Battery safety has attracted considerable attention worldwide due to the rapid development of wearable electronics and the steady increase in the production and use of electric vehicles.As battery failures are often a...Battery safety has attracted considerable attention worldwide due to the rapid development of wearable electronics and the steady increase in the production and use of electric vehicles.As battery failures are often associated with mechanical-thermal coupled behaviors,protective shielding materials with excellent mechanical robustness and flame-retardant properties are highly desired to mitigate thermal runaway.However,most of the thermal insulating materials are not strong enough to protect batteries from mechanical abuse,which is one of the most critical scenarios with catastrophic consequences.Here,inspired by wood,we have developed an effective approach to engineer a hierarchical nanocomposite via self-assembly of calcium silicate hydrate and polyvinyl alcohol polymer chains(referred as CSH wood).The versatile protective material CSH wood demonstrates an unprecedented combination of light weight(0.018 g cm-3),high stiffness(204 MPa in the axial direction),negative Poisson's ratio(-0.15),remarkable toughness(6.67×105 J m-3),superior thermal insulation(0.0204 W m-1 K-1 in the radial direction),and excellent fire retardancy(UL94-V0).When applied as a protective cover or a protective layer within battery packages,the tough CSH wood can resist high-impact load and block heat diffusion to block or delay the spread of fire,therefore significantly reducing the risk of property damage or bodily injuries caused by battery explosions.This work provides new pathways for fabricating advanced thermal insulating materials with large scalability and demonstrates great potential for the protection of electronic devices.展开更多
Definite-time zero-sequence over-current protection is presently used in systems whose neutral point is grounded by a low resistance(low-resistance grounding systems).These systems frequently malfunction owing to thei...Definite-time zero-sequence over-current protection is presently used in systems whose neutral point is grounded by a low resistance(low-resistance grounding systems).These systems frequently malfunction owing to their high settings of the action value when a high-impedance grounding fault occurs.In this study,the relationship between the zero-sequence currents of each feeder and the neutral branch was analyzed.Then,a grounding protection method was proposed on the basis of the zero-sequence current ratio coefficient.It is defined as the ratio of the zero-sequence current of the feeder to that of the neutral branch.Nonetheless,both zero-sequence voltage and zero-sequence current are affected by the transition resistance,The influence of transition resistance can be eliminated by calculating this coefficient.Therefore,a method based on the zero-sequence current ratio coefficient was proposed considering the significant difference between the faulty feeder and healthy feeder.Furthermore,unbalanced current can be prevented by setting the starting current.PSCAD simulation results reveal that the proposed method shows high reliability and sensitivity when a high-resistance grounding fault occurs.展开更多
In this paper, a method to calculate the slope of the ratio restraint characteristic of a transformer differential relay protection is proposed. The method allows using some concise but effective means to get the slop...In this paper, a method to calculate the slope of the ratio restraint characteristic of a transformer differential relay protection is proposed. The method allows using some concise but effective means to get the slope. Modulating the argument of current output from ONLLY testing equipment can make the relay protection device operate, thus, the data used for calculation would be obtained naturally after several trails. In order to make sure how effective that method could be, some experiment data is given as well.展开更多
In order to improve the lightning protection performance of transmission lines, lightning protection management has been divided into every tower that lightning protection performance has been evaluated respectively. ...In order to improve the lightning protection performance of transmission lines, lightning protection management has been divided into every tower that lightning protection performance has been evaluated respectively. According to factors such as landform, span, tower type, grounding resistance, isolator type, and so on, relative ratio of tripping operation of every tower in the line has been calculated to evaluate its lightning protection safety performance, it is beneficial to operation maintenance and lightning reconstruction of transmission lines.展开更多
To improve the resource utilization ratio and shorten the recovery time of the shared path protection with differentiated reliability (SPP-DiR) algorithm, an algorithm called dynamic shared segment protection with d...To improve the resource utilization ratio and shorten the recovery time of the shared path protection with differentiated reliability (SPP-DiR) algorithm, an algorithm called dynamic shared segment protection with differentiated reliability (DSSP-DiR) is proposed for survivable GMPLS networks. In the proposed algorithm, a primary path is dynamically divided into several segments according to the differentiated reliability requirements of the customers. In the SPP-DiR algorithm, the whole primary path should be protected, while in the DSSP- DiR algorithm, only partial segments on the primary path need to be protected, which can reduce more backup bandwidths than that in the SPP-DiR algorithm. Simulation results show that the DSSP-DiR algorithm achieves higher resource utilization ratio, lower protection failure probability, and shorter recovery time than the SPP-DiR algorithm.展开更多
业界提出利用路由保护算法来解决网络中的故障问题,然而已有的路由保护算法存在4个方面的问题:1)无法应对网络中所有可能的单故障情形;2)需要额外辅助机制的协助;3)不支持增量部署;4)每个结点存储多个到达目的地址的备份下一跳.提出一...业界提出利用路由保护算法来解决网络中的故障问题,然而已有的路由保护算法存在4个方面的问题:1)无法应对网络中所有可能的单故障情形;2)需要额外辅助机制的协助;3)不支持增量部署;4)每个结点存储多个到达目的地址的备份下一跳.提出一种基于转发图的域内路由保护算法(an intradomain routing protection algorithm based on forwarding graph,RPBFG)来解决这4个问题.首先建立了以最大化故障保护率为目标、以转发图包含反向最短路径树为约束条件的路由保护模型;然后提出了利用遗传算法构造满足上述目标的转发图;最后根据构造的转发图计算出所有结点到达目的结点的备份下一跳.在11个真实拓扑结构中比较了RPBFG,NPC,U-turn,MARA-MA,MARA-SPE在故障保护率和路径拉伸度的性能.实验结果表明,RPBFG可以应对网络中所有可能的单故障;在平均路径拉伸度方面,RPBFG比NPC,U-turn,MARA-MA,MARA-SPE分别降低了0.11%,0.72%,37.79%,36.26%.展开更多
在现有产品基础上加以改进,设计一种高精度低噪声低压差线性稳压器电路。设计采用折叠式共源共栅结构放大器来降低噪声,提高增益;使用PMOS管代替过热保护电路中的电阻,降低功耗,同时采用栅极驱动结构以及电流控制方式实现开关管导通与...在现有产品基础上加以改进,设计一种高精度低噪声低压差线性稳压器电路。设计采用折叠式共源共栅结构放大器来降低噪声,提高增益;使用PMOS管代替过热保护电路中的电阻,降低功耗,同时采用栅极驱动结构以及电流控制方式实现开关管导通与关断。基于TSMC 0.35μm B iCMOS工艺结合Cadence软件进行设计、版图绘制和前、后仿真,在后仿真中得出相关参数值。对各参数做出详细分析,并对不同频率下的电源电压抑制比进行了对比。实验结果表明本设计达到了高精度低功耗的设计目标。展开更多
基金the financial support from the National Key Research and Development Program of China(No.2021YFF0500802)the National Natural Science Foundation of China(No.51890904,No.52022022,and No.52278247)the Scientific Research and Innovation Plan of Jiangsu Province(KYCX21_0090)。
文摘Battery safety has attracted considerable attention worldwide due to the rapid development of wearable electronics and the steady increase in the production and use of electric vehicles.As battery failures are often associated with mechanical-thermal coupled behaviors,protective shielding materials with excellent mechanical robustness and flame-retardant properties are highly desired to mitigate thermal runaway.However,most of the thermal insulating materials are not strong enough to protect batteries from mechanical abuse,which is one of the most critical scenarios with catastrophic consequences.Here,inspired by wood,we have developed an effective approach to engineer a hierarchical nanocomposite via self-assembly of calcium silicate hydrate and polyvinyl alcohol polymer chains(referred as CSH wood).The versatile protective material CSH wood demonstrates an unprecedented combination of light weight(0.018 g cm-3),high stiffness(204 MPa in the axial direction),negative Poisson's ratio(-0.15),remarkable toughness(6.67×105 J m-3),superior thermal insulation(0.0204 W m-1 K-1 in the radial direction),and excellent fire retardancy(UL94-V0).When applied as a protective cover or a protective layer within battery packages,the tough CSH wood can resist high-impact load and block heat diffusion to block or delay the spread of fire,therefore significantly reducing the risk of property damage or bodily injuries caused by battery explosions.This work provides new pathways for fabricating advanced thermal insulating materials with large scalability and demonstrates great potential for the protection of electronic devices.
基金supported in part by National Key Research and Development Program of China(2016YFB0900603)Technology Projects of State Grid Corporation of China(52094017000W).
文摘Definite-time zero-sequence over-current protection is presently used in systems whose neutral point is grounded by a low resistance(low-resistance grounding systems).These systems frequently malfunction owing to their high settings of the action value when a high-impedance grounding fault occurs.In this study,the relationship between the zero-sequence currents of each feeder and the neutral branch was analyzed.Then,a grounding protection method was proposed on the basis of the zero-sequence current ratio coefficient.It is defined as the ratio of the zero-sequence current of the feeder to that of the neutral branch.Nonetheless,both zero-sequence voltage and zero-sequence current are affected by the transition resistance,The influence of transition resistance can be eliminated by calculating this coefficient.Therefore,a method based on the zero-sequence current ratio coefficient was proposed considering the significant difference between the faulty feeder and healthy feeder.Furthermore,unbalanced current can be prevented by setting the starting current.PSCAD simulation results reveal that the proposed method shows high reliability and sensitivity when a high-resistance grounding fault occurs.
文摘In this paper, a method to calculate the slope of the ratio restraint characteristic of a transformer differential relay protection is proposed. The method allows using some concise but effective means to get the slope. Modulating the argument of current output from ONLLY testing equipment can make the relay protection device operate, thus, the data used for calculation would be obtained naturally after several trails. In order to make sure how effective that method could be, some experiment data is given as well.
文摘In order to improve the lightning protection performance of transmission lines, lightning protection management has been divided into every tower that lightning protection performance has been evaluated respectively. According to factors such as landform, span, tower type, grounding resistance, isolator type, and so on, relative ratio of tripping operation of every tower in the line has been calculated to evaluate its lightning protection safety performance, it is beneficial to operation maintenance and lightning reconstruction of transmission lines.
基金supported by the National Natural Science Foundation of China (60673142)Applied Basic Research Project of Sichuan Province (2006J13-067)
文摘To improve the resource utilization ratio and shorten the recovery time of the shared path protection with differentiated reliability (SPP-DiR) algorithm, an algorithm called dynamic shared segment protection with differentiated reliability (DSSP-DiR) is proposed for survivable GMPLS networks. In the proposed algorithm, a primary path is dynamically divided into several segments according to the differentiated reliability requirements of the customers. In the SPP-DiR algorithm, the whole primary path should be protected, while in the DSSP- DiR algorithm, only partial segments on the primary path need to be protected, which can reduce more backup bandwidths than that in the SPP-DiR algorithm. Simulation results show that the DSSP-DiR algorithm achieves higher resource utilization ratio, lower protection failure probability, and shorter recovery time than the SPP-DiR algorithm.
文摘业界提出利用路由保护算法来解决网络中的故障问题,然而已有的路由保护算法存在4个方面的问题:1)无法应对网络中所有可能的单故障情形;2)需要额外辅助机制的协助;3)不支持增量部署;4)每个结点存储多个到达目的地址的备份下一跳.提出一种基于转发图的域内路由保护算法(an intradomain routing protection algorithm based on forwarding graph,RPBFG)来解决这4个问题.首先建立了以最大化故障保护率为目标、以转发图包含反向最短路径树为约束条件的路由保护模型;然后提出了利用遗传算法构造满足上述目标的转发图;最后根据构造的转发图计算出所有结点到达目的结点的备份下一跳.在11个真实拓扑结构中比较了RPBFG,NPC,U-turn,MARA-MA,MARA-SPE在故障保护率和路径拉伸度的性能.实验结果表明,RPBFG可以应对网络中所有可能的单故障;在平均路径拉伸度方面,RPBFG比NPC,U-turn,MARA-MA,MARA-SPE分别降低了0.11%,0.72%,37.79%,36.26%.
文摘在现有产品基础上加以改进,设计一种高精度低噪声低压差线性稳压器电路。设计采用折叠式共源共栅结构放大器来降低噪声,提高增益;使用PMOS管代替过热保护电路中的电阻,降低功耗,同时采用栅极驱动结构以及电流控制方式实现开关管导通与关断。基于TSMC 0.35μm B iCMOS工艺结合Cadence软件进行设计、版图绘制和前、后仿真,在后仿真中得出相关参数值。对各参数做出详细分析,并对不同频率下的电源电压抑制比进行了对比。实验结果表明本设计达到了高精度低功耗的设计目标。