DCNN-GA: A Deep Neural Net Architecture for Navigation of UAV in Indoor Environment
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Mohsen Guizani | Neeraj Kumar | Prateek Chhikara | Rajkumar Tekchandani | Vinay Chamola | Neeraj Kumar | V. Chamola | M. Guizani | Rajkumar Tekchandani | P. Chhikara
[1] Geoffrey E. Hinton,et al. ImageNet classification with deep convolutional neural networks , 2012, Commun. ACM.
[2] Neeraj Kumar,et al. Deep learning models for traffic flow prediction in autonomous vehicles: A review, solutions, and challenges , 2019, Veh. Commun..
[3] Mohsen Guizani,et al. Applications of blockchain in unmanned aerial vehicles: A review , 2020, Veh. Commun..
[4] Pascual Campoy Cervera,et al. A Review of Deep Learning Methods and Applications for Unmanned Aerial Vehicles , 2017, J. Sensors.
[5] Davide Mezzino,et al. Unmanned Aerial Vehicles (UAV) Photogrammetry in the Conservation of Historic Places: Carleton Immersive Media Studio Case Studies , 2018 .
[6] Victor M. Becerra,et al. Autonomous Control of Unmanned Aerial Vehicles , 2019, Electronics.
[7] Loris Nanni,et al. Handcrafted vs. non-handcrafted features for computer vision classification , 2017, Pattern Recognit..
[8] Ivan Ostroumov,et al. Unmanned Aerial Vehicle Positioning by Data from Pocket Device Sensors , 2019, 2019 IEEE 5th International Conference Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD).
[9] Sambit Bakshi,et al. Localization of Unmanned Aerial Vehicles in Corridor Environments using Deep Learning , 2019, 2020 25th International Conference on Pattern Recognition (ICPR).
[10] Maoguo Gong,et al. Automatic Tobacco Plant Detection in UAV Images via Deep Neural Networks , 2018, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[11] Shahzad Ahmad,et al. Deep Neural Network for Autonomous UAV Navigation in Indoor Corridor Environments , 2018 .
[12] Toby P. Breckon,et al. Multi-Task Regression-Based Learning for Autonomous Unmanned Aerial Vehicle Flight Control Within Unstructured Outdoor Environments , 2019, IEEE Robotics and Automation Letters.
[13] Kilian Q. Weinberger,et al. Densely Connected Convolutional Networks , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[14] A. G. Ivakhnenko,et al. Polynomial Theory of Complex Systems , 1971, IEEE Trans. Syst. Man Cybern..
[15] Kyung-shik Shin,et al. Genetic algorithm-optimized multi-channel convolutional neural network for stock market prediction , 2019, Neural Computing and Applications.
[16] Sergey Ioffe,et al. Rethinking the Inception Architecture for Computer Vision , 2015, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[17] Andrew Zisserman,et al. Very Deep Convolutional Networks for Large-Scale Image Recognition , 2014, ICLR.
[18] Vikas Hassija,et al. Scheduling drone charging for multi-drone network based on consensus time-stamp and game theory , 2020, Comput. Commun..
[19] Qingquan Li,et al. Urban Traffic Density Estimation Based on Ultrahigh-Resolution UAV Video and Deep Neural Network , 2018, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[20] Xiangjian He,et al. A Distributed and Anonymous Data Collection Framework Based on Multilevel Edge Computing Architecture , 2020, IEEE Transactions on Industrial Informatics.
[21] Yoshua Bengio,et al. Gradient-based learning applied to document recognition , 1998, Proc. IEEE.
[22] Rob Fergus,et al. Visualizing and Understanding Convolutional Networks , 2013, ECCV.
[23] Naif Alajlan,et al. Deep Attention Neural Network for Multi-Label Classification in Unmanned Aerial Vehicle Imagery , 2019, IEEE Access.
[24] Mohammad R. Khosravi,et al. An efficient parallel genetic algorithm solution for vehicle routing problem in cloud implementation of the intelligent transportation systems , 2020, J. Cloud Comput..
[25] Yu. A. Gunchenko,et al. Using UAV for unmanned agricultural harvesting equipment route planning and harvest volume measuring , 2017, 2017 IEEE 4th International Conference Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD).
[26] Fabio Remondino,et al. Preface: Latest Developments, Methodologies, and Applications Based on UAV Platforms , 2019, Drones.
[27] Krishna Kant,et al. Privacy and Security of Connected Vehicles in Intelligent Transportation System , 2019, 2019 49th Annual IEEE/IFIP International Conference on Dependable Systems and Networks – Supplemental Volume (DSN-S).
[28] Neeraj Kumar,et al. Path planning techniques for unmanned aerial vehicles: A review, solutions, and challenges , 2020, Comput. Commun..
[29] Sergey Ioffe,et al. Inception-v4, Inception-ResNet and the Impact of Residual Connections on Learning , 2016, AAAI.
[30] Bo Chen,et al. MobileNets: Efficient Convolutional Neural Networks for Mobile Vision Applications , 2017, ArXiv.
[31] Li Fei-Fei,et al. ImageNet: A large-scale hierarchical image database , 2009, CVPR.
[32] Prateek Chhikara,et al. Deep Convolutional Neural Network with Transfer Learning for Detecting Pneumonia on Chest X-Rays , 2019, Advances in Intelligent Systems and Computing.
[33] Jing Liu,et al. LIDAR obstacle warning and avoidance system for unmanned aerial vehicle sense-and-avoid , 2016 .
[34] Hilbert J. Kappen,et al. Efficient Optical Flow and Stereo Vision for Velocity Estimation and Obstacle Avoidance on an Autonomous Pocket Drone , 2016, IEEE Robotics and Automation Letters.
[35] Mohsen Guizani,et al. A Distributed Framework for Energy Trading Between UAVs and Charging Stations for Critical Applications , 2020, IEEE Transactions on Vehicular Technology.
[36] Zhuowen Tu,et al. Aggregated Residual Transformations for Deep Neural Networks , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[37] Mark Sandler,et al. MobileNetV2: Inverted Residuals and Linear Bottlenecks , 2018, 2018 IEEE/CVF Conference on Computer Vision and Pattern Recognition.
[38] Alexandre Cardoso,et al. An Experiment on the Use of Genetic Algorithms for Topology Selection in Deep Learning , 2019, J. Electr. Comput. Eng..
[39] Dongming Gan,et al. Deep-Learning-Based Neural Network Training for State Estimation Enhancement: Application to Attitude Estimation , 2020, IEEE Transactions on Instrumentation and Measurement.
[40] Houbing Song,et al. Internet of Things and Big Data Analytics for Smart and Connected Communities , 2016, IEEE Access.
[41] Jianqiang Li,et al. PSOTrack: A RFID-Based System for Random Moving Objects Tracking in Unconstrained Indoor Environment , 2018, IEEE Internet of Things Journal.
[42] Roland Chapuis,et al. Radar Scan Matching SLAM Using the Fourier-Mellin Transform , 2009, FSR.
[43] Jürgen Schmidhuber,et al. Long Short-Term Memory , 1997, Neural Computation.
[44] Devinder Kaur,et al. Designing Convolutional Neural Network Architecture Using Genetic Algorithms , 2021, International Journal of Advanced Network, Monitoring and Controls.
[45] François Chollet,et al. Xception: Deep Learning with Depthwise Separable Convolutions , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[46] Hak-Keung Lam,et al. Tuning of the structure and parameters of a neural network using an improved genetic algorithm , 2003, IEEE Trans. Neural Networks.
[47] Jiancheng Lv,et al. Automatically Designing CNN Architectures Using Genetic Algorithm for Image Classification , 2018, ArXiv.
[48] Laurence T. Yang,et al. UAV-Empowered Edge Computing Environment for Cyber-Threat Detection in Smart Vehicles , 2018, IEEE Network.
[49] Zhihan Lv,et al. Next-Generation Big Data Analytics: State of the Art, Challenges, and Future Research Topics , 2017, IEEE Transactions on Industrial Informatics.
[50] Alireza Jolfaei,et al. Energy‐efficient workload allocation in fog‐cloud based services of intelligent transportation systems using a learning classifier system , 2020, IET Intelligent Transport Systems.