1. Field of the Invention
This invention relates to ride simulation systems and more particularly to artificial animal riding systems that translate a rider along a track.
2. Description of the Related Art
Mechanical bulls have been part of American culture for decades, providing a patron of an amusement park, themed bar, or other entertainment venue with an opportunity to experience the thrill of riding a rodeo bull. Typically stationed in a fixed location, a user of a typical mechanical bull mounts a platform having a handle to hold on with, but lacking realistic movement and anatomically correct bull features such as anatomically correct head, neck, front and rear legs. After a moment's preparation, the rider of a traditional mechanical bull will hang on tightly as the riding platform spins and pitches.
Various attempts have been made to impart a greater sense of realism to such rides but have failed due, in part, to the many disciplines necessarily involved to accomplish a realistic simulation for this rare experience. For example, a display showing a virtual space may be added by hardware and software engineers in front of riding systems to provide further virtual realism. Other solutions may make use of artists to provide a portion of the riding animal within the line of sight of a user in combination with the above-mentioned display in an attempt to display the surrounding environment to impart a greater sense of realism. The ride platforms, themselves, do not replicate an authentic bull-riding experience.
Because the level of skill in the art necessary to create a bull ride, for example, is quite complex, with the number of variables available to implement such an emotional experience actually quite large, a need continues to exists to provide a realistic riding system for the enjoyment of enthusiast consumers.
A method of providing a simulated bull ride is disclosed. In one embodiment of the invention, the method is described as guiding a rider to sit on an artificial bull in a bull chute, translating the bull out of said chute along a slidably-coupled track, and pivoting said bull about a plurality of pivot points on an internal frame to simulate a bucking bull.
The components in the figures are not necessarily to scale, emphasis instead being placed upon illustrating the principals of the invention. Like reference numerals designate corresponding parts throughout the different views.
One embodiment of the invention is a method of providing a simulated animal ride, comprising the steps of: providing an artificial animal ride; providing a track; wherein the artificial animal ride is movably connected to the track; providing a ride arena that simulates an actual animal ride environment; wherein the track is within the ride arena; providing a ride chute; situating the artificial animal ride within the ride chute and at a start of the track; mounting the artificial animal ride by a rider; translating the artificial animal ride and the rider out of the chute; moving the artificial animal ride along the track; articulating the artificial animal ride at a plurality of pivot points on an internal frame of the artificial animal ride to simulate a plurality of bucking animal movements while moving the artificial animal ride along the track; stopping the artificial animal ride; and dismounting the artificial animal ride by the rider. Preferably the method is further comprised of the steps of providing a pre-ride locker room; wherein the pre-ride locker room is substantially adjacent to the ride arena; transversing the pre-ride locker room by the rider before the rider enters the ride arena; wherein the locker room simulates an actual animal ride locker room environment. The method may also comprise the steps of: preparing for the artificial animal ride by the rider within the pre-ride locker room; wherein the preparing for the artificial animal ride by the rider within the pre-ride locker room is comprised of the steps of providing a garb, wherein the garb simulates an actual animal ride dress, dressing by the rider in the garb, providing a safety gear, and equipping the rider with the safety gear. Preferably, the chute is comprised of a gate and the method preferably includes the steps of opening the gate before translating the artificial animal ride out of the chute. The method may also include the steps of: providing a catwalk; wherein the catwalk is adjacent to the chute and within the ride arena; transversing the catwalk to get to the chute by the rider; wherein the artificial animal ride has a skin, head, a neck, a body, and a plurality of legs; wherein the head, the body and the plurality of legs of the artificial animal ride substantially look like a skin, a head, a neck, a body, and a plurality of legs of an actual animal. The method may also include the steps of: providing a post; providing a sled; wherein the artificial animal ride is connected to the post, wherein the post is connected to the sled, and wherein the sled is movably connected to the track. Preferably, the plurality of pivot points on the internal frame of the artificial animal ride are comprised of: a body pitch actuator; a body lunge actuator; a neck tilt actuator; a head turn actuator; and a plurality of leg actuators. The post is preferably comprised of a post actuator. Preferably the step of articulating the artificial animal ride is comprised of the steps of: spinning of the post actuator of the post to simulate twisting of the artificial animal ride; pitching of the body pitch actuator of the artificial animal ride to simulate bucking; rotating of the body lunge actuator the artificial animal ride to simulate lunging; rotating at least one of the plurality of legs of the artificial animal ride to simulate leg movement; and pitching of the neck tilt actuator of the artificial animal ride and rotating the head turn actuator of the artificial animal ride to simulate head movement. Preferably, the ride arena is further comprised of a plurality of view screens; wherein the plurality of view screens display a plurality of scenes that simulate the actual animal ride environment. The ride arena is preferably further comprised of a plurality of projectors and a plurality of view screens; wherein the plurality of projectors display on the plurality of view screens a plurality of scenes that simulate the actual animal ride environment. Preferably the ride arena is further comprised of a plurality of speakers; wherein the plurality of speakers provides a plurality of sounds that simulate the actual animal ride environment. Preferably, the ride arena is further comprised of a plurality of artificial scent devices; wherein the plurality of artificial scent devices provide a plurality of scents that simulate the actual animal ride environment. Importantly, the scent devices and speakers may also be in the artificial animal ride itself. Typically, the safety gear is comprised of a harness and a helmet. The artificial animal ride is further comprised of one or more harness connectors; wherein the harness is comprised of one or more artificial animal ride connectors; wherein the one or more harness connectors and the one more artificial animal ride connectors are adapted to connect to each other to secure a rider to the artificial animal ride. Preferably the artificial animal ride is an artificial bull ride.
Another embodiment of the invention is a method of providing a simulated bull ride, comprising the steps of: providing an artificial bull ride; providing a track; providing a sled; wherein the artificial bull ride is connected to the post, wherein the post is connected to the sled, and wherein the sled is movably connected to the track; providing a ride arena that simulates an actual bull ride environment; wherein the ride arena is comprised of a plurality of view screens, a plurality of speakers, and a plurality of artificial scent devices; wherein the plurality of view screens displays a plurality of scenes that simulate the actual bull ride environment; wherein the plurality of speakers provides a plurality of sounds that simulate the actual bull ride environment; wherein the plurality of artificial scent devices provide a plurality of scents that simulate the actual bull ride environment; wherein the track is within the ride arena; providing a ride chute; wherein the chute is comprised of a gate; situating the artificial bull ride within the ride chute at a start of the track; providing a catwalk; wherein the catwalk is adjacent to the chute and within the ride arena; providing a pre-ride locker room; wherein the locker room simulates an actual bull ride locker room environment; entering the pre-ride locker room by the rider before the rider enters the ride arena; preparing for the artificial bull ride by the rider within the pre-ride locker room; providing a garb, wherein the garb simulates an actual bull ride dress; dressing by the rider in the garb; providing a safety gear; equipping the rider with the safety gear; wherein the pre-ride locker room is substantially adjacent to the ride arena; entering the ride arena by a rider; transversing the catwalk to get to the chute by the rider; mounting the artificial bull ride by a rider; opening the gate; translating the artificial bull ride out of the chute; moving the artificial bull ride along the track; articulating the artificial bull ride at a plurality of pivot points on an internal frame of the artificial bull ride to simulate a plurality of bucking bull movements; stopping the artificial bull ride; dismounting by the rider the artificial bull ride. Preferably, the artificial bull ride has a skin, head, a neck, a body, and a plurality of legs; wherein the head, the body and the plurality of legs of the artificial bull ride substantially look like a skin, a head, a neck, a body, and a plurality of legs of an actual bull; wherein the plurality of pivot points on the internal frame of the artificial bull ride are comprised of: a body pitch actuator; a body lunge actuator; a neck tilt actuator; a head turn actuator; and a plurality of leg actuators; and wherein the post is comprised of a post actuator. Preferably, the articulating the artificial bull ride is comprised of the steps of: spinning of the post actuator of the post to simulate twisting of the artificial bull ride; pitching of the body pitch actuator of the artificial bull ride to simulate bucking; rotating of the body lunge actuator the artificial bull ride to simulate lunging; rotating at least one of the plurality of legs of the artificial bull ride to simulate leg movement; and pitching of the neck tilt actuator of the artificial bull ride and rotating the head turn actuator of the artificial bull ride to simulate head movement. Importantly, the scent devices and speakers may also be in the artificial animal ride itself in addition to being in the ride arena.
An unusually realistic riding system is described for providing a user with a virtual reality simulation ride of an animatronic artificial animal body without compare. In a preferred embodiment of the artificial animal body, a rodeo bull has a main body frame, head and legs that operate together while the rodeo bull is translated out of a bucking shoot and into a bull riding arena along a track to provide a convincing and risk-free bull riding experience. A pre-show locker room may also be provided to receive a human rider for instruction on the riding system prior to mounting the rodeo bull.
The bull-riding arena 104 has a catwalk 108 accessible by a short staircase, positioned along one wall and raised off the floor of the arena to help a bull rider mount a rodeo bull 112 that is positioned in a bucking chute 110. The rodeo bull 112 is connected to a track 114 through a false floor 116 to allow translational movement out of the bucking chute 110 and into a center portion of the arena 104. Although the track course is illustrated as linear, a non-linear track course may be used to simulate movement of the bull 112 about the bull-riding arena. Preferably, the rodeo bull 112 is connected to the track 114 through a wheeled sled 118 that may house a cabling return (not shown) to facilitate take-up and reeling of signal cabling as the rodeo bull 112 is operable to spun through up to 360 degrees of rotation in either rotational direction. Signal cabling is connected to a computer control 120 optionally located underneath the raised platform 108. In alternate embodiments, the computer control 120, which is programmed to operate the actuators to provide a smooth, safe, and fun bull ride experience, is located in a portable cabinet that may be located anywhere inside or outside of the arena 104. Over-travel sensors 121a and 121b are located on either end of the track 114 to provide an emergency over-travel stop signal to the computer control 120 should the rodeo bull 112 fail to stop at its predetermined stop location. A post-show gift shop 122 may be located adjacent the bull-riding arena 104 to receive the riders as they exit the bull-riding arena 104. In one alternative embodiment, a grandstand is provided preferably between the raised platform 108 and an interior wall 124 of the bull-riding arena 104 to allow patrons to watch the rider and artificial bull 112 as they are translated along the track 114 out of the bucking chute 110 and into the center of the bull-riding arena 104. A surround screen 126 is positioned along an exterior portion of the bull-riding arena 104, preferably along interior three sides of the bull-riding arena 104. Although illustrated as flat in
During operation, a rider enters the pre-show locker room 106 after receiving a ticket in the entry room 102. A monitor in the pre-show locker room 106 projects a video of a cowboy announcer welcoming the patrons to the bull-riding system, and explaining various items such as safety rules. Each rider is given an arm band by a cowboy attendant, who also explains how the vest, chaps, helmet, and other equipment are used and worn. After completing the instruction, the rider is escorted from the pre-show locker room 106 onto the catwalk 108 to mount the bull 112.
The neck assembly 206 is provided with movement by neck actuator 224 that drives neck actuators 225, 227 to provide pitch up and pitch down of the neck assembly 206 about neck pivot point 226. For example, clockwise actuation of armature 227 would drive neck actuator 225 up, result in a pitching up of the neck assembly 206. Similarly, counterclockwise actuation of armature 227 would result in a pitching down of the neck assembly 206. Head actuator 228 drives a left and right turning motion to the head portion 208 about a single axis of rotation and is coupled to the neck assembly with a rigid rod 229 so that pitching of the neck assembly 206 results in a concurrent pitching of the head portion 208 while the head actuator 228 allows independent left and right movement of the head portion 208.
An unusual and new technique is provided with the use of body pitch actuator 230 to drive pitch armatures 231, 233 resulting in a rotational moment about main body rotation point 232. As illustrated, clockwise rotation of the body pitch actuator 230 results in a pitching up or bucking of an artificial animal body positioned as illustrated in
While various implementations of the application have been described, it will be apparent to those of ordinary skill in the art that many more embodiments and implementations are possible that are within the scope of this invention.
Benefit is claimed of Provisional Application Ser. No. 61/137,824 filed Oct. 27, 2008.
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