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首页> 外文期刊>Serbian Journal of Electrical Engineering >Adaptive algorithm based on antenna arrays for radio communication systems
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Adaptive algorithm based on antenna arrays for radio communication systems

机译:基于天线阵列的无线通信系统自适应算法

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Trends in the modern world increasingly lead to the growing popularity of wireless technologies. This is possible due to the rapid development of mobile communications, the Internet gaining high popularity, using wireless networks at enterprises, offices, buildings, etc. It requires advanced network technologies with high throughput capacity to meet the needs of users. To date, a popular destination is the development of spatial signal processing techniques allowing to increase spatial bandwidth of communication channels. The most popular method is spatial coding MIMO to increase data transmission speed which is carried out due to several spatial streams emitted by several antennas. Another advantage of this technology is the bandwidth increase to be achieved without expanding the specified frequency range. Spatial coding methods are even more attractive due to a limited frequency resource. Currently, there is an increasing use of wireless communications (for example, WiFi and WiMAX) in information transmission networks. One of the main problems of evolving wireless systems is the need to increase bandwidth and improve the quality of service (reducing the error probability). Bandwidth can be increased by expanding the bandwidth or increasing the radiated power. Nevertheless, the application of these methods has some drawbacks, due to the requirements of biological protection and electromagnetic compatibility, the increase of power and the expansion of the frequency band is limited. This problem is especially relevant in mobile (cellular) communication systems and wireless networks operating in difficult signal propagation conditions. One of the most effective ways to solve this problem is to use adaptive antenna arrays with weakly correlated antenna elements. Communication systems using such antennas are called MIMO systems (Multiple Input Multiple Output multiple input - multiple outputs). At the moment, existing MIMO-idea implementations do not always noticeably accelerate traffic at short distances from the access point, but, they are very effective at long distances. The MIMO principle allows reducing the number of errors in radio data interchange (BER) without reducing the transmission rate under conditions of multiple signal re-reflections. The work aims at developing an adaptive space-time signal algorithm for a wireless data transmission system designed to improve the efficiency of this system, as well as to study the efficiency of the algorithm to minimizing the error bit probability and maximizing the channel capacity.
机译:现代世界的趋势越来越导致无线技术的日益普及。由于移动通信的飞速发展,因特网在企业,办公室,建筑物等中使用无线网络的高度普及,这是可能的。这需要具有高吞吐能力的先进网络技术来满足用户的需求。迄今为止,流行的目的地是空间信号处理技术的发展,其允许增加通信信道的空间带宽。最流行的方法是空间编码MIMO,以提高数据传输速度,这是由于几个天线发射的几个空间流而实现的。该技术的另一个优点是无需扩展指定的频率范围即可实现带宽增加。由于频率资源有限,空间编码方法甚至更具吸引力。当前,在信息传输网络中越来越多地使用无线通信(例如,WiFi和WiMAX)。不断发展的无线系统的主要问题之一是需要增加带宽并提高服务质量(降低错误概率)。可以通过扩展带宽或增加辐射功率来增加带宽。然而,由于生物保护和电磁兼容性的要求,这些方法的应用存在一些缺点,限制了功率的增加和频带的扩展。该问题在工作于困难的信号传播条件下的移动(蜂窝)通信系统和无线网络中尤其重要。解决此问题的最有效方法之一是使用具有弱相关性天线元件的自适应天线阵列。使用这种天线的通信系统称为MIMO系统(多输入多输出多输入-多输出)。目前,现有的MIMO-idea实现并不总是显着加速距接入点短距离的通信量,但是,在长距离情况下非常有效。 MIMO原理可以减少无线数据交换(BER)中的错误数量,而无需在多次信号重新反射的情况下降低传输速率。这项工作旨在为无线数据传输系统开发一种自适应时空信号算法,旨在提高该系统的效率,并研究该算法的效率,以最大程度地减少错误位概率并最大化信道容量。

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