My problem is interference which is apparently coming from the LTE in 700, 800, 900 and 1800 MHz bands. Shows up as low signal quality on many Hot Bird transponders despite indication of 100% signal power. On satellites 3 deg apart there is no interference at all from which I guess a base station is shooting in the antenna directly (I am in low antenna elevation area and found candidate base station for this). Trying to solve this I ended up with Inverto 100cm dish and Inverto flange PLL LNB with Gibertini feedhorn. There is thus nothing to improve on the receiving side (except bigger antenna but this is not convenient in my case) and the signal quality improved a bit but is still low.
Here is question to experts: If some additional matched circular waveguide extension would be put between the feedhorn flange and the LNB flange, would this possibly help attenuating the LTE signals? The thinking is that longer Ku band waveguide would act as a stronger attentuation filter for the LTE due to the huge difference with the LTE frequency, but on the other hand the waveguide loss is low so it does not impact the satellite signal much. The thinking then goes the longer the waveguide the better the LTE rejection would be (within reasonable limits)?
Is this thinking right or I am missing some deadly flaw here?
Will appreciate your thoughts on this.
Here is question to experts: If some additional matched circular waveguide extension would be put between the feedhorn flange and the LNB flange, would this possibly help attenuating the LTE signals? The thinking is that longer Ku band waveguide would act as a stronger attentuation filter for the LTE due to the huge difference with the LTE frequency, but on the other hand the waveguide loss is low so it does not impact the satellite signal much. The thinking then goes the longer the waveguide the better the LTE rejection would be (within reasonable limits)?
Is this thinking right or I am missing some deadly flaw here?
Will appreciate your thoughts on this.