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Huifang Niu

Researcher at North University of China

Publications -  5
Citations -  133

Huifang Niu is an academic researcher from North University of China. The author has contributed to research in topics: Computer science & Engineering. The author has an hindex of 1, co-authored 3 publications receiving 69 citations.

Papers
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A Single-Phase Transformer-Less Grid-Tied Inverter Based on Switched Capacitor for PV Application

TL;DR: A transformer-less grid-tied single-phase inverter is proposed which is directly connected to the grid, without any output filter, leading to elimination of the losses caused by the filter and increased efficiency.
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Degradation modeling and remaining useful life prediction for a multi-component system with stochastic dependence

TL;DR: In this paper , the effects of stochastic dependence between components on the degradation process and the remaining useful life (RUL) of a system were investigated, and a degradation model integrating the effects between components was formulated, and the probability density function of the RUL was derived for multi-component systems with different structures.
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Optimal impacts of combined fuel-cell/CHP/battery and power microgrid with real-time energy management

TL;DR: This work presents a short-term scheduling of fuel cell and combined heat and power (CHP) through the microgrid based on cost and emission minimization as well as various demand responses.
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A 12-bit 120-MS/s SAR ADC with improved split capacitive DAC and low-noise dynamic comparator

TL;DR: This paper presents a 12-bit 120-MS/s successive approximation register (SAR) analog-to-digital converter (ADC) with improved split capacitive DAC and low-noise dynamic comparator, and an extra positive feedback loop is provided to reduce the comparison delay.
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Effects of oxidation degree of support and phosphorus modification on the catalytic cracking of coal pyrolysis tar by char-supported nickel catalysts

TL;DR: In this paper , coal pyrolysis tar was improved by the coal char support with different oxidation degrees, and the addition of P significantly improved the tar cracking performance of the 30%H2O2 P-Ni/C catalyst.