Utilizing Digital and Physical Simulations to Investigate Time Measurement with Millisecond Pulsar
摘要
This research study explores the use of millisecond pulsars as a novel and reliable timekeeping technique, with a focus on how they may be incorporated into spacecraft to provide accurate time measurement. Although atomic and periodic clocks are extremely accurate, mistakes and structural issues do exist. Unlike pulses that occur every millisecond, millisecond pulses are consistent and have predictable intervals between shots. A computer simulation provides a complete and precise account of the millisecond pulsar's interaction with Earth. This smart simulation demonstrates the possibility of utilizing pulsars and emissions in real time. Examples of animations synchronized with millisecond music and the Earth's rotation provide a complicated knowledge of thinking. In physical simulation, real-time IR signal transmission is achieved utilizing an OLED display, IR communication, and an ESP8266 board. If successful, the receiver uses these signals to calculate the time. The Project demonstrates that millisecond pulsars can be used to measure time, as seen in the actual world. This method does not provide reliable wireless data but ensures the accuracy of time measurements.