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Resource management and association control in heterogeneous wireless network environments : 이기종 무선 네트워크 환경에서 자원 관리 및 접속 제어

DC Field Value Language
dc.contributor.advisor박세웅-
dc.contributor.author이종욱-
dc.date.accessioned2019-07-02T15:42:04Z-
dc.date.available2019-07-02T15:42:04Z-
dc.date.issued2012-02-
dc.identifier.other000000001085-
dc.identifier.urihttps://hdl.handle.net/10371/156616-
dc.identifier.urihttp://dcollection.snu.ac.kr:80/jsp/common/DcLoOrgPer.jsp?sItemId=000000001085ko_KR
dc.description.abstractAs advanced mobile communication systems such as mobile WiMAX (Worldwide Interoperability for Microwave Access) and LTE (Long Term Evolution) have been deployed recently, multiple wireless networks begin to coexist and complement each other in various forms. Such environments are called heterogeneous wireless network or HetNet in short. Even though the concept of HetNet is not new since WLANs (Wireless Local Are Networks) have been widely used in hot-spot areas complementing 2G/3G cellular systems with their higher capacity, HetNet begins to attract both researchers' and practitioners' attention recently mainly due to two reasons. First, the advances in circuits, electronics, and micro-electronics have made it possible to access more than one network simultaneously at hardware level, which was not common for mobile devices to support in the past. Second, cellular systems now offer comparable performance to those of WLANs thanks to a number of advanced technologies, such as MIMO (Multiple Input Multiple Output) and OFDM (Orthogonal Frequency Division Multiplexing), and smaller cell sizes, e.g., femtocells.

In this dissertation, we deal with three different problems that can arise in HetNet. First, we deal with a cost minimization problem for a multi-homed mobile terminal that downloads and plays a Video-on-Demand (VoD) stream. The cost consists of the user's dissatisfaction due to playback disruptions and communication cost for downloading the VoD stream. There are three components in our approach: parameter estimation, threshold adjustment, and threshold compensation. Since we do not assume any a priori knowledge about underlying random variables, necessary parameter values are estimated online. Using the resultant estimates, we formulate the problem as a Markov Decision Process (MDP) problem considering as if the random variables are exponentially distributed. To solve the MDP problem efficiently, we propose a threshold adjustment algorithm that exploits some structural properties of any optimal solution that are specific to our problem. Finally, to handle the cases where the random variables are not exponentially distributed, we propose a threshold compensation algorithm to compensate for the modeling error. Through extensive simulations, we compare the performance of our scheme with those of static threshold schemes.

Next, we deal with a Mobile Collaborative Community (MCC) which is a group of people volunteering their resources to assist peer members in communication. We present a framework to utilize the wireless spectrum, the most scarce resource of a Mobile Network Operator (MNO), and the energy budget of mobile users in an MCC as efficiently as possible. Then we formulate the problem as the static and stochastic optimization. Additionally, we propose a fast heuristic algorithm to find the near optimal solution to the complicated optimization problem. Through extensive simulations, we evaluate how much the proposed scheme is of benefit to the MNO and users in MCC. The performance of our heuristic algorithm and the impacts of various parameters on the performance are also investigated.

Lastly, we study a Point of Attachment (PoA) selection problem which is an extended version of the cell-site selection problem to HetNet. Load balancing through cell-site selection in wireless networks has gained much attention as an efficient way to utilize scarce wireless resources. The goal of this study is to formulate a problem that aims to maximize the network-wide utility in HetNet with heterogeneous user device capabilities. We prove the problem is NP-Hard and propose a heuristic algorithm which is an extension of the existing local search algorithm. We evaluate the performance of our proposed algorithm against two received signal strength based approaches.
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dc.description.tableofcontents1 Introduction 1_x000D_
1.1 Outline 5_x000D_
2 On the MDP-based Cost Minimization for Video-on-Demand Services in Heterogeneous Wireless Network Environments 7_x000D_
2.1 Introduction 7_x000D_
2.2 System Model 10_x000D_
2.2.1 VoD stream 10_x000D_
2.2.2 Cost 12_x000D_
2.2.3 MDP formulation 13_x000D_
2.2.4 Uniformization 18_x000D_
2.3 ATAC: Adaptive Threshold Adjustment and Compensation 22_x000D_
2.3.1 Parameter estimation 22_x000D_
2.3.2 Threshold adjustment 23_x000D_
2.3.3 Threshold compensation 33_x000D_
2.4 Performance Evaluations 37_x000D_
2.4.1 Empirical probability distributions of M, Λ1, and Λ2 37_x000D_
2.4.2 Algorithm execution time 38_x000D_
2.4.3 Overall cost under various conditions 43_x000D_
2.4.4 Impact of out-of-order delivery problem 48_x000D_
2.5 Discussions 49_x000D_
2.5.1 Implementation issues 49_x000D_
2.5.2 Choice of N 50_x000D_
2.5.3 Effect of chunk size 51_x000D_
2.6 Related Work 52_x000D_
2.7 Conclusion and Future Work 54_x000D_
3 Opportunistic Data Delivery for Mobile Collaborative Communities 56_x000D_
3.1 Introduction 56_x000D_
3.2 System Model 61_x000D_
3.2.1 Terms and assumptions 61_x000D_
3.2.2 Primary channel 62_x000D_
3.2.3 Secondary channel 63_x000D_
3.3 Optimization Framework 66_x000D_
3.3.1 Static optimization 66_x000D_
3.3.2 Stochastic optimization 73_x000D_
3.3.3 Parameter adaptation 75_x000D_
3.4 Fast Mode Selection Algorithm 76_x000D_
3.5 Performance Evaluation 78_x000D_
3.5.1 Simulation parameters and compared schemes 78_x000D_
3.5.2 Performance comparison without external users 80_x000D_
3.5.3 Impact of forwarding order 84_x000D_
3.5.4 Impact of external users 85_x000D_
3.6 Practical issues 87_x000D_
3.6.1 Interaction with transport protocols 87_x000D_
3.6.2 Energy consumption aspects 88_x000D_
3.7 Related Work 90_x000D_
3.8 Conclusion 91_x000D_
4 Point of Attachment Selection in Heterogeneous Radio Access Technology Environments 93_x000D_
4.1 Introduction 93_x000D_
4.2 System Model 95_x000D_
4.3 NP-Hardness of PoA Selection Problem 101_x000D_
4.4 Proposed Heuristic Algorithm 105_x000D_
4.5 Performance Evaluation 108_x000D_
4.5.1 Compared Algorithms and Performance Metrics 108_x000D_
4.5.2 Simulation Setup 109_x000D_
4.5.3 Results 111_x000D_
4.6 Conclusion 116_x000D_
5 Conclusions 118
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dc.format.extent132-
dc.language.isoeng-
dc.publisher서울대학교 대학원-
dc.subject.ddc621.3-
dc.titleResource management and association control in heterogeneous wireless network environments-
dc.title.alternative이기종 무선 네트워크 환경에서 자원 관리 및 접속 제어-
dc.typeThesis-
dc.typeDissertation-
dc.contributor.AlternativeAuthorJongwook Lee-
dc.description.degreeDoctor-
dc.contributor.affiliation전기·컴퓨터공학부-
dc.date.awarded2012-02-
dc.identifier.holdings000000000006▲000000000011▲000000001085▲-
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