26,918 research outputs found
MOL-Eye: A New Metric for the Performance Evaluation of a Molecular Signal
Inspired by the eye diagram in classical radio frequency (RF) based
communications, the MOL-Eye diagram is proposed for the performance evaluation
of a molecular signal within the context of molecular communication. Utilizing
various features of this diagram, three new metrics for the performance
evaluation of a molecular signal, namely the maximum eye height, standard
deviation of received molecules, and counting SNR (CSNR) are introduced. The
applicability of these performance metrics in this domain is verified by
comparing the performance of binary concentration shift keying (BCSK) and BCSK
with consecutive power adjustment (BCSK-CPA) modulation techniques in a
vessel-like environment with laminar flow. The results show that, in addition
to classical performance metrics such as bit-error rate and channel capacity,
these performance metrics can also be used to show the advantage of an
efficient modulation technique over a simpler one
Molecular Signal Modeling of a Partially Counting Absorbing Spherical Receiver
To communicate at the nanoscale, researchers have proposed molecular
communication as an energy-efficient solution. The drawback to this solution is
that the histogram of the molecules' hitting times, which constitute the
molecular signal at the receiver, has a heavy tail. Reducing the effects of
this heavy tail, inter-symbol interference (ISI), has been the focus of most
prior research. In this paper, a novel way of decreasing the ISI by defining a
counting region on the spherical receiver's surface facing towards the
transmitter node is proposed. The beneficial effect comes from the fact that
the molecules received from the back lobe of the receiver are more likely to be
coming through longer paths that contribute to ISI. In order to justify this
idea, the joint distribution of the arrival molecules with respect to angle and
time is derived. Using this distribution, the channel model function is
approximated for the proposed system, i.e., the partially counting absorbing
spherical receiver. After validating the channel model function, the
characteristics of the molecular signal are investigated and improved
performance is presented. Moreover, the optimal counting region in terms of bit
error rate is found analytically.Comment: submitted to Transactions on Communication
- …