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Cloud and IoT-Based Vehicular Ad Hoc Networks


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CC2430 802.15.4 3.3 25 27 250 Dresden Elekronik deRFmega128-22M00 802.15.4 3.3 12.7 17.6 250 Dresden Elekronik deRFsam3 23M10-2 802.15.4 3.3 42 40 250 Schematic illustration of force utilization in (dBm) for products low force Wi-Fi modules.

      Figure 1.3 Force utilization in (dBm) for products low force Wi-Fi modules [5].

      1.2.2 The Relation Between the Different Internet of Things Protocol

      Table 1.3 Principle contrasts between conventions that might be utilized in IoT applications [5].

General Less Power Wi-Fi ZigBee 6LoWPAN Lora WAN
IEEE spec. 802.11 b/g/n 802.15.4 802.15.4 802.15.4
Max Data Rate 10 Mbps 250 Kbit/s 250 Kbit/s 5,468 bps Lora Technology modulation
Nominal Range 70 m2 indoors and 225 m2 Outdoors 10–100 m 25–50 m 5–15 km
Frequency band (GHz) 2.4/5 2.4 2.4 433/868 MHz
Nominal TX power (mW) 19.95 52.22 52.22 Changeable with the value as high as + 14 dBM

       1.2.2.1 Effect of Distinction Among Node and Transmission Power

      The connection between the info power, i.e., the recieved power and the yield power, i.e., the transmitted force is given below. In this equation:

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      D denotes the separation between the two wires which are receiving the signal.

      The power which the module is having when the module gets the information is denoted by Pr

      The force which the omni essential receiving wire gains is denoted by Gt.

      Gr denotes the force which the accepting receiving wire gain.

      The frequency is denoted by δ.

      At a point when this recurrence expands, the coverage diminishes that the consistent transfer of information and getting energy. At the same instance to expand go among all the sensor hubs, the additional removal of information force which is required. Now the people can’t compete for any specific separation and force utilization because of the separation relies upon the idea of use.

      1.3.1 Practical Aspects