11.07.2015 Views

Operating Manual Vol 1 - ES Documentation

Operating Manual Vol 1 - ES Documentation

Operating Manual Vol 1 - ES Documentation

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

SMIQEnhanced Functions For Digital Standard 3GPP W-CDMA (FDD)2.15.3.1.4 External Power ControlTwo test constellations have to be distinguished in the test of Closed (Inner) Loop Power Control:1. Test whether the DUT responds with the correct output power to received TPC bits (e.g. for testingaccording to [1], 6.4.2.1). This can be carried out by using a data list adapted to the test condition as TPCdata source. The TPC pattern can be defined in the channel table (see previous section, “MenuWCDMA/3GPP - Submenu BS Configuration“ or “Menu WCDMA/3GPP - Submenu MS Configuration“,and also section 2.15.3.1.5).2. Test whether the DUT correctly performs the SIR (Signal to Interference Ratio) measurement andinserts the corresponding bits into the TPC field of its transmit signal. Since the SMIQ has noreceive channel, the TPC control information has to be taken to the generator via another channel.This is possible via "External Power Control".Fig. 2-170Setup for testing Closed Loop Power ControlThe power of all activated enhanced channels can be increased or decreased in a predefined dynamicrange (= POWER UP RANGE + POWER DOWN RANGE) and in the defined step width (= POWERSTEP) with the TTL signal “External Power Control“.The power change of the channels is performed by a switchover of the mapping table, controlled by theexternal power control signal which is queried at the beginning of the pilot field. Since the number ofmappings is limited, the maximum dynamic range is restricted to 30 dB and the step width to min. 0.25 dB.The output power of each channel is thus limited to the[POWER_START-POWER_DOWN_RANGE...POWER_START+POWER_UP_RANGE] range.Note :To obtain optimum signal quality, the POWER_UP_RANGE should not be set higher thannecessary since the mapping of the I/Q level in this range must be maintained as a levelmargin.POWER_START and POWER_CONTROL = UP/DOWN can be set channel-specifically (see section2.15.3.1.5).In the following example it is assumed that• POWER_UP_RANGE = POWER_DOWN_RANGE• POWER_CONTROL = UP for channels 0, 2 and 3, POWER_CONTROL = DOWN for channel 1Available mappings are shown at the right with MAP M being the starting point. In this point, all channelshave the power which was set in the menu as POWER_START.At the beginning of the pilot field the LEVATT line is queried in each timeslot. If this line is set to logical"0" switchover is made to the left mapping MAP M-1 . This means a reduction of the output power byPOWER_STEP for all channels with POWER_CONTROL = UP . The power of channel 1 is increasedby the same value.If the LEVATT line is set to logical "0" switchover is made to the right mapping MAP M+1 . This means anincrease of the output power by POWER_STEP for all channels with POWER_CONTROL = UP. Thepower of channel 1 is decreased by the same value.1125.5555.03 2.245E-9

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!