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Institution

Hewlett-Packard

CompanyPalo Alto, California, United States
About: Hewlett-Packard is a company organization based out in Palo Alto, California, United States. It is known for research contribution in the topics: Signal & Substrate (printing). The organization has 34663 authors who have published 59808 publications receiving 1467218 citations. The organization is also known as: Hewlett Packard & Hewlett-Packard Company.


Papers
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Journal ArticleDOI
Ming Xia1, Meral Shirazipour1, Ying Zhang2, Howard Green, Attila Takacs1 
TL;DR: This paper forms the problem of optimal vNF placement in binary integer programming (BIP), and proposes an alternative efficient heuristic algorithm to solve this problem, which can achieve near-optimal O/E/O conversions comparable to BIP.
Abstract: In an operator's datacenter, optical technologies can be employed to perform network function (NF) chaining for larger aggregated flows in parallel with the conventional packet-based fine-grained traffic steering schemes. When network function virtualization (NFV) is enabled, virtualized NFs (vNF) can be placed when and where needed. In this study, we identify the possibility of minimizing the expensive optical/electronic/optical (O/E/O) conversions for NFV chaining in packet/optical datacenters, which is introduced by the on-demand placement of vNFs. When the vNFs of the same NF chain are properly grouped into fewer pods, traffic flows can avoid unnecessary traversals in the optical domain. We formulate the problem of optimal vNF placement in binary integer programming (BIP), and propose an alternative efficient heuristic algorithm to solve this problem. Evaluation results show that our algorithm can achieve near-optimal O/E/O conversions comparable to BIP. We also demonstrate the effectiveness of our algorithm under various scenarios, with comparison to a simple first-fit algorithm.

207 citations

Patent
21 Jan 1997
TL;DR: In this paper, a replaceable ink cartridge for an ink jet printing system having an ink supply station with an ink receptacle and a printer electrical connector is described, and the ink level sensor in the housing is connected to the cartridge electrical connector, and detects whether the supply of ink is less than a threshold amount.
Abstract: A replaceable ink cartridge for an ink jet printing system having an ink supply station with an ink receptacle and a printer electrical connector. The cartridge has a housing removably matable with the ink supply station. An electrical circuit and a connected cartridge electrical connector reside on the housing, and the cartridge electrical connector is matable with the printer electrical connector. An ink reservoir in the housing defines a chamber containing a supply of ink of a selected volume, and has an ink outlet connectable to the printer ink receptacle. An ink level sensor in the housing is connected to the cartridge electrical connector, and detects whether the supply of ink is less than a threshold amount. If so, it generates an "ink depleted" signal.

206 citations

Patent
03 Jul 1997
TL;DR: In this paper, the concept of "animation by example" is used to define both input to and output from graphical objects in an object-oriented system by providing examples of what the user desires the graphical object to do.
Abstract: A system for providing a simple, easy to learn and flexible means of creating user interfaces to products under development without the need of a programming language or the need to learn a large set of complicated commands. The Visual Software Engineering ("VSE") system of the invention uses a simple concept of defining both input to and output from graphical objects in an object-oriented system by providing examples of what the user desires the graphical object to do. This technique is referred to herein as "animation by example". In accordance with this process, the user creates a user interface by drawing the user interface with a graphics editor and then defining the output behavior (i.e., graphics manipulation) of the user interface components by showing each state or frame as an animation. This is accomplished by changing the object using a graphic editor function such as move or rotate and storing each of the frames with the object as a behavior state. Just as with defining the output, the input is defined by giving the graphic object an example of what type of input to look for, and once it finds that input, it tells the object which frame to output or change to. Application code can then drive the animation or read the input by accessing the frame numbers assigned to each of the example frames.

206 citations

Journal ArticleDOI
TL;DR: COTSon opens up a new dimension in the speed/accuracy space, allowing simulation of a cluster of nodes several orders of magnitude faster with a minimal accuracy loss, and abandon the idea of "always-on" cycle-based simulation in favor of statistical sampling approaches that can trade accuracy for speed.
Abstract: Simulation has historically been the primary technique used for evaluating the performance of new proposals in computer architecture. Speed and complexity considerations have traditionally limited its applicability to single-thread processors running application-level code. This is no longer sufficient to model modern multicore systems running the complex workloads of commercial interest today.COTSon is a simulator framework jointly developed by HP Labs and AMD. The goal of COTSon is to provide fast and accurate evaluation of current and future computing systems, covering the full software stack and complete hardware models. It targets cluster-level systems composed of hundreds of commodity multicore nodes and their associated devices connected through a standard communication network. COTSon adopts a functional-directed philosophy, where fast functional emulators and timing models cooperate to improve the simulation accuracy at a speed sufficient to simulate the full stack of applications, middleware and OSs.This paper describes the changes in simulation philosophy we embraced in COTSon to address these new challenges. We base functional emulation on established, fast and validated tools that support commodity OSs and complex multitier applications. Through a robust interface between the functional and timing domain, we can leverage other existing simulators for individual sub-components, such as disks or networks. We abandon the idea of "always-on" cycle-based simulation in favor of statistical sampling approaches that can trade accuracy for speed.COTSon opens up a new dimension in the speed/accuracy space, allowing simulation of a cluster of nodes several orders of magnitude faster with a minimal accuracy loss.

206 citations

Patent
31 Oct 2001
TL;DR: In this article, a first column of drop generators is formed along the first side of the ink feed slot, and a second column of two drop generators along the second side is formed by each drop generator including a nozzle.
Abstract: An inkjet printhead assembly includes a substrate having an ink feed slot formed therein including a first side and second side along a vertical length of the ink feed slot. A first column of drop generators is formed along the first side of the ink feed slot. A second column of drop generators is formed along the second side of the ink feed slot. Each drop generator includes a nozzle. A nozzle packing density for nozzles in the first and second columns of drop generators including the area of the ink feed slot is at least approximately 100 nozzles per square millimeter (mm 2 ).

206 citations


Authors

Showing all 34676 results

NameH-indexPapersCitations
Andrew White1491494113874
Stephen R. Forrest1481041111816
Rafi Ahmed14663393190
Leonidas J. Guibas12469179200
Chenming Hu119129657264
Robert E. Tarjan11440067305
Hong-Jiang Zhang11246149068
Ching-Ping Wong106112842835
Guillermo Sapiro10466770128
James R. Heath10342558548
Arun Majumdar10245952464
Luca Benini101145347862
R. Stanley Williams10060546448
David M. Blei98378111547
Wei-Ying Ma9746440914
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
20231
202223
2021240
20201,028
20191,269
2018964