Environment design system and method based on text tour and sightseeing path

Through an environmental design system based on cultural and tourism sightseeing routes, guide columns, handheld guidance mechanisms and GPS positioning sensors are used to guide tourists' routes in real time, solving the problem of tourists' difficulty in finding their way in scenic areas and achieving efficient arrival at scenic spots and sightseeing experience.

CN120668162AInactive Publication Date: 2025-09-19HAINAN NORMAL UNIV
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Patent Information

Application Number
CN202510644667.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-09-19
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When entering a scenic spot for sightseeing, tourists need to plan their route based on the scenic area overview map and road signs on the ticket, which results in them not knowing their own location and the attractions ahead, and they spend a lot of time finding their way, which affects their sightseeing experience.

Method used

An environmental design system based on cultural and tourism sightseeing routes was designed, including intersection guide columns, handheld guidance mechanisms, portable indicators, and recyclable tickets for scenic spots. GPS positioning sensors and vibration sensors were used to guide tourists' paths in real time. Guide signs, LED light displays, and speakers provided voice navigation to achieve path guidance. The speakers displayed the path, and vibration feedback indicated when turning at the intersection.

Benefits of technology

It saves tourists’ time in finding their way, improves their sightseeing experience, ensures that tourists arrive at scenic spots accurately, provides real-time route guidance and scenic spot information, and reduces route deviation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of sightseeing route design, in particular to an environment design system and method based on a sightseeing route, and solves the problems that when a tourist enters a scenic spot for sightseeing, the tourist needs to plan the route according to a scenic spot overview map and a road sign on a ticket, and the tourist experience is poor. The tourist does not know the position of the tourist and the specific scenic spot in front of the tourist, so that the tourist spends a lot of time to find the way, and the sightseeing experience of the tourist is influenced. An environment design system and method based on a sightseeing route comprises an intersection guiding stand column, a handheld guiding mechanism and a scenic spot recoverable ticket, a guiding label is installed on the outer surface of the intersection guiding stand column, and a signal transmission terminal is fixed to the top end of the intersection guiding stand column. A solar photovoltaic panel is installed above the signal transmission terminal. According to the invention, tourists do not need to autonomously plan paths, the time required by the tourists to find paths is saved, and the sightseeing experience effect of the tourists is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of cultural tourism and sightseeing route design, and specifically to an environment design system and method based on cultural tourism and sightseeing routes. Background Art

[0002] Cultural tourism refers to the general term for cultural sightseeing and travel. The cultural tourism attractions and environment of the scenic area need to be planned by the relevant departments of the scenic area. The cultural tourism officials also need to specify the scenic area overview map or detailed map or scenic area tour manual based on the number, location and mutual distance of the scenic spots. The tour manual needs to have a specific introduction to the scenic spots.

[0003] However, when entering a scenic spot for sightseeing, tourists need to plan their route according to the scenic area overview map and road signs on the ticket. Tourists do not know where they are and what specific attractions are ahead, which causes them to spend a lot of time finding their way, affecting their sightseeing experience. Therefore, this does not meet the existing needs. In this regard, we propose an environmental design system and method based on cultural and tourism sightseeing routes. Summary of the Invention

[0004] The purpose of the present invention is to provide an environmental design system and method based on cultural and tourism sightseeing routes to solve the problems raised in the above-mentioned background technology that when entering a scenic spot for sightseeing, tourists need to plan their routes based on the scenic area overview map and road signs on the ticket. Tourists do not know where they are and the specific attractions ahead, which causes tourists to spend a lot of time finding the way, affecting their sightseeing experience.

[0005] An environmental design system based on a cultural tourism route includes a guide post at an intersection, a handheld guide mechanism, a portable indicator, and a recyclable ticket for a scenic spot. The outer surface of the guide post at the intersection is mounted with a guide sign. A signal transmission terminal is fixed to the top of the guide post at the intersection. A solar photovoltaic panel is mounted above the signal transmission terminal. A bracket is fixed to the bottom of the solar photovoltaic panel. The bottom end of the bracket is fixed to the top of the guide post at the intersection.

[0006] The handheld guide mechanism includes a first rotating plate and a second rotating plate, one side of which is fitted and rotatably connected to the first rotating plate. A scenic area overview panel is provided on the upper surface of the first rotating plate. A starting point button and a plurality of scenic area attraction selection buttons are provided on the surface of the scenic area overview panel. The surface of the scenic area overview panel is also inlaid with an LED light strip. The scenic area attraction selection buttons represent scenic spots in the scenic area. Tourists can select the scenic spots they want to visit and press the scenic area attraction selection button that replaces the corresponding scenic spot according to the order of sightseeing. Then, a sightseeing route is generated and displayed on the surface of the real-time location display screen according to the order of sightseeing.

[0007] The recyclable ticket for the scenic spot includes a cover plate and a bottom plate. The surface of the cover plate is inlaid with a paper ticket. The cover plate is detachably mounted on the top of the bottom plate. A first vibration sensor and a GPS positioning sensor are mounted on the inner side of the bottom plate. The GPS positioning sensor records the position of the recyclable ticket for the scenic spot in real time to mark the location of the tourist at that moment, and feeds back the marking information to the handheld guidance mechanism. The GPS positioning sensor performs vibration feedback when the tourist arrives at an intersection.

[0008] Preferably, the portable indicator includes a palm-fitting rubber pad, a vibration indicator block is embedded in the center of the palm-fitting rubber pad, the vibration indicator block is in an inverted T-shape and a second vibration sensor is installed inside, a tiger's mouth fixing belt, a first restraint belt and a second restraint belt are fixed to the outside of the palm-fitting rubber pad, a protective shell is fixed between the ends of the tiger's mouth fixing belt, the first restraint belt and the second restraint belt away from the palm-fitting rubber pad, the surface of the protective shell is embedded with an indicator display screen, the surface of the indicator display screen is fixed with a plurality of LED indicator light strips parallel to each other, a hygroscopic gasket is provided under the indicator display screen, two connecting magnetic strips are fixed to the upper surface of the hygroscopic gasket, and two adsorption magnetic strips are fixed to the bottom surface of the indicator display screen, and the connecting magnetic strips and the adsorption magnetic strips are magnetically adsorbed and connected.

[0009] Preferably, the first vibration sensor and the GPS positioning sensor are connected by a wire, the bottom surface of the cover plate and the upper surface of the base plate are both provided with adhesive slots, a rubber strip is provided between the two adhesive slots, and the cover plate and the base plate are bonded and fixed by the rubber strip.

[0010] Preferably, the bottom surfaces of the first rotating plate and the second rotating plate are both provided with storage card slots, the depth of the storage card slots is consistent with the thickness of the cover plate and the bottom plate. Adsorption magnets are embedded and installed at the four end corners of the bottom surfaces of the first rotating plate and the second rotating plate, and the adsorption magnets and the rotating card slots are fixed by magnetic adsorption between the adsorption magnets and the adsorption magnets.

[0011] Preferably, both ends of the mutually fitting sides of the first rotating plate and the second rotating plate are provided with rotating slots, one of the sides of the first rotating plate and the second rotating plate is fitted and rotatably connected, the surface of the second rotating plate is inlaid with a travel direction indicator screen, a speaker and a real-time position display screen, a rotating connecting block is provided between two adjacent rotating slots, connecting pins are inserted through both ends of the rotating connecting block, and one end of the connecting pin is rotatably inserted into the first rotating plate and the second rotating plate.

[0012] Preferably, the guide signs include scenic spot signs and multiple road direction signs, the scenic spot signs and road direction signs are fixed on the outside of the intersection guide column, and the road direction signs are evenly spaced along the axis direction of the intersection guide column.

[0013] Preferably, the intersection guide column is fixed at a roadside position where two intersections meet, the scenic spot sign includes a first hollow tube, two first direction signs are fixed on the outer side of the first hollow tube, and the surface of the first direction sign facing the road is inlaid with a first nameplate, and the road direction indicator includes a first fixing ring, two first guide signs are fixed on the outer side of the first fixing ring, and the surface of the first guide sign facing the road is inlaid with a first guide light board.

[0014] Preferably, the intersection guide column is fixed at the center position of the intersection of three intersections, the scenic spot sign includes a second hollow tube, three second direction signs are fixed on the outer surface of the second hollow tube, and second nameplates are inlaid on both sides of the second direction signs. The road direction sign includes a second fixing ring, three second guide signs are fixed on the outer surface of the second fixing ring, and second guide light boards are inlaid on both sides of the second guide signs.

[0015] A design method for an environmental design system based on a cultural tourism route, the design method comprising the following steps:

[0016] S1: After arriving at the scenic spot, the tourist takes the handheld guide mechanism, the recyclable ticket for the scenic spot, and the portable indicator at the entrance of the scenic spot, inserts the recyclable ticket card into the card receiving slot, rotates the first rotating plate and the second rotating plate to close, and wears the portable indicator on the back of the hand;

[0017] S2: Tourists press the starting point button first, and then press the scenic spot selection button of the corresponding scenic spot according to the scenic spots and the order of sightseeing they want to visit;

[0018] S3: A sightseeing route is generated on the real-time location display screen based on the order of sightseeing attractions selected, starting from the entrance of the scenic area, and the sightseeing route is dynamically displayed through the LED light strip on the surface of the scenic area overview panel;

[0019] S4: The tourist holds the handheld guide mechanism or puts the handheld guide mechanism into his pocket and starts moving. During the movement, the GPS positioning sensor records the real-time location information of the tourist and feeds it back to the real-time location display screen for display;

[0020] S5: The speaker provides voice guidance based on the real-time information of tourists and the generated sightseeing route until the tourists arrive at the scenic spot;

[0021] S6: When the tourist arrives at the intersection, the first vibration sensor vibrates to provide feedback, and the arrow on the direction indicator screen illuminates to guide the direction of the route, while the loudspeaker reminds the tourist to change roads;

[0022] S7: At the same time, the second vibration sensor inside the vibration indicator block vibrates, and the vibration indicator block now vibrates the palm of the tourist's hand. The tourist now needs to look at the indicator display screen and the LED indicator light bar, and select the corresponding path according to the indicator display screen and the LED indicator light bar to continue moving forward;

[0023] S8: After the tourist arrives at the attraction, the loudspeaker broadcast information changes from the tourist path information to the attraction information introduction, and the information displayed on the real-time location display changes to the specific information of the attraction;

[0024] S9: After tourists finish sightseeing, handheld guides and recyclable tickets for scenic spots will be collected at the exit of the scenic area.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] 1. The present invention allows tourists to store the recyclable tickets for scenic spots between the first rotating plate and the second rotating plate. Tourists first press the starting point button and then press the scenic spot selection button of the corresponding scenic spot according to the scenic spots they want to visit and the order of sightseeing. A sightseeing route is generated starting from the entrance of the scenic spot on the real-time position display screen according to the order of sightseeing spots selected. The sightseeing route is dynamically displayed by the LED light strip on the surface of the scenic spot overview panel. At the same time, the route is guided on the real-time position display screen, and the loudspeaker broadcasts the route by voice. When tourists arrive at the intersection, the road direction sign flashes with lights to guide tourists to turn. Tourists do not need to plan their own route, which saves the time required for tourists to find their way and improves the sightseeing experience of tourists.

[0027] 2. The present invention installs a first vibration sensor and a GPS positioning sensor inside the recyclable ticket of the scenic spot to record the specific location of the tourist, so that when the tourist encounters an accident, the official can find the tourist and reach the tourist's location as soon as possible. The GPS positioning sensor vibrates when the tourist arrives at the intersection, so that when the handheld guiding mechanism and the recyclable ticket of the scenic spot are collected, the tourist receives the turning information in time at the intersection to avoid changes in the tourist's sightseeing route. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 It is a schematic structural diagram of the present invention as a whole;

[0029] Figure 2 It is a structural schematic diagram of the portable indicator of the present invention;

[0030] Figure 3 This is a schematic diagram of the connection between the moisture-absorbing gasket and the protective shell of the present invention;

[0031] Figure 4 It is a structural schematic diagram of the handheld guiding mechanism of the present invention;

[0032] Figure 5 This is a bottom structural diagram of the first rotating plate and the second rotating plate of the present invention;

[0033] Figure 6 for Figure 4 A magnified view of the structure at point A;

[0034] Figure 7 This is a schematic diagram of the structure of the recyclable ticket for the scenic spot of the present invention;

[0035] Figure 8 An exploded view of the recyclable ticket for the scenic spot of the present invention;

[0036] Figure 9 Schematic diagram of the structure of the cover plate of the present invention;

[0037] Figure 10 This is a schematic diagram of a first embodiment of a guide sign of the present invention;

[0038] Figure 11 This is a schematic diagram of a second embodiment of the guide sign of the present invention;

[0039] Figure 12 This is a schematic diagram of a third embodiment of the guide sign of the present invention.

[0040] In the figure: 1. intersection guide column; 2. solar photovoltaic panel; 3. signal transmission terminal; 4. guide sign; 41. scenic spot sign; 4111. first hollow tube; 4112. first directional sign; 4113. first nameplate; 4121. second hollow tube; 4122. second directional sign; 4123. second nameplate; 4131. third hollow tube; 4132. third directional sign; 4133. third nameplate; 42. road direction sign; 4211. first fixing ring; 4212. first guide sign; 4213. first guide light board; 4221. second fixing ring; 4222. second guide sign; 4223. second guide light board; 4231. third fixing ring; 4232. third guide sign; 4233. third guide light board; 5. handheld guide mechanism; 51. first rotating plate; 52. second rotating plate; 53. Direction indicator screen; 54. Speaker; 55. Real-time location display screen; 56. Scenic area overview panel; 57. Scenic area attraction selection button; 58. Starting point button; 59. LED light strip; 510. Storage card slot; 511. Adsorption magnet; 512. Rotating card slot; 513. Rotating connecting block; 514. Connecting pin; 6. Recyclable tickets for scenic spots; 61. Cover plate; 62. Bottom plate; 63. Paper tickets; 64. Adhesive strip; 65. Adhesive card slot; 66. First vibration sensor; 67. GPS positioning sensor; 7. Portable indicator; 71. Protective shell; 72. Indication display screen; 73. LED indicator light strip; 74. Tiger's mouth fixing belt; 75. First restraint belt; 76. Second restraint belt; 77. Palm-fitting rubber pad; 78. Vibration indicator block; 79. Moisture-absorbing gasket; 710. Connecting magnetic strip; 711. Adsorption magnetic strip. DETAILED DESCRIPTION

[0041] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0042] The first embodiment Figures 1 to 10 As shown, an environmental design system based on a cultural and tourism sightseeing route includes a road guide column 1, a handheld guiding mechanism 5 and a recyclable ticket 6 for a scenic spot. A guide sign 4 is installed on the outer surface of the road guide column 1, a signal transmission terminal 3 is fixed on the top of the road guide column 1, a solar photovoltaic panel 2 is installed above the signal transmission terminal 3, a bracket is fixed on the bottom of the solar photovoltaic panel 2, and the bottom end of the bracket is fixed to the top of the road guide column 1.

[0043] The guide signs 4 include a scenic spot sign 41 and a plurality of road direction signs 42 . The scenic spot sign 41 and the road direction sign 42 are both fixed on the outside of the intersection guide column 1 , and the road direction sign 42 are evenly spaced along the axis of the intersection guide column 1 .

[0044] The intersection guide column 1 is fixed at the roadside position where the two intersections meet. The scenic spot signboard 41 includes a first hollow tube 4111. Two first direction signs 4112 are fixed on the outside of the first hollow tube 4111. The surface of the first direction sign 4112 facing the road is inlaid with a first nameplate 4113. The road direction indicator 42 includes a first fixed ring 4211. Two first guide signs 4212 are fixed on the outside of the first fixed ring 4211. The surface of the first guide sign 4212 facing the road is inlaid with a first guide light board 4213, which is used to indicate the direction of the scenic spot at the intersection, and remind tourists to turn on the road in time and move to the designated scenic spot through the flashing of the first direction sign 4112.

[0045] The portable indicator 7 includes a palm-fitting rubber pad 77, a vibration indicator block 78 is embedded in the center of the palm-fitting rubber pad 77, the vibration indicator block 78 is in an inverted T shape and a second vibration sensor is installed inside, the outside of the palm-fitting rubber pad 77 is fixed with a tiger's mouth fixing belt 74, a first binding belt 75 and a second binding belt 76, a protective shell 71 is fixed between the ends of the tiger's mouth fixing belt 74, the first binding belt 75 and the second binding belt 76 away from the palm-fitting rubber pad 77, the surface of the protective shell 71 is inlaid with an indicator display screen 72, and the surface of the indicator display screen 72 is fixed with a plurality of parallel LED indicator lights. The light bar 73 fastens the protective shell 71 to the back of the tourist's hand through the tiger's mouth fixing belt 74, the first restraint belt 75, and the second restraint belt 76. At the same time, the vibration indicator block 78 in the center of the rubber pad 77 is close to the palm of the tourist, and the road condition and direction information are guided to the tourist through the indicator display screen 72. The vibration of the vibration indicator block 78 reminds the tourist to observe the indicator display screen 72 and the LED indicator light bar 73 when they are about to arrive at the intersection. Then, the LED indicator light bar 73 flashes the same color as the road direction sign 42, reminding the tourist to change direction according to the direction of the road direction sign 42.

[0046] A hygroscopic gasket 79 is provided under the indicator display screen 72. Two connecting magnetic strips 710 are fixed on the upper surface of the hygroscopic gasket 79, and two adsorption magnetic strips 711 are fixed on the bottom surface of the indicator display screen 72. The connecting magnetic strips 710 and the adsorption magnetic strips 711 are magnetically adsorbed to each other. The hygroscopic gasket 79 is used to absorb the sweat generated on the back of the tourists' hands, and the hygroscopic gasket 79 can be removed and replaced to ensure the hygiene and safety of the indicator display screen 72.

[0047] The handheld guiding mechanism 5 includes a first rotating plate 51 and a second rotating plate 52, one of the side edges of the first rotating plate 51 and the second rotating plate 52 are fitted and rotatably connected, the upper surface of the first rotating plate 51 is provided with a scenic area overview panel 56, the surface of the scenic area overview panel 56 is provided with a starting point button 58 and a plurality of scenic area attraction selection buttons 57, the surface of the scenic area overview panel 56 is also inlaid with an LED light strip 59, the surface of the second rotating plate 52 is inlaid with a travel direction indication screen 53, a speaker 54 and a real-time position display screen 55, the scenic area attraction selection button 57 represents the scenic spot of the scenic spot, and tourists can select the scenic spot they want to visit and press the scenic area attraction selection button 57 that replaces the corresponding scenic spot according to the tour order of the scenic spot. Then, the surface of the real-time position display screen 55 generates and displays a tour path according to the tour order of the scenic spot, and uses the speaker 54 to voice broadcast the generated tour path and the travel direction indication screen 53 to guide the tourists to move to the scenic spot.

[0048] The bottom surfaces of the first rotating plate 51 and the second rotating plate 52 are both provided with a storage card slot 510. The depth dimension of the storage card slot 510 is consistent with the thickness dimension of the cover plate 61 and the bottom plate 62. Adsorption magnets 511 are inlaid and installed at the four end corners of the bottom surfaces of the first rotating plate 51 and the second rotating plate 52. The adsorption magnet 511 and the rotating card slot 512 are fixed by magnetic adsorption of the adsorption magnet 511 and the adsorption magnet 511, so that the recyclable ticket 6 for the scenic spot is clamped in the storage card slot 510, and the first rotating plate 51 and the second rotating plate 52 are rotated and closed to store and protect the recyclable ticket 6 for the scenic spot, so as to prevent the recyclable ticket 6 for the scenic spot from falling, being damaged or lost.

[0049] Both ends of the sides where the first rotating plate 51 and the second rotating plate 52 are in contact with each other are provided with rotating slots 512, and a rotating connecting block 513 is provided between the two adjacent rotating slots 512. Connecting pins 514 are inserted through both ends of the rotating connecting block 513, and one end of the connecting pin 514 is rotatably inserted into the first rotating plate 51 and the second rotating plate 52. The first rotating plate 51 and the second rotating plate 52 are rotatably connected by the connecting pin 514 and the rotating connecting block 513, so that the handheld guiding mechanism 5 can be folded for easy storage and carrying.

[0050] The recyclable ticket 6 for the scenic spot includes a cover plate 61 and a base plate 62. The surface of the cover plate 61 is inlaid with a paper ticket 63. The cover plate 61 is detachably installed on the top of the base plate 62. A first vibration sensor 66 and a GPS positioning sensor 67 are installed on the inner side of the base plate 62. The first vibration sensor 66 and the GPS positioning sensor 67 are connected by a wire. The GPS positioning sensor 67 records the position of the recyclable ticket 6 for the scenic spot in real time, thereby marking the location of the tourist at this moment, and feeds back the marking information to the real-time location display screen 55 for display. The GPS positioning sensor 67 vibrates when the tourist arrives at the intersection to remind the tourist to observe the direction of travel indicator screen 53 and the real-time location display screen 55 to make a suitable road choice, so as to avoid deviation in the tourist's sightseeing path.

[0051] The bottom surface of the cover plate 61 and the upper surface of the base plate 62 are both provided with adhesive grooves 65, and a rubber strip 64 is provided between the two adhesive grooves 65. The cover plate 61 and the base plate 62 are bonded and fixed by the rubber strip 64, ensuring that the cover plate 61 and the base plate 62 are sealed and will not separate from each other without external force interference, and will not increase the difficulty of disassembly and repair of the recyclable ticket 6 when the recyclable ticket 6 is damaged.

[0052] The second embodiment Figure 11 As shown, the intersection guide column 1 is fixed at the center position of the intersection of three intersections, the scenic spot sign 41 includes a second hollow tube 4121, and three second direction signs 4122 are fixed on the outer surface of the second hollow tube 4121, and second nameplates 4123 are inlaid on both sides of the second direction signs 4122. The road direction sign 42 includes a second fixed ring 4221, and three second guide signs 4222 are fixed on the outer surface of the second fixed ring 4221, and second guide light boards 4223 are inlaid on both sides of the second guide signs 4222, which are used to indicate the direction of the scenic spot at the intersection, and remind tourists to turn on the road in time and move to the designated scenic spot through the flashing of the second direction signs 4122.

[0053] The third embodiment Figure 12 As shown, the intersection guide column 1 is fixed at the center position of the intersection of four intersections, the scenic spot sign 41 includes a third hollow tube 4131, and four third direction signs 4132 are fixed on the outer surface of the third hollow tube 4131, and third nameplates 4133 are inlaid on both sides of the third direction signs 4132. The road direction sign 42 includes a third fixed ring 4231, and four third guide signs 4232 are fixed on the outer surface of the third fixed ring 4231, and third guide light boards 4233 are inlaid on both sides of the third guide signs 4232, which are used to indicate the direction of the scenic spot at the intersection, and remind tourists to turn on the road in time and move to the designated scenic spot through the flashing of the third guide signs 4232.

[0054] A design method for an environmental design system based on a cultural tourism route, the design method comprising the following steps:

[0055] S1: After arriving at the scenic spot, the tourist takes the handheld guide mechanism 5, the scenic spot recyclable ticket 6 and the portable indicator 7 at the scenic spot entrance, inserts the scenic spot recyclable ticket 6 into the storage card slot 510 and rotates the first rotating plate 51 and the second rotating plate 52 to close;

[0056] S2: The tourist first presses the starting point button 58 and then presses the scenic spot selection button 57 of the corresponding scenic spot according to the scenic spots and the order of sightseeing he wants to visit;

[0057] S3: A sightseeing route is generated on the real-time location display screen 55 according to the order of sightseeing attractions selected, starting from the entrance of the scenic area, and the sightseeing route is dynamically displayed by the LED light strip 59 on the surface of the scenic area overview panel 56;

[0058] S4: The tourist holds the handheld guide mechanism 5 or puts the handheld guide mechanism 5 into his pocket and starts to move. During the movement, the GPS positioning sensor 67 records the real-time location information of the tourist and feeds it back to the real-time location display screen 55 for display;

[0059] S5: The loudspeaker 54 provides voice guidance based on the real-time information of the tourist and the generated sightseeing route until the tourist arrives at the scenic spot;

[0060] S6: When the tourist arrives at the intersection, the first vibration sensor 66 vibrates to provide feedback, and the arrow on the travel direction indicator screen 53 illuminates to guide the direction of the route, while the speaker 54 reminds the tourist to change roads;

[0061] S7: At the same time, the second vibration sensor inside the vibration indicator block 78 vibrates, and the vibration indicator block 78 generates a vibration sensation on the palm of the tourist. The tourist needs to look at the indicator display screen 72 and the LED indicator light bar 73 and select the corresponding road according to the indicator display screen 72 and the LED indicator light bar 73 to continue moving forward;

[0062] S8: After the tourist arrives at the scenic spot, the broadcast information of the loudspeaker 54 is converted from the tourist path information to the scenic spot information introduction, and the information displayed on the real-time location display screen 55 is changed to the specific information of the scenic spot;

[0063] S9: After the tourists finish their sightseeing, the handheld guide mechanism 5 and the recyclable tickets 6 for the scenic spot are collected at the exit of the scenic spot.

[0064] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above and that the invention can be embodied in other specific forms without departing from the spirit or essential characteristics of the invention. Therefore, the embodiments should be considered in all respects as illustrative and non-restrictive, and the scope of the invention is defined by the appended claims, not the foregoing description, and all variations within the meaning and range of equivalents of the claims are intended to be included therein. Any reference sign in a claim should not be construed as limiting the claim to which it relates.

Claims

1. An environmental design system based on a cultural tourism route, comprising a road intersection guide column (1), a handheld guide mechanism (5), a portable indicator (7) and a recyclable scenic spot ticket (6), characterized in that: A guide sign (4) is installed on the outer surface of the intersection guide column (1), a signal transmission terminal (3) is fixed to the top of the intersection guide column (1), a solar photovoltaic panel (2) is installed above the signal transmission terminal (3), a bracket is fixed to the bottom of the solar photovoltaic panel (2), and the bottom end of the bracket is fixed to the top of the intersection guide column (1); The handheld guide mechanism (5) comprises a first rotating plate (51) and a second rotating plate (52). The upper surface of the first rotating plate (51) is provided with a scenic area overview panel (56). The surface of the scenic area overview panel (56) is provided with a starting point button (58) and a plurality of scenic area attraction selection buttons (57). The surface of the scenic area overview panel (56) is also inlaid with an LED light strip (59). The scenic area attraction selection buttons (57) represent the scenic spots of the scenic area. Tourists can select the scenic spots they want to visit and press the scenic area attraction selection button (57) that replaces the corresponding scenic spot according to the order of sightseeing. Then, the surface of the real-time location display screen (55) generates and displays a sightseeing route according to the order of sightseeing. The scenic spot recyclable ticket (6) comprises a cover plate (61) and a bottom plate (62). A paper ticket (63) is inlaid on the surface of the cover plate (61). The cover plate (61) is detachably mounted on the top of the bottom plate (62). A first vibration sensor (66) and a GPS positioning sensor (67) are mounted on the inner side of the bottom plate (62). The GPS positioning sensor (67) records the position of the scenic spot recyclable ticket (6) in real time to mark the position of the tourist at this moment and feeds the marking information back to the handheld guide mechanism (5). The GPS positioning sensor (67) performs vibration feedback when the tourist arrives at an intersection.

2. The environmental design system based on cultural tourism routes according to claim 1, characterized in that: The portable indicator (7) comprises a palm-fitting rubber pad (77), a vibration indicator block (78) is embedded in the center of the palm-fitting rubber pad (77), the vibration indicator block (78) is in an inverted T-shape and a second vibration sensor is installed inside, a tiger's mouth fixing belt (74), a first binding belt (75) and a second binding belt (76) are fixed on the outside of the palm-fitting rubber pad (77), and a protective belt is fixed between the ends of the tiger's mouth fixing belt (74), the first binding belt (75) and the second binding belt (76) away from the palm-fitting rubber pad (77). A housing (71) is provided, wherein the surface of the protective housing (71) is inlaid with an indicator display screen (72), a plurality of mutually parallel LED indicator light strips (73) are fixed on the surface of the indicator display screen (72), a moisture-absorbing gasket (79) is provided below the indicator display screen (72), two connecting magnetic strips (710) are fixed on the upper surface of the moisture-absorbing gasket (79), and two adsorption magnetic strips (711) are fixed on the bottom surface of the indicator display screen (72), and the connecting magnetic strips (710) and the adsorption magnetic strips (711) are connected by magnetic adsorption.

3. The environmental design system based on cultural tourism routes according to claim 2 is characterized by: The first vibration sensor (66) and the GPS positioning sensor (67) are connected via wires. The bottom surface of the cover plate (61) and the upper surface of the bottom plate (62) are both provided with bonding slots (65). A rubber strip (64) is provided between the two bonding slots (65). The cover plate (61) and the bottom plate (62) are bonded and fixed via the rubber strip (64).

4. The environmental design system based on cultural tourism routes according to claim 3 is characterized by: The bottom surfaces of the first rotating plate (51) and the second rotating plate (52) are both provided with a receiving card slot (510), one side of the first rotating plate (51) and the second rotating plate (52) are fitted and rotatably connected, the surface of the second rotating plate (52) is inlaid with a travel direction indicator screen (53), a speaker (54) and a real-time position display screen (55), the depth dimension of the receiving card slot (510) is consistent with the thickness dimension of the cover plate (61) and the bottom plate (62), the four end corners of the bottom surfaces of the first rotating plate (51) and the second rotating plate (52) are inlaid with adsorption magnets (511), and the adsorption magnets (511) and the rotating card slot (512) are fixed by magnetic adsorption to the adsorption magnets (511).

5. The environmental design system based on cultural tourism routes according to claim 4 is characterized by: Both ends of the mutually fitting sides of the first rotating plate (51) and the second rotating plate (52) are provided with rotating slots (512), and a rotating connecting block (513) is provided between two adjacent rotating slots (512). Connecting pins (514) are inserted through both ends of the rotating connecting block (513), and one end of the connecting pin (514) is rotatably inserted into the interior of the first rotating plate (51) and the second rotating plate (52).

6. The environmental design system based on cultural tourism routes according to claim 5 is characterized by: The guide sign (4) comprises a scenic spot sign (41) and a plurality of road direction signboards (42); the scenic spot signboard (41) and the road direction signboard (42) are both fixed on the outside of the intersection guide column (1), and the road direction signboards (42) are distributed at equal intervals along the axis direction of the intersection guide column (1).

7. The environmental design system based on cultural tourism routes according to claim 6 is characterized by: The intersection guide column (1) is fixed at a roadside position at the intersection of two intersections. The scenic spot sign (41) includes a first hollow tube (4111), two first direction signs (4112) are fixed on the outer side of the first hollow tube (4111), and the surface of the first direction sign (4112) facing the road is inlaid with a first nameplate (4113). The road direction indicator (42) includes a first fixing ring (4211), two first guide signs (4212) are fixed on the outer side of the first fixing ring (4211), and the surface of the first guide sign (4212) facing the road is inlaid with a first guide light board (4213).

8. The environmental design system based on cultural tourism routes according to claim 6 is characterized by: The intersection guide column (1) is fixed at the center of the intersection of three intersections. The scenic spot sign (41) includes a second hollow tube (4121). Three second direction signs (4122) are fixed on the outer surface of the second hollow tube (4121). Second nameplates (4123) are inlaid on both sides of the second direction signs (4122). The road direction sign (42) includes a second fixing ring (4221). Three second guide signs (4222) are fixed on the outer surface of the second fixing ring (4221). Second guide light panels (4223) are inlaid on both sides of the second guide signs (4222).

9. The environmental design system based on cultural tourism routes according to claim 6, characterized in that: The intersection guide column (1) is fixed at the center position of the intersection of four intersections, the scenic spot sign (41) includes a third hollow tube (4131), four third direction signs (4132) are fixed on the outer surface of the third hollow tube (4131), and both sides of the third direction signs (4132) are inlaid with third nameplates (4133), and the road direction sign (42) includes a third fixing ring (4231), four third guide signs (4232) are fixed on the outer surface of the third fixing ring (4231), and both sides of the third guide signs (4232) are inlaid with third guide light panels (4233).

10. The design method of an environmental design system based on a cultural tourism route according to claim 6, characterized in that: The design method comprises the following steps: S1: After arriving at the scenic spot, the tourist takes the handheld guide mechanism (5), the scenic spot recyclable ticket (6) and the portable indicator (7) at the scenic spot entrance, plugs the scenic spot recyclable ticket (6) into the storage card slot (510), rotates the first rotating plate (51) and the second rotating plate (52) to close, and wears the portable indicator (7) on the back of the hand; S2: The tourist first presses the starting point button (58) and then presses the scenic spot selection button (57) of the corresponding scenic spot according to the scenic spots and the order of sightseeing he wants to visit; S3: A sightseeing route is generated on the real-time location display screen (55) based on the order of sightseeing attractions selected, starting from the entrance of the scenic area, and the sightseeing route is dynamically displayed by the LED light strip (59) on the surface of the scenic area overview panel (56); S4: The tourist holds the handheld guide mechanism (5) or puts the handheld guide mechanism (5) into a pocket and starts to move. During the movement, the GPS positioning sensor (67) records the real-time location information of the tourist and feeds it back to the real-time location display screen (55) for display; S5: The loudspeaker (54) provides voice guidance based on the real-time information of the tourist and the generated sightseeing route until the tourist arrives at the scenic spot; S6: When the tourist arrives at the intersection, the first vibration sensor (66) performs vibration feedback, and the arrow on the travel direction indicator screen (53) lights up to guide the path direction, and the speaker (54) reminds the tourist to change the road; S7: At the same time, the second vibration sensor inside the vibration indicator block (78) vibrates, and the vibration indicator block (78) generates a vibration sensation on the palm of the tourist's hand. The tourist needs to watch the indicator display screen (72) and the LED indicator light bar (73) and select the corresponding road according to the indicator display screen (72) and the LED indicator light bar (73) to continue moving forward; S8: After the tourist arrives at the scenic spot, the broadcast information of the loudspeaker (54) is converted from the tourist path information to the scenic spot information introduction, and the information displayed on the real-time location display screen (55) is changed to the specific information of the scenic spot; S9: After the tourists finish their sightseeing, the handheld guide mechanism (5) and the recyclable tickets (6) for the scenic spot are collected at the exit of the scenic spot.