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This book aims to provide a synthesis of work and ideas done by our team over the last fifteen years in the field of information processing for expression of industrial performance. The statement of objectives on the one hand and the calculation of the other performances are discussed, with the search for the explanation of the link between these two basic steps of an industrial improvement. Beyond the synthetic and typological character of this study, the originality of this work lies in the consideration of the temporal dimension of the objectives, and spread on performance expressions. A fuzzy processing and multi-criteria aggregations time information that can be quantitative, qualitative or symbolic are proposed, in line with industrial practice and literature in the field of performance management.
Quality electricity supply propels industrial growth and boosts economic development. Quality electricity supply goes beyond mere availability of electricity as it is commonly believe to be. This book examines the various elements of quality electricity supply. The book also discussed industrial performance as a whole and identified four (4) key performance indicators that industries measure. It then considered the impact that electricity has on industries and their performance citing cases of Africa, America, Europe, Middle East and Asia. It then identified six general areas that quality electricity supply could impact in any industry.
This work focuses on the implementation of socio-technical innovation in manufacturing companies, offering practical examples in the management of the human-computer interface. Each example includes a cost-benefit analysis. The book adopts an
How can governments support the private sector’s contribution to the Sustainable Development Goals (SDGs)? This book investigates the contribution of firms to the SDGs, particularly through their core business, taking into account inter-sectoral linkages and global value chains, using novel techniques and data sources.
This volume presents controlling tools for management in order to be in a position to communicate with control engineers concerning technological decisions. The main objective of manufacturing management is to make profit. However, in traditional manufacturing systems none of the separate stages in the process support this objective. Management is not expert in any of these stages and therefore is dependent on specific experts at each stage and must follow their decisions. Each stage has its own first priority which is not profit and cost. This means that management does not have real control over these functional stages, nor over the process as a whole. This book presents controlling tools for management in order to allow them to communicate better with the experts of the particular manufacturing stages to reach better results and higher profits. It is shown that most enterprises can improve their efficiency rate by between 25 and 60% by using the tools developed here.