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MADV - DAQ:用于远程应变测量应用的基于多通道Arduino的差分电压数据采集系统。

MADV-DAQ: Multi-channel Arduino-based differential voltage data acquisition system for remote strain measurement applications.

作者信息

Louw Hendrik, Broekman André, Kearsley Elsabé

机构信息

Department of Civil Engineering, University of Pretoria, Pretoria, South Africa.

出版信息

HardwareX. 2022 Sep 20;12:e00360. doi: 10.1016/j.ohx.2022.e00360. eCollection 2022 Oct.

Abstract

Wind turbine power generation, both onshore and offshore, has gained significant popularity over the past few decades. However, the design of a turbine's foundation, capable of supporting a tall structure subject to large horizontal forces, remains challenging. Complex wind loading and intricate soil-structure interaction between the foundation and the supporting soil requires consideration. Although commercial structural health monitoring (SHM) systems provide several advantages, they remain cost prohibitive. This paper demonstrates the development, testing, fabrication, installation and validation of a low-cost, multi-channel, Arduino-based differential voltage data acquisition system (MADV-DAQ) suitable for remote, battery powered measurements of multiple Wheatstone bridge-based (strain) sensors. The instrumented wind turbine (120 m high, 3.45 MW generation capacity) forms part of a newly constructed onshore wind farm in South Africa. The developed MADV-DAQ system proved valuable in measuring strains associated with the wind turbine tower, quantifying the true magnitude of the loads being transferred to the underlying foundation. MADV-DAQ was designed to relay the real-time measurements to two, independent cloud platforms for aggregation, visualization and subsequent analysis. MADV-DAQ was purposefully designed as a universal data acquisition system, compatible with any Wheatstone bridge-based sensor design, including strain gauges, tensiometer and similar MEMS-based sensors.

摘要

在过去几十年里,陆上和海上风力涡轮机发电都已变得非常普遍。然而,设计能够支撑承受巨大水平力的高耸结构的涡轮机基础仍然具有挑战性。需要考虑复杂的风荷载以及基础与支撑土体之间复杂的土-结构相互作用。尽管商业结构健康监测(SHM)系统具有诸多优势,但成本仍然过高。本文展示了一种低成本、多通道、基于Arduino的差分电压数据采集系统(MADV - DAQ)的开发、测试、制造、安装和验证过程,该系统适用于对多个基于惠斯通电桥(应变)传感器进行远程、电池供电测量。该风力涡轮机(高120米,发电容量3.45兆瓦)是南非一个新建陆上风力发电场的一部分。所开发的MADV - DAQ系统在测量与风力涡轮机塔架相关的应变方面被证明是有价值的,能够量化传递到下层基础的荷载的真实大小。MADV - DAQ旨在将实时测量数据中继到两个独立的云平台,用于汇总、可视化及后续分析。MADV - DAQ特意被设计成一个通用数据采集系统,与任何基于惠斯通电桥的传感器设计兼容,包括应变片、张力计及类似的基于微机电系统的传感器。

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