Doppler effect is the apparent difference between the frequency at which waves leave a source and that at which they reach an observer, caused by the observer?s relative motion and the wave source. When a radar transmits an electromagnetic signal to a target, the signal interacts with the target and
Remote Monitoring of heartbeat through micromotion doppler radar
Doppler effect is the apparent difference between the frequency at which waves leave a source and that at which they reach an observer, caused by the observer’s relative motion and the wave source. When a radar transmits an electromagnetic signal to a target, the signal interacts with the target and returns to the radar. The Doppler frequency is positive or negative depending on whether the target is approaching or receding. The change in frequency is proportional to the radial velocity of the target.
If the target or any structure on the target has mechanical vibration or rotation in addition to its bulk translation, it might induce a frequency modulation on the returned signal that generates sidebands about the target’s Doppler frequency shift. This is called the micro-Doppler effect and it is observed using a micro-motion Doppler radar.
Traditionally this technique has only been used in defense to detect the velocity of enemy aircraft’s missiles and artillery ammunition. With the advent of GHz frequencies combined with MIMO radars, the technique has found applications in the health sector for remote monitoring of ECG. An ECG (electrocardiogram) records the electrical activity of your heart at rest. It provides information about your heart rate and rhythm and shows if there is an enlargement of the heart due to high blood pressure (hypertension) or evidence of a previous heart attack (myocardial infarction).
A patient with heart problems requires continuous monitoring. Traditionally done ECG required sensors to be attached to the body to measure the heart condition. The main problem that arises is that these sensors restrict the patient's movement and need to be attached firmly to detect the heartbeat. A micro-motion radar overcomes this problem as it can be used to monitor the heart continuously without restricting the patient’s movement as it measures the heart condition wirelessly.
This device can also measure the heart condition of more than one patient at a time, therefore, reducing the cost of more machines and the technicians required to operate them, therefore, increasing overall efficiency. Continuous monitoring of the patient is difficult if he has a contagious disease and being in contact with him for a long time increases the risk of transmission. With this device, the doctor can monitor the heartbeat at a safe distance.
the final deliverables will be a working model which can detect the heartbeat of a person.
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| RF Cable | Equipment | 1 | 22500 | 22500 |
| Antenna | Equipment | 8 | 1500 | 12000 |
| Power Amplifer Tx | Equipment | 2 | 7000 | 14000 |
| Power Amplifer Rx | Equipment | 2 | 7000 | 14000 |
| Metal sheet | Miscellaneous | 1 | 2000 | 2000 |
| speaker | Miscellaneous | 1 | 3000 | 3000 |
| soldering iron | Miscellaneous | 1 | 2000 | 2000 |
| dummy loads | Equipment | 8 | 700 | 5600 |
| BladeRF portective caseing | Miscellaneous | 2 | 1500 | 3000 |
| Total in (Rs) | 78100 |
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