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1)  unequal cluster
非均匀成簇
1.
Distributed energy efficient unequal clustering algorithm for wireless sensor networks
无线传感器网络的分布式能量有效非均匀成簇算法
2)  Uneven clustering
非均匀分簇
1.
A distribution-aware and uneven clustering routing protocol (UCDAEE) is proposed for solving the problem of unbalanced energy dissipation of cluster heads in clustering routing protocols.
针对现有的分簇路由协议中存在的簇首能量消耗不均衡问题,本论文提出一种感知节点分布的、能量有效的非均匀分簇路由协议UCDAEE。
2.
From the present most popular clustering based routing protocol start,detailed comparative analysis strengths and weaknesses of a variety of clustering based routing protocols,concluding that:base on uneven clustering,use a mixed cluster head election method,the intra-cluster one-hop routing mode,dynamic use of inter-cluster multi-hop routing protocol routing the effectiveness of better energy.
以目前研究最为广泛的分簇路由协议为切入点,详细对比分析了各种分簇路由协议的优缺点,总结得出:以非均匀分簇为基础,采用混合式簇首选举方法,簇内单跳通信,簇间动态使用多跳路由的路由协议能量有效性更好。
3.
Aiming at the problem of unbalanced energy consumption in the existing Wireless Sensor Networks(WSN) uneven clustering routing algorithm,this paper proposes an energy-balanced uneven clustering WSN routing algorithm.
针对现有无线传感器网络(WSN)分层分簇路由算法存在的能耗不均衡问题,提出一种能耗均衡的WSN非均匀分簇路由算法。
3)  unequal clustering
非均匀分簇
1.
Highly data fusion unequal clustering routing protocol for wireless sensor networks
高数据融合的非均匀分簇无线传感器网络路由协议
2.
A novel data transmission mechanism based on unequal clustering(DTUC) is presented to solve the "hot spot" problem of multihop data transmission in wireless sensor networks.
针对无线传感器网络多跳数据传送过程中遇到的问题,提出一种非均匀分簇的数据传送机制(DTUC)。
4)  uneven cluster
非均匀分簇
1.
Taking the energy into account, we improve the selection mechanism of cluster head, and apply the idea of uneven cluster-based, which effectively balances the energy consumption among cluster heads.
综合考虑能量因素,对LEACH协议的簇首选取机制进行改进,采用了非均匀分簇的思想来平衡簇首的能量消耗;分别以簇首和基站作为树根,生成簇内和簇间的路由树,在簇内,用分层次多跳和单跳相结合的方式将数据传输到簇首,簇首再通过多跳把数据发送到基站。
5)  unequal clustering algorithm
非均匀分簇算法
6)  heterogeneous nucleation
非均匀成核
1.
Ferrite MgFe2O4 coated carbonyl iron composite powder was prepared by heterogeneous nucleation combined with the liquid deposition method to improve the oxidation resistance performance of carbonyl iron powder.
采用非均匀成核和化学沉淀相结合的方法制备了MgFe2O4铁氧体原位包覆羰基铁超细复合粉体,对制备工艺及其抗氧化性能进行了研究。
2.
Al_2O_3 nanosized composite powders encapsulated by ZrO_2(3Y) were prepared by heterogeneous nucleation combined with the co-deposition and were molded by dry pressing.
用非均匀成核法和液相共沉淀法相结合的方法制得ZrO2(3Y)包裹Al2O3纳米复合粉体,经干压成型,常压烧结制备ZTA复相陶瓷。
3.
ZrO_2(3Y)encapsulated Al_2O_3 nano composite powders were prepared by heterogeneous nucleation combined with the liquid co-deposition method using pH buffer solution as precipitator.
以pH值缓冲溶液为沉淀剂,用非均匀成核和液相共沉淀相结合的方法合成出了ZrO2(3Y)包裹Al2O3纳米复合粉体。
补充资料:非均匀表面
分子式:
CAS号:

性质:实际的固体表面。所有实际的固体表面都不是完全均匀的,如晶格结构会发生缺陷、催化剂的活性组分以大小不同的原子簇的方式分布在表面上,构成活性不一样的活性点,相应的吸附热的大小也是不同的。

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