基于向量误差修正模型影响信息转换指标的高耸钢结构损伤检测研究
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1.重庆大学土木工程学院重庆400045; 2.山区土木工程安全与韧性全国重点实验室重庆400045

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TU375.4TH703

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国家自然科学基金(52192663)项目资助


Research on damage detection of high-rise steel structure based on vector error correction model impact information conversion indicator
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1.School of Civil Engineering, Chongqing University,Chongqing 400045, China; 2.State Key Laboratory of Safety and Resilience of Civil Engineering in Mountain Area,Chongqing 400045, China

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    摘要:

    复杂高耸钢结构可以划分为分层的子结构,通过分层处安装传感器达到监测对应子结构层损伤的目的。为了解决复杂高耸钢结构的损伤检测问题,提出了基于向量误差修正模型影响信息转换指标的损伤检测方法。首先,描述了向量误差修正模型的基本理论,给出了模型定阶、协整检验和参数估计的基本方法;然后,进行了向量误差修正模型损伤特征参数分析,通过解析影响矩阵提取了损伤特征影响向量,利用结构未损伤基准状态和损伤状态下的损伤特征影响参数和统计参数构造了影响信息距离,并将测点的自由度信息转换为层间刚度信息构造了影响信息转换指标,在此基础上建立了包含数据采集、向量误差修正模型建模、损伤特征影响向量提取及影响信息转换指标识别的高耸钢结构损伤检测方法和识别流程;最后,进行了3层经典框架和高耸转播塔模型的损伤检测试验研究,通过激振装置在结构上施加非平稳时域荷载获取时程响应数据,利用结构损伤前后的响应数据进行了结构的损伤检测。结果表明:传统的倒谱距离检测指标对于简单框架结构具有一定的检测效果,但对复杂高耸钢结构的损伤检测效果欠佳,而所建议的向量误差修正模型影响信息转换指标具有更好的检测效果,可以更为有效地检测出高耸钢结构的损伤位置。

    Abstract:

    Complex high-rise steel structures can be partitioned into layered substructures, and sensors installed at each interstory level can be used to monitor damage in the corresponding substructure layer. To address the problem of damage detection in complex high-rise steel structures, a damage identification method based on the impact information transformation index derived from a vector error correction model (VECM) is proposed. First, the fundamental theory of the VECM is introduced, including the basic procedures for model order determination, cointegration testing, and parameter estimation. Subsequently, the damage-related characteristic parameters of the VECM are analyzed. By examining the impact matrix, the damage characteristic impact vector is extracted. Using the characteristic impact parameters and statistical parameters under both the undamaged baseline state and the damaged state of the structure, an impact information distance is constructed. Furthermore, the degree-of-freedom information at the measurement points is transformed into interstory stiffness information to establish the impact information transformation index. On this basis, a complete damage detection methodology and identification procedure for high-rise steel structures is developed, including data acquisition, VECM modeling, extraction of the damage characteristic impact vector, and damage identification based on the impact information transformation index. Finally, experimental studies are conducted on a classical three-story frame structure and a high-rise relay tower model. Non-stationary time-domain excitations are applied to the structures using an excitation device to obtain time-history response data. Damage detection is then performed by comparing structural responses before and after damage. The results show that the traditional cepstral distance–based detection index exhibits certain effectiveness for simple frame structures but performs inadequately for complex high-rise steel structures. In contrast, the proposed VECM-based impact information transformation index demonstrates superior detection performance and can more effectively identify damage locations in high-rise steel structures.

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郭惠勇,郑鹏,张树豪,狄谨.基于向量误差修正模型影响信息转换指标的高耸钢结构损伤检测研究[J].仪器仪表学报,2026,47(2):358-367

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  • 在线发布日期: 2026-04-08
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