The Experts below are selected from a list of 774 Experts worldwide ranked by ideXlab platform
Hungyu Wei - One of the best experts on this subject based on the ideXlab platform.
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energy efficient millimeter wave m2m 5g systems with beam aware drx mechanism
Vehicular Technology Conference, 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: An Huang, Pingjung Hsieh, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
Chenghsiang Ho - One of the best experts on this subject based on the ideXlab platform.
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energy efficient millimeter wave m2m 5g systems with beam aware drx mechanism
Vehicular Technology Conference, 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
An Huang - One of the best experts on this subject based on the ideXlab platform.
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energy efficient millimeter wave m2m 5g systems with beam aware drx mechanism
Vehicular Technology Conference, 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: An Huang, Pingjung Hsieh, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
Thrasyvoulos Spyropoulos - One of the best experts on this subject based on the ideXlab platform.
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lte lte a Discontinuous Reception modeling for machine type communications
IEEE Wireless Communications Letters, 2013Co-Authors: Kaijie Zhou, Navid Nikaein, Thrasyvoulos SpyropoulosAbstract:Machine type communications (MTC) are considered as key applications in LTE/LTE-A networks, for which lowering power consumption is among the primary requirements. In this paper, we model the LTE/LTE-A Discontinuous Reception (DRX) mechanism for MTC applications based on a Semi-Markov chain model. With our model the power saving factor and wake up latency can be accurately estimated for a given choice of DRX parameters, thus allowing to select the ones presenting the best tradeoff. The proposed model is validated through simulations. We also investigate the effect of different DRX parameters on performance.
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LTE/LTE-a Discontinuous Reception modeling for machine type communications
IEEE Wireless Communications Letters, 2013Co-Authors: Kaijie Zhou, Navid Nikaein, Thrasyvoulos SpyropoulosAbstract:Machine type communications (MTC) are considered as key applications in LTE/LTE-A networks, for which lowering power consumption is among the primary requirements. In this paper, we model the LTE/LTE-A Discontinuous Reception (DRX) mechanism for MTC applications based on a Semi-Markov chain model. With our model the power saving factor and wake up latency can be accurately estimated for a given choice of DRX parameters, thus allowing to select the ones presenting the best tradeoff. The proposed model is validated through simulations. We also investigate the effect of different DRX parameters on performance.
Pingjung Hsieh - One of the best experts on this subject based on the ideXlab platform.
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energy efficient millimeter wave m2m 5g systems with beam aware drx mechanism
Vehicular Technology Conference, 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: Chenghsiang Ho, Pingjung Hsieh, An Huang, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.
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VTC-Fall - Energy-Efficient Millimeter-Wave M2M 5G Systems with Beam-Aware DRX Mechanism
2017 IEEE 86th Vehicular Technology Conference (VTC-Fall), 2017Co-Authors: An Huang, Pingjung Hsieh, Hungyu WeiAbstract:How to enhance the Machine-to-Machine (M2M) communication with improved software services becomes an essential issue in the future fifth generation (5G) systems. Considering the enormous number of connected devices located in a specific direction relative to the base station, Millimeter-Wave (mmWave) communication with the beamforming technology plays a crucial role in meeting the high data transmission requirements of the devices. To achieve the requirements, it is necessary for the devices to integrate the Discontinuous Reception (DRX) mechanism with the mmWave communication. We propose a Beam-Aware DRX mechanism that is adaptive to a periodic beam pattern in mmWave communication. Compared with the original LTE DRX mechanism in mmWave communication.