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Robust and adaptive communication under uncertain interference.

机译:不确定干扰下的鲁棒自适应通信。

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摘要

In the future, wireless communication systems will play an increasingly integral role in society. Cutting-edge application areas such as cognitive radio, ad-hoc networks, and sensor networks are changing the way we think about wireless services. The demand for ubiquitous communication and computing requires flexible communication protocols that can operate in a range of conditions. This thesis adopts and extends a mathematical model for these communication systems that accounts for uncertainty and time variation in link qualities. The arbitrarily varying channel (AVC) is an information theoretic channel model that has a time varying state with no statistical description. We assume the state is chosen by an adversarial jammer, reflecting the demand that our constructions work for all state sequences. In this thesis we show how resources such as secret keys, feedback, and side-information can help communication under this kind of uncertainty.;In order to put our results in context we provide a detailed taxonomy of the known results on AVCs in a unified setting. We then prove new results on list decoding with constrained states, a relaxation of the main problem in which the receiver may output a short list of possible messages. In particular, we show constant list sizes can achieve capacity under an average-error criterion and that a list size L can achieve within O(1/ L) from the capacity under a maximal-error criterion, complementing the known results for unconstrained state sequences.;If the encoder and decoder share a secret key, they can use a randomized code to make their communication more robust. An important practical consideration in using joint randomization for communication schemes is the tradeoff between key size and error probability. Inspired by ad-hoc networks, we propose a new AVC model called the AVC with "nosy noise," in which the jammer can observe the transmitted codeword non-causally. We show that a key size of O(log n) bits is sufficient to achieve capacity for codes of blocklength n in this model as well as in the case for the standard AVC. If a secure feedback channel is available, the key can be shared via feedback. Limited feedback can also be used to adapt the rate to the actual channel state sequence. We develop an AVC framework for rateless coding and show schemes that achieve rates arbitrarily close to the empirical mutual information.;Finally, we address the Gaussian version of the AVC, where we show that a key size of O(log n) bits is again sufficient to achieve capacity. This result allows us to find an achievable rate region for degraded broadcast channels. In the case where randomized coding is infeasible, we show how a known interference signal at the transmitter can enlarge the capacity region. This result has applications to watermarking and a model for spectrum-sharing communication systems.
机译:将来,无线通信系统将在社会中扮演越来越重要的角色。诸如认知无线电,ad-hoc网络和传感器网络之类的尖端应用领域正在改变我们对无线服务的思考方式。对无处不在的通信和计算的需求需要可以在一定条件下运行的灵活的通信协议。本文采用并扩展了这些通信系统的数学模型,该模型考虑了链路质量的不确定性和时间变化。任意变化信道(AVC)是一种信息理论信道模型,具有时变状态,没有统计描述。我们假设状态是由对抗干扰者选择的,这反映了我们的构造适用于所有状态序列的需求。在这篇论文中,我们展示了诸如密钥,反馈和辅助信息之类的资源如何在这种不确定性下帮助进行通信。;为了将我们的结果放在上下文中,我们在统一的AVC上提供了已知结果的详细分类法设置。然后,我们用约束状态证明了列表解码的新结果,这缓解了主要问题,在该问题中,接收器可能会输出可能消息的简短列表。特别地,我们显示出恒定的列表大小可以在平均误差条件下实现容量,并且列表大小L可以在最大误差条件下从容量实现O(1 / L)以内,从而补充了无约束状态序列的已知结果如果编码器和解码器共享一个秘密密钥,则它们可以使用随机码来使它们的通信更加可靠。在使用联合随机性进行通信方案时,一个重要的实际考虑因素是密钥大小和错误概率之间的权衡。受ad-hoc网络的启发,我们提出了一种新的AVC模型,称为“带有“杂散噪声”的AVC”,其中干扰器可以非因果地观察传输的码字。我们证明,在此模型中以及在标准AVC的情况下,O(log n)位的密钥大小足以实现块长度为n的代码的容量。如果有安全的反馈通道,则可以通过反馈共享密钥。有限反馈也可以用于使速率适应实际的信道状态序列。我们开发了一种用于无速率编码的AVC框架,并显示了可以任意接近经验互信息的速率的方案;最后,我们解决了AVC的高斯版本,其中我们再次证明了O(log n)位的密钥大小足以达到容量。该结果使我们能够找到降级广播频道可实现的速率区域。在随机编码不可行的情况下,我们展示了发射机处的已知干扰信号如何扩大容量区域。该结果可应用于水印和频谱共享通信系统的模型。

著录项

  • 作者

    Sarwate, Anand Dilip.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 253 p.
  • 总页数 253
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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