The Experts below are selected from a list of 29988 Experts worldwide ranked by ideXlab platform

Minho Jo - One of the best experts on this subject based on the ideXlab platform.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input–multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and the ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate, and average outage probability is first derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennae approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennae keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennae is larger than or equal to a given threshold.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input-multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate (SER) and average outage probability are firstly derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennas approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennas keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennas is larger than or equal to a given threshold.

Xi Aohu Ge - One of the best experts on this subject based on the ideXlab platform.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input–multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and the ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate, and average outage probability is first derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennae approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennae keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennae is larger than or equal to a given threshold.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input-multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate (SER) and average outage probability are firstly derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennas approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennas keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennas is larger than or equal to a given threshold.

Ran Zi - One of the best experts on this subject based on the ideXlab platform.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input–multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and the ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate, and average outage probability is first derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennae approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennae keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennae is larger than or equal to a given threshold.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input-multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate (SER) and average outage probability are firstly derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennas approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennas keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennas is larger than or equal to a given threshold.

Jing Zhang - One of the best experts on this subject based on the ideXlab platform.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input–multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and the ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate, and average outage probability is first derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennae approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennae keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennae is larger than or equal to a given threshold.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input-multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate (SER) and average outage probability are firstly derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennas approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennas keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennas is larger than or equal to a given threshold.

Haichao Wang - One of the best experts on this subject based on the ideXlab platform.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input–multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and the ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate, and average outage probability is first derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennae approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennae keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennae is larger than or equal to a given threshold.

  • Multi-User Massive MIMO Communication Systems Based on Irregular Antenna Arrays
    IEEE Transactions on Wireless Communications, 2016
    Co-Authors: Xi Aohu Ge, Ran Zi, Haichao Wang, Jing Zhang, Minho Jo
    Abstract:

    In practical mobile communication engineering applications, surfaces of Antenna array deployment regions are usually uneven. Therefore, massive multi-input-multi-output (MIMO) communication systems usually transmit wireless signals by irregular Antenna Arrays. To evaluate the performance of irregular Antenna Arrays, the matrix correlation coefficient and ergodic received gain are defined for massive MIMO communication systems with mutual coupling effects. Furthermore, the lower bound of the ergodic achievable rate, symbol error rate (SER) and average outage probability are firstly derived for multi-user massive MIMO communication systems using irregular Antenna Arrays. Asymptotic results are also derived when the number of Antennas approaches infinity. Numerical results indicate that there exists a maximum achievable rate when the number of Antennas keeps increasing in massive MIMO communication systems using irregular Antenna Arrays. Moreover, the irregular Antenna array outperforms the regular Antenna array in the achievable rate of massive MIMO communication systems when the number of Antennas is larger than or equal to a given threshold.