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Capacity Region of the Gaussian Arbitrarily-Varying Broadcast Channel

机译:高斯任意变化广播信道的容量区域

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This paper considers the two-user Gaussian arbitrarily-varying broadcast channel, wherein a power-limited transmitter wishes to send a message to each of two receivers. Each receiver sees a superposition of the transmitter's sequence, Gaussian noise, and a signal from a power-limited malicious jammer. The jammer is assumed to know the code, but is oblivious to real-time transmissions. The exact capacity region of this setting is determined to be the capacity region of the standard Gaussian broadcast channel, but with the noise variance increased by the power of the jammer, as long as the received power of the jammer at each receiver is less than that of the legitimate transmitter. A key aspect of the achievable scheme involves sharing randomness from the transmitter to the receivers by breaking the transmitted sequence into segments, and either transmitting at full power in a segment, or sending zero. By coding over the on/off signal, a small shared randomness can be established without corruption by the jammer, and without interfering with the standard superposition coding strategy for the Gaussian broadcast channel.
机译:本文考虑了两个用户的高斯任意变化的广播信道,其中功率受限的发送器希望向两个接收器中的每个发送消息。每个接收器都可以看到发射器序列,高斯噪声和功率受限恶意干扰器发出的信号的叠加。假定干扰器知道该代码,但忽略了实时传输。此设置的确切容量区域被确定为标准高斯广播信道的容量区域,但是只要干扰信号在每个接收器处的接收功率小于干扰功率,则噪声干扰会随干扰器的功率而增加。合法发射器。可实现方案的关键方面包括通过将发送的序列分成多个段,并以一个段中的全功率发送或发送零,来从发射机到接收机共享随机性。通过对开/关信号进行编码,可以建立一个小的共享随机性,而不会被干扰破坏,也不会干扰高斯广播信道的标准叠加编码策略。

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