Safety has been one of the biggest concerns in the Indian Railways system.  While the number of accidents have gone down over the last few years, the number still remains over 100 accidents a year.  In light of the recent train accidents in Uttar Pradesh (UP), we present some details around accidents and safety in the Indian Railways.

Causes of rail accidents

The number of rail accidents has declined from 325 in 2003-04 to 106 in 2015-16.[1]  The number of rail accidents as per the cause are shown in the graph below.  In 2015-16, majority of the accidents were caused due to derailments (60%), followed by accidents at level crossings (33%).1  In the last decade, accidents caused due to both these causes have reduced by about half.  According to news reports, the recent railway accidents in UP were caused due to derailment of coaches.

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Derailments

Between 2003-04 and 2015-16, derailments were the second highest reason for casualties.2  The Standing Committee on Railways, when examining the safety in railways, had noted that one of the reasons for derailments is defect in the track or coaches.  Of the total track length of 1,14,907 kms in the country, 4,500 kms should be renewed annually.2  However, in 2015-16, of the 5,000 km of track length due for renewal, only 2,700 km was targeted to be renewed.2  The Committee had recommended that Indian Railways should switch completely to the Linke Hoffman Busch (LHB) coaches as they do not pile upon each other during derailments and hence cause lesser casualties.2

Un-manned level crossings

Un-manned level crossings (UMLCs) continue to be the biggest cause of casualties in rail accidents.  Currently there are 14,440 UMLCs in the railway network.  In 2014-15, about 40% of the accidents occurred at UMLCs, and in 2015-16, about 28%.2  Between 2010 and 2013, the Ministry fell short of meeting their annual targets to eliminate UMLCs.  Further, the target of eliminating 1,352 UMLCs was reduced by about 50% to 730 in 2014-15, and 820 in 2015-16.2  Implementation of audio-visual warnings at level crossings has been recommended to warn road users about approaching trains.2  These may include Approaching Train Warning Systems, and Train Actuated Warning Systems.2  The Union Budget 2017-18 proposes to eliminate all unmanned level crossings on broad gauge lines by 2020.

Casualties and compensation

In the last few years, Railways has paid an average compensation of Rs 3.03 crore every year for accidents (see figure below).[2]

2

Note: Compensation paid during a year relates to the cases settled and not to accidents/casualties during that year.

Consequential train accidents

Accidents in railways may or may not have a significant impact on the overall system.  Consequential train accidents are those which have serious repercussions in terms of loss of human life or injury, damage to railway property or interruption to rail traffic.  These include collisions, derailments, fire in trains, and similar accidents that have serious repercussions in terms of casualties and damage to property.  These exclude cases of trespassing at unmanned railway crossings.

As seen in the figure below, the share of failure of railways staff is the biggest cause of consequential rail accidents.  The number of rail accidents due to failure of reasons other than the railway staff (sabotage) has increased in the last few years.

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Accidents due to failure of railway staff

It has been noted that more than half of the accidents are due to lapses on the part of railway staff.2  Such lapses include carelessness in working, poor maintenance, adoption of short-cuts, and non-observance of laid down safety rules and procedures.  To address these issues, conducting a regular refresher course for each category of railway staff has been recommended.2

Accidents due to loco-pilots2,[3]

Accidents also occur due to signalling errors for which loco-pilots (train-operators) are responsible.  With rail traffic increasing, loco-pilots encounter a signal every few kilometres and have to constantly be on high alert.  Further, currently no technological support is available to the loco-pilots and they have to keep a vigilant watch on the signal and control the train accordingly.2 These Loco-pilots are over-worked as they have to be on duty beyond their stipulated working hours.  This work stress and fatigue puts the life of thousands of commuters at risk and affects the safety of train operations.2  It has been recommended that loco-pilots and other related running staff should be provided with sound working conditions, better medical facilities and other amenities to improve their performance.2

Actions taken by Railways with regard to the recent train accident

According to news reports, the recent accident of Utkal Express in UP resulted in 22 casualties and over 150 injuries.[4]  It has also been reported that following this incident, the Railways Ministry initiated action against certain officials (including a senior divisional engineer), and three senior officers (including a General Manager and a Railway Board Member).

The Committee on Restructuring of Railways had noted that currently each Railway zone (headed by a General Manager) is responsible for operation, management, and development of the railway system under its jurisdiction.[5]  However, the power to make financial decisions does not rest with the zones and hence they do not possess enough autonomy to generate their own revenue, or take independent decisions.5

While the zones prepare their annual budget, the Railway Board provides the annual financial budget outlay for each of them.  As a result of such budgetary control, the GM’s powers have been reduced leaving them with little independence in planning their operations.5

The Committee recommended that the General Managers must be fully empowered to take all necessary decisions independent of the Railway Board.5  Zonal Railways should also have full power for expenditure and re-appropriations and sanctions.  This will make each Zonal Railway accountable for its transport output, profitability and safety under its jurisdiction.

Under-investment in railways leading to accidents

In 2012, a Committee headed by Mr. Anil Kakodkar had estimated that the total financial cost of implementing safety measures over the five-year period (2012-17) was likely be around Rs one lakh crore.  In the Union Budget 2017-18, the creation of a Rashtriya Rail Sanraksha Kosh was proposed for passenger safety.  It will have a corpus of Rs one lakh crore, which will be built over a five-year period (Rs 20,000 crore per year).

The Standing Committee on Railways had noted that slow expansion of rail network has put undue burden on the existing infrastructure leading to severe congestion and safety compromises.2  Since independence, while the rail network has increased by 23%, passenger and freight traffic over this network has increased by 1,344% and 1,642% respectively.2  This suggests that railway lines are severely congested.  Further, under-investment in the sector has resulted in congested routes, inability to add new trains, reduction of train speeds, and more rail accidents.2  Therefore, avoiding such accidents in the future would also require significant investments towards capital and maintenance of rail infrastructure.2

Tags: railways, safety, accidents, finances, derailment, casualty, passengers, train

[1] Railways Year Book 2015-16, Ministry of Railways, http://www.indianrailways.gov.in/railwayboard/uploads/directorate/stat_econ/IRSP_2015-16/Year_Book_Eng/8.pdf.

[2] “12th Report: Safety and security in Railways”, Standing Committee on Railways, December 14, 2016, http://164.100.47.193/lsscommittee/Railways/16_Railways_12.pdf.

[3] Report of High Level Safety Review Committee, Ministry of Railways, February 17, 2012.

[4] “Utkal Express derailment: Four railway officials suspended as death toll rises to 22”, The Indian Express, August 20, 2017, http://indianexpress.com/article/india/utkal-express-train-derailment-four-railway-officers-suspended-suresh-prabhu-muzaffarnagar-22-dead-4805532/.

[5] Report of the Committee for Mobilization of Resources for Major Railway Projects and Restructuring of Railway Ministry and Railway Board, Ministry of Railways, June 2015, http://www.indianrailways.gov.in/railwayboard/uploads/directorate/HLSRC/FINAL_FILE_Final.pdf.

TRAI released its recommendations on auction of spectrum on April 23, 2012.   The recommendations are in pursuance of the Supreme Court order cancelling 122 telecom licences.  The cancellation was ordered on grounds of procedural irregularities and arbitrariness in the first-cum-first-serve policy for allocation of spectrum.   The recommendations, if adopted by the Department of Telecommunications, would change various aspects of the present telecom policy, including (a) relationship between a telecom licence and spectrum; (b) procedure for allocation of spectrum; (c) pricing of spectrum; (d)  limits on spectrum allocation; and (e) use of spectrum. Relationship between telecom licences and spectrum Previously, under the Telecom Policy 1994 (updated in 1999), spectrum was tied in with telecom licences.  Since 2003, licence conditions provided for award of two blocks of 6.2 MHz of spectrum for GSM technology and two blocks of 5 MHz for CDMA technology.  As per the government’s decision of January 17, 2008 (as explained in TRAI's consultation paper, see page 3 paragraph 7) additional spectrum would be awarded on the basis of increment in the number of subscribers.  Service providers had to pay a licence fee (on obtaining the licence), an annual licence fee and a spectrum usage charge determined on the basis of their adjusted gross revenue. TRAI has recommended that telecom licences and spectrum should be de-linked.  The service provider would thus pay separately for the value of the licence and the spectrum.  With this formulation an entity that does not hold a licence, but is eligible to secure one, may also procure spectrum.  This would help in avoiding situations where licence holders have to wait to secure spectrum or offer wire line services in the absence of spectrum. Procedure for allocation of spectrum TRAI has recommended that spectrum be auctioned by means of a simultaneous multiple round ascending auction (SMRA).  This means that the service providers would bid for spectrum in different blocks simultaneously.  In the first round of auction a reserve price (base price) set by the government is used. Reserve price for auction and payment mechanism A reserve price indicates the minimum amount the bidder must pay to win the object.  In case it is too low, it may reduce the gains made by the seller and lead to a sub-optimal sale.  If it is too high, it may reduce the number of bidders and the probability of the good not being sold. Various countries have adopted a reserve price of 0.5 times the final price.  TRAI has recommended that the reserve price should be 0.8 times the expected winning bid.  It has also recommended that telecom companies pay 67% to 75% of the final price in installments over 10 years, depending on the spectrum band. TRAI has reasoned that a higher price would reduce the possibility of further sales upon bidders securing spectrum.  However, this may lead to fewer bidders and ultimately fewer service providers.  It is argued in news reports that this may increase investments to be made by the service providers and eventually an increase in tariffs. Spectrum blocks and caps TRAI has recommended that the spectrum cap should be determined on the basis of market share.  A service provider can now secure a maximum of 50% of spectrum assigned in each band in each service area.  However, a service provider cannot hold more than 25% of the total spectrum assigned in all the bands across the country. As per the January 2008 decision, additional spectrum could be awarded to telecom companies when they reached incremental slabs of subscribers.  This could extend to two blocks of 1 MHz for GSM technology, and two blocks of 1.25 MHz for CDMA, for each slab of subscribers. TRAI has recommended that spectrum should be auctioned in blocks of 1.25 MHz.  Each auction would at least offer 5 MHz of spectrum at a time.  Smaller blocks would ensure that service providers who are nearing the spectrum cap may secure spectrum without exceeding the cap.  However, experts have argued that 1.25 MHz block may be too limited for launching services.  Also, TRAI in the recommendation has noted that a minimum of 5 MHz of contiguous spectrum is required to launch efficient services with new technologies. Use of spectrum TRAI has recommended that the use of spectrum should be liberalised.  This implies that spectrum should be technology neutral.  Telecom companies would now be free to launch services with any technology of their choice.