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Capacity of Gaussian Channels With Duty Cycle and Power Constraints

机译:具有占空比和功率约束的高斯通道的容量

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In many wireless communication systems, radios are subject to a duty cycle constraint, that is, a radio can only actively transmit signals over a fraction of the time. For example, it is desirable to have a small duty cycle in some low power systems; a half-duplex radio cannot keep transmitting if it wishes to receive useful signals; and a cognitive radio needs to listen and detect primary users frequently. This paper studies the capacity of point-to-point scalar discrete-time Gaussian channels subject to a duty cycle constraint as well as an average transmit power constraint. An idealized duty cycle constraint is first studied, which can be regarded as a requirement on the minimum fraction of nontransmissions or zero symbols in each codeword. Independent input with a unique discrete distribution is shown to achieve the channel capacity. In many situations, numerically optimized on-off signaling can achieve much higher rate than Gaussian signaling over a deterministic transmission schedule. This is in part because the positions of nontransmissions in a codeword can convey information. A more realistic duty cycle constraint is also studied, where the extra cost of transitions between transmissions and nontransmissions due to pulse shaping is accounted for. The capacity-achieving input is correlated over time and is hard to compute. A lower bound of the achievable rate as a function of the input distribution is shown to be maximized by a first-order Markov input process, whose stationary distribution is also discrete and can be computed efficiently. The results in this paper suggest that, under various duty cycle constraints, departing from the usual paradigm of intermittent packet transmissions may yield substantial gain.
机译:在许多无线通信系统中,无线电受到占空比限制,也就是说,无线电只能在一部分时间内主动发送信号。例如,在一些低功率系统中,希望有一个小的占空比。半双工无线电如果希望接收有用的信号,则不能继续发送;认知无线电需要经常收听和检测主要用户。本文研究了受占空比约束以及平均发射功率约束的点对点标量离散时间高斯信道的容量。首先研究了理想的占空比约束,可以将其视为对每个码字中不传输的最小部分或零符号的要求。显示了具有独特离散分布的独立输入以实现通道容量。在许多情况下,在确定的传输时间表上,数字优化的开-关信令可以实现比高斯信令更高的速率。部分原因是代码字中的非传输位置可以传达信息。还研究了更现实的占空比约束,其中考虑了由于脉冲整形而导致的传输与非传输之间转换的额外成本。达到容量的输入随时间而相关,并且难以计算。通过一阶马尔可夫输入过程显示出,作为输入分布函数的可达到速率的下限已最大化,该过程的平稳分布也是离散的,可以有效地进行计算。本文的结果表明,在各种占空比约束下,脱离间歇性数据包传输的通常范式可能会产生可观的收益。

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