مهندس جان حرفهای شما و شخصیت شما برای بنده خیلی ارزشمنده اما من شخصا هنوز با این مایمو مشکل دارم. البته شاید مایمو کاربردهای زیادی دشته باشه اما اون چیزی که برای من مشکله تجربه عملی دوستان هست. اگر یکی پیدا بشه که با یک آنتن یک سرعتی بگیره و با آنتن دو سرعتش دو برابر بشه این قضیه برای من حل میشه تا به حال توی تستهای دوستان به این مورد برنخوردم به علاوه اینکه اصلا فکر نمی کنم این موبایلها دو تا ورودی آنتن داشته باشن که بخوان از مایمو استفاده کنند.
امیدوارم یه کاربری پیدا بشه که سرعت دو برابری با آنتن دوم رو به ما نشون بده من که با دو انتن چنین تجربه ای ندارم.
طبق متن زیر مایمو دو تا فرمت داره که فرمت اول برای بالابردن کیفیت و فرمت دوم هم برای بالا بردن سرعته. نمی دونم شاید بشه نتیجه گرفت داشتن دو تا آنتن به معنای دو برابر شدن سرعت نیست و بستگی به تنظیمان فرستنده هم داره شاید برای Spatial diversity باشه
The two main formats for MIMO are given below:
Spatial diversity: Spatial diversity used in this narrower sense often refers to transmit and receive diversity. These two methodologies are used to provide improvements in the signal to noise ratio and they are characterised by improving the reliability of the system with respect to the various forms of fading.
Spatial multiplexing : This form of MIMO is used to provide additional data capacity by utilising the different paths to carry additional traffic, i.e. increasing the data throughput capability.
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طبق این متن هم سه تکنیک برای مایمو هست حالا نمی دونم هر سه تا باهم فعالن و بسته به شرایط قابل استفادس یا خیر
به هر حال باز به این نتیجه میشه رسید که فعال بودن مایمو لزوما به معنای دو برابر شدن سرعت دانلود نیست
By means of coding at the transmitter and signal processing at the receiver, a MIMO system is able to benefit from complex radio propagation environments. A number of different techniques can be applied:
Spatial diversity exploits the independent fading of different signal paths between the various transmit and receive antennas to improve the reliability of a communication link. The same signal stream is transmitted from each antenna but with different coding applied, which enables the receiver to benefit from the diversity of the received signals. This technique is particularly useful for system control channels and for robust operation in poor signal conditions, such as near the edge of cells.
Spatial multiplexing takes advantage of multipath propagation to create a number of independent transmission channels between the transmitter and receiver, which enables two or more different signal streams to be transmitted simultaneously. By applying suitable coding and signal processing these can be extracted independently at the receiver. This technique can be used to increase the throughput available to an individual user or to multiplex data from different users (commonly referred to as multi-user MIMO). The maximum number of multiplex channels that can be supported corresponds to the smaller of the number of antennas on the transmitter and receiver. For example, the MIMO arrangement shown above could provide two independent transmission channels if the radio conditions were suitable. This could be used to double the data rate available to a user or to carry two independent data streams.
Closed loop feedback and precoding enables a transmitter to take advantage of information about the transmission channel, provided by the receiver. If feedback is available, the transmitter can modify its coding of the transmitted signals to take account of the prevailing channel characteristics, to simplify the signal processing required at the receiver and enable potentially greater performance gains.
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