Skip to main content
Advertisement
Browse Subject Areas
?

Click through the PLOS taxonomy to find articles in your field.

For more information about PLOS Subject Areas, click here.

< Back to Article

Fig 1.

Blockchain structure.

More »

Fig 1 Expand

Table 1.

Comparison of the proposed survey models.

More »

Table 1 Expand

Fig 2.

Network topology [44].

More »

Fig 2 Expand

Fig 3.

Flowchart of the data flowing into the network.

More »

Fig 3 Expand

Fig 4.

Security system model: Hash creation and block generation.

More »

Fig 4 Expand

Fig 5.

Security system model: Authentication process.

More »

Fig 5 Expand

Fig 6.

(1,2,3) The original signals and compressed signals.

More »

Fig 6 Expand

Fig 7.

Compression input signal.

More »

Fig 7 Expand

Fig 8.

Descriptive statistics of signal compression.

More »

Fig 8 Expand

Table 2.

Statistics descriptive.

More »

Table 2 Expand

Table 3.

Hardware dedicated circuit power consumption in CS and hash.

More »

Table 3 Expand

Table 4.

Power consumption for SHA256 software algorithm.

More »

Table 4 Expand

Table 5.

Power consumption for software compression–chaos.

More »

Table 5 Expand

Table 6.

Simulation environment parameters.

More »

Table 6 Expand

Fig 9.

Alive nodes clock frequency = 24 Mhz in the network with chaos compression as software and without software chaos compression.

More »

Fig 9 Expand

Fig 10.

Network lifetime.

Clock frequency = 80 Mhz chaos compression implemented software (SW w/C) version / software version without chaos.

More »

Fig 10 Expand

Fig 11.

Alive nodes in the network with hardware compression and with software tradition blockchain clock frequency = 24 Mhz.

More »

Fig 11 Expand

Fig 12.

Alive nodes in the network with hardware compression and with software tradition blockchain clock frequency = 80 Mhz.

More »

Fig 12 Expand

Fig 13.

Alive nodes in the network with (leach without BC, BC with hardware compression, BC with software compression, and BC software tradition) clock frequency = 24 Mhz.

More »

Fig 13 Expand

Fig 14.

Alive nodes in the network with (leach without BC, BC with hardware compression, BC with software compression, and BC software tradition) clock frequency = 80 Mhz.

More »

Fig 14 Expand

Fig 15.

Energy gain.

Clock frequency = 24 Mhz chaos compression implemented software (SW w/C) version / software version without chaos.

More »

Fig 15 Expand

Fig 16.

Energy gain.

Clock frequency = 80 Mhz chaos compression implemented software (SW w/C) version / software version without chaos.

More »

Fig 16 Expand

Fig 17.

Energy gain.

Clock frequency = 24 Mhz.

More »

Fig 17 Expand

Fig 18.

Energy gain.

Clock frequency = 80 Mhz.

More »

Fig 18 Expand

Fig 19.

Energy variance per round.

Clock frequency = 24 Mhz chaos compression implemented software (SW w/C) version / software version without chaos.

More »

Fig 19 Expand

Fig 20.

Energy variance per round.

Clock frequency = 80 Mhz chaos compression implemented software (SW w/C) version / software version without chaos.

More »

Fig 20 Expand

Fig 21.

Energy variance per round.

Clock frequency = 24 Mhz. Hardware version vs software without chaos.

More »

Fig 21 Expand

Fig 22.

Energy variance per round.

Clock frequency = 80 Mhz. Hardware version vs software without chaos.

More »

Fig 22 Expand