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首页> 外文期刊>EURASIP journal on advances in signal processing >PhantomNet: Exploring Optimal Multicellular Multiple Antenna Systems
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PhantomNet: Exploring Optimal Multicellular Multiple Antenna Systems

机译:PhantomNet:探索最佳的多蜂窝多天线系统

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We present a network framework for evaluating the theoretical performance limits of wireless data communication. We address the problem of providing the best possible service to new users joining the system without affecting existing users. Since, interference-wise, new users are required to be invisible to existing users, the network is dubbed PhantomNet. The novelty is the generality obtained in this context. Namely, we can deal with multiple users, multiple antennas, and multiple cells on both the uplink and the downlink. The solution for the uplink is effectively the same as for a single cell system since all the base stations (BSs) simply amount to one composite BS with centralized processing. The optimum strategy, following directly from known results, is successive decoding (SD), where the new user is decoded before the existing users so that the new users' signal can be subtracted out to meet its invisibility requirement. Only the BS needs to modify its decoding scheme in the handling of new users, since existing users continue to transmit their data exactly as they did before the new arrivals. The downlink, even with the BSs operating as one composite BS, is more problematic. With multiple antennas at each BS site, the optimal coding scheme and the capacity region for this channel are unsolved problems. SD and dirty paper (DP) are two schemes previously reported to achieve capacity in special cases. For PhantomNet, we show that DP coding at the BS is equal to or better than SD. The new user is encoded before the existing users so that the interference caused by his signal to existing users is known to the transmitter. Thus the BS modifies its encoding scheme to accommodate new users so that existing users continue to operate as before: they achieve the same rates as before and they decode their signal in precisely the same way as before. The solutions for the uplink and the downlink are particularly interesting in the way they exhibit a remarkable simplicity and an unmistakable, near-perfect, up-down symmetry.
机译:我们提出了一个网络框架,用于评估无线数据通信的理论性能极限。我们解决了为加入该系统的新用户提供最佳服务而不影响现有用户的问题。由于在干扰方面,要求新用户对现有用户不可见,因此该网络被称为PhantomNet。新颖性是在这种情况下获得的普遍性。即,我们可以在上行链路和下行链路上处理多个用户,多个天线和多个小区。上行链路的解决方案实际上与单个小区系统的解决方案相同,因为所有基站(BS)只需经过集中处理就等于一个复合BS。直接根据已知结果得出的最佳策略是连续解码(SD),其中新用户在现有用户之前被解码,以便可以减去新用户的信号以满足其隐身性要求。由于现有用户继续像在新用户到达之前一样准确地传输其数据,因此只有BS需要在处理新用户时修改其解码方案。即使将BS作为一个复合BS来工作,下行链路也更成问题。在每个BS站点有多个天线的情况下,该信道的最佳编码方案和容量区域尚未解决。 SD和脏纸(DP)是先前报道过的两种在特殊情况下实现产能的方案。对于PhantomNet,我们证明了BS处的DP编码等于或优于SD。在现有用户之前对新用户进行编码,以便发射机知道其信号对现有用户造成的干扰。因此,BS修改其编码方案以适应新用户,以便现有用户继续像以前那样操作:他们达到与以前相同的速率,并且以与以前完全相同的方式解码其信号。上行链路和下行链路的解决方案特别有趣,因为它们表现出显着的简单性和无误的,近乎完美的上下对称性。

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