In status update systems, multiple features carried by the status updating process require pursuit of objectives beyond timeliness measured by the age of information of updates. We consider such a problem where the transmitter sends status update messages through a noiseless binary energy harvesting channel that is equivalent to a timing channel. The transmitter aims to amplify or mask the energy state information that is carried in the updating process. The receiver extracts encoded information, infers the energy state sequence while maintaining timeliness of status updates. Consequently, the timings of the updates must be designed to control the message rate, the energy state uncertainty, and the age of information. We investigate this three-way trade-off between the achievable rate, the reduction in energy arrival state uncertainty, and the age of information, for zero and infinite battery cases.
翻译:在状态更新系统中,状态更新过程所携带的多重特征要求追求超越更新信息年龄所衡量的及时性的目标。我们认为,发射机通过一个无噪音的二元能源收集渠道发送状态更新信息,这相当于一个计时频道。发射机旨在扩大或掩盖更新过程中所携带的能源状态信息。接收器提取了编码信息,推断了能源状态序列,同时保持了状态更新的及时性。因此,更新的时间安排必须设计为控制信息率、能源状况不确定性和信息年龄。我们调查了在可实现速度、能源抵达状态不确定性的减少以及零电池和无限电池案例信息年龄之间的这种三道交换。