Management Process: Planning and Control

1981 ◽  
Vol 107 (4) ◽  
pp. 269-279
Author(s):  
Alexander F. Dinsmore ◽  
David Burgoine
Author(s):  
Koji Kimita ◽  
Johannes Matschewsky ◽  
Tomohiko Sakao

Abstract Remanufacturing is a crucial component for our societies to move toward a circular economy. Compared to new manufacturing, the distinctive nature of remanufacturing is found to have high variability, high uncertainty and, thereby, complexity. Therefore, remanufacturers need to be able to adapt to the complexity and to flexibly adjust their processes. Especially, the ability to remanufacturing process planning and control is important. However, few practical methods supporting that are available so far. Therefore, this paper aims to propose a method for designing teams and processes in remanufacturing based on the concept of loosely coupled systems. In the proposed method, Design Structure Matrix (DSM) is applied to identify loosely coupled sub-systems that enable to localize impacts of changes within themselves. These sub-systems are also regarded as cross-functional teams that reduce coordination efforts among line departments and therefore increase the adaptability against uncertainties. As a preliminary validation, the proposed method was applied to a real case of remanufacturing, and then found to be effective for creating teams and processes for remanufacturing process planning and control depending on given uncertainties.


2000 ◽  
Vol 20 (4) ◽  
pp. 313-320 ◽  
Author(s):  
Bijan Shirinzadeh ◽  
Chee Wei Foong ◽  
Boon Hui Tan

2008 ◽  
Vol 5 (1) ◽  
pp. 113-126 ◽  
Author(s):  
Petter Falkman ◽  
Johan Nielsen ◽  
Bengt Lennartson ◽  
Astrid von Euler-Chelpin

2018 ◽  
Vol 7 (2.32) ◽  
pp. 158
Author(s):  
D Naga Malleswari ◽  
T Sai Sowmya ◽  
K Mukhul ◽  
D Venkatesh Reddy

In software ventures, we go through the progression of issues in arranging and dominant procedure. To avoid all these Strategic Management Process (SMP) is used to recognize and measure risks. The programming joint checking arranging and undertaking for all sided quality that uses circulation capacities in aggregate manner for delivering message alarm which will be very normal for hazard factor. First step to away form the risks of are arranging and controlling, which helps the product designs by overseeing the nature of programming venture as well as to create chance free programming items, subsequent to distinguishing the hazard. Each module can be checked in Programming venture to detecting quality in many-sided quality at major level. Assessing the hazard by positioning the product and observing the imperative exercises of programming venture director is one answer for take care of the issues. CASE apparatuses (Computer-Aided Software Engineering) are an arrangement of use devices and programming framework techniques with the coveted final product of superb, deformity free, and viable programming items. CASE instrument likewise allude to improvement of data frameworks techniques together with computerized apparatuses which is utilized as a part of the product venture advancement process. In CASE instruments, PC based help is utilized by engineers keeping in mind the end goal to create and keep up the product ventures. CASE apparatuses likewise empower programming designers to turn out from the genuine complexities of code when taking a gander at the complex endeavors. This paper presents programming wanders organizing and control threats. With offer assistance of CASE devices the threats are recognized, orchestrated and controlled in the item wanders. This paper furthermore improves the capability and lessens the danger in the framework.  


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