Advantages of Wireless Mesh Network Technology
Advantages of Wireless Mesh Network Technology
Wireless mesh communication, with its flexible communication methods and powerful transmission capabilities, possesses the following characteristics:
1. Large-Scale, Rapid, and Flexible Network Deployment: Enables rapid network establishment over large areas without being constrained by the deployment of supporting facilities like equipment rooms or fiber optics, provided power supply is ensured. Eliminates the need for trenching, wall drilling, conduit laying, or cable stringing, resulting in low construction investment, low difficulty, and short cycles. Allows flexible indoor/outdoor deployment and installation via various methods, achieving rapid, low-cost network setup without equipment rooms. Employs distributed, center-less networking, supporting point-to-point, point-to-multipoint, and multipoint-to-multipoint communication, building various topological networks such as chain, star, mesh, and hybrid dynamic topologies.
2. Dynamic Routing with Damage Resilience and Self-Healing, Multi-Hop Relaying: The network topology updates within seconds when device nodes move, are added, or removed rapidly. Routes are dynamically rebuilt and intelligently updated in real-time, maintaining multi-hop relay transmission between nodes.
3. High-Bandwidth, Low-Latency Adaptive Transmission Supporting High-Speed Mobility and Resistant to Multipath Fading
4. Interconnectivity and Cross-Network Integration: Fully IP-based design supports transparent transmission of various data types. Enables interconnection and interoperability with heterogeneous communication systems, achieving interactive integration of multi-network services.
5. Strong Anti-Interference Capability via Smart Antenna, Intelligent Frequency Selection, and Autonomous Frequency Hopping: Employs time-domain digital filtering and MIMO smart antennas to effectively suppress out-of-band interference. Supports intelligent frequency selection mode: when the operating frequency is interfered with during network operation, it can intelligently select an interference-free frequency for network transmission, effectively avoiding random interference. Also supports autonomous frequency hopping mode, providing any set of working channels within the operating frequency band, with high-speed synchronous hopping across the entire network to effectively evade malicious interference. Furthermore, utilizes FEC (Forward Error Correction) and ARQ (Automatic Repeat Request) error control transmission mechanisms to reduce data transmission packet loss rate and enhance data transmission effectiveness.
6. Secure Encryption: Fully self-developed, with custom waveforms, algorithms, and transmission protocols. Over-the-air transmission uses 64-bit keys and can dynamically generate scrambling sequences for channel encryption. Supports DES56/AES128/AES256 source encryption for enhanced security. Provides hardware encryption via chips, TF cards, and encryption devices.
7. High Reliability through Industrial Design, Professional Manufacturing, and Red/Blue Hot Backup: Equipment has strong vibration resistance, strictly meeting requirements for operational vibration resistance during transport. Features IP66 protection rating and a wide operating temperature range, suitable for harsh outdoor all-weather working environments.
8. Simple Operation and Convenient Maintenance: Provides various network ports, serial ports, and Wi-Fi AP. Allows mobile devices, computers, or PADs to log in to the terminal system software locally or remotely for operation, management, and maintenance. Includes functions such as real-time monitoring and GIS maps. Supports software remote upgrade, configuration, and hot restart.
Wireless mesh communication, with its flexible communication methods and powerful transmission capabilities, possesses the following characteristics:
1. Large-Scale, Rapid, and Flexible Network Deployment: Enables rapid network establishment over large areas without being constrained by the deployment of supporting facilities like equipment rooms or fiber optics, provided power supply is ensured. Eliminates the need for trenching, wall drilling, conduit laying, or cable stringing, resulting in low construction investment, low difficulty, and short cycles. Allows flexible indoor/outdoor deployment and installation via various methods, achieving rapid, low-cost network setup without equipment rooms. Employs distributed, center-less networking, supporting point-to-point, point-to-multipoint, and multipoint-to-multipoint communication, building various topological networks such as chain, star, mesh, and hybrid dynamic topologies.
2. Dynamic Routing with Damage Resilience and Self-Healing, Multi-Hop Relaying: The network topology updates within seconds when device nodes move, are added, or removed rapidly. Routes are dynamically rebuilt and intelligently updated in real-time, maintaining multi-hop relay transmission between nodes.
3. High-Bandwidth, Low-Latency Adaptive Transmission Supporting High-Speed Mobility and Resistant to Multipath Fading
4. Interconnectivity and Cross-Network Integration: Fully IP-based design supports transparent transmission of various data types. Enables interconnection and interoperability with heterogeneous communication systems, achieving interactive integration of multi-network services.
5. Strong Anti-Interference Capability via Smart Antenna, Intelligent Frequency Selection, and Autonomous Frequency Hopping: Employs time-domain digital filtering and MIMO smart antennas to effectively suppress out-of-band interference. Supports intelligent frequency selection mode: when the operating frequency is interfered with during network operation, it can intelligently select an interference-free frequency for network transmission, effectively avoiding random interference. Also supports autonomous frequency hopping mode, providing any set of working channels within the operating frequency band, with high-speed synchronous hopping across the entire network to effectively evade malicious interference. Furthermore, utilizes FEC (Forward Error Correction) and ARQ (Automatic Repeat Request) error control transmission mechanisms to reduce data transmission packet loss rate and enhance data transmission effectiveness.
6. Secure Encryption: Fully self-developed, with custom waveforms, algorithms, and transmission protocols. Over-the-air transmission uses 64-bit keys and can dynamically generate scrambling sequences for channel encryption. Supports DES56/AES128/AES256 source encryption for enhanced security. Provides hardware encryption via chips, TF cards, and encryption devices.
7. High Reliability through Industrial Design, Professional Manufacturing, and Red/Blue Hot Backup: Equipment has strong vibration resistance, strictly meeting requirements for operational vibration resistance during transport. Features IP66 protection rating and a wide operating temperature range, suitable for harsh outdoor all-weather working environments.
8. Simple Operation and Convenient Maintenance: Provides various network ports, serial ports, and Wi-Fi AP. Allows mobile devices, computers, or PADs to log in to the terminal system software locally or remotely for operation, management, and maintenance. Includes functions such as real-time monitoring and GIS maps. Supports software remote upgrade, configuration, and hot restart.