Molecular communication has a key role to play in future medical applications, including detecting, analyzing, and addressing infectious disease outbreaks. Overcoming inter-symbol interference (ISI) is one of the key challenges in the design of molecular communication systems. In this paper, we propose to optimize the detection interval to minimize the impact of ISI while ensuring the accurate detection of the transmitted information symbol, which is suitable for the absorbing and passive receivers. For tractability, based on the signal-to-interference difference (SID) and signal-to-interference-and-noise amplitude ratio (SINAR), we propose a modified-SINAR (mSINAR) to measure the bit error rate (BER) performance for the molecular communication system with a variable detection interval. Besides, we derive the optimal detection interval in closed form. Using simulation results, we show that the BER performance of our proposed mSINAR scheme is superior to the competing schemes, and achieves similar performance to optimal intervals found by the exhaustive search.
翻译:分子通信在未来医疗应用中可发挥关键作用,包括检测、分析和应对传染病爆发。克服符号间干扰是分子通信系统设计中的关键挑战之一。在本文件中,我们提议优化探测间隔,以尽量减少三离通信系统的影响,同时确保准确探测适合吸收和被动接收机的传输信息符号。根据信号对干扰的区别和信号对干扰和无干扰振幅比率,我们建议采用经修改的SINAR(ISI)测量分子通信系统的比特差率(BER)性能,并采用不同的探测间隔。此外,我们以封闭形式得出最佳探测间隔。我们通过模拟结果显示,我们提议的MSINAR系统的BER性能优于相互竞争的计划,并取得与彻底搜索所发现的最佳间隔类似的性能。