Showing posts with label haystack. Show all posts
Showing posts with label haystack. Show all posts

Sunday, 8 September 2013

Millstone Hill Digital Acquisition System Mini (MIDAS-Mini)

Today I cabled up the new MIDAS-Mini system that Frank Lind and I are putting together at MIT Haystack. This is a suitcase sized shock mounted rack that contains four USRP N200 devices, an octoclock (gps stabilized oscillator and a 1 PPS + 10 MHz clock splitter), and a 1 U server computer.  The computer is fast enough to simultaneously record four 25 MHz wide bands of data, which will be very useful. The box is small and rugged enough to be transported on an airplane.

We currently have two such racks, and there are plans to build more at a later point. With multiple boxes it is possible to get even more channels, and it is possible to chain the clock together to act as  4Nx4N MIMO systems.
Yeah, the cabling sucks. I just wanted to get my testing and calibration routines running. This will be cleaned up.

More cabling mess. 

Wednesday, 28 August 2013

Passive Radar


Passive radar is a form of radar that utilizes radio transmissions of opportunity as illuminators for targets. Examples of such transmissions are commercial FM radio, GPS signals, TV transmissions, and military radars.

A little while ago, we had several plots showing DAB stations in Norway seen via anomalous propagation at KAIRA. This is a very primitive form of passive radar. A more advanced solution is to measure the transmitted waveform using one receiver, and use this measured waveform when deconvolving the echoes. Today we have some results from FM radio based passive radar operating at the MIT Haystack Observatory using two dipole antennas and a USRP N200. The plots were made while commissioning a new 16-channel USRP based system called MIDAS-Mini, which will eventually replace older ISIS Echotek digital receivers used for this same purpose.

The concept of passive radar is not that new. For example, the Manastach Ridge Radar or the Haystack Observatory ISIS system can be used to observe specular meteor trails, ionospheric E-region irregularities and E-region drift velocities -- but only using commercial FM radio transmitters and relatively cheap hardware. To read more on the topic, refer to eg., Frank Lind's Ph.D. thesis.

In the video above, you can see airplanes with time variable Doppler shifts flying around the Boston and Rhode Island. This was recorded using a USRP N200 with one yagi antenna pointing towards the transmitter and another antenna pointing towards the opposite direction.