 translates the camera image taken from the camera 32 and outputs first player data so that the second player terminal 40 can generate a first player avatar 51.
[0138] The first player avatar 51, shown as a turtle, can be targeted by the second player that can send a projectile at the first player avatar 51. The projectile can have a projectile path 58 so that the projectile moves from a projectile first position 55, to a projectile second position 56, to a projectile third position 57. The projectile has a projectile path to create that can connect with the projectile hit box 54.
[0139] The hit box 54 registers a hit on the first player avatar 51 that represents the first player 25, when the hit box 54 is hit by a projectile. The first player can have a first player hit point indicator 52 and the second player can have a second player hit point indicator 53.
[0140] The first player 25 can use the beam emitter 26 to target the sensor 31 of the first player target 50. The second player can use the touchscreen 42 to target the player one avatar 51 by launching a projectile at a player one avatar 51 hit box 54. The projectile hit box 54 may have a hit box x-coordinate centroid 64, a hit box y-coordinate centroid 65, and a hit box Z coordinate centroid 66. The player one avatar 51 may have a tap hit box 59 that intermittently activates to allow the second player to tap on the touchscreen 42 to hit the player one avatar 51. The tap attack may have a status change, or debuff, or directly decrease the number of hit points on the player one hit point indicator 52. The projectile hit box 54 may also have an intermittent activation which can be dependent upon the coordinate definition 60.
[0141] The first player 25 jumps on the bed middle 24 and the player one avatar 51 can move in a jumping motion as well. If the first player 25 is jumping in the bed middle 24, the hit box 54 or the tap hit box 59 can be minimized or intermittently deactivated, based upon the first player jumping skill.
[0142] The number of hit points deducted can also be proportional to and depend upon the location of the first player jumping. For example, the first player can jump in the bed middle 24, or on the bed periphery 23. The bed middle 24 can shield the trampoline player, also called the first player or player one. The shield effect of the bed middle 24 can be such that a successful tap attack may decrease a single hit point, and a successful projectile attack may decrease two hit points. If the shield effect is removed such as if the user jumps in the bed periphery area 23, then the hit point deduction for the first player would increase, such as by doubling for example.
[0143] The bed middle 24 has a bed center 28 which is the geographical and geometric center of the trampoline bed. The bed center 28 can be marked with an alignment code such as a QR code or other code that can determine an alignment of the camera 32. As noted in the prior art, multiple cameras can be used for improving the position determination and stance of the first player.
[0144] The first player 25 can change between a variety of different stances or poses, such as curling up in a ball, which could be translated to a tortoise like player one avatar 51 as retracting into its shell to eliminate the tap hit box 59. The first player 25 could also jump vertically, or twist to change the direction of the player one avatar 51. If the first player 25 is facing to the left, the avatar can be drawn as facing to the left, and if the first player 25 is facing to the right, the avatar can be drawn as facing to the right. If the first player turns from the left to the right, then the avatar can be animated as turning from the left to the right.
[0145] Each of the different players' stances in combination with the location of the bed jumping can affect the stance of the avatar. For example, the avatar may have a blocking stance that is activated by a first player assuming a blocking stance such as by folded arms. The camera 32 is preferably stereoscopic so that the location, distance and motion of player one can be more precisely determined, however it is also possible to operate the game based on a single camera. The bed periphery 23 preferably has a color contrast with the bed middle 24, and a machine-readable indicator acting as an alignment indicator such as a QR code could be placed on the bed center 28. The spring cover 22 can also be used for alignment of the camera field of vision so that the motion of the first player 25 can be accurately translated to motion of the player one avatar 51.
[0146] The stance of a player can be determined by the stereoscopic camera system that converts player video to a geometric model, which is then used for building and animating the player one avatar 51. A variety of different mathematical models can be used for implementing the avatar conversion. For example, as previously described in the reference KR20180112656A, Interactive Trampoline Play System And Control Method For The Same by inventor Jiho Kim, published Oct. 12, 2018 the disclosure at
[0147] Additionally, as seen in
[0148] Additionally, as seen in
[0149] As seen in
[0150] The first player 25 can dodge the attacks by performing a pose for example. Particular poses or arm positions can correspond to avatar movement that allows dodging an attack by the second player. The first player 25 must pose over the bed middle 24 to be allowed the dodge.
[0151] As an alternative to the second player playing from a sedentary position, the second player could also be a trampoline player rather than a touchscreen player. The second player if a trampoline player can also have a set number of hit points such as 100 hit points. The second player can also suffer a decay of hit points if the second player jumps to the bed periphery 23. The bed middle 24 should be visible in the camera to identify that the second player is jumping over the bed middle 24.
[0152] The hit point decay for jumping away from the bed middle 24 can be adjusted. If one of the players is equal to or below 50 hit points, and the hit point decay is set for 50 hit points, that player is eliminated because the hit point decay brings the player to zero or negative points. The hit point decay is preferably proportional to the size of the bed middle 24.
[0153] Instead of accruing instantaneously, the hit point decay can accrue over time such as by 10 hit points per bounce for example. Thus, if a player is in the bed middle 24 and then bounces on the bed periphery 23, the player has a hit point decay can decrease the player's hit point by 10 so that the player only has 90 hit points. If the player bounces four more times, the player's hit points decrease down to 50. The player can recover the decayed hit points by jumping on the bed middle which can lead to a hit point recovery. For example, the player can have a hit point recovery of 10 for every bounce in the bed middle 24.
[0154] Players can be given incentives for jumping in the bed middle and disincentives for jumping away from the bed middle. The hit point decay and hit point recovery provides an improved game dynamic that rewards bounce stability and trampoline control. The hit points can have regeneration such as five hit points per two bounces for example. Regenerated hit points are different than recovered hit points because recovered hit points are only applicable to the hit points that are decayed from jumping away from the bed middle 24. Regenerated hit points can lengthen the game to allow longer gameplay. Regenerated hit points are hit points that are restored due to damage scored by the opposing player. To control the height of user bounces, the regenerated hit points can be awarded for bounces within a certain time with a time minimum and a time maximum. Thus, the user bounces being within a certain frequency on the bed middle 24 can trigger the regeneration. Preferably, the processor is configured to allow hit point regeneration only when the user is bouncing within a certain frequency on the bed middle 24. The bed middle 24 is preferably indicated by a round circle that is seen by the camera and partially covered by the user whenever a player lands on the circle. These hit points being added or subtracted are visually displayed on the hit point bar, which can be numerical display augmented or graphical only.
[0155] A variety of different bounce sensors such as vibration sensors can be implemented for detecting a bounce. The bounce sensors can be used in conjunction with the video sensors to provide more accurate bounce detection. The bounce sensor can be mechanically coupled to the bounce mat such as by being connected to the frame or springs so as to detect vibration from the bounce mat. The bounce sensor can also be coupled directly to the bounce mat.
[0156] Preferably, a speaker 71 can notify the user with an audible sound effect when the user is gaining or losing it points due to recovery and decay, or damage and regeneration. For example, the decay and damage can have low tones and the recovery and regeneration can have high tones. The speaker can also provide a single tone for a given number of hit points changed, such as one tone for every five hit points for example. Speakers 71 can be mounted in the wireless device 41 or the player one target 30, or the beam emitter 26 for example.
[0157] The wireless device 41 or the player one target 30 may have a processor 33. The processor 33 preferably includes a graphic processing unit for driving a touchscreen 42. The touchscreen may have a player one hitpoint indicator 52 and a player two hitpoint indicator. A starting hit point indicator 72 can be displayed to show the starting hit points of the first and second player. A first player decay indicator 73 and a second player decay indicator 74 can indicate decay due to bounding outside of the trampoline middle at the bed center 28. The first player decay indicator 73 is between the first player damage indicator 75 and the first player hit point indicator 52. The second player damage indicator 76 is between the starting hit point indicator 72 and the second player decay indicator. The first player hit point bar 77 drops and progresses to the left while the second player hit point bar 78 drops and progresses to the right.
[0158] Because the damage indicator is closer to the starting hit point indicator, the damage indicator is displayed as a bar which shows the amount of hit points lost due to damage. The decay indicator is preferably shown in a bar next to the damage indicator to show the amount of decayed hit points that can be recovered by returning to the bed middle. Jumping on the bed center 28 which can be marked as a point or a dot on the jump mat can optionally regenerate hit points at a slower rate than recovery of decayed hit points.
[0159] As seen in
[0160] The player one terminal 84 can wirelessly connect to other player terminals such as connecting by wireless signal 35 or a wide area network 38 to a player two terminal 40 or player two base station 45 and connecting by wide area network 38 or by a wireless signal 35 to a player three terminal 90. The second player can also have a trampoline with multiple targets and a player two base station 45 which receives a player two terminal 40 formed as a wireless device 41 having a player two touchscreen 42. Also, the player three terminal 90 can be played without a trampoline or a base station such that the third player is a virtual player that is playing with cell phone only. The player three terminal 90 also has a player three sensor 91, a player three terminal camera 92 and a third transceiver 94. The player three cell phone has a player three terminal processor 93 allowing the third player to play virtually without trampoline. Additional players can be added to this configuration, some with base stations and some without base stations. The number of players can accumulate to become a massively multiplayer online game with potentially hundreds or thousands of players playing simultaneously on a server to which they are all connected to. This allows trampoline players to be connected to each other wirelessly via a server 46 which can be on a cloud 47.
[0161] As seen in
[0162] To assist in user stability, several handrails can be installed along the left and right sides of the hopscotch field 112 over the spring covers 22. For example, the handrails may include a first right hand rail 113, a middle right hand rail 114, a last right hand rail 115, a first left hand rail 116, a middle left hand rail 117, and a last left hand rail 118. The handrails provide user stability in case the user must grasp the handrails. Game rules can allow touching of the handrails or disallow touching of the handrails during play. The first right hand rail 113 opposes the first left hand rail 116 such that a user can grasp both. The middle right handrail 114 in the middle left hand rail 117 can be placed at a higher level than the first right handrail 113 and the first left hand rail 116. The last right handrail 115 and the last left hand rail 118 are preferably the same height and length as the first right handrail 113 and the first left hand rail 116.
[0163] As seen in
[0164] The first right vertical post 121 and the second right vertical post 122 support the first right handrail 113. The second right vertical post 122 and the third right vertical post 123 support the middle right handrail 114. The third right vertical post 123 and a forthright vertical post 124 support the last right handrail 115. The first left vertical post 125 and the second left vertical post 126 support the first left handrail 116. The second left vertical post 126 and the third left vertical post 127 support the middle left handrail 117. The third left vertical post 127 and the fourth left vertical post 128 support the last left handrail 118.
[0165] As seen in
[0166] As seen in
[0167] The control panel 131 can provide gameplay such as memory where a pattern of lights flash on the trampoline bed across the hopscotch field 112 to indicate a specific order of areas that a player contacts. The first player can then try to jump the same pattern on the hopscotch field 112. The control panel 131 can also operate in a connected or multiplayer mode. When the first player successfully jumps the pattern on the hopscotch field 112, the player one avatar 51,
[0168] The random or preprogrammed hopscotch patterns can have a rhythm requirement so as to allow a rhythm game. For example, the lighting pattern can be coordinated with music played by a speaker 143 which is connected to the control panel. Musical timing can count the time between hopscotch steps can provide a scoring system for scoring the rhythm game on the hopscotch course. If the rhythm game is too difficult or easy, multiple variations of the same game can be provided using the same music. Preferably, the music plays along with the lighting of the hopscotch pattern. Nontrampoline players, that is players that do not have a trampoline can also play along with a player who has a trampoline. Any players that do not have a trampoline can play by tapping their touchscreen. If non-trampoline players are playing against trampoline players in a competitive environment, the non-trampoline difficulty can be increased for purposes of game balance such as by requiring a rhythm musical input rather than only completing the hopscotch course in the same order. The camera captures motion from the user should the motion capture be helpful for game security or features.
[0169] In this manner, thousands of trampoline hopscotch players can simultaneously play against each other in a massively online multiplayer trampoline hopscotch game.