The Experts below are selected from a list of 70557 Experts worldwide ranked by ideXlab platform
Tom J. Mannos - One of the best experts on this subject based on the ideXlab platform.
-
ASIC STA Path Verification Using Semi-Supervised Learning
International Journal of Semantic Computing, 2019Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC st...
-
ASIC STA Path Verification Using Semi-Supervised Learning
International Journal of Semantic Computing, 2019Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC static timing analysis (STA) and machine learning. In this research, uniquely devised machine and statistical learning methods which quantify anomalous variations in Register Transfer Level (RTL) or Graphic Design System II (GDSII) format are discussed. To measure the variations in ASIC analysis data, the timing delays in relation to path electrical characteristics are explored. It is shown that semi-supervised learning techniques are powerful tools in characterizing variations within STA path data and have much potential for identifying anomalies in ASIC RTL and GDSII Design data.
-
AI4I - Semi-Supervised Learning and ASIC Path Verification
2018 First International Conference on Artificial Intelligence for Industries (AI4I), 2018Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC static timing analysis (STA) and machine learning. In this research, uniquely devised machine and statistical learning methods which quantify anomalous variations in Register Transfer Level (RTL) or Graphic Design System II (GDSII) formats are discussed. To measure the variations in ASIC analysis data, the timing delays in relation to path electrical characteristics are explored. It is shown that semi-supervised learning techniques are powerful tools in characterizing variations within STA path data and has much potential for identifying anomalies in ASIC RTL and GDSII Design data.
James Obert - One of the best experts on this subject based on the ideXlab platform.
-
ASIC STA Path Verification Using Semi-Supervised Learning
International Journal of Semantic Computing, 2019Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC st...
-
ASIC STA Path Verification Using Semi-Supervised Learning
International Journal of Semantic Computing, 2019Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC static timing analysis (STA) and machine learning. In this research, uniquely devised machine and statistical learning methods which quantify anomalous variations in Register Transfer Level (RTL) or Graphic Design System II (GDSII) format are discussed. To measure the variations in ASIC analysis data, the timing delays in relation to path electrical characteristics are explored. It is shown that semi-supervised learning techniques are powerful tools in characterizing variations within STA path data and have much potential for identifying anomalies in ASIC RTL and GDSII Design data.
-
AI4I - Semi-Supervised Learning and ASIC Path Verification
2018 First International Conference on Artificial Intelligence for Industries (AI4I), 2018Co-Authors: James Obert, Tom J. MannosAbstract:To counter manufacturing irregularities and ensure ASIC Design Integrity, it is essential that robust Design verification methods are employed. It is possible to ensure such Integrity using ASIC static timing analysis (STA) and machine learning. In this research, uniquely devised machine and statistical learning methods which quantify anomalous variations in Register Transfer Level (RTL) or Graphic Design System II (GDSII) formats are discussed. To measure the variations in ASIC analysis data, the timing delays in relation to path electrical characteristics are explored. It is shown that semi-supervised learning techniques are powerful tools in characterizing variations within STA path data and has much potential for identifying anomalies in ASIC RTL and GDSII Design data.
Angela L. Finn - One of the best experts on this subject based on the ideXlab platform.
-
Full circle: the future of sustainable fashion manufacturing in New Zealand
2009Co-Authors: Joan Farrer, Angela L. FinnAbstract:Many fashion businesses in New Zealand have followed a global trend towards inexpensive off shore manufacturing. The transfer of the production of garments to overseas workers has had consequences for the wellbeing of local businesses, fashion Designers and garment makers. The gradual decline of fashion manufacturing also appears to have resulted in a local fashion scene where many garments look the same in style, colour, fabric, cut and fit. The excitement of the past, where the majority of fashion Designers established their own individuality through the cut and shape of the garments that they produced, may have been inadvertently lost in an effort to take advantage of cost savings achieved through mass production and manufacturing methods which are now largely unavailable in New Zealand. Consequently, a sustainable local fashion and manufacturing industry, with Design Integrity, seems further out of reach. This paper is focussed upon the thesis that the Design and manufacture of a fashion garment, bearing in mind certain economic and practical restrictions at its inception, can contribute to a more sustainable fashion manufacturing industry in New Zealand.
-
Fashion manufacturing in New Zealand : can Design contribute to a sustainable fashion Industry?
2008Co-Authors: Angela L. FinnAbstract:In the late 1990s New Zealand fashion gained some international recognition for its dark edginess and intellectual connection due to its colonial past (Molloy, 2004). In the years since, this momentum seems to have dissipated as local fashion companies have followed a global trend towards inexpensive off shore manufacturing. The transfer of the making of garments to overseas workers appears to have resulted in a local fashion scene where many garments look the same in style, colour, cut and fit. The excitement of the past, where the majority of fashion Designers established their own individuality through the cut and shape of the garments that they produced, may have been inadvertently lost. Consequently a sustainable New Zealand fashion and manufacturing industry, with Design Integrity, seems further out of reach. The first question posed by this research project is, ‘can the Design and manufacture of a fashion garment, bearing in mind certain economic and practical restrictions at its inception, result in the development of a distinctive ‘look’ or ‘handwriting’?’ Second, through development of a collection of prototypes, can potential garments be created to be sustainably manufactured in New Zealand?
Sandy Walker - One of the best experts on this subject based on the ideXlab platform.
-
PerCom Workshops - Spatial augmented reality support for Design of complex physical environments
2011 IEEE International Conference on Pervasive Computing and Communications Workshops (PERCOM Workshops), 2011Co-Authors: Bruce H. Thomas, G. Stewart Von Itzstein, Rudi Vernik, Shane R. Porter, Michael R. Marner, Ross T. Smith, Markus Broecker, Ben Close, Sandy Walker, Sean PickersgillAbstract:Effective Designs rarely emerge from good structural Design or aesthetics alone. It is more often the result of the end product's overall Design Integrity. Added to this, Design is inherently an interdisciplinary collaborative activity. With this in mind, today's tools are not powerful enough to Design complex physical environments, such as command control centers or hospital operating theaters. This paper presents the concept of employing projector-based augmented reality techniques to enhance interdisciplinary Design processes.
-
PerCom Workshops - Using spatial augmented reality for appliance Design
2011 IEEE International Conference on Pervasive Computing and Communications Workshops (PERCOM Workshops), 2011Co-Authors: Stewart Von Itzstein, Bruce H. Thomas, Ross T. Smith, Sandy WalkerAbstract:Effective Designs rarely emerge from good structural Design or aesthetics alone. It is more often the result of the end product's overall Design Integrity. Added to this, Design is inherently an interdisciplinary collaborative activity. With this in mind, today's tools are not powerful enough to Design complex physical environments, such as command control centers or hospital operating theaters. In this demo a process for Designing small appliances using spatial augmented reality is presented. The goal of this demo is to show how using a SAR environment can improve the Design process.
Jeffrey Bardzell - One of the best experts on this subject based on the ideXlab platform.
-
crafting quality in Design Integrity creativity and public sensibility
Designing Interactive Systems, 2012Co-Authors: Shaowen Bardzell, Daniela K Rosner, Jeffrey BardzellAbstract:This paper aims to enrich the Design research community's notions of quality by turning to the techniques and values of master craftspeople. We describe and analyze interviews conducted with elite craft practitioners in the US and Taiwan to consider how they perceive and produce quality. The crafters articulate a consensus view of interaction with Integrity. American participants tend to frame their understanding of quality in terms of self-expression through a creative interaction with materials, while participants from Taiwan emphasize the role of communities in establishing---and benefitting from---craft quality. As HCI continues to turn to Design approaches on account of their strengths producing works of socio-cultural relevance and value, our study sheds light on the qualities of interacting with Integrity, the pleasures of self-expression through creative interaction with materials, and the practical benefits of positioning creative work in relation to the material resources, aesthetic tastes, and socio-economic needs of a public.
-
Conference on Designing Interactive Systems - Crafting quality in Design: Integrity, creativity, and public sensibility
Proceedings of the Designing Interactive Systems Conference on - DIS '12, 2012Co-Authors: Shaowen Bardzell, Daniela K Rosner, Jeffrey BardzellAbstract:This paper aims to enrich the Design research community's notions of quality by turning to the techniques and values of master craftspeople. We describe and analyze interviews conducted with elite craft practitioners in the US and Taiwan to consider how they perceive and produce quality. The crafters articulate a consensus view of interaction with Integrity. American participants tend to frame their understanding of quality in terms of self-expression through a creative interaction with materials, while participants from Taiwan emphasize the role of communities in establishing---and benefitting from---craft quality. As HCI continues to turn to Design approaches on account of their strengths producing works of socio-cultural relevance and value, our study sheds light on the qualities of interacting with Integrity, the pleasures of self-expression through creative interaction with materials, and the practical benefits of positioning creative work in relation to the material resources, aesthetic tastes, and socio-economic needs of a public.