BoSL Water Monitoring and Control, Department of Civil Engineering, Monash University, Wellington Road, Clayton 3800, Australia.
Faculty of Civil Engineering, University of Novi Sad, Kozaračka 2a, 24000 Subotica, Serbia.
Sensors (Basel). 2021 Apr 27;21(9):3056. doi: 10.3390/s21093056.
High-resolution data collection of the urban stormwater network is crucial for future asset management and illicit discharge detection, but often too expensive as sensors and ongoing frequent maintenance works are not affordable. We developed an integrated water depth, electrical conductivity (EC), and temperature sensor that is inexpensive (USD 25), low power, and easily implemented in urban drainage networks. Our low-cost sensor reliably measures the rate-of-change of water level without any re-calibration by comparing with industry-standard instruments such as HACH and HORIBA's probes. To overcome the observed drift of level sensors, we developed an automated re-calibration approach, which significantly improved its accuracy. For applications like monitoring stormwater drains, such an approach will make higher-resolution sensing feasible from the budget control considerations, since the regular sensor re-calibration will no longer be required. For other applications like monitoring wetlands or wastewater networks, a manual re-calibration every two weeks is required to limit the sensor's inaccuracies to ±10 mm. Apart from only being used as a calibrator for the level sensor, the conductivity sensor in this study adequately monitored EC between 0 and 10 mS/cm with a 17% relative uncertainty, which is sufficient for stormwater monitoring, especially for real-time detection of poor stormwater quality inputs. Overall, our proposed sensor can be rapidly and densely deployed in the urban drainage network for revolutionised high-density monitoring that cannot be achieved before with high-end loggers and sensors.
高分辨率的城市雨水管网数据收集对于未来的资产管理和非法排放检测至关重要,但由于传感器和持续的频繁维护工作成本高昂,往往难以负担。我们开发了一种集成的水深、电导率(EC)和温度传感器,价格低廉(25 美元)、功耗低,并且易于在城市排水管网中实施。我们的低成本传感器通过与行业标准仪器(如 HACH 和 HORIBA 的探头)进行比较,可靠地测量水位变化率,无需任何重新校准。为了克服水位传感器的漂移问题,我们开发了一种自动重新校准方法,显著提高了其准确性。对于监测雨水渠等应用,由于从预算控制角度考虑,不再需要定期进行传感器重新校准,因此这种方法将使更高分辨率的传感成为可能。对于监测湿地或废水管网等其他应用,需要每两周手动重新校准一次,以将传感器的误差限制在±10 毫米以内。除了仅用作水位传感器的校准器外,本研究中的电导率传感器还能充分监测 0 至 10 mS/cm 之间的 EC,相对不确定度为 17%,足以满足雨水监测的要求,特别是实时检测较差的雨水质量输入。总的来说,我们提出的传感器可以快速、密集地部署在城市排水管网中,实现以前高端记录器和传感器无法实现的高密度监测。