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Ein zukunfts- und innovationsfähiges Personalmanagement stellt sicher, dass der Organisation in qualitativer und quantitativer Hinsicht das erforderliche Personal zur Verfügung steht, um die organisationalen Ziele zu erreichen. Vor dem Hintergrund zunehmend dynamischer Umfelder gelingt dies mit den bislang etablierten Arbeitsweisen, Praktken und Instrumenten des Personalmanagements künftig nicht mehr. Daher muss das Personalmanagement permanent neue Arbeitsweisen, innovative Praktiken und neue Instrumente entwickeln (Exploration). Gleichzeitig hat es jedoch auch die bisherigen "Routineaufgaben" zunehmend effizienter zu erledigen (Exploitation). Diese Herausforderung des beidhändigen Agierens zwischen Exploration und Exploitation verlangt nach dezidierten Innovationsstrukturen, Praktiken und Fähigkeiten im Personalmanagement. Der vorliegende Beitrag plädiert daher für eine organisatorisch aufgehängte "Forschung und Entwicklung" im Personalbereich, die neue Themen innerhalb und außerhalb der Organisation aufgreift, um daraus innovative Personalpraktiken zu generieren.
Es gibt viele und teilweise sehr unterschiedliche Vorgehensweisen für die Planung von Materialflusssysstemen in der Produktionslogisitk. Ein spezifisches Vorgehensmodell für die Planung der Produktionsversorgung in der Montage im engeren Sinne existiert nicht. Im Folgenden wird ein solches Vorgehensmodell dargestellt, das sich auf die Planung der Produktionsversorgung fokussiert.
Produktionsversorgungssysteme für die variantenreiche Fließfertigung. - (Berichte aus der Logistik)
(2017)
Angestoßen durch das Lean Management wurden Produktionsabläufe in den letzten Jahrzehnten kontinuierlich optimiert und weiterentwickelt. Der Fokus lag dabei auf der Reduzierung von Prozesszeiten und der Eliminierung nicht wertschöpfender Tätigkeiten im Produktionsprozess. Diese Tätigkeiten, häufig aus dem Bereich der Materialbereitstellung, wurden aus dem Produktionsprozess in die Logistik verlagert. Die Weiterentwicklung und Optimierung der Logistik fand aber nicht in gleichem Maße statt, sodass heute viele Unternehmen in den Bereichen der Produktionslogistik und insbesondere bei der Materialversorgung erhebliche Effektivitäts- und Effizienzdefizite haben. Das Buch stellt mit einzelnen Artikeln zu Themenschwerpunkten der Materialversorgung und Materialbereitstellung auf Basis eines in der Fahrzeugbauindustrie realisierten Projektes Möglichkeiten für die Produktionslogistikoptimierung und -weiterentwicklung vor.
Management virtueller, internationaler Engineering-Prozesse. - (Berichte aus dem Maschinenbau)
(2017)
Die Internationalisierung von Geschäftsprozessen hat dazu geführt, dass in den Engineering-Prozessen, z.B. Produktentwicklung, Produktionsplanung etc., zunehmend in virtuellen, internationalen Teams gearbeitet wird. Die Prozesse und Methoden wurden aber oft nicht entsprechend weiterentwickelt, dass die virtuellen, internationalen Engineering-Prozesse effektiv und effizient ausgeführt werden. In Rahmen einer fragebogenbasierten Unternehmensbefragung in Deutschland wird untersucht, wie Unternehmen mit Kernfragen der Gestaltung virtueller, internationaler Engineering-Prozesse umgehen und welche Vorgehensweisen, Methoden und Werkzeuge, insbesondere Informations- und Kommunikationstechnologien, sie einsetzen. Dabei werden neben dem Nutzen auch die Risiken thematisiert, die nach der neuen DIN EN ISO 9001:2015 stärker in den unternehmerischen Fokus rücken müssen.
Layout generators, commonly denoted as PCells (parameterized cells), play an important role in the layout design of analog ICs (integrated circuits). PCells can automatically create parts of a layout, whose properties are controlled by the PCell parameters. Any layout, whether hand-crafted or automatically generated, has to be verified against design rules using a DRC (design rule check) in order to assure proper functionality and producibility. Due to the growing complexity of today’s PCells it would be beneficial if a PCell itself could be ensured to produce DRC clean layouts for any allowed parameter values, i.e. a formal verification of the PCell’s code rather than checking all possible instances of the PCell. In this paper we demonstrate the feasibility of such a formal PCell verification for a simple NMOS transistor PCell. The set from which the parameter values can be chosen was found during the verification process.
We present a new methodology for automatic selection and sizing of analog circuits demonstrated on the OTA circuit class. The methodology consists of two steps: a generic topology selection method supported by a “part-sizing” process and subsequent final sizing. The circuit topologies provided by a reuse library are classified in a topology tree. The appropriate topology is selected by traversing the topology tree starting at the root node. The decision at each node is gained from the result of the part-sizing, which is in fact a node-specific set of simulations. The final sizing is a simulation-based optimization. We significantly reduce the overall simulation effort compared to a classical simulation-based optimization by combining the topology selection with the part-sizing process in the selection loop. The result is an interactive user friendly system, which eases the analog designer’s work significantly when compared to typical industrial practice in analog circuit design. The topology selection method and sizing process are implemented as a tool into a typical analog design environment. The design productivity improvement achievable by our method is shown by a comparison to other design automation approaches.
A new method for the analysis of movement dependent parasitics in full custom designed MEMS sensors
(2017)
Due to the lack of sophisticated microelectromechanical systems (MEMS) component libraries, highly optimized MEMS sensors are currently designed using a polygon driven design flow. The strength of this design flow is the accurate mechanical simulation of the polygons by finite element (FE) modal analysis. The result of the FE-modal analysis is included in the system model together with the data of the (mechanical) static electrostatic analysis. However, the system model lacks the dynamic parasitic electrostatic effects, arising from the electric coupling between the wiring and the moving structures. In order to include these effects in the system model, we present a method which enables the quasi dynamic parasitic extraction with respect to in-plane movements of the sensor structures. The method is embedded in the polygon driven MEMS design flow using standard EDA tools. In order to take the influences of the fabrication process into account, such as etching process variations, the method combines the FE-modal analysis and the fabrication process simulation data. This enables the analysis of dynamic changing electrostatic parasitic effects with respect to movements of the mechanical structures. Additionally, the result can be included into the system model allowing the simulation of positive feedback of the electrostatic parasitic effects to the mechanical structures.
This paper introduces a novel placement methodology for a common-centroid (CC) pattern generator. It can be applied to various integrated circuit (IC) elements, such as transistors, capacitors, diodes, and resistors. The proposed method consists of a constructive algorithm which generates an initial, close to the optimum, solution, and an iterative algorithm which is used subsequently, if the output of constructive algorithm does not satisfy the desired criteria. The outcome of this work is an automatic CC placement algorithm for IC element arrays. Additionally, the paper presents a method for the CC arrangement evaluation. It allows for evaluating the quality of an array, and a comparison of different placement methods.
The aim of this paper is to examine the impact of sustainability communication in the fashion industry on the customers’ behavior with a focus on consumers’ perception regarding websites with sustainability-specific content. Based on a profound literature review, a projective method in form of two dummy websites is developed. Both websites illustrate sustainability communication with comprehensive and transparent information demonstrating a credible, trustful and serious commitment. Additionally, both sites have the same structure and an appealing, visualized website design as well as a customer oriented communication. While each website consists of almost the same aspects such as Vision & Mission, Value chain, Corporate Commitment, Working Conditions, Environment, Social Commitment and documents such as a Sustainability Report and Code of Conduct, they differ enormously in the sustainability-specific content. For instance, website 1 represents a sustainable and responsible company communicating sustainable issues about eco-friendly materials, fair working conditions, ecological production and their social commitment. It further includes eco-friendly wash and care advices as seen by reformation to remember consumers to take care of the environment, e.g. to wash cold or by using ecological detergents. In contrast, website 2 does not represent a sustainable and responsible fashion brand. It also does not communicate sustainable efforts or a sustainable engagement. Rather it is about offering trendy, low-priced fast- fashion products, produced under unfair working conditions with wages and working hours as usual terms in production countries with a focus on style and design. Regarding website 2, all raw materials have been produced conventionally in developing countries and are therefore not eco-friendly, resulting in a pollution of the environment due to long transport routes. Additionally, the website voices the wish to improve the chances for developing animal protection only minimally, showing that the company is not socially committed. Although website 2 focuses on transparency and a customer-oriented communication, it is not sustainable. Both websites are tested via an online survey. A total of 90 fashion students participated in the sample.