Molecular communication often involves coexisting links where certain links may have priority over others. In this work, we consider a system in three-dimensional (3-D) space with two coexisting communication links, each between a point transmitter and fully-absorbing spherical receiver (FAR), where the one link (termed primary) has priority over the second link (termed secondary). The system implements the underlay cognitive-communication strategy for the co-existence of both links, which use the same type of molecules for information transfer. Mutual influence of FARs existing in the same communication medium results in competition for capturing the information-carrying molecules. In this work, first, we derive an approximate hitting probability equation for a diffusion-limited molecular communication system with two spherical FARs of different sizes considering the effect of molecular degradation. The derived equation is then used for the performance analysis of primary and secondary links in a cognitive molecular communication scenario. We show that the simple transmit control strategy at the secondary transmitter can improve the performance of the overall system. We study the influence of molecular degradation and decision threshold on the system performance. We also show that the systems parameters need to be carefully set to improve the performance of the system.
翻译:在这项工作中,我们考虑三维(3-D)空间的系统,其中两个是同时的通信连接,每个是点发机和完全吸收球接收器(FAR)之间的系统,其中一个连接(初级连接)优先于第二个连接(二级连接),一个连接(初级连接)优先于第二个连接(二级连接),该系统执行两个链接共存的内在认知通信战略,这两个链接使用相同的分子进行信息传输。同一通信媒介中存在的FAR的相互影响导致在获取信息携带分子方面的竞争。在这项工作中,首先,我们为扩散-有限分子通信系统得出一个大致的触碰概率方程,两个范围不同,考虑到分子退化的影响。由此产生的方程式随后用于在认知分子通信情景中进行初级和二级连接的性能分析。我们表明,二级发送器的简单传输控制战略可以改进整个系统的性能。我们研究了分子降解和决定门槛对系统性能的影响。我们还要仔细地表明,系统需要改进性能参数。