The Experts below are selected from a list of 6072 Experts worldwide ranked by ideXlab platform
Reinhard Von Hanxleden - One of the best experts on this subject based on the ideXlab platform.
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Graph Drawing - Size- and Port-Aware Horizontal Node Coordinate Assignment
Lecture Notes in Computer Science, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
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size and port aware horizontal Node Coordinate assignment
Graph Drawing, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
Ulf Ruegg - One of the best experts on this subject based on the ideXlab platform.
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Graph Drawing - Size- and Port-Aware Horizontal Node Coordinate Assignment
Lecture Notes in Computer Science, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
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size and port aware horizontal Node Coordinate assignment
Graph Drawing, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
Christoph Daniel Schulze - One of the best experts on this subject based on the ideXlab platform.
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Graph Drawing - Size- and Port-Aware Horizontal Node Coordinate Assignment
Lecture Notes in Computer Science, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
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size and port aware horizontal Node Coordinate assignment
Graph Drawing, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
John Julian Carstens - One of the best experts on this subject based on the ideXlab platform.
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Graph Drawing - Size- and Port-Aware Horizontal Node Coordinate Assignment
Lecture Notes in Computer Science, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
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size and port aware horizontal Node Coordinate assignment
Graph Drawing, 2015Co-Authors: Ulf Ruegg, Christoph Daniel Schulze, John Julian Carstens, Reinhard Von HanxledenAbstract:The approach by Sugiyama et al. is widely used to automatically draw directed graphs. One of its steps is to assign horizontal Coordinates to Nodes. Brandes and Koepf presented a method that proved to work well in practice. We extend this method to make it possible to draw diagrams with Nodes that have considerably different sizes and with edges that have fixed attachment points on a Node's perimeter ports. Our extensions integrate seamlessly with the original method and preserve the linear execution time.
Noboru Sakai - One of the best experts on this subject based on the ideXlab platform.
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a finite element model for simulating temperature distributions in rotating food during microwave heating
Journal of Food Engineering, 2013Co-Authors: Mika Fukuoka, Noboru SakaiAbstract:Abstract With considering the continuous rotation of the turntable during microwave heating, a three-dimensional computer model based on FEM was successfully developed to predict time-dependent temperatures distributions of food sample. The slide interface between rotating and stationary part were specially assigned and treated, as the disconnections of the Nodes occur during rotating which may cause the electromagnetic analysis result in error. On this basis, temperature was estimated by coupling electromagnetic and heat transfer analysis, whereas the Node Coordinate and dielectric properties of sample were updated with time steps, and the heat generations were renewed according to these parameters. To approximate the rotation and simulate the temperature, different methods were proposed and discussed in view of sample′s shape and dielectric properties. These methods were then respectively optimized to achieve the minimum computational time and were experimentally validated by comparing with temperature distributions captured by an infrared thermal camera.