Underwater optical communication system

Assignment Help Electrical Engineering
Reference no: EM1367305

An underwater optical communications system that implements forward error correction is demonstrated. The system uses a 405 nm diode laser to transmit on-off-keying (OOK) return-to-zero modulated data at a rate of 500 kbps to a photodiode receiver using a (255,129) Reed-Solomon code. The signal is digitized at the receiver and sent to a PC for post-processing. Experimental measurements collected in an indoor water tank suggest that the coded system can reduce the power required to achieve a bit-error-rate of 10-4 by approximately 8
dB relative to an uncoded OOK system.

As scientific progress demands more and varied data from the earth's oceans, and the military requires greater scrutiny of undersea traffic and threats, the need for reliable underwater communication links increases. The mobility requirements of submarines and autonomous underwater vehicles make tethered links infeasible, and radio frequency electromagnetic waves are highly attenuated in ocean water, preventing their widespread use. As sound waves undergo very little attenuation in the underwater channel, underwater acoustic
communications has been a topic of research for some time. However, due to issues of multipath interference and lack of bandwidth, acoustic data rates are limited. Acoustic links also exhibit very long propagation delays. 

One potential solution for high bandwidth and low latency underwater wireless communications is the use of optical communication systems. Such systems have grown more popular in recent years with the creation of reliable, low-cost light sources, like LEDs and diode lasers that take advantage of the comparatively low attenuation of light in the 400 nm - 550 nm range in seawater. Communication links have been demonstrated at rates of 10 Mbps and 1 Gbps. Researchers have also investigated the benefits of different modulation techniques on underwater optical communication systems.

While researchers have examined the use of forward-error- correction (FEC) codes to improve acoustic underwater communication systems , these techniques have not been applied to an underwater optical communication system. In principle, the use of such coding should allow the system to operate at a lower signal-to-noise ratio (SNR) for a given bit-error-rate (BER). Since the received signal power directly corresponds to the amount of detected photons, absorption and scattering of photons is the main source of signal attenuation.

This paper describes the application of a Reed-Solomon (RS) FEC code to an underwater optical communication link, in order to reduce the power requirements and/or extend the range of such a link over a varying degree of water conditions.

Reference no: EM1367305

Questions Cloud

Compute horizontal distance the ball would travel : The spring of the pressure gauge shown in has a force constant of 1 400N/m, and the piston has a diameter of 1.60cm. When the gauge is lowered into water in a lake, what change in depth causes piston to move in by 0.850cm.
Explain binary tree by induction : Binary tree is full if all of its vertices have either zero or two children. Let Bn denote number of full binary trees with n vertices. Illustrate by induction (substitution) that Bn is 2 (n) .
Purchasing power parity : Suppose two open economies A and B.  In this economy only one good is manufactured for time t = 0 and price P(0,A)=1 Dollar and P(0,B) = 1,5 Euro.
Find out the speed at which sound travels through the gas : The sound travels through the left tube LXM, which has a fixed length. Concurrently, the sound travels through the right tube LYM, length of which can be changed by moving the sliding section
Underwater optical communication system : An Underwater Optical Communication System and implementing Reed-Solomon Channel Coding
Theory in nursing curriculum : How helpful is theory in nursing curriculum? What is nursing practice and what is nursing education?
At what other angles is constructive interference heard : Two sound sources driven in phase by the equal amplifier are d = 4 m apart on the y axis. At a point a very large distance from the y axis, constructive interference is first heard at an angle θ1 = 0.140 rad with the x axis.
Potential health problems through case-studies : The diagnosing, care and treatment of human responses to actual and/or potential health problems through case-studies, research studies and findings.
Create program that asks user to enter series of numbers : Create a program which asks the user to enter a series of 20 numbers. The program must determine whether number is valid by comparing it to following list of valid charge account numbers:

Reviews

Write a Review

Electrical Engineering Questions & Answers

  Develop a sensor circuit using commodity components

ETEC 6414 Sensors and Wireless Communications, Assignment 1(a) –Sensor Circuit,  Develop a Sensor Circuit using commodity components

  Derive the dynamic model and average value circuit

Derive the dynamic model and average value circuit of a buck converter assuming the ESRs of the inductor and capacitor are not equal to zero.

  What is the time response

What is the time response

  Explain using diagram

If L=0.0053nH, C=15µF find the operating frequency of series LC circuit. What factors decides capacitance? Explain using diagram.

  Ziegler-nichols open loop tuning

Ziegler-Nichols Open Loop Tuning Often, when working with a faster loop, many people will opt only for a PI control philosophy

  Digital systems and microprocessors

Design a sequential system to continuously output your set of eight different digits (01275438) in binary at the rate of one digit per clock pulse.

  Write the ybus matrix

Identify the bus types and the unknown variables of the power flow problem. Write the complete set of equations needed to solve the load flow problem.

  Modify the state diagram branching conditions

Modify the state diagram branching conditions in the diagrams below as needed to ensure the sum and exclusion rules are obeyed in each case.

  Evaluate laplace transforms

Analyse and Model Engineering Situations and Solve Engineering Problems using Laplace Transform

  Electronics for recording

Transmit this data wirelessly to a base station for storage. How much bandwidth would you need.

  Analyzing the blink alive code

Analyzing the Blink Alive code - Embedded Systems Design

  Electricity and circuit theory

Assessment on Electricity and Circuit Theory,  What part of a cable are insulators and conductors? Describe, in terms of charged particles, why some objects are electrically attracted to each other, while others repel each other?

Free Assignment Quote

Assured A++ Grade

Get guaranteed satisfaction & time on delivery in every assignment order you paid with us! We ensure premium quality solution document along with free turntin report!

All rights reserved! Copyrights ©2019-2020 ExpertsMind IT Educational Pvt Ltd