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in Other Telecom Products by aanchal_kdwl

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FDD LTE and TDD LTE are two different standards of LTE 4G technology. LTE is a high-speed wireless technology from the 3GPP standard. 3G growth reached its end at HSPA+, and mobile operators have already started deploying 4G networks to provide much more bandwidth for mobile users. 4G speed will provide a virtual LAN reality to mobile handsets by offering very high speed access to the Internet to experience real triple play services such as data, voice and video from a mobile network.

LTE is defined to support both the paired spectrum for Frequency Division Duplex (FDD) and unpaired spectrum for Time Division Duplex (TDD). LTE FDD uses a paired spectrum that comes from a migration path of the 3G network, whereas TDD LTE uses an unpaired spectrum that evolved from TD-SCDMA.

TD-LTE does not require a paired spectrum since transmission and reception occurs in the same channel. In FD-LTE, it requires a paired spectrum with different frequencies with a guard band.

TD-LTE is cheaper than FD-LTE since in TD-LTE there is no need for a diplexer to isolate transmission and receptions.

In TD-LTE, it’s possible to change the uplink and downlink capacity ratio dynamically according to the needs. In FD-LTE, capacity is determined by frequency allocation by regulatory authorities, making it difficult to make a dynamic change.

In TD-LTE, a larger guard period is necessary to maintain the uplink and downlink separation that will affect the capacity. In FD-LTE, the same concept is referred to as a guard band for isolation of uplink and downlink, which will not affect capacity.

Cross slot interference exists in TD-LTE, which is not applicable to FD-LTE.

by qamar079
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FDD LTE and TDD LTE are two different standards of LTE 4G technology

 

1.      LTE is defined to support both the paired spectrum for Frequency Division Duplex (FDD) and unpaired spectrum for Time Division Duplex (TDD).

2.      TD-LTE does not require a paired spectrum since transmission and reception occurs in the same channel. In FD-LTE, it requires a paired spectrum with different frequencies with a guard band.

3.      TD-LTE is cheaper than FD-LTE since in TD-LTE there is no need for a diplexer to isolate transmission and receptions.

4.      In TD-LTE, it’s possible to change the uplink and downlink capacity ratio dynamically according to the needs. In FD-LTE, capacity is determined by frequency allocation by regulatory authorities, making it difficult to make a dynamic change.

5.      In TD-LTE, a larger guard period is necessary to maintain the uplink and downlink separation that will affect the capacity. In FD-LTE, the same concept is referred to as a guard band for isolation of uplink and downlink, which will not affect capacity.
by priyashi_11

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