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Use Case: Smart HVAC employ real-time weather data provided by smart sensors to automatically regulate temperature, Smart sensors also monitor building occupancy, data used to make adjustments for building-wide device energy consumption and control comfort settings in offices, labs, conference rooms and other workspaces. Initiates alert in emergency situations and gathers information about the incident
Device(s)
* Temperature & humidity sensors * Volumetric airflow & fluid sensors * Mold sensors * Occupancy detecting sensors * CO2 demand-controlled ventilation (DCV) sensors - work with sensors that detect a building’s occupancy and adjust ventilation accordingly * Light Sensors tied to motorized window treatments can pick up on sunlight and adjust window shading during the course of a day"KPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Best Effort Criticality: Safety critical Communication Direction: One-way Common Communication Mode: Unicast Data Reporting Mode: Hybrid Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: Medium Lifespan: Long: More than 8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC -
Use Case: Smart Lighting
Smart lighting uses advanced lighting systems that can be controlled and programmed to optimize energy efficiency, improve comfort and productivity, and enhance the overall functionality of the building. In smart buildings, lighting can be automatically adjusted based on occupancy, natural light levels, and time of day. The system can also be integrated with other building systems such as HVAC, and security systems to improve overall energy efficiency and safety. Smart lighting can be also integrated with building management systems (BMS) to optimize energy consumption and reduce costs.Device(s)
LED sensors equipped to capture data around ambient light levels, temperature, occupancy, security, performance & energy consumptionKPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Best Effort Criticality: Safety critical Communication Direction: One-way Common Communication Mode: Multicast Data Reporting Mode: Time Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: Medium Lifespan: Long: More than 8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC -
Use Case: Smart Access & Security Control access to remote installations from a centralized system Initiates alert if unauthorized access occurs"
Device(s)
Access card reader BiometricsKPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Low: < 10 Mbps Availability: Medium: 90 - 95% Criticality: Mission critical Communication Direction: Two-way Common Communication Mode: Multicast Data Reporting Mode: Event Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: High Lifespan: Medium: 4-8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC CamerasKPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: High: 50 Mbps – 100 Mbps Availability: Medium: 90 - 95% Criticality: Mission critical Communication Direction: Two-way Common Communication Mode: Multicast Data Reporting Mode: Event Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: High Lifespan: Medium: 4-8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: eMBB -
Use Case: Smart Elevators Remote monitoring and maintenance of elevators, ability to monitor elevator performance and get alerts in advance about when elevator servicing is required and which issues need attention, an IoT gateway installed on each elevator with sensors on elevator car, landing door and other elevator components, collects data which is then sent to a cloud-based controller to be analyzed Initiates alert if abnormal parameters detected
Device(s)
Sensors in elevator to measure the usage in real timeKPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Best Effort Criticality: Non critical Communication Direction: One-way Common Communication Mode: Unicast Data Reporting Mode: Hybrid Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: Medium Lifespan: Long: More than 8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC -
Use Case: Environmental Monitoring Initiates alert if dangerous environmental conditions occur
Device(s)
Sensors that monitor a building’s air quality (i.e., carbon monoxide and other volatile carbon emission detection)KPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Medium: 90 - 95% Criticality: Safety critical Communication Direction: One-way Common Communication Mode: Unicast Data Reporting Mode: Hybrid Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: High Lifespan: Medium: 4-8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC -
Use Case: Sanitation
Smart sanitation improves the efficiency, effectiveness, and sustainability of sanitation systems. Examples include: smart waste management systems that use sensors and other technologies to optimize the collection, transportation, and processing of waste, and to reduce the environmental impact of waste and automated public toilets that use sensors and other technologies to optimize water and energy use, and to improve the overall cleanliness and functionality of the toilets.Device(s)
Sanitation devices connected with sensors provide ability to control water flow, paper consumption, air flow for hand drying, and aroma or cleaning chemical sprays on a timer that can be controlled by a single sourceKPIs
E2E Latency: Best effort Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Best Effort Criticality: Non critical Communication Direction: One-way Common Communication Mode: Unicast Data Reporting Mode: Hybrid Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): No Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: Non-GBR Security: Medium Lifespan: Medium: 4-8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC -
Use Case: Fire Detection - when fire is detected, the system triggers actions, such as closing fire shutters and turning on fire sprinklers, activates notification devices such as horns, strobe lights, and speakers to alert the occupants, building sensors send an alarm to the Local Controller that sends information to Building Management System. Management platform will then automatically send the information to the corresponding departments and alert the right personnel by voice messages or SMS.
Device(s)
Smoke detectorsKPIs
E2E Latency: High: 100ms-500ms Jitter: Not Sensitive Data Rate: Very Low: <100kbps Availability: Medium: 90 - 95% Criticality: Safety critical Communication Direction: One-way Common Communication Mode: Unicast Data Reporting Mode: Event Driven Mobility (type/speed): Fixed Service Continuity: Not Required Device Autonomy (Power Constrained): Yes Connectivity Type: LAN - WiFi Priority Services (NS/EP): No (it would not) Guaranteed Service: GBR Security: High Lifespan: Long: More than 8 years Device Density: Low (<1000) Location Based Services: Fixed (no LBS needed) Slice Type Slice Type: mMTC