Solution / 01

Safe City Surveillance System Solution

End-to-end video surveillance from front-end access to citywide command centers

SOLUTION OVERVIEW
In safe city surveillance system deployment, common challenges include dispersed front-end monitoring points, multi-channel video aggregation, and coordination between regional and city-level command centers. Wintop provides a mature network transmission solution: front-end monitoring points connect via industrial switches for aggregation, then link with regional monitoring displays and public security private networks to support city-level unified surveillance management.

ARCHITECTURE
Wintop deploys a three-tier architecture: "Front-end Access — Network Aggregation — Central Command":

1. Front-end Access Layer
Cameras and industrial switching devices are deployed in proximity to build a stable front-end access network.
Products: RS232-1GF1GT, RS235-1GF4GT industrial switches

2. Network Aggregation Layer
Core switching devices consolidate multi-channel video streams.
Products: CM 6320-2GF18GT core switching device

3. Central Command Layer
Transport: Public security private network delivers surveillance resources to municipal command centers.

CORE VALUE
✅ Stable Access — Front-end devices deployed in proximity
✅ Unified Aggregation — Multi-channel video consolidated at core devices
✅ Efficient Command — Public security network transport supports unified municipal scheduling
Solution / 02

Intelligent Traffic Monitoring Solution

Multi-intersection video capture with edge aggregation and centralized visualization

SOLUTION OVERVIEW
Urban road traffic surveillance requires multi-intersection video acquisition, edge data aggregation, central unified access, and visualized monitoring.

ARCHITECTURE
Wintop deploys a distributed hierarchical architecture:

• Front-end Multi-channel Access: Supports monitoring device connection at multiple intersections
• Stable Link Transmission: Industrial-grade switching equipment ensures stable video transmission
• Central Visualization: Core switches deliver video streams to command center displays

PRODUCTS APPLIED
• Front-end Access: RS236-2GF4GT industrial switch
• Master Control Box: RS6312-4GF8GT for multi-intersection aggregation
• Transceiver Rack: WT-816-2A (16-slot)
• Core Switch: CM6328-2GF26GT

CORE VALUE
• Multi-channel access supporting 4-intersection deployment
• Industrial-grade equipment for reliable transceiving
• Central visualization with monitoring linkage support
Solution / 03

Highway Tunnel Safety Monitoring Solution

Ring-network redundancy with real-time HD monitoring for highway tunnels

SOLUTION OVERVIEW
Highway tunnel surveillance requires an industrial switching network with multi-point video acquisition, ring-network redundant transmission, and centralized viewing.

ARCHITECTURE
'Front-end Sensing — Redundant Ring — Central Aggregation — Visualization':
• Front-end Sensing: Multi-point cameras connect to industrial switches
• Redundant Ring: Industrial switches form ring topology for reliability
• Central Aggregation: Monitoring center switches consolidate data
• Visualization: Monitor walls display multiple video feeds

PRODUCTS APPLIED
• Front-end Access: RS6310-2GF8GT, RS6312-4GF8GT
• Core Aggregation: CM6320-2GF18GT at monitoring center

CORE VALUE
• Multi-point cameras with efficient local aggregation
• Ring topology providing link redundancy
• Central switches for unified aggregation
• HD multi-video display
Solution / 04

Smart Park Monitoring Solution

Unified access for multiple sub-systems with visualized interactive management

SOLUTION OVERVIEW
Smart parks encompass intelligent parking, security video surveillance, access control, and wireless WiFi coverage. These systems require unified access, centralized switching, and visualized coordinated monitoring.

ARCHITECTURE
• Multi-System Access: Unified access for parking, surveillance, access control, and WiFi
• Core Aggregation: High-performance industrial switches deliver centralized data switching
• Visualization Output: Monitoring center delivers visualized coordinated monitoring

PRODUCTS APPLIED
• Core Aggregation: CM6328-2GF26GT industrial switch
• Access Layer: RS2312-4GF8GT industrial switches

CORE VALUE
• Unified access simplifying network architecture
• Centralized switching with unified management
• Stable transmission ensuring data reliability
• Visualized coordination for rapid incident response
Solution / 05

Scenic Park Surveillance Solution

Perception, edge access, core aggregation, and centralized display architecture

SOLUTION OVERVIEW
Scenic park surveillance faces multi-source device perception, stable access under complex environments, data aggregation, and centralized display challenges.

ARCHITECTURE
• Front-end Perception: Outdoor cameras, broadcast systems
• Edge Access: Industrial-grade access equipment (RS235-1GF1GT, RS236-1GF5GT)
• Core Aggregation: Aggregation switches (CM6320-2GF18G)
• Centralized Display: Monitor walls

CORE VALUE
• 24/7 surveillance covering key park areas
• Stable transmission through industrial-grade equipment
• Centralized management with panoramic visualization
• Rapid deployment with modular architecture
Solution / 06

Airport Surveillance System Solution

Integrated architecture: perception, edge aggregation, and central linkage

SOLUTION OVERVIEW
Airport surveillance faces multiple front-end device access, outdoor operational stability, real-time video/audio transmission, and central linkage response requirements.

ARCHITECTURE
• Front-end Perception: Outdoor cameras and broadcast systems
• Edge Aggregation: Edge gateways/industrial switches
• Network Aggregation: Aggregation switches
• Central Linkage: Command center video wall

CORE VALUE
• Unified multi-source device access
• Real-time audio/video linkage response
• Centralized monitoring and unified management
• High reliability with industrial-grade equipment
Solution / 07

Photovoltaic Data Acquisition Solution

Multi-device unified access with redundant ring network transmission

SOLUTION OVERVIEW
PV station monitoring involves diverse device access (inverters, combiner boxes, box transformers, smart meters, environmental monitoring), long-distance transmission, and centralized monitoring.

ARCHITECTURE
• Station Acquisition: Aggregate device data through serial servers
• Ring Transmission: Multiple ring nodes forming 100M fiber optic ring redundancy
• Central Monitoring: Monitor walls, industrial PCs, servers

CORE VALUE
• Multi-device unified access
• Ring redundant communications
• Remote centralized monitoring
• Visualized real-time station status
Solution / 08

Wind Power Monitoring Solution

WT-Ring Gigabit topology with millisecond-level fault self-healing

SOLUTION OVERVIEW
Wind farm monitoring requires data acquisition from turbines, tower bases, and box transformers, reliable transmission, ring redundancy, and centralized management.

ARCHITECTURE
• Front-end Acquisition: Field devices at turbines and box transformers
• Industrial Transmission: WT-Ring Gigabit ring topology
• Central Management: Data servers at monitoring centers

PRODUCTS APPLIED
• Front-end Access: RS6010-2GF8T, RS205-1F4T, RS203-1F2T
• Ring Core: RS6010 series industrial switches

CORE VALUE
• Gigabit ring with millisecond-level fault self-healing
• Real-time data acquisition with visualized monitoring
• Industrial-grade equipment with anti-interference
• Multi-farm access supporting large-scale deployment
Solution / 09

Energy Storage Monitoring Solution

Dual-network redundancy with hierarchical aggregation architecture

SOLUTION OVERVIEW
Energy storage monitoring involves multi-type device access (storage cabinets, PCS, batteries), network aggregation, and ring transmission.

ARCHITECTURE
• Device Access: Unified access for storage cabinets, testing devices, PCS, batteries
• Network Aggregation: MMS-A/B and GOS-A/B networks
• Central Application: Application data servers, operator stations
• Dual-Network Redundancy: MMS/GOS-A-B independent networks

CORE VALUE
• Dual-network redundancy enhancing continuity
• Security isolation with clear zoning
• Multi-cabinet parallel access
• Hierarchical architecture enabling scaling
Solution / 10

Substation Integrated Automation Solution

Three-tier architecture with dual-network redundancy and unified time sync

SOLUTION OVERVIEW
Substation automation requires coordination across station control, bay, and process layers with reliable communication and precision time synchronization.

ARCHITECTURE
• Station Control Layer: Hosts, workstations, RTU, GPS/BeiDou clocks
• Bay Layer: Protection & control devices, measurement, metering
• Process Layer: Merging units, intelligent terminals, electronic transformers

PRODUCTS APPLIED
• Station Control Switches: YT-CM6028-Z-E24G4
• Process Layer Switches: YT-CM6016-G-G16

CORE VALUE
• Dual-network redundancy
• Hierarchical architecture
• Unified timing (GPS/BeiDou + SNTP + IRIG-B)
• Protection coordination for enhanced fault handling
Solution / 11

Distribution Network Solution

WT-Ring self-healing topology with hierarchical communication architecture

SOLUTION OVERVIEW
Distribution networks require multi-tier communication across dispatch centers, substations, access stations, and intelligent terminals with high reliability.

ARCHITECTURE
• Dispatch Master Station: Servers, workstations, data storage
• Power Cloud Network: Backbone transmission
• Substation Layer: WT-Ring Gigabit self-healing ring
• Access Station Layer: WT-Ring 100M self-healing ring
• Intelligent Terminal Layer: FTU, DTU, TTU, ring cabinets

CORE VALUE
• Hierarchical networking with clear structure
• WT-Ring Gigabit self-healing for backbone
• Millisecond-level fault recovery
• Multi-type distribution intelligent terminals
• Elastic flexible deployment

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