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Load Balancing Hashing in Geographic Hash Tables

机译:地理哈希表中的负载平衡哈希

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In this paper, we address the problem of balancing the network traffic load when the data generated in a wireless sensor network is stored on the sensor node themselves, and accessed through querying a geographic hash table. Existing approaches allow balancing network load by changing the georouting protocol used to forward queries in the geographic hash table. However, this comes at the expense of considerably complicating the routing process, which no longer occurs along (near) straight-line trajectories, but requires computing complex geometric transformations. In this paper, we demonstrate that it is possible to balance network traffic load in a geographic hash table without changing the underlying georouting protocol. Instead of changing the (near) straight-line georouting protocol used to send a query from the node issuing the query (the source) to the node managing the queried key (the destination), we propose to ȁC;reverse engineerȁD; the hash function used to store data in the network, implementing a sort of ȁC;load-awareȁD; assignment of key ranges to wireless sensor nodes. This innovative methodology is instantiated into two specific approaches: an analytical one, in which the destination density function yielding quasiperfect load balancing is analytically characterized under uniformity assumptions for what concerns location of nodes and query sources; and an iterative, heuristic approach that can be used whenever these uniformity assumptions are not fulfilled. In order to prove practicality of our load balancing methodology, we have performed extensive simulations resembling realistic wireless sensor network deployments showing the effectiveness of the two proposed approaches in considerably improving load balancing and extending network lifetime. Simulation results also show that our proposed technique achieves better load balancing than an existing approach based on modifying georouting.
机译:在本文中,我们解决了当无线传感器网络中生成的数据存储在传感器节点本身上并通过查询地理哈希表进行访问时,平衡网络流量负载的问题。现有方法允许通过更改用于转发地理哈希表中的查询的地理路由协议来平衡网络负载。然而,这是以使布线过程相当复杂为代价的,该布线过程不再沿着(近)直线轨迹发生,而是需要计算复杂的几何变换。在本文中,我们证明了可以在不更改基础地理路由协议的情况下平衡地理哈希表中的网络流量负载。与其更改从发出查询的节点(源)到管理查询关键字的节点(目标)的用于发送查询的(近)直线地理路由协议,我们建议:用于在网络中存储数据的哈希函数,实现了一种“ C;负载感知” D;将键范围分配给无线传感器节点。这种创新的方法被实例化为两种特定的方法:一种分析方法,其中在考虑节点和查询源位置的统一性假设下,分析产生目标准负载平衡的目标密度函数;以及每当不满足这些均匀性假设时都可以使用的迭代启发式方法。为了证明我们的负载均衡方法的实用性,我们进行了类似于真实无线传感器网络部署的广泛仿真,显示了两种建议的方法在显着改善负载均衡和延长网络寿命方面的有效性。仿真结果还表明,与基于修改地理路由的现有方法相比,我们提出的技术可实现更好的负载平衡。

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