The Experts below are selected from a list of 282 Experts worldwide ranked by ideXlab platform
Wenbo Wang - One of the best experts on this subject based on the ideXlab platform.
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WCNC - Mobility enhancement and performance evaluation for 5G Ultra dense Networks
2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
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Mobility enhancement and performance evaluation for 5G Ultra dense Networks
Wireless Communications and Networking Conference (WCNC), 2015 IEEE, 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Chang Liu, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
Jiaxin Zhang - One of the best experts on this subject based on the ideXlab platform.
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WCNC - Mobility enhancement and performance evaluation for 5G Ultra dense Networks
2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
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Mobility enhancement and performance evaluation for 5G Ultra dense Networks
Wireless Communications and Networking Conference (WCNC), 2015 IEEE, 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Chang Liu, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
Jian Feng - One of the best experts on this subject based on the ideXlab platform.
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WCNC - Mobility enhancement and performance evaluation for 5G Ultra dense Networks
2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
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Mobility enhancement and performance evaluation for 5G Ultra dense Networks
Wireless Communications and Networking Conference (WCNC), 2015 IEEE, 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Chang Liu, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
Xing Zhang - One of the best experts on this subject based on the ideXlab platform.
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WCNC - Mobility enhancement and performance evaluation for 5G Ultra dense Networks
2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
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Mobility enhancement and performance evaluation for 5G Ultra dense Networks
Wireless Communications and Networking Conference (WCNC), 2015 IEEE, 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Chang Liu, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
Xuefen Hong - One of the best experts on this subject based on the ideXlab platform.
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WCNC - Mobility enhancement and performance evaluation for 5G Ultra dense Networks
2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.
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Mobility enhancement and performance evaluation for 5G Ultra dense Networks
Wireless Communications and Networking Conference (WCNC), 2015 IEEE, 2015Co-Authors: Jiaxin Zhang, Xuefen Hong, Xing Zhang, Chang Liu, Jian Feng, Wenbo WangAbstract:Future wireless Network will address the explosive increase demand of high-data-rate video services as well as massive-access machine type communication (MTC) requests, so that increasing number of small cells are conceived to be densely deployed in hot spots, resulting in an Ultra-dense Network (UDN). As a main issue for the future Network, UDN is a step further towards a low-cost, self-configuring and self-Optimizing Network, while also leading to high-frequent measurement, intolerable handover failure (HOF), as well as huge power consumption in both the terminal and access Network. Thus, mobility enhancement in ultra-dense scenario has become a critical problem for the next generation wireless systems. To solve this problem, the split of control plane and user plane (C/U) has become one of the most promising way, as it allows more flexibility and better service control schemes. Inspired by this, a set of macro assisted small cell enhancement schemes is proposed contributing to a novel Data-only Carrier (DoC) system in our previous work. In this paper, for improving the handover (HO) performance, new mobility-enhanced schemes are designed and analyzed in detail in DoC Network, taking into consideration of mobility, flexibility and various typical handover scenarios. Simulations are conducted by a system-level platform to illustrate the fundamental relationship between key handover parameters and mobility performance. Numerical results show that the gain of system HOF rises by 53.6% via Optimizing and reconfiguring the handover parameters in DoC Network. In addition, the DoC Network has an excellent performance gain in UDN with 82% HO improvement and 44.34% energy efficiency promotion compared with the current LTE Network, which may be a promising mobility enhancement strategy for future 5G Networks.