Abstract:
In this paper, symbol-by-symbol maximum likelihood (ML) detection is proposed for a cooperative diffusion-based molecular communication (MC) system. In this system, the t...Show MoreMetadata
Abstract:
In this paper, symbol-by-symbol maximum likelihood (ML) detection is proposed for a cooperative diffusion-based molecular communication (MC) system. In this system, the transmitter (TX) sends a common information symbol to multiple receivers (RXs) and a fusion center (FC) chooses the TX symbol that is more likely, given the likelihood of its observations from all RXs. The transmission of a sequence of binary symbols and the resultant intersymbol interference are considered in the cooperative MC system. Three ML detection variants are proposed according to different RX behaviors and different knowledge at the FC. The system error probabilities for two ML detector variants are derived, one of which is in closed form. The optimal molecule allocation among RXs to minimize the system error probability of one variant is determined by solving a joint optimization problem. Also for this variant, the equal distribution of molecules among two symmetric RXs is analytically shown to achieve the local minimal error probability. Numerical and simulation results show that the ML detection variants provide lower bounds on the error performance of simpler, non-ML cooperative variants and demonstrate that these simpler cooperative variants have error performance comparable to ML detectors.
Published in: IEEE Transactions on Communications ( Volume: 67, Issue: 7, July 2019)
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- IEEE Keywords
- Index Terms
- Molecular Communication ,
- Maximum Likelihood Detector ,
- Simulation Results ,
- Optimization Problem ,
- Numerical Results ,
- Systematic Errors ,
- Error Probability ,
- Localization Error ,
- Optimal Allocation ,
- Error Performance ,
- Cooperative Control ,
- Local Probability ,
- Symbol Sequence ,
- Information Symbols ,
- Fusion Center ,
- Number Of Molecules ,
- Poisson Distribution ,
- Exhaustive Search ,
- Types Of Molecules ,
- Decision Rules ,
- Total Number Of Molecules ,
- Constant Threshold ,
- Local History ,
- Binary Decision ,
- Average Error Probability ,
- Sequential Quadratic Programming ,
- Majority Rule ,
- Channel Parameters ,
- Half-duplex Mode ,
- Line Segment
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Molecular Communication ,
- Maximum Likelihood Detector ,
- Simulation Results ,
- Optimization Problem ,
- Numerical Results ,
- Systematic Errors ,
- Error Probability ,
- Localization Error ,
- Optimal Allocation ,
- Error Performance ,
- Cooperative Control ,
- Local Probability ,
- Symbol Sequence ,
- Information Symbols ,
- Fusion Center ,
- Number Of Molecules ,
- Poisson Distribution ,
- Exhaustive Search ,
- Types Of Molecules ,
- Decision Rules ,
- Total Number Of Molecules ,
- Constant Threshold ,
- Local History ,
- Binary Decision ,
- Average Error Probability ,
- Sequential Quadratic Programming ,
- Majority Rule ,
- Channel Parameters ,
- Half-duplex Mode ,
- Line Segment
- Author Keywords