Energy-saving exhibition hall decorative lighting system and method
By installing walking pedals and sensor components in the exhibition hall's decorative lighting system, flexible lighting in designated areas can be achieved based on the actual situation of the participants, solving the problem that the existing system cannot be adjusted according to the participants and improving energy efficiency.
Patent Information
- Application Number
- CN202511076094.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-01
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-08-01
AI Technical Summary
The existing exhibition hall decorative lighting system cannot be flexibly adjusted according to the specific situation of the participants in areas such as corridors where people do not stay for long periods of time, resulting in unnecessary resource consumption.
An energy-saving exhibition hall decorative lighting system is adopted. By setting multiple walking pedals and sensing components on the passageway body, pressure sensors and energy recovery components are used to realize flexible switching control of the lighting strips within a fixed area. The sensing components monitor the support status of the walking pedals and control the opening and closing of the lighting strips.
It enables flexible lighting in designated areas based on the actual needs of participants, avoiding unnecessary resource consumption and improving the flexibility and energy efficiency of the lighting system.
Smart Images

Figure CN120576359B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of decorative lighting, in particular to an energy-saving exhibition hall decorative lighting system and method. BACKGROUND
[0002] Exhibition hall decorative lighting is a crucial part of exhibition hall design. It creates a unique space atmosphere, highlights the features of exhibits, and enhances the audience's exhibition experience through light and shadow effects, color matching, and lamp selection. Exhibition hall lighting not only meets basic lighting needs, but also emphasizes artistry and decoration to enhance the overall atmosphere and visual effects of the exhibition hall. Meanwhile, the exhibition hall lighting system needs to be highly flexible to adapt to different exhibition themes and exhibit arrangements.
[0003] Existing exhibition hall decorative lighting systems mostly use high-efficiency energy-saving lamps such as LEDs to better save resources and reduce energy consumption. Compared with traditional lighting lamps, these lamps have lower energy consumption, longer lifespan, and higher light efficiency, which can significantly reduce the lighting energy consumption of the exhibition hall. Additionally, they are equipped with intelligent lighting control systems that can automatically adjust lighting brightness and switching status based on actual usage conditions such as exhibition time and traffic, enabling on-demand lighting and avoiding unnecessary energy waste.
[0004] Existing exhibition hall decorative lighting systems use infrared sensors and personnel detection instruments to automatically turn on the power in the passageway when someone enters and turn off the power when no one enters. However, these systems are designed as a whole, and the entire system is controlled when turning on or off. If the passageway is long, the subsequent lighting is unnecessary when the person turns back after walking a short distance, making it impossible to adjust and adapt the lighting system to the actual situation of the activity personnel, resulting in unnecessary resource consumption. SUMMARY
[0005] The present application aims to provide an energy-saving exhibition hall decorative lighting system and method that can perform flexible lighting in specific areas based on the actual activity of the activity personnel, avoiding unnecessary resource consumption.
[0006] To achieve the above-mentioned purpose, the present application provides an energy-saving exhibition hall decorative lighting system, which comprises a passageway body and a lighting lamp strip. Multiple lighting lamp strips are installed on the passageway body, and an adaptive assembly is also included.
[0007] The adaptive assembly comprises guide columns, walking steps, connecting belts, sensing and controlling components and energy returning components, a plurality of the guide columns are fixedly installed below the passageway body, a plurality of the walking steps are slidably connected with the guide columns and are located below the passageway body, each of the walking steps is connected through the connecting belts, the sensing and controlling components are connected with the passageway body and are used for monitoring the support state of the walking steps, and the energy returning components are connected with the passageway body and are used for cooperating with corresponding mechanisms to complete the output of energy.
[0008] The sensing and controlling components comprise retraction springs, pressure sensors and master control devices, the two sides of the retraction springs are respectively connected with the walking steps and the passageway body, the pressure sensors are installed on one side of the passageway body close to the walking steps, the master control devices are electrically connected with the pressure sensors and are electrically connected with the lighting lamp strips and are installed on the passageway body.
[0009] The energy returning components comprise cross rods, pressing levers, driving shafts, energy storage components and linkage components, the cross rods are fixedly installed at the bottom of the passageway body, the pressing levers are rotatably installed on the cross rods, the driving shafts are fixedly installed on the pressing levers, the energy storage components are connected with the passageway body and are used for the output, storage and distribution of energy, and the linkage components are connected with the passageway body and are used for assisting the energy storage components to output energy by combining the movement of the pressing levers.
[0010] The energy storage components comprise rotating shaft generators, accumulators, support frames, rotating bearings and power generation rotating shafts, the rotating shaft generators are installed at the bottom of the passageway body, the accumulators are electrically connected with the rotating shaft generators and are electrically connected with the master control devices and are installed on the passageway body, the support frames are fixedly installed on the passageway body, the power generation rotating shafts are connected with the support frames through the rotating bearings arranged on the two sides, and the power generation rotating shafts are connected with the rotating shaft generators.
[0011] The linkage components comprise guide groove frames, transverse groove sliding frames, pushing supports and wiping blocks, the guide groove frames are fixedly installed at the bottom of the passageway body, the transverse groove sliding frames are connected with the driving shafts and are slidably installed on the guide groove frames, the pushing supports are slidably installed on the transverse groove sliding frames, and the wiping blocks are fixedly installed on one side of the pushing supports close to the power generation rotating shafts.
[0012] The energy storage components further comprise inertia rotating sleeves and wiping outer sleeves, the inertia rotating sleeves are fixedly sleeved on the power generation rotating shafts, and the wiping outer sleeves are sleeved outside the inertia rotating sleeves.
[0013] The linkage component further comprises a guide wheel, a guide slot block, a lower bottom turning plate and an upper turning plate, the guide wheel is rotatably installed on the back side of the dialing support, the guide slot block is connected with the guide wheel and fixedly installed on the bottom of the passage body, the lower bottom turning plate is rotatably installed on the bottom of the guide slot block, and the upper turning plate is rotatably installed on the top of the guide slot block.
[0014] The linkage component further comprises an external turning buckle, a matching support and a torsional spring, the external turning buckle is fixedly installed on one side of the upper turning plate, the matching support is fixedly installed on one side of the guide slot block close to the external turning buckle, and the torsional spring is arranged between the external turning buckle and the matching support.
[0015] The adaptive assembly further comprises a fixed frame, a downward pressing support, an upward pressing support and an upward pressing spring, the fixed frame is fixedly installed on the bottom of the passage body, the downward pressing support is fixedly installed on one side of the pressing lever away from the driving shaft, the upward pressing support is slidingly installed on the fixed frame, and the two sides of the upward pressing spring are connected with the upward pressing support and the fixed frame respectively.
[0016] An energy-saving exhibition hall decoration lighting method adopts an energy-saving exhibition hall decoration lighting system, and comprises the following steps,
[0017] The passage body is paved with corresponding roads through a plurality of walking steps and connecting belts between the walking steps.
[0018] When an exhibition visitor steps on the walking step, the walking step will slide downward in a small range through the guidance of the guide column.
[0019] After the walking step slides downward, the sensing control component will turn on the lighting lamp belt arranged on the passage body to perform lighting.
[0020] After the exhibition visitor leaves the corresponding walking step, the walking step will be reset through rebound under the corresponding mechanism, and at this time, the sensing control component will control the corresponding lighting lamp belt to be turned off.
[0021] This invention discloses an energy-saving exhibition hall decorative lighting system and method. In actual use, the passageway body is paved with multiple walking pedals and connecting strips between the walking pedals to form a corresponding road. When visitors step on the walking pedals, the pedals slide down slightly under the guidance of the guide pillars. After the walking pedals slide down, the sensing and control components turn on the lighting strips installed on the passageway body for illumination. After visitors leave the corresponding walking pedals, the pedals rebound and reset under the corresponding mechanism. At this time, the sensing and control components control the corresponding lighting strips to turn off. This achieves flexible lighting in fixed areas based on the actual activities of visitors, avoiding unnecessary resource consumption. Attached Figure Description
[0022] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0023] Figure 1 This is a structural schematic diagram of the energy-saving exhibition hall decorative lighting system of the present invention.
[0024] Figure 2 This is a front view of the energy-saving exhibition hall decorative lighting system of the present invention.
[0025] Figure 3 This is the invention Figure 2 Enlarged view of point A.
[0026] Figure 4 This is a schematic diagram of the installation structure of the pressure sensor of the present invention.
[0027] Figure 5 This is a schematic diagram of the side section of the passageway body of the present invention.
[0028] Figure 6 This is the invention Figure 5 Enlarged view of point B.
[0029] Figure 7 This is a schematic diagram of the energy recovery component of the present invention.
[0030] Figure 8 This is a schematic diagram of the installation structure of the toggle bracket of the present invention.
[0031] Figure 9 This is the invention Figure 8 Enlarged view of point C.
[0032] Figure 10 This is a side view of the energy recovery component of the present invention.
[0033] Figure 11is a structural schematic view of the inside of the guide block of the application.
[0034] Figure 12 is a structural schematic view of the inside of the guide block of the application. Figure 11 is an enlarged view of D of the guide block.
[0035] Figure 13 is a flow chart of the energy-saving type exhibition hall decoration lighting method of the application.
[0036] In the figure: 101 - passageway body, 102 - lighting lamp strip, 103 - guide column, 104 - walking pedal, 105 - connecting strip, 201 - retraction spring, 202 - pressure sensor, 203 - main control device, 301 - cross rod, 302 - pressing lever, 303 - driving shaft, 401 - rotating shaft generator, 402 - accumulator, 403 - support frame, 404 - rotating bearing, 405 - power generation rotating shaft, 406 - inertia rotating sleeve, 407 - rubbing sleeve, 501 - guide groove frame, 502 - transverse groove sliding frame, 503 - pushing support, 504 - rubbing block, 505 - guide wheel, 506 - guide block, 507 - lower bottom rotating plate, 508 - upper connecting rotating plate, 509 - outer connecting rotating buckle, 510 - matching support, 511 - torsion spring, 601 - fixed frame, 602 - lower pressing support, 603 - upper top support, 604 - upper top spring. DETAILED DESCRIPTION
[0037] Embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar reference numbers represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and are intended to explain the present application, and cannot be understood as a limitation of the present application.
[0038] In the description of the present application, it is understood that the meaning of "a plurality of" is two or more, unless otherwise explicitly and specifically limited.
[0039] Please refer to Figures 1 to 12The application provides an energy-saving exhibition hall decoration lighting system and method, which comprises a passageway body 101, lighting lamp strips 102 and an adaptive assembly, the adaptive assembly comprises guide columns 103, walking steps 104, connecting belts 105, sensing control members and energy return members, the sensing control members comprise a retraction spring 201, a pressure sensor 202 and a master control device 203, the energy return members comprise a transverse rod 301, a pressing lever 302, a driving shaft 303, an energy storage part and a linkage part, the energy storage part comprises a rotating shaft generator 401, an energy accumulator 402, a support frame 403, a rotating bearing 404 and a power generation rotating shaft 405, the linkage part comprises a guide groove frame 501, a transverse groove sliding frame 502, a pushing support 503 and a wiping block 504, the energy storage part further comprises an inertial rotating sleeve 406 and a wiping outer sleeve 407, the linkage part further comprises a guide wheel 505, a guide groove block 506, a lower bottom rotating plate 507 and an upper interface rotating plate 508, the linkage part further comprises an external interface rotating buckle 509, a matching support 510 and a torsional spring 511, the foregoing scheme solves the problem that in the prior art, when the automatic control of the exhibition hall decoration lighting system is performed, especially in some passageways and other areas where long-term stay is not required, corresponding infrared sensing devices and personnel detection instruments are usually arranged to automatically turn on the power supply in the passageway when people enter the passageway, and to turn off the power supply when no one enters, but the existing lighting system in the passageway is integrally designed, and the whole system is controlled when it is turned on and turned off, so that when the passageway is long and people walk into a small section and then turn back, the subsequent lighting is unnecessary, so that the whole system cannot adjust and adapt to the actual lighting condition of the lighting system according to the specific condition of the activity personnel, thereby causing unnecessary resource consumption.
[0040] Further, a plurality of the lighting lamp strips 102 are installed on the passageway body 101, a plurality of the guide columns 103 are fixedly installed below the passageway body 101, a plurality of the walking steps 104 are in sliding connection with the guide columns 103 and are located below the passageway body 101, the walking steps 104 are connected by the connecting belts 105, the sensing control members are connected with the passageway body 101 and are used for monitoring the support state of the walking steps 104, and the energy return members are connected with the passageway body 101 and are used for cooperating with corresponding mechanisms to output energy.
[0041] Specifically, the passageway body 101 is provided with corresponding lighting lamp strips 102 on both sides, the lighting lamp strips 102 on both sides and the walking steps 104 arranged at the bottom of the passageway body 101 can form a lighting unit, the walking steps 104 are installed with the guide columns 103 arranged in the guide grooves on both sides of the passageway body 101, and the walking steps 104 can slide up and down in a small range under the guidance of the guide columns 103.
[0042] The gap in the middle of each walking pedal 104 is connected by the connecting belt 105, which has strong flexibility and ductility. The gap between the two adjacent walking pedals 104 can be blocked by the connecting belt 105, and meanwhile, the independent sliding of the two adjacent walking pedals 104 is not interfered.
[0043] Each lighting unit composed of the walking pedal 104 at the bottom and the lighting lamp belt 102 at both sides is provided with independent sensing member and energy return member. When the exhibition personnel step on the corresponding walking pedal 104, the lighting lamp belt 102 corresponding to both sides of the walking pedal 104 can be turned on under the action of the sensing member, and the lighting lamp belt 102 corresponding to both sides of the walking pedal 104 which is not stepped on will not be turned on. Thus, the lighting range can be regulated according to the actual situation of the exhibition personnel, and the fun of walking can be added through the small-amplitude sliding of the walking pedal 104, so that the exhibition personnel seem to walk on a floating bridge. Since the sliding amplitude of the walking pedal 104 is small, the situation of stepping on the empty or excessive shaking of the walking personnel will not occur.
[0044] In actual use, the passageway body 101 is paved into corresponding roads by the plurality of walking pedals 104 and the connecting belts 105 between the walking pedals 104. When the exhibition personnel steps on the walking pedal 104, the walking pedal 104 will slide down slightly under the guidance of the guide column 103. After the walking pedal 104 slides down, the sensing member will turn on the lighting lamp belt 102 provided on the passageway body 101 to illuminate. After the exhibition personnel leaves the corresponding walking pedal 104, the walking pedal 104 will be reset under the corresponding mechanism. At this time, the sensing member will control the corresponding lighting lamp belt 102 to be turned off. The flexible lighting in the specified area according to the actual activity of the activity personnel can be realized by the provided components, and unnecessary resource consumption can be avoided.
[0045] Further, the two sides of the retraction spring 201 are connected with the walking pedal 104 and the passageway body 101, respectively. The pressure sensor 202 is installed on one side of the passageway body 101 close to the walking pedal 104. The main control device 203 is electrically connected with the pressure sensor 202 and the lighting lamp belt 102, and is installed on the passageway body 101.
[0046] When the embodiment is in use, the bottom of each walking pedal 104 is provided with a plurality of retractable springs 201, when the user steps on the walking pedal 104 and makes the walking pedal 104 slide down, the walking pedal 104 will extrude the corresponding retractable spring 201 to deform, so that when the user removes the force applied to the walking pedal 104, the walking pedal 104 will move up and reset under the action of the retractable spring 201.
[0047] The bottom of each walking pedal 104 is also provided with a corresponding pressure sensor 202, once the sensing module on the top of the pressure sensor 202 is pressed from the bottom of the walking pedal 104, the host device 203 will control the corresponding lighting lamp strip 102 of the walking pedal 104 to work, when the corresponding walking pedal 104 is not in contact with the sensing module on the top of the pressure sensor 202, the lighting lamp strip 102 will stop working under the action of the host device 203, thereby realizing the regulation and control of the lighting lamp strip 102 in the specified range, it should be noted that in order to ensure the lighting experience of the exhibition personnel, when the lighting lamp strip 102 is actually controlled, delay closing and the like can be used, when the walking pedal 104 is reset by the retractable spring 201, the host device 203 can close the corresponding lighting lamp strip 102 after a set time, to avoid the lighting range being too small during the walking of the exhibition personnel.
[0048] Further, the cross rod 301 is fixedly installed at the bottom of the passageway body 101; the pressing lever 302 is rotatably installed on the cross rod 301; the driving shaft 303 is fixedly installed on the pressing lever 302; the energy storage component is connected with the passageway body 101, for energy output, storage and distribution; the linkage component is connected with the passageway body 101, for assisting the energy storage component to output energy by combining the movement of the pressing lever 302.
[0049] When the embodiment is in use, the pressing lever 302 is installed on the cross rod 301 arranged at the bottom of the aisle body 101, the rotating center of the pressing lever 302 is more inclined to one side, thereby forming a lever structure with large difference in two force arms, and the side with small force arm of the pressing lever 302 is provided with a corresponding abutting boss, when the walking pedal 104 is lowered, the abutting boss of the pressing lever 302 is pressed by the bottom of the walking pedal 104, thereby making the pressing lever 302 rotate around the cross rod 301, and because of the large difference in the two force arms of the pressing lever 302, the small downward movement of the walking pedal 104 can be converted into large swing of the large force arm end of the pressing lever 302, so as to cooperate with the linkage component to complete the energy output.
[0050] Further, the rotating shaft generator 401 is installed at the bottom of the aisle body 101; the accumulator 402 is electrically connected with the rotating shaft generator 401 and the main control device 203, and is installed on the aisle body 101; the support frame 403 is fixedly installed on the aisle body 101; the power generation rotating shaft 405 is connected with the support frame 403 through the rotating bearings 404 arranged on both sides, and the power generation rotating shaft 405 is connected with the rotating shaft generator 401.
[0051] Further, the inertia rotating sleeve 406 is fixedly sleeved on the power generation rotating shaft 405; and the rubbing outer sleeve 407 is sleeved outside the inertia rotating sleeve 406.
[0052] When the embodiment is in use, the rotating shaft generator 401 is arranged in one-to-one correspondence with the lighting unit composed of the walking pedal 104 and the lighting lamp strip 102, the rotating shaft of the rotating shaft generator 401 is fixed with the power generation rotating shaft 405, the power generation rotating shaft 405 is installed on the two support frames 403 arranged at the bottom of the aisle body 101 through the rotating bearings 404 arranged at both ends, so as to drive the rotating shaft of the rotating shaft generator 401 to rotate through the rotation of the power generation rotating shaft 405, thereby realizing the conversion of electric energy, the electric energy generated by the rotating shaft generator 401 is stored in the accumulator 402 through the corresponding connection circuit, and the electric energy in the accumulator 402 can supply the main control device 203, it should be noted that in actual operation, an external charging circuit can be arranged to supplement the electric energy of the accumulator 402 according to the actual situation, and a corresponding electric energy detection device can be arranged to monitor the capacity of the remaining energy in the accumulator 402, so as to charge the accumulator 402 in time, therefore, the rotating shaft generator 401 is only used to utilize the available resources to generate electric energy, thereby better realizing energy saving.
[0053] The inertia rotating sleeve 406 is fixedly sleeved on the power generation rotating shaft 405, and the rubbing outer sleeve 407 is fixedly sleeved outside the inertia rotating sleeve 406. The inertia rotating sleeve 406 is a cylindrical block with a certain mass, and the rubbing outer sleeve 407 is a ring sleeve with a friction layer arranged on the outer ring. After the power generation rotating shaft 405 is driven by the corresponding components, the power generation rotating shaft 405 can continuously rotate under the action of the inertia rotating sleeve 406 and the rotating bearings 404 arranged on both sides, and the rubbing outer sleeve 407 is driven to rotate the power generation rotating shaft 405 by cooperating with the subsequent mechanism.
[0054] Further, the guide groove frame 501 is fixedly installed at the bottom of the passageway body 101; the transverse groove sliding frame 502 is connected with the driving shaft 303 and is slidingly installed on the guide groove frame 501; the pushing bracket 503 is slidingly installed on the transverse groove sliding frame 502; and the rubbing block 504 is fixedly installed on one side of the pushing bracket 503 close to the power generation rotating shaft 405.
[0055] Further, the guide wheel 505 is rotatably installed on the back side of the pushing bracket 503; the guide groove block 506 is connected with the guide wheel 505 and is fixedly installed at the bottom of the passageway body 101; the lower bottom rotating plate 507 is rotatably installed at the bottom of the guide groove block 506; and the upper connecting rotating plate 508 is rotatably installed at the top of the guide groove block 506.
[0056] Further, the outer connecting rotating buckle 509 is fixedly installed on one side of the upper connecting rotating plate 508; the matching bracket 510 is fixedly installed on one side of the guide groove block 506 close to the outer connecting rotating buckle 509; and the torsional spring 511 is arranged between the outer connecting rotating buckle 509 and the matching bracket 510.
[0057] When the transverse groove sliding frame 502 cooperates with the guide groove frame 501 arranged at the bottom of the passageway body 101, the corresponding transverse groove arranged on the transverse groove sliding frame 502 cooperates with the driving shaft 303. When the pressing lever 302 rotates, one end of the pressing lever 302 provided with the driving shaft 303 can drive the transverse groove sliding frame 502 to move through the cooperation of the transverse groove on the transverse groove sliding frame 502, so as to convert the rotation of the corresponding side of the pressing lever 302 into up and down movement.
[0058] The horizontal slot slide frame 502 is slidably installed on the back side of the push bracket 503, the push bracket 503 is matched with the sleeve frame at the bottom of the horizontal slot slide frame 502 through the setting of the branch boss, the guide wheels 505 are rotatably installed on both sides of the back of the push bracket 503, the guide wheels 505 are matched with the guide rolling grooves arranged in the inside of the guide slot block 506, the wiping blocks 504 are fixed on the side edges of the push bracket 503, and the inertia rotating sleeve 406 and the power generation rotating shaft 405 can be driven to rotate through the contact and cooperation of the wiping blocks 504 and the wiping sleeves 407.
[0059] The guide slot block 506 is composed of three layers of plates, and the three layers of plates are small shaft guide plates, wheel body guide plates and side sealing plates, the small shaft guide plates and the wheel body guide plates are provided with corresponding guide grooves for guiding the small shafts connected with the push bracket 503 and the guide wheels 505 and the guide wheels 505, and the side sealing plates are used for shielding the corresponding side.
[0060] The upper and lower sides of the inside of the guide slot block 506 are rotatably installed with the upper connecting rotating plate 508 and the lower bottom rotating plate 507, the guide rolling grooves arranged in the guide slot block 506 are back-shaped guide grooves, the lower bottom rotating plate 507 can only rotate in one direction through the cooperation with the rotating hole groove in the inside of the guide slot block 506, when the lower bottom rotating plate 507 rotates in the reverse direction towards the set direction, the plate block protruding on the corresponding side of the lower bottom rotating plate 507 is resisted by the side wall of the rotating hole groove, so that the one-way rotation of the lower bottom rotating plate 507 is realized.
[0061] The outer side of the upper connecting rotating plate 508 is fixed with the outer connecting rotating buckle 509, the outer connecting rotating buckle 509 is matched with the matching bracket 510 installed on the outer side of the guide slot block 506, the upper connecting rotating plate 508 can also only rotate in one direction through the cooperation of the outer connecting rotating buckle 509 and the matching bracket 510, and the torsional spring 511 is also arranged between the outer connecting rotating buckle 509 and the matching bracket 510, the torsional spring 511 can assist the upper connecting rotating plate 508 to reset quickly, and it should be noted that the lower bottom rotating plate 507 also needs to be reset after one-way rotation, since the rotation range of the lower bottom rotating plate 507 itself is not large, and the position of the lower bottom rotating plate 507 for rotation is at the upper end when the structure is set, the lower bottom rotating plate 507 can rely on its own gravity to reset after rotation, and in actual use, in order to ensure the stability of the reset of the lower bottom rotating plate 507, a corresponding reset spring can also be arranged to assist.
[0062] In actual operation, the walking pedal 104 will be pressed down by the visitor, and the pressing lever 302 will be rotated when the walking pedal 104 is pressed down. When the pressing lever 302 is rotated, the driving shaft 303 will drive the horizontal slot carriage 502 to move up under the driving of the pressing lever 302. The horizontal slot carriage 502 moving up will drive the pushing support 503 to move up. When the pushing support 503 moves up under the cooperation of the guide wheel 505 and the guide slot frame 501, the rubbing block 504 will be in contact with the friction outer cover and generate friction, thereby driving the inertia rotating sleeve 406 and the power generation rotating shaft 405 to rotate. When the walking pedal 104 is reset by the upward movement of the retraction spring 201, the pressing lever 302 will be reset due to the weight of the one-end device of the heavy arm. At this time, the horizontal slot carriage 502 will also drive the pushing support 503 to move down.
[0063] The guide wheel 505 changes correspondingly through cooperation with the guide groove frame 501 during the downward and upward movement of the poking support 503. When the poking support 503 moves upward, the guide wheel 505 moves upward along the guide groove on the side of the guide groove frame 501 close to the poking support 503. At this time, the guide wheel 505 first passes through the lower bottom rotating plate 507 and then extrudes the upper connecting rotating plate 508 at the top to rotate. When the poking support 503 and the guide wheel 505 move to the top, the upper connecting rotating plate 508 rotates back to the original position under the action of the outer connecting rotating buckle 509, the cooperation support 510 and the torsional spring 511. Thus, when the poking support 503 drives the guide wheel 505 to move downward, the guide wheel 505 rolls on the guide groove on the side of the guide groove frame 501 far away from the poking support 503 under the guidance of the upper connecting rotating plate 508 and then moves downward along the corresponding guide groove. At this time, the poking support 503 slides backward a little. Thus, the wiping block 504 on the side of the poking support 503 does not contact the wiping outer cover 407 during the downward movement, avoiding hindering the independent inertial rotation of the wiping outer cover 407 and the inertial rotating sleeve 406. When the poking support 503 drives the guide wheel 505 to continuously move downward, the guide wheel 505 extrudes the lower bottom rotating plate 507 to rotate and finally moves to the bottom of the guide groove on the side of the guide groove frame 501 close to the poking support 503. At this time, the lower bottom rotating plate 507 rotates back to the original position, so that the guide wheel 505 moves along the guide groove on the side of the guide groove frame 501 close to the poking support 503 during the next upward movement of the poking support 503. Thus, the wiping outer cover 407 drives the inertial rotating sleeve 406 and the power generating rotating shaft 405 again, so that the rotating direction of the entire power generating rotating shaft 405 remains consistent and does not affect the independent inertial rotation of the power generating rotating shaft 405, ensuring the stable and continuous power generation of the rotating shaft power generator 401.
[0064] Preferably, the adaptation assembly provided by the present application further comprises a fixing frame 601, a downward pressing support 602, an upward pressing support 603 and an upward pressing spring 604.
[0065] Further, the fixing frame 601 is fixedly installed at the bottom of the passageway body 101; the downward pressing support 602 is fixedly installed on the side of the pressing lever 302 far away from the driving shaft 303; the upward pressing support 603 is slidingly installed on the fixing frame 601; and the two sides of the upward pressing spring 604 are connected with the upward pressing support 603 and the fixing frame 601 respectively.
[0066] The lower pressing support 602 is fixed at one end of the small force arm of the pressing lever 302, the lower pressing support 602 is arranged at the bottom of the pressing lever 302, the upper top support 603 is arranged on the fixed frame 601 in a sliding manner, the upper top spring 604 is arranged between the upper top support 603 and the fixed frame 601, when the pressing lever 302 rotates under the pressing of the walking pedal 104, the lower pressing support 602 at the bottom of the pressing lever 302 extrudes the upper top support 603 to move downward, then the upper top support 603 extrudes the upper top spring 604 to deform, so when the walking pedal 104 moves upward to reset, the upper top spring 604 drives the upper top support 603 to move upward, and then pushes the lower pressing support 602 to make the pressing lever 302 rotate and reset more quickly and stably.
[0067] Please refer to Figure 13 An energy-saving exhibition hall decoration lighting system and method, the energy-saving exhibition hall decoration lighting system and method comprises the following steps:
[0068] S1: The passageway body 101 is laid corresponding roads through the multiple walking pedals 104 and the connecting belts 105 between the walking pedals 104;
[0069] S2: When the exhibition visitors step on the walking pedals 104, the walking pedals 104 slide downward in a small range through the guidance of the guide columns 103;
[0070] S3: After the walking pedals 104 slide downward, the sensing control member turns on the lighting lamp belts 102 arranged on the passageway body 101 to illuminate;
[0071] S4: After the exhibition visitors leave the corresponding walking pedals 104, the walking pedals 104 reset under the corresponding mechanism, at this time, the sensing control member controls the corresponding lighting lamp belts 102 to turn off.
[0072] The above disclosure is only one or more preferred embodiments of the present application, which cannot limit the scope of the present application, and those skilled in the art can understand that all or part of the above-mentioned embodiments can be implemented, and equivalent changes made according to the claims of the present application still belong to the scope covered by the present application.
Claims
1. An energy-saving exhibition hall decorative lighting system, comprising a passageway body and lighting lamp strips, characterized in that, It further comprises an adaptive assembly; The adaptive assembly comprises guide columns, walking pedals, connecting belts, sensing control components and energy recovery components, a plurality of guide columns are fixedly installed below the passageway body, a plurality of walking pedals are slidably connected with the guide columns and are located below the passageway body, each of the walking pedals is connected by the connecting belts, the sensing control components are connected with the passageway body for monitoring the support state of the walking pedals, and the energy recovery components are connected with the passageway body for cooperating with corresponding mechanisms to complete energy output; The energy recovery components comprise a transverse rod, a pressing lever, a driving shaft, an energy storage component and a linkage component, the transverse rod is fixedly installed at the bottom of the passageway body, the pressing lever is rotatably installed on the transverse rod, the driving shaft is fixedly installed on the pressing lever, the energy storage component is connected with the passageway body for energy output, storage and distribution, and the linkage component is connected with the passageway body for assisting the energy storage component to output energy by combining the movement of the pressing lever.
2. The energy-saving exhibition hall decorative lighting system according to claim 1, characterized in that, The sensing control components comprise a retraction spring, a pressure sensor and a master control device, two sides of the retraction spring are respectively connected with the walking pedals and the passageway body, the pressure sensor is installed on one side of the passageway body close to the walking pedals, the master control device is electrically connected with the pressure sensor and the lighting lamp strips and is installed on the passageway body.
3. The energy-saving exhibition hall decorative lighting system according to claim 1, characterized in that, The energy storage component comprises a rotating shaft generator, an energy accumulator, a support frame, a rotating bearing and a power generation rotating shaft, the rotating shaft generator is installed at the bottom of the passageway body, the energy accumulator is electrically connected with the rotating shaft generator and the master control device and is installed on the passageway body, the support frame is fixedly installed on the passageway body, the power generation rotating shaft is connected with the support frame through the rotating bearings arranged on both sides, and the power generation rotating shaft is connected with the rotating shaft generator.
4. The energy-saving exhibition hall decorative lighting system according to claim 3, characterized in that, The linkage component comprises a guide groove frame, a transverse groove sliding frame, a pushing support and a wiping block, the guide groove frame is fixedly installed at the bottom of the passageway body, the transverse groove sliding frame is connected with the driving shaft and is slidably installed on the guide groove frame, the pushing support is slidably installed on the transverse groove sliding frame, and the wiping block is fixedly installed on one side of the pushing support close to the power generation rotating shaft.
5. The energy-saving exhibition hall decorative lighting system according to claim 3, characterized in that, The energy storage component further comprises an inertial rotating sleeve and a wiping outer sleeve, the inertial rotating sleeve is fixedly sleeved on the power generation rotating shaft, and the wiping outer sleeve is sleeved outside the inertial rotating sleeve.
6. The energy-saving exhibition hall decorative lighting system according to claim 4, characterized in that, The linkage component further comprises a guide wheel, a guide slot block, a lower bottom turning plate and an upper turning plate, the guide wheel is rotatably installed on the back side of the dialing support; the guide slot block is connected with the guide wheel and fixedly installed on the bottom of the passage body; the lower bottom turning plate is rotatably installed on the bottom of the guide slot block; and the upper turning plate is rotatably installed on the top of the guide slot block.
7. The energy-saving exhibition hall decorative lighting system according to claim 6, wherein, The linkage component further comprises an external turning buckle, a matching support and a torsion spring, the external turning buckle is fixedly installed on one side of the upper turning plate; the matching support is fixedly installed on one side of the guide slot block close to the external turning buckle; and the torsion spring is arranged between the external turning buckle and the matching support.
8. The energy-saving exhibition hall decorative lighting system according to claim 1, wherein, The adaptive assembly further comprises a fixing frame, a downward pressing support, an upward pressing support and an upward pressing spring, the fixing frame is fixedly installed on the bottom of the passage body; the downward pressing support is fixedly installed on one side of the pressing lever away from the driving shaft; the upward pressing support is slidingly installed on the fixing frame; and the two sides of the upward pressing spring are connected with the upward pressing support and the fixing frame respectively.
9. An energy-saving exhibition hall decorative lighting method using the energy-saving exhibition hall decorative lighting system according to claim 1, characterized by, The method comprises the following steps, The passage body is paved with corresponding roads through a plurality of walking steps and connecting belts between the walking steps; When the exhibition visitors step on the walking steps, the walking steps will slide down slightly through the guidance of the guide columns; After the walking steps slide down, the sensing control component will turn on the lighting lamp belt arranged on the passage body to illuminate; After the exhibition visitors leave the corresponding walking steps, the walking steps will be reset through corresponding mechanisms, and at this time, the sensing control component will control the corresponding lighting lamp belt to be turned off.
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