Purpose -The purpose of this paper is to explore the researches reported in literature on Lean Six Sigma (LSS) and determine the avenues by which lean anchorage can be improved in LSS implementation. Design/methodology/approach -The literature on lean manufacturing, Six Sigma and LSS was reviewed. The literature has been reviewed from four major perspectives. The findings of this review were used to find the methods for the improvement of lean anchorage. The proposed model is explained with a hypothetical case study. Findings -The major finding of the exploration reported in this article is that the lean anchorage in LSS process is found to be weak and it has to be enhanced for improving the effectiveness of LSS approach. The results derived from the hypothetical case study have been presented.Research limitations/implications -The researches on LSS from the perspective of implementation in small-and medium-sized enterprises have been explored. But the lean anchorage method proposed could be extended to other organizations also. Practical implications -The findings of this literature exploration pinpoint the need for enhancing the efficacy of LSS approach. Originality/value -This article has identified and presented systematically four major perspectives of LSS. The deficiency has been identified and the improvement methods have been proposed. Hence, the contributions of this article are original and valuable.
Purpose of this study The situations of COVID-19 will certainly have an adverse effect over and above health care on factors of the internet of things (IoT) market. To overcome all the above issues, IoT devices and sensors can be used to track and monitor the movement of the people, so that necessary actions can be taken to prevent the spread of coronavirus disease (COVID-19). Mobile devices can be used for contact tracing of the affected person by analyzing the geomap of the travel history. This will prevent the spread and reset the economy to the normal condition. Design/methodology/approach To respond to the global COVID-19 outbreak, the social-economic implications of COVID-19 on specific dimensions of the global economy are analyzed in this study. The situations of COVID-19 will certainly have an adverse effect over and above health care on factors of the IoT market. To overcome these issues IoT devices and sensors can be used to track and monitor the movement of the people so that necessary actions can be taken to prevent the spread of COVID-19. Mobile devices can be used for contact tracing of the affected person by analyzing the geomap of the travel history. This will prevent the spread and reset the economy to the normal condition. A few reviews, approaches, and guidelines are provided in this article along these lines. Moreover, insights about the effects of the pandemic on various sectors such as agriculture, medical industry, finance, information technology, manufacturing and many others are provided. These insights may support strategic decision making and policy framing activities for the top level management in private and government sectors. Findings With insecurities of a new recession and economic crisis, key moments such as these call for strong and powerful governance in health, business, government, and large society. Instant support measures have to be initiated and adapted for those who can drop through the cracks. Mid- and long-term strategies are required to stabilize and motivate the economy during this recession. Originality/value A comprehensive social-economic development strategy that consists of sector by sector schemes and infrastructure that supports business to ensure the success of those with reliable and sustainable business models is necessary. From the literature analysis and real world observations it is concluded that the IoT, sensors, wearable devices and computational technologies plays major role in preserving the economy of the country by preventing the spread of COVID-19.
A new model-based automatic test case generation for object-oriented systems using UML diagrams has been presented. Real-time application is expressed in the form of Collaboration diagram constructed using Rational Rose software. Collaboration diagram is converted into an intermediate graph form. Prim's and Dijkstra's algorithms has been applied to bring all the possible test cases from the graph. Illustrative case study has been presented in order to establish the effectiveness of our approach coupled with mutation analysis.
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