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Harmonic analysis of occupational-accident time-series as a part of the quantified risk evaluation in worksites: Application on electric power industry and construction sector

机译:职业事故时间序列的谐波分析,作为工作场所量化风险评估的一部分:在电力工业和建筑业中的应用

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The development of an integrated risk analysis scheme, which will combine a well-considered selection of widespread techniques, would enable the companies to achieve efficient results on risk assessment. In this study, we develop a methodological framework (as a part of the quantified risk evaluation), by incorporating a new technique, that is implemented by the harmonic-analysis of time-series of occupational-accidents (called as HATS). Our objective is therefore, twofold: (i) the development of a new risk assessment framework (HATS technique) and the subsequent application of HATS on the worksites of electric power industry and construction sector, and (ii) the enrichment of the harmonic-analysis theoretical background, as far as the significance-level of spectral peaks is concerned, with fully-completed practical tables, that they have been produced by using the scientific literature. In fact, we apply HATS on occupational-accident time-series, which were (a) observed in the worksites of the Greek Public electric Power Corporation (PPC) and the Greek construction-companies (GCCs), and (b) recorded in great statistical-databases of PPC, and IKA (the Greek Social Insurance Institute/Ministry of Health), respectively. The results of HATS were tested statistically by using Shimshoni's significance-test. Moreover, the results of the comparative time/frequency-domain analysis of the accident time-series in PPC (for 1993-2009) and GCCs (for 1999-2007), prove that they are characterized by the existence of a periodic factor which (a) constitutes a permanent feature for the dynamic behavior of PPC's and GCCs' OHSS (occupational health and safety system), and (b) could be taken into account by risk managers in risk assessment, i.e., immediate suppressive measures must be taken place to abolish the danger source which is originated from the quasi-periodic appearance of the most important hazard sources.
机译:集成风险分析计划的开发将结合周到的广泛技术选择,这将使公司在风险评估方面获得有效的结果。在这项研究中,我们通过结合一项新技术,开发了一种方法框架(作为量化风险评估的一部分),该技术是通过对职业事故时间序列(称为HATS)进行谐波分析来实现的。因此,我们的目标是双重的:(i)开发新的风险评估框架(HATS技术),然后将HATS应用于电力工业和建筑业的现场,以及(ii)丰富谐波分析就频谱峰的显着性水平而言,具有完整的实用表格的理论背景是使用科学文献制作的。实际上,我们在职业事故时间序列上应用了HATS,这是(a)在希腊公共电力公司(PPC)和希腊建筑公司(GCC)的工作现场中观察到的,而(b) PPC和IKA(希腊社会保险研究所/卫生部)的统计数据库。使用Shimshoni的显着性检验对HATS的结果进行统计学检验。此外,对PPC(1993-2009年)和GCC(1999-2007年)事故时间序列进行时/频域比较分析的结果证明,它们的特征在于存在以下周期性因素: a)构成PPC和GCC的OHSS(职业健康与安全系统)动态行为的永久特征,并且(b)风险管理人员在风险评估中应考虑到该行为,即必须采取立即的抑制措施废除源自最重要危险源的准周期外观的危险源。

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