The Experts below are selected from a list of 124887 Experts worldwide ranked by ideXlab platform

Giacomo Indiveri - One of the best experts on this subject based on the ideXlab platform.

  • A serial Communication Infrastructure for multi-chip address event systems
    2008 IEEE International Symposium on Circuits and Systems, 2008
    Co-Authors: Daniel B. Fasnacht, Adrian M. Whatley, Giacomo Indiveri
    Abstract:

    In recent years there have been an increasing number of research groups that have begun to develop multi-chip address-event systems. The Communication protocol used to transmit signals between these systems' components is based on the address-event representation (AER). It is therefore important to have access to robust and reliable AER Communication Infrastructures for streamlining the systems' development and prototyping stages. We propose an AER Communication Infrastructure that can be easily interfaced to workstations or laptops during a prototyping phase, and that can be embedded into compact and low-cost systems in the application phase. The Infrastructure proposed uses a novel serial AER interface with flow-control, overcomes many of the drawbacks observed with previous solutions, and can achieve event rates of up to 78.125 MHz for 32 bit AEs.

  • ISCAS - A serial Communication Infrastructure for multi-chip address event systems
    2008 IEEE International Symposium on Circuits and Systems, 2008
    Co-Authors: Daniel B. Fasnacht, Adrian Whatley, Giacomo Indiveri
    Abstract:

    In recent years there have been an increasing number of research groups that have begun to develop multi-chip address-event systems. The Communication protocol used to transmit signals between these systems' components is based on the address-event representation (AER). It is therefore important to have access to robust and reliable AER Communication Infrastructures for streamlining the systems' development and prototyping stages. We propose an AER Communication Infrastructure that can be easily interfaced to workstations or laptops during a prototyping phase, and that can be embedded into compact and low-cost systems in the application phase. The Infrastructure proposed uses a novel serial AER interface with flow-control, overcomes many of the drawbacks observed with previous solutions, and can achieve event rates of up to 78.125 MHz for 32 bit AEs.

Daniel B. Fasnacht - One of the best experts on this subject based on the ideXlab platform.

  • A serial Communication Infrastructure for multi-chip address event systems
    2008 IEEE International Symposium on Circuits and Systems, 2008
    Co-Authors: Daniel B. Fasnacht, Adrian M. Whatley, Giacomo Indiveri
    Abstract:

    In recent years there have been an increasing number of research groups that have begun to develop multi-chip address-event systems. The Communication protocol used to transmit signals between these systems' components is based on the address-event representation (AER). It is therefore important to have access to robust and reliable AER Communication Infrastructures for streamlining the systems' development and prototyping stages. We propose an AER Communication Infrastructure that can be easily interfaced to workstations or laptops during a prototyping phase, and that can be embedded into compact and low-cost systems in the application phase. The Infrastructure proposed uses a novel serial AER interface with flow-control, overcomes many of the drawbacks observed with previous solutions, and can achieve event rates of up to 78.125 MHz for 32 bit AEs.

  • ISCAS - A serial Communication Infrastructure for multi-chip address event systems
    2008 IEEE International Symposium on Circuits and Systems, 2008
    Co-Authors: Daniel B. Fasnacht, Adrian Whatley, Giacomo Indiveri
    Abstract:

    In recent years there have been an increasing number of research groups that have begun to develop multi-chip address-event systems. The Communication protocol used to transmit signals between these systems' components is based on the address-event representation (AER). It is therefore important to have access to robust and reliable AER Communication Infrastructures for streamlining the systems' development and prototyping stages. We propose an AER Communication Infrastructure that can be easily interfaced to workstations or laptops during a prototyping phase, and that can be embedded into compact and low-cost systems in the application phase. The Infrastructure proposed uses a novel serial AER interface with flow-control, overcomes many of the drawbacks observed with previous solutions, and can achieve event rates of up to 78.125 MHz for 32 bit AEs.

Ramesh R. Rao - One of the best experts on this subject based on the ideXlab platform.

  • WOWMOM - Future Wireless Communication Infrastructure with Application to Emergency Scenarios
    2007 IEEE International Symposium on a World of Wireless Mobile and Multimedia Networks, 2007
    Co-Authors: Raheleh B. Dilmaghani, Ramesh R. Rao
    Abstract:

    Establishing and accessing a reliable Communication Infrastructure at crisis site is a challenging research problem. Failure in Communication Infrastructure and information exchange impedes the early response efforts resulting in huge loss of lives and economical impacts. Reliability, robustness, interoperability and minimum interdependencies are specific requirements of Communication technology within the context of emergency applications. We present the real measurements obtained over the deployment of a quickly configurable and easily reconfigurable wireless mesh test bed at disaster site. This is followed by an analytical discussion of the important observations concerning the factors that impact performance or cause bottlenecks.

Guilherme G. Lage - One of the best experts on this subject based on the ideXlab platform.

  • SMC - Application of a Data Communication Infrastructure for the Voltage Magnitude Control in Transmission Power Systems
    2019 IEEE International Conference on Systems Man and Cybernetics (SMC), 2019
    Co-Authors: Enza R. S. De Ferreira, Rafael M. Barros, Thiago Aparecido Da Silva, Ricardo A. L. De Rabelo, Valdemir R. Junior, Guilherme G. Lage
    Abstract:

    The problem of voltage magnitude control, based on dispatching reactive power, consists in defining the adjustments that must be applied to synchronous generators to bring the voltages of the load buses whose magnitudes are violated within a suitable value range. The utilities usually determine the sequence of adjustments and sent to the selected control device to correct voltage magnitude violations, which makes the use of data Communication technologies a necessity to enable this operation. In this context, this work proposes an application of a Communication Infrastructure for the control of voltage magnitude in transmission power systems. The adjustments in the voltage magnitude of control devices and the sequence of their execution are determined in the Control Manager utilizing two linear sensitivity-based methodologies and, then, transmitted via a WiMAX (Worldwide Interoperability for Microwave Access) network to Control Nodes, which in turn are connected to synchronous generators or condensers. NS-3 (Network Simulator 3) is used to simulate the 118-bus IEEE transmission test system with voltage magnitude violations. The results display an operating scenario that presents voltage violation and the applied Communication Infrastructure ensures that the sequence of adjustments are forwarded to the control points in order to bring the system state to the appropriate voltage magnitude ranges. The Communication Infrastructure WiMAX simulated in the NS-3 ensures that the sequence of adjustments are forwarded to the control points in appropriate delay and demonstrates the applicability of WiMAX technology for the control voltage magnitude. At last, to validate the proposed approach, in this paper we present the voltage magnitude in generators and load buses, as well as the availability, the delay and the volume of data transmitted by the WiMAX network as the adjustments in control variables, are executed.

Yi Qian - One of the best experts on this subject based on the ideXlab platform.

  • quantitative study of reliable Communication Infrastructure in smart grid nan
    Design of Reliable Communication Networks, 2015
    Co-Authors: Shengjie Xu, Yi Qian
    Abstract:

    In smart grid Communications, neighborhood area network (NAN) lies in one of the most important sections. Reliability in NAN plays a critical role in providing assured services. In this extended abstract, we investigate the reliability aspects of Communication Infrastructure in NAN. We also provide quantitative analysis study on the related reliability issues of the Communication Infrastructure. Theme to this paper: •Reliable Communication Networks for Real-Time and Cyber Physical Systems •Network Reliability Analysis •Communication Networks as an Element of Critical Infrastructures.

  • DRCN - Quantitative study of reliable Communication Infrastructure in smart grid NAN
    2015 11th International Conference on the Design of Reliable Communication Networks (DRCN), 2015
    Co-Authors: Yi Qian
    Abstract:

    In smart grid Communications, neighborhood area network (NAN) lies in one of the most important sections. Reliability in NAN plays a critical role in providing assured services. In this extended abstract, we investigate the reliability aspects of Communication Infrastructure in NAN. We also provide quantitative analysis study on the related reliability issues of the Communication Infrastructure. Theme to this paper: •Reliable Communication Networks for Real-Time and Cyber Physical Systems •Network Reliability Analysis •Communication Networks as an Element of Critical Infrastructures.