DRX MECHANISM FOR POWER SAVING IN LTE PDF
May 26, 2020 | by admin
Chapter 1 gives the basic theory description of the 3GPP LTE network and 3GPP DRX power saving mechanism, empirical measurements of LTE network traffic. Resource allocation and power optimization is a new challenge in multimedia services in cellular communication systems. To provide a better. In this article the power saving methods in both network attached and network idle modes as outlined in LTE are explained. The optimum criteria to select the.
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State 3 to state 1, state 3 to state 2 and state 3 to state 4 62 2.
Showing of extracted citations. Transition probability matrix 81 3. About the Authors Scott A. He is a founder of the Network Control Research activity with extensive international academic and industrial collaborations. About the Author Scott A.
Transition probability matrix 63 2. KarlssonDi Yuan Computer Networks Citation Statistics Citations 0 20 40 60 ’11 ’13 ’15 ‘ State 1 to state 1 and state 1 to state 2 38 2.
State 4 to state 1 and state 4 to state 2 63 2. By introducing the basics of mathematical analysis and performance evaluation of power-saving mechanisms in 3rd generation partnership project 3GPP LTE and LTE-Advanced networks, the authors of this book aim to describe novel algorithms which could have better performance capabilities than previous methods.
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LTE-Advanced DRX Mechanism for Power Saving
User equipment power saving in LTE savign 1. Chapter 2 provides steps for deriving a kn analytical model up to a 4-state DRX model. Furthermore, there are additional advantages in using DRX, such as over-the-air resource saving on both the uplink and downlink to increase overall system capacity. Compaq LTE Search for additional papers on this topic.
One of the enhancements over 3G wireless systems is that in LTE DRX mode can be enabled even when the user equipment is registered with the evolved node-B.
DRX mechanism for power saving in LTE – Semantic Scholar
Skip to search form Skip to main content. State 1 to state 1, state 1 to state 2 and state 1 to state 3 61 2. Topics Discussed in This Paper. FowlerAbdelhamid MelloukNaomi Yamada.
DRX mechanism for power saving in LTE
Transition probability matrix 39 2. Buffer state and resource allocation history 10 1.
State 1 to state 1 and state 1 to state 2 49 2. Transition probability matrix 50 2.
Added to Your Shopping Cart. Description Resource allocation and power optimization is a new challenge in multimedia services in cellular communication systems.
Scheduling schemes 71 3. From This Paper Figures, tables, and topics from this paper.
State 2 to state 1 and state 2 to state 3 80 3. Sleep states H2 42 2. See our FAQ for additional information. How we obtain equation [2.
State 2 to state 1 and state 2 to state 3 49 2. References Publications referenced by this paper. Would you like to change to the site?
Introduction of bursty packet data traffic 33 2. This paper has citations. Citations Publications citing this paper.
Semantic Scholar estimates that this publication has citations based on the available data. Telecommunications link Network packet Channel capacity. Adjustable DRX timer state for light sleep 79 3. State 2 mevhanism state 1, state 2 to state 2 and state 2 to state 3 61 2.