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In both cells, users are ranked according to their decreasing channel gains, and they are allocated time slots in that order; each user in cell 1 is then allocated two consecutive time slots.
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Mathematically, the local intra-cell users are located along the main diagonal of a rectangular channel matrix HN,K.
Given a predetermined value ε l as the SLNR threshold for users in the l-th cell, users are then classified into two different groups.
The reason is that some macro-cell users are offloaded to the small cells by simply comparing the received signal strengths due to CRE.
However, in Figure 7b, the 5th percentile user throughput (i.e., the low user throughput) is significantly degraded because too many macro-cell users are offloaded to small cells by simply comparing the received power differences.
Nevertheless, the drawback of biased user association is that the offloaded macro users referred to as range-expanded small cell users are liable to experience severe interference from the nearby macro BSs.
It had to be small, tri-corder-esque, and cool, unlike the bricks that all the rest of the cell users were buying.
It can be seen that the algorithm changes the ABS pattern in response to the downlink traffic load, and there is a tendency to use a higher ABS pattern (providing more ABS) if the ratio of the small cell users to the macro cell users is high since then the load in the small cells especially in the ABS is relatively high.
Fig. 7 The CDF of cell user's rate loss.
An example of a two-cell CoMP downlink scenario where a cell interior user and two cell edge users are served in each cell.
The classification of cell-edge and cell-interior users are not based purely on geographic location as in conventional frequency reuse techniques.
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