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Dive into the research topics where Apoorva Aggarwal is active.

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Featured researches published by Apoorva Aggarwal.


Circuits Systems and Signal Processing | 2016

Optimal Design of 2D FIR Filters with Quadrantally Symmetric Properties Using Fractional Derivative Constraints

Apoorva Aggarwal; Manjeet Kumar; Tarun Kumar Rawat; Dharmendra K. Upadhyay

In this article, an optimal design of two-dimensional finite impulse response (2D FIR) filter with quadrantally even symmetric impulse response using fractional derivative constraints (FDCs) is presented. Firstly, design problem of 2D FIR filter is formulated as an optimization problem. Then, FDCs are imposed over the integral absolute error for designing of the quadrantally even symmetric impulse response filter. The optimized FDCs are applied over the prescribed frequency points. Next, the optimized filter impulse response coefficients are computed using a hybrid optimization technique, called hybrid particle swarm optimization and gravitational search algorithm (HPSO-GSA). Further, FDC values are also optimized such that flat passband and stopband frequency response is achieved and the absolute


Isa Transactions | 2017

Adaptive infinite impulse response system identification using modified-interior search algorithm with Lèvy flight

Manjeet Kumar; Tarun Kumar Rawat; Apoorva Aggarwal


Multidimensional Systems and Signal Processing | 2017

Optimal design of 2-D FIR digital differentiator using \(L_1\)-norm based cuckoo-search algorithm

Apoorva Aggarwal; Manjeet Kumar; Tarun Kumar Rawat; Dharmendra K. Upadhyay

L_1


IEEE/CAA Journal of Automatica Sinica | 2017

Optimal nonlinear system identification using fractional delay second-order volterra system

Manjeet Kumar; Apoorva Aggarwal; Tarun Kumar Rawat; Harish Parthasarathy


Archive | 2016

An L_1-Method: Application to Digital Symmetric Type-II FIR Filter Design

Apoorva Aggarwal; Tarun Kumar Rawat; Manjeet Kumar; Dharmendra K. Upadhyay

L1-error is minimized. Finally, four design examples of 2D low-pass, high-pass, band-pass and band-stop filters are demonstrated to justify the design accuracy in terms of passband error, stopband error, maximum passband ripple, minimum stopband attenuation and execution time. Simulation results have been compared with the other optimization algorithms, such as real-coded genetic algorithm, particle swarm optimization and gravitational search algorithm. It is observed that HPSO-GSA gives improved results for 2D FIR-FDC filter design problem. In comparison with other existing techniques of 2D FIR filter design, the proposed method shows improved design accuracy and flexibility with varying values of FDCs.


ieee india conference | 2014

L 1 error criterion based optimal FIR filters

Apoorva Aggarwal; Manjeet Kumar; Tarun Kumar Rawat

In this paper, a new meta-heuristic optimization technique, called interior search algorithm (ISA) with Lèvy flight is proposed and applied to determine the optimal parameters of an unknown infinite impulse response (IIR) system for the system identification problem. ISA is based on aesthetics, which is commonly used in interior design and decoration processes. In ISA, composition phase and mirror phase are applied for addressing the nonlinear and multimodal system identification problems. System identification using modified-ISA (M-ISA) based method involves faster convergence, single parameter tuning and does not require derivative information because it uses a stochastic random search using the concepts of Lèvy flight. A proper tuning of control parameter has been performed in order to achieve a balance between intensification and diversification phases. In order to evaluate the performance of the proposed method, mean square error (MSE), computation time and percentage improvement are considered as the performance measure. To validate the performance of M-ISA based method, simulations has been carried out for three benchmarked IIR systems using same order and reduced order system. Genetic algorithm (GA), particle swarm optimization (PSO), cat swarm optimization (CSO), cuckoo search algorithm (CSA), differential evolution using wavelet mutation (DEWM), firefly algorithm (FFA), craziness based particle swarm optimization (CRPSO), harmony search (HS) algorithm, opposition based harmony search (OHS) algorithm, hybrid particle swarm optimization-gravitational search algorithm (HPSO-GSA) and ISA are also used to model the same examples and simulation results are compared. Obtained results confirm the efficiency of the proposed method.


Iet Signal Processing | 2017

Optimal design of L 1-norm based IIR digital differentiators and integrators using the bat algorithm

Apoorva Aggarwal; Tarun Kumar Rawat; Dharmendra K. Upadhyay

In this article, an optimal design of two-dimensional finite impulse response digital differentiators (2-D FIR-DD) with quadrantally odd symmetric impulse response is presented. The design problem of 2-D FIR-DD is formulated as an optimization problem based on the


international conference on signal processing and communication systems | 2016

Design of optimal 2-D FIR differentiators with quadrantally symmetric properties using the L 1 -method

Apoorva Aggarwal; Manjeet Kumar; Tarun Kumar Rawat; Dharmendra K. Upadhyay


ieee india conference | 2015

Design of Hilbert transformer using the L1-method

Apoorva Aggarwal; Tarun Kumar Rawat; Manjeet Kumar; Dharmendra K. Upadhyay

L_1


Iet Signal Processing | 2018

Optimal Design of Minimum Multiplier Lattice Wave Digital Lowpass Filter using Metaheuristic Techniques

Richa Barsainya; Apoorva Aggarwal; Tarun Kumar Rawat

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Tarun Kumar Rawat

Netaji Subhas Institute of Technology

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Manjeet Kumar

Netaji Subhas Institute of Technology

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Dharmendra K. Upadhyay

Netaji Subhas Institute of Technology

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Harish Parthasarathy

Netaji Subhas Institute of Technology

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Mirza Amir Baig

Netaji Subhas Institute of Technology

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Richa Barsainya

Netaji Subhas Institute of Technology

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Vivek Kumar Mishra

Netaji Subhas Institute of Technology

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