Yes.
I think the question needs to know how to increase signal strength from Receiving Antenna.1. Use Better and bigger Ground. This will not only increase signal but will also increase S/N ratio.2. Generally increasing the size of antenna helps.3. Use elements that can increase the effective area of the antenna.4. Ensure that the antenna is well matched to the feeder feeding the RF signal.
the digital signal is converted to analog signal after using by transmitted antenna
A dish antenna must face the arriving waves.
A dish antenna must face the arriving waves.
ratio of transmitted power and received power
A receiving antenna does "re-radiate" some of the power it receives, but not all. Some of the power it receives proceeds into the receiver ... which is the only way we detect the signal being received by the antenna.
It's a type of radio signal receiving antenna
If you run the antenna under test in the receiving mode, then while it is rotated, you'll monitor signals received by the antenna under test. If you run the antenna under test in the transmit mode, then while you rotate it, you'll monitor signals received by a different antenna on the test range. Either way, the varying signal must be monitored at the receiving end of the link. It's a lot more convenient, and a simpler configuration, to have the signal monitor and the rotation/excitation controls for the antenna under test in the same place, in order to react appropriately to any funny things noted during the test run.
There is no difference between the two.
RF energy is transmitted through an electromagnetic field. Once the field meets the receiving antenna, voltages are produced by using the antenna as a conductor. RF voltages induced by the antenna are passed on to the receiver then reconverted to transmitted RF information.
Radar range is affected by various factors, including the transmitted power, beamwidth, frequency, propagation losses, and antenna gain. Antenna gain plays a crucial role in determining the effective range of a radar system, as it focuses the transmitted energy in a particular direction, increasing the signal strength in that direction and consequently extending the radar range. A higher antenna gain typically results in a longer radar range by improving the system's ability to detect and track targets at greater distances.
A Hertz antenna refers to a type of dipole antenna that was invented by the German physicist Heinrich Hertz. It is a simple antenna design with two conductive elements used for transmitting or receiving electromagnetic waves at radio frequencies.