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Water & EnvironmentalS46

Water Network Leakage Detection

Problem

Non-revenue water is high but nobody can say in which district it is lost, because inflow meters and night-flow data are not collected per zone.

Opis rozwiązania

MILESGO gateways collect data from flow meters, pressure transmitters, water meters, LoRaWAN wireless sensors over Modbus RTU / LoRaWAN / M-Bus, and deliver it to SCADA, a cloud platform (MQTT), a historian / database (MySQL, SQL Server, InfluxDB) as MQTT / OPC UA. Field equipment keeps its own protocol and control logic; integration is done by configuration and point mapping, not custom code.

Typical scope

  • flow meters
  • pressure transmitters
  • water meters
  • LoRaWAN wireless sensors

Protocol path

Modbus RTU / LoRaWAN / M-Bus → MQTT / OPC UA

Implementation checklist for the project manager

  • Configure NTP so trends, alarms and meter readings carry consistent timestamps.
  • Fix a site / asset naming convention before the first site so data from all sites can be compared.
  • Check 4G signal and the SIM data plan at every site before committing to cellular backhaul.
  • Run a LoRaWAN coverage survey and pick the regional band (EU868 / US915 / AU915 / AS923 / KR920 / CN470) before ordering.
  • Confirm local storage so data survives network outages, and define the retention period.
  • Roll out in phases: pilot one site or area, confirm data quality, then replicate.

Project deliverables

  • Signed point table and protocol mapping
  • Gateway configuration files and backups
  • IP address plan and network drawing
  • FAT and SAT test records
  • As-built documentation and operator training

Architektura systemu

Field layer: flow meters, pressure transmitters, water meters, LoRaWAN wireless sensors, connected over Modbus RTU / LoRaWAN / M-Bus. Edge and integration layer: MILESGO protocol gateways and edge controllers, mounted on DIN rail in existing panels, polling each device, time-stamping values and buffering them locally. Upper layer: SCADA, a cloud platform (MQTT), a historian / database (MySQL, SQL Server, InfluxDB), which receives the data as MQTT / OPC UA. Remote access for maintenance runs over VPN rather than open internet ports.

Skład systemu

Field devices
flow meters, pressure transmitters, water meters, LoRaWAN wireless sensors
Edge / integration
MILESGO protocol gateways and edge controllers
Upper systems
SCADA, a cloud platform (MQTT), a historian / database (MySQL, SQL Server, InfluxDB) (MQTT / OPC UA)
Tools and commissioning
Web-based configuration, point table import/export (Excel), off-site simulation and on-site diagnostic tools

Możliwości oprogramowania i AI

  • Anomaly detection on trend dataW planach
  • Consumption baseline and deviation alertsW planach

Etapy wdrożenia

  1. 1

    Site survey and point list

    Inventory devices, protocols, register maps, panel space, power and network paths.

  2. 2

    Design and point table sign-off

    Map every point to the target protocol and system; agree it with the client and the upper-system contractor.

  3. 3

    Configuration and FAT

    Build the gateway configuration off site, simulate it and test against the signed point table.

  4. 4

    Installation and wiring

    Mount gateways on DIN rail, wire RS-485 / I/O / Ethernet, apply the IP plan.

  5. 5

    SAT and alarm tests

    Verify values against local readings, test every alarm and command end to end.

  6. 6

    Handover and support

    Hand over configuration backups, point table and as-built documents; train operators.

Korzyści dla klienta

  • Abnormal conditions seen early, before they become failures
  • Reliable trend data for optimisation and fault diagnosis
  • Manual readings replaced by scheduled automatic collection
  • Data ready for cloud platforms and analytics

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