Question: In a modern wireless system LTE-WiFi Link Aggregation combines both LTE and WiFi for a single user to increase throughput. If the LTE system utilizes
In a modern wireless system LTE-WiFi Link Aggregation combines both LTE and WiFi for a single user to increase throughput. If the LTE system utilizes the 15kHz subcarriers, 64QAM, and a coding rate of , while the WiFi system is made up of two aggregated 20MHz blocks and utilizes 312.5kHz subcarriers with only 250kHz of bandwidth available for symbol transmission per subcarrier, 16QAM, and a coding rate of , what is the total maximum throughput for this combined system? You must show all of your work.
(20pts) In a modern wireless system LTE-WiFi Link Aggregation combines both LTE and WiFi for a single user to increase throughput. If the LTE system utilizes the 15kHz subcarriers, 64QAM, and a coding rate of , while the WiFi system is made up of two aggregated 20MHz blocks and utilizes 312.5kHz subcarriers with only 250kHz of bandwidth available for symbol transmission per subcarrier, 16QAM, and a coding rate 01%, what is the total maximum throughput for this combined system? You must show all f your work. 3. 20 MHz 40 MHz LTE 802.11n 1.9 GHz 2.4 GHz (20pts) In a modern wireless system LTE-WiFi Link Aggregation combines both LTE and WiFi for a single user to increase throughput. If the LTE system utilizes the 15kHz subcarriers, 64QAM, and a coding rate of , while the WiFi system is made up of two aggregated 20MHz blocks and utilizes 312.5kHz subcarriers with only 250kHz of bandwidth available for symbol transmission per subcarrier, 16QAM, and a coding rate 01%, what is the total maximum throughput for this combined system? You must show all f your work. 3. 20 MHz 40 MHz LTE 802.11n 1.9 GHz 2.4 GHz
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