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Tag Archive: 2016 Ns2 Projects

An experimental study on the statistical properties of radio environment noise

We study the statistical characteristics of radio environment noise, in particular focusing on spurious received power arising from adjacent channel interference, harmonics and wideband man-made interference. Unlike the majority of existing studies, our measurements enable a comprehensive study on frequencies ranging from 80MHz to 2.64 GHz instead of being focused on the properties of an […]

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High-diversity space division multiplexing visible light communication utilizing a fisheye-lens-based imaging receiver

The verification experiment of the high-spatial-diversity fisheye-lens-based SDM VLC system is demonstrated. High spatial diversity is obtained, and an aggregate data rate of over 1.1 Gbit/s is achieved.

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Powered Two-Wheeler Riding Pattern Recognition Using a Machine-Learning Framework

In this paper, a machine-learning framework is used for riding pattern recognition. The problem is formulated as a classification task to identify the class of riding patterns using data collected from 3-D accelerometer/gyroscope sensors mounted on motorcycles. These measurements constitute an experimental database used to analyze powered two-wheeler rider behavior. Several well-known machine-learning techniques are […]

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Automated compatibility testing method for software logic by using symbolic execution

Compatibility verification for modified software is very important. Currently this is done by executing existing test cases to the modified software. However it is often difficult to perform enough verification because it all depends on the existing test cases. In this paper, a novel compatibility testing method for software logical behavior is proposed. The method […]

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AWGR-based large port count data center architecture with extended frequency range

Arrayed Waveguide Grating Router (AWGR) is currently one of the most promising components in data center interconnections for its passive and non-blocking feature. However, the scalability is restricted by the limited channel count. In this paper, by using multiple free spectral ranges (FSRs) of AWGR and couplers, we report a novel data center architecture with […]

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Droop-controlled inverter-based microgrids are robust to clock drifts

Clock drift in digital controllers is of great relevance in many applications. Since almost all real clocks exhibit drifts, this applies in particular to networks composed of several individual units, each of which being operated with its individual clock. In the present work, we investigate the effect of clock drifts in inverter-based microgrids. Via a suitable model […]

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Distributed Optimal Active Power Control of Multiple Generation Systems

A novel coordinated power controller design framework is proposed to optimize the active power output of multiple generators in a distributed network. Each bus in the distributed generation systems includes two function modules: a distributed economic dispatch module and a cooperative control module. By virtue of the distributed consensus theory, a distributed economic dispatch algorithm is […]

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Design of an adaptive security mechanism for modern routers

Modern routers should be able to support many new functions to meet the needs of customers. To achieve such flexibility, programmable packet processors have replaced traditional fixed-function custom logic in the data path of routers. This programmability introduces new vulnerabilities in these systems that can lead to new types of network attacks. We propose a monitoring subsystem […]

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Fault current limiting in a wind power plant equipped with a DFIG using the interface converter and an optimized located FCL

Along with extending the application of Distributed Generation (DG) units attending renewable energy resources some technical problems such as protection issues are appeared. Fault level increase and inconsistency among protection elements such as relays are of these problems. Fault Current Limiter (FCL) is an appropriate choice that limits the current injected to the faulty point […]

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A Low-Error, Cost-Efficient Design Procedure for Evaluating Logarithms to be Used in a Logarithmic Arithmetic Processor

Based on an error-flattened, non-uniform-region linear-approximation algorithm, this brief proposes a low-error and a cost-efficient design procedure for realizing an optimized shift-and-add Logarithmic Unit (LU), which uses minimum hardware to meet the desired error constraint for embedded graphics systems. Mathematically, this brief first derives two solutions of the error-flattened algorithm. Subsequently, for an error constraint, […]

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