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Wei Shao

Researcher at University of Electronic Science and Technology of China

Publications -  152
Citations -  2059

Wei Shao is an academic researcher from University of Electronic Science and Technology of China. The author has contributed to research in topics: Finite-difference time-domain method & Laguerre polynomials. The author has an hindex of 21, co-authored 139 publications receiving 1366 citations.

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A combined model based on multiple seasonal patterns and modified firefly algorithm for electrical load forecasting

TL;DR: In this article, a new combined model is proposed to avoid the limitations of individual models, except for the multiple seasonal patterns used to reduce interferences from the original data, a new optimization algorithm is presented and applied to optimize the weight coefficients of the combined model based on non-positive constraint combination theory.
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Reduction of Mutual Coupling Between Patch Antennas Using a Polarization-Conversion Isolator

TL;DR: In this article, a parasitic isolator is used to suppress mutual coupling between two patch antennas, and a defected ground structure is employed to suppress the cross-polarization (XP) level.
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Research and application of a hybrid wavelet neural network model with the improved cuckoo search algorithm for electrical power system forecasting

TL;DR: In this paper, a new hybrid model based on the singular spectrum analysis (SSA) and modified wavelet neural network (WNN) is proposed for all the short-term load forecasting, shortterm wind speed forecasting and shortterm electricity price forecasting.
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An Improved PSO Algorithm and Its Application to UWB Antenna Design

TL;DR: An improved particle swarm optimization (PSO) algorithm with a neighborhood-redispatch (NR) technique is presented to design an ultrawideband (UWB) antenna and the results show that it is better than the conventional PSO algorithm for multimodal and unimodal functions.
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A Wide-Angle Scanning Planar Phased Array with Pattern Reconfigurable Magnetic Current Element

TL;DR: In this paper, a planar planar phased array with magnetic current elements is proposed to enhance the scanning gain and decrease the sidelobe level throughout the entire scanning range, where the array is comprised of eight elements in a $2 \times 4$ arrangement with uniform spacing.