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EVALUATION OF AN ORTHOGONAL SFBC CHANNEL ESTIMATION SCHEME FOR MIMO OFDM WIRELESS SYSTEMS

机译:用于MIMO DDM无线系统的正交SFBC信道估计方案的评估

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This paper presents the design and evaluation of a channel estimation scheme that is efficient by means of both the mean square error (MSE) of channel estimation/tracking and its incorporation in a real MIMO system. The evaluation has been performed over the spatial channel model developed for MIMO simulations according to 802.16e case of 3GPP.25.996, taking also into account all IF and RF stages in the communication chain. Orthogonality has been applied in space-frequency dimension for both preamble and pilot symbols, as well as for the data symbols, with the application of Alamouti's scheme. In 4G multicarrier systems that use space-time-frequency coding, orthogonal design turns into a key factor for the performance of the system since the channel has to remain about constant during the transmission of one orthogonal block, something which becomes quite challenging in highly time-variant propagation channels. Furthermore, space-frequency block coding (SFBC) becomes more efficient as the number of subcarriers increases (802.16e, 802.20, etc). The modified channel estimation scheme applied to MIMO transceiver is also efficient in minimization of the processing requirements at the receiver side by estimating only those channel properties that have been changed assuming that the general channel conditions (low/high mobility) are known. The results presented refer to the normalized MSE of the channel estimator and the overall performance evaluation (BER) of the system in various propagations channels, data rates and forward error correction modes.
机译:本文介绍了信道估计方案的设计和评估,该方案通过通道估计/跟踪的均方误差(MSE)有效,以及其在真实MIMO系统中的融合。根据802.16e案例为3GPP.25.996的MIMO模拟开发的空间通道模型进行了评估,同时考虑了通信链中的所有IF和RF阶段。用于前导码和导频符号的空间频率维度以及数据符号,应用Alamouti的方案的正交性。在使用空时频率编码的4G多载波系统中,正交设计变成了系统性能的关键因素,因为信道在一个正交块的传输过程中必须保持恒定,这在高度上变得非常具有挑战性 - Variant传播通道。此外,随着子载波的数量增加(802.16e,802.20等),空间频率块编码(SFBC)变得更有效。应用于MIMO收发器的修改通道估计方案在最小化接收器侧的处理要求中,通过仅估计已经改变的那些频道条件(低/高移动性)是已知的,可以仅在最小化接收器侧的处理要求中的有效性。呈现的结果是指在各种传播信道,数据速率和前向纠错模式下的系统的归一化MSE和系统的整体性能评估(BER)。

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