Tourist attractions and park monitoring solutions

Facing scenic spots, forest parks, wetland parks and urban green spaces, it takes into...

Tourist attractions and park monitoring solutions

Tourist attractions and park monitoring solutions

Facing scenic spots, forest parks, wetland parks and urban green spaces, it takes into account tourist safety, forest fire prevention, cultural relic protection and passenger flow diversion.

1. Industry security needs and pain points

Scenic spots and parks have large areas, complex terrain, and dense vegetation. Monitoring construction faces the triple challenge of "wide visibility, transmission, and supply":

  • Large area, difficult to obtain electricity: Mountains, forest areas and wetlands are difficult to wire and supply power, and conventional points cannot be covered.
  • bushfire risk: Fire hazards in forests and vegetation areas are high. The earlier they are detected, the smaller the losses. The requirements for long-distance monitoring are high.
  • tourist safety: Areas near cliffs, water, and steep slopes are prone to accidents, and incidents of getting lost and seeking help are frequent.
  • Passenger flow pressure: Instantaneous passenger flow is concentrated during holidays, and entrances and exits and popular attractions are prone to congestion, so advance warning and guidance are needed.

2. Construction Goals

  • Entrances and exits, main tour routes, viewing platforms, dangerous areas and commanding heights are effectively covered.
  • Forest fires and abnormal conditions can be detected from a distance, supporting early warning.
  • Passenger flow data can be grasped in real time to support flow restriction and diversion decisions.
  • Tourist requests for help and accidents can be quickly located and handled.

3. Overall system architecture

  • Front-end collection layer: Entrance and exit passenger flow counting machines, travel line infrared machines, commanding heights long-distance dome machines (including thermal imaging optional), key machines near water and cliffs, and solar-powered wireless points.
  • network transport layer: Backbone optical fiber + wireless bridging, remote points using 4G/5G backhaul and solar power supply.
  • storage management layer: Centralized storage in the scenic spot monitoring center, with extended retention of key points.
  • Application linkage layer: Linked with the broadcast system, ticketing system, and emergency rescue, supporting large-screen display and mobile viewing.

4. Key point layout and equipment selection

pointRecommended modelsKey parametersMonitoring target
Scenic area entrance and exitPeople counting cameraBidirectional counting, wide dynamic rangePassenger flow monitoring, flow limit warning
High point/ridgeLong-distance high-definition ball machine (thermal imaging optional)Large zoom, fog penetration, long distanceForest fire monitoring, global situation
Main tour routesInfrared waterproof cameraIP66, adaptable to outdoor environmentTourist safety, lost search and rescue
Linshui Linya DistrictHD Camera + BroadcastCross-border detection, voice reminderWarning and discouraging dangerous behaviors
Cultural Preservation and Ancient Tree Arealow light cameraNon-destructive installation, anti-vandalismCultural relics and ancient tree protection
PARKING LOTLow light waterproof cameraAnti-glare and license plate recognition optionalVehicle safety and order management

5. Core functions and business value

  • Security: Dangerous area cross-border reminders and broadcasts to dissuade, lost persons can quickly locate their tracks.
  • forest fire warning: Remote monitoring of commanding heights combined with thermal imaging can detect smoke spots early and gain time for firefighting.
  • Passenger flow diversion: Real-time passenger flow data supports traffic restriction and diversion decisions, improving the tourist experience and safety.
  • resource protection: Visual supervision of cultural protection and ancient tree areas to reduce the risk of man-made damage and theft.
  • Improve management efficiency: The command center can grasp the situation of the whole area on one screen, and the emergency dispatch response can be faster.

6. Implement delivery and service guarantee

  1. Conduct an on-site survey to determine the commanding heights and power supply conditions, and formulate a hybrid wired and wireless networking plan.
  2. Prioritize the use of existing towers and buildings to reduce the impact on the environment and landscape.
  3. Complete the linkage of broadcasting, passenger flow statistics and ticketing system.
  4. Train security and emergency personnel in scenic spots and formulate emergency plans during peak periods.
  5. Provide quality assurance and seasonal inspections, focusing on ensuring stable operation during fire prevention periods and holidays.

7. Typical configuration suggestions

Recommendations for medium-sized scenic spots: 2-4 sets of passenger flow statistics at entrances and exits, high-altitude point-ball machines confirmed according to blind areas of vision (usually 2-4 sets), one machine every 100-200 meters along the main tour route, point-by-point coverage of waterfront and cliff areas with supporting broadcasts, and independent coverage of cultural protection areas. Storage is calculated based on 30 days, and it is recommended to extend the time for entrances, exits and hazardous areas. The forest area recommends giving priority to solar + wireless backhaul solutions to solve power supply and transmission problems, and completing comprehensive inspections before the fire prevention period.

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